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ORA BANDA MINING LTD Capital/Financing Update 2026

Mar 10, 2026

65475_rns_2026-03-10_07266987-b32d-406d-867b-179a72941f8d.pdf

Capital/Financing Update

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ASX ANNOUNCEMENT

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Ora Banda’s targeted organic growth strategy sees group Mineral Resources rapidly grow to 3.3 million ounces[1]

  • Drilling at Round Dam has expanded the Round Dam Mineral Resource Estimate (MRE) by 964% to 25.6Mt 1.6g/t for 1,330 koz

  • The 25.6Mt Round Dam MRE includes 7.2Mt at 1.8g/t for 408 koz in the Indicated category and 18.2Mt at 1.6g/t for 922 koz in the Inferred category

  • All of the Round Dam Resource is considered suitable for open pit mining and has been calculated with open pit shells that are cash-flow positive at A$5,000/oz, using a cut-off grade of 0.3g/t

  • Round Dam remains open along strike and at depth. Drilling for both resource extension and category conversion is ongoing

  • The uplift has increased Ora Banda’s global resource position by 57% to 3.3 million ounces, noting that resource updates are planned to be released for other deposits in mid-2026[2]

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A: T: E: ASX: ABN:

1

Table 1

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ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE: ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE: ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE: ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE: ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE: ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE: ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE: ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE: ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE:
MEASURED INDICATED INFERRED TOTAL MATERIAL
(‘000t) (g/t Au) (‘000t) (g/t Au) (‘000t) (g/t Au) (‘000t) (g/t Au) (‘000oz)
OPEN
PIT
- - 7,
152
1.8 18,
199
1.6 25,
351
1.6 1,3
3
0
TOTAL - - 7,152 1.8 18,199 1.6 25,351 1.6 1,330

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Figure 1

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Investor & Media Queries:

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ROUND DAM RESOURCE

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ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE ROUND DAM GOLD PROJECT MINERAL RESOURCE ESTIMATE
MEASURED INDICATED INFERRED TOTAL MATERIAL
(‘000t) (g/t Au) (‘000t) (g/t Au) (‘000t) (g/t Au) (‘000t) (g/t Au) (‘000oz.)
WALHALLA - - 4,921 2.0 15,559 1.7 20,480 1.7 1,142
SALMON GUMS - - 2,231 1.3 2,640 1.1 4,871 1.2 188
TOTAL - - 7,152 1.8 18,199 1.6 25,351 1.6 1,330

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LOCATION AND TENURE

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INFRASTRUCTURE

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GEOLOGY & GEOLOGICAL INTERPRETATION

Lithology

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==> picture [347 x 530] intentionally omitted <==

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==> picture [159 x 12] intentionally omitted <==

==> picture [65 x 12] intentionally omitted <==

Structure

==> picture [34 x 13] intentionally omitted <==

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==> picture [226 x 13] intentionally omitted <==

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==> picture [135 x 13] intentionally omitted <==

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==> picture [19 x 13] intentionally omitted <==

==> picture [62 x 13] intentionally omitted <==

==> picture [87 x 13] intentionally omitted <==

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==> picture [72 x 13] intentionally omitted <==

==> picture [71 x 13] intentionally omitted <==

==> picture [182 x 13] intentionally omitted <==

==> picture [20 x 13] intentionally omitted <==

==> picture [32 x 13] intentionally omitted <==

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==> picture [83 x 13] intentionally omitted <==

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==> picture [173 x 13] intentionally omitted <==

==> picture [390 x 13] intentionally omitted <==

==> picture [56 x 13] intentionally omitted <==

==> picture [173 x 13] intentionally omitted <==

==> picture [91 x 13] intentionally omitted <==

==> picture [167 x 13] intentionally omitted <==

==> picture [70 x 13] intentionally omitted <==

Alteration & Mineralisation

==> picture [459 x 14] intentionally omitted <==

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==> picture [252 x 13] intentionally omitted <==

==> picture [33 x 13] intentionally omitted <==

==> picture [119 x 13] intentionally omitted <==

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==> picture [265 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [178 x 13] intentionally omitted <==

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==> picture [39 x 13] intentionally omitted <==

==> picture [166 x 13] intentionally omitted <==

==> picture [202 x 13] intentionally omitted <==

==> picture [174 x 13] intentionally omitted <==

==> picture [90 x 13] intentionally omitted <==

==> picture [246 x 14] intentionally omitted <==

==> picture [217 x 14] intentionally omitted <==

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==> picture [80 x 13] intentionally omitted <==

==> picture [126 x 13] intentionally omitted <==

==> picture [69 x 13] intentionally omitted <==

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==> picture [365 x 13] intentionally omitted <==

==> picture [396 x 13] intentionally omitted <==

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==> picture [154 x 13] intentionally omitted <==

==> picture [71 x 13] intentionally omitted <==

==> picture [83 x 13] intentionally omitted <==

==> picture [180 x 13] intentionally omitted <==

==> picture [125 x 13] intentionally omitted <==

==> picture [115 x 13] intentionally omitted <==

==> picture [48 x 13] intentionally omitted <==

==> picture [35 x 13] intentionally omitted <==

==> picture [40 x 13] intentionally omitted <==

==> picture [135 x 13] intentionally omitted <==

==> picture [34 x 13] intentionally omitted <==

==> picture [38 x 13] intentionally omitted <==

==> picture [32 x 13] intentionally omitted <==

==> picture [76 x 13] intentionally omitted <==

==> picture [77 x 13] intentionally omitted <==

==> picture [12 x 13] intentionally omitted <==

==> picture [29 x 13] intentionally omitted <==

==> picture [64 x 13] intentionally omitted <==

==> picture [64 x 13] intentionally omitted <==

Weathering

==> picture [249 x 13] intentionally omitted <==

==> picture [72 x 13] intentionally omitted <==

==> picture [150 x 13] intentionally omitted <==

==> picture [98 x 13] intentionally omitted <==

==> picture [122 x 13] intentionally omitted <==

==> picture [49 x 13] intentionally omitted <==

==> picture [151 x 13] intentionally omitted <==

==> picture [242 x 13] intentionally omitted <==

==> picture [103 x 13] intentionally omitted <==

==> picture [80 x 13] intentionally omitted <==

==> picture [44 x 13] intentionally omitted <==

==> picture [162 x 13] intentionally omitted <==

==> picture [53 x 13] intentionally omitted <==

==> picture [52 x 13] intentionally omitted <==

==> picture [175 x 13] intentionally omitted <==

==> picture [32 x 13] intentionally omitted <==

==> picture [22 x 13] intentionally omitted <==

==> picture [87 x 13] intentionally omitted <==

==> picture [117 x 13] intentionally omitted <==

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==> picture [57 x 13] intentionally omitted <==

==> picture [70 x 13] intentionally omitted <==

==> picture [29 x 13] intentionally omitted <==

==> picture [73 x 14] intentionally omitted <==

==> picture [51 x 14] intentionally omitted <==

DRILLING AND SAMPLING, AND SAMPLE ANALYSIS TECHNIQUES

==> picture [131 x 13] intentionally omitted <==

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==> picture [92 x 13] intentionally omitted <==

==> picture [165 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [57 x 13] intentionally omitted <==

==> picture [330 x 13] intentionally omitted <==

==> picture [57 x 13] intentionally omitted <==

==> picture [120 x 13] intentionally omitted <==

==> picture [60 x 13] intentionally omitted <==

==> picture [288 x 13] intentionally omitted <==

==> picture [309 x 13] intentionally omitted <==

==> picture [61 x 13] intentionally omitted <==

==> picture [26 x 13] intentionally omitted <==

==> picture [67 x 13] intentionally omitted <==

==> picture [59 x 13] intentionally omitted <==

==> picture [71 x 13] intentionally omitted <==

==> picture [115 x 13] intentionally omitted <==

==> picture [48 x 13] intentionally omitted <==

==> picture [39 x 13] intentionally omitted <==

==> picture [25 x 13] intentionally omitted <==

==> picture [27 x 13] intentionally omitted <==

==> picture [58 x 13] intentionally omitted <==

==> picture [29 x 13] intentionally omitted <==

==> picture [49 x 13] intentionally omitted <==

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==> picture [43 x 13] intentionally omitted <==

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==> picture [59 x 13] intentionally omitted <==

==> picture [59 x 13] intentionally omitted <==

==> picture [91 x 13] intentionally omitted <==

==> picture [139 x 13] intentionally omitted <==

==> picture [62 x 13] intentionally omitted <==

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==> picture [221 x 13] intentionally omitted <==

==> picture [168 x 13] intentionally omitted <==

==> picture [342 x 13] intentionally omitted <==

==> picture [104 x 13] intentionally omitted <==

==> picture [120 x 13] intentionally omitted <==

==> picture [107 x 13] intentionally omitted <==

==> picture [214 x 13] intentionally omitted <==

==> picture [310 x 13] intentionally omitted <==

==> picture [81 x 13] intentionally omitted <==

==> picture [40 x 13] intentionally omitted <==

==> picture [52 x 13] intentionally omitted <==

==> picture [40 x 13] intentionally omitted <==

==> picture [49 x 13] intentionally omitted <==

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==> picture [31 x 13] intentionally omitted <==

==> picture [68 x 13] intentionally omitted <==

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==> picture [12 x 13] intentionally omitted <==

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==> picture [290 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [76 x 13] intentionally omitted <==

==> picture [286 x 13] intentionally omitted <==

==> picture [18 x 13] intentionally omitted <==

==> picture [25 x 13] intentionally omitted <==

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==> picture [48 x 14] intentionally omitted <==

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==> picture [106 x 13] intentionally omitted <==

==> picture [65 x 13] intentionally omitted <==

==> picture [99 x 13] intentionally omitted <==

==> picture [68 x 13] intentionally omitted <==

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==> picture [403 x 13] intentionally omitted <==

==> picture [55 x 13] intentionally omitted <==

==> picture [108 x 13] intentionally omitted <==

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==> picture [17 x 13] intentionally omitted <==

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==> picture [29 x 13] intentionally omitted <==

==> picture [14 x 11] intentionally omitted <==

==> picture [439 x 13] intentionally omitted <==

==> picture [211 x 13] intentionally omitted <==

==> picture [247 x 13] intentionally omitted <==

==> picture [41 x 13] intentionally omitted <==

==> picture [56 x 13] intentionally omitted <==

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==> picture [258 x 13] intentionally omitted <==

==> picture [164 x 13] intentionally omitted <==

==> picture [296 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [194 x 14] intentionally omitted <==

==> picture [267 x 14] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [192 x 13] intentionally omitted <==

==> picture [273 x 13] intentionally omitted <==

==> picture [31 x 13] intentionally omitted <==

==> picture [150 x 13] intentionally omitted <==

==> picture [18 x 13] intentionally omitted <==

==> picture [27 x 13] intentionally omitted <==

==> picture [136 x 13] intentionally omitted <==

==> picture [80 x 13] intentionally omitted <==

==> picture [8 x 9] intentionally omitted <==

==> picture [122 x 13] intentionally omitted <==

==> picture [29 x 13] intentionally omitted <==

==> picture [28 x 13] intentionally omitted <==

==> picture [110 x 13] intentionally omitted <==

==> picture [356 x 13] intentionally omitted <==

==> picture [25 x 13] intentionally omitted <==

==> picture [82 x 13] intentionally omitted <==

==> picture [459 x 14] intentionally omitted <==

==> picture [63 x 13] intentionally omitted <==

==> picture [19 x 13] intentionally omitted <==

==> picture [153 x 13] intentionally omitted <==

==> picture [181 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [164 x 13] intentionally omitted <==

==> picture [49 x 13] intentionally omitted <==

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==> picture [374 x 13] intentionally omitted <==

==> picture [6 x 13] intentionally omitted <==

==> picture [80 x 13] intentionally omitted <==

==> picture [115 x 14] intentionally omitted <==

==> picture [347 x 14] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [190 x 13] intentionally omitted <==

==> picture [158 x 13] intentionally omitted <==

==> picture [17 x 13] intentionally omitted <==

==> picture [27 x 13] intentionally omitted <==

==> picture [46 x 13] intentionally omitted <==

==> picture [8 x 9] intentionally omitted <==

==> picture [17 x 13] intentionally omitted <==

==> picture [40 x 13] intentionally omitted <==

==> picture [8 x 13] intentionally omitted <==

==> picture [238 x 13] intentionally omitted <==

==> picture [29 x 13] intentionally omitted <==

==> picture [190 x 13] intentionally omitted <==

==> picture [34 x 13] intentionally omitted <==

==> picture [111 x 13] intentionally omitted <==

==> picture [119 x 13] intentionally omitted <==

==> picture [68 x 13] intentionally omitted <==

==> picture [42 x 13] intentionally omitted <==

==> picture [135 x 13] intentionally omitted <==

==> picture [309 x 13] intentionally omitted <==

==> picture [68 x 13] intentionally omitted <==

==> picture [46 x 13] intentionally omitted <==

==> picture [345 x 13] intentionally omitted <==

==> picture [9 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [151 x 13] intentionally omitted <==

==> picture [93 x 13] intentionally omitted <==

==> picture [29 x 13] intentionally omitted <==

==> picture [195 x 13] intentionally omitted <==

==> picture [74 x 13] intentionally omitted <==

==> picture [386 x 13] intentionally omitted <==

==> picture [58 x 14] intentionally omitted <==

==> picture [153 x 14] intentionally omitted <==

==> picture [252 x 14] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [58 x 13] intentionally omitted <==

==> picture [186 x 13] intentionally omitted <==

==> picture [104 x 13] intentionally omitted <==

==> picture [65 x 13] intentionally omitted <==

==> picture [94 x 13] intentionally omitted <==

==> picture [90 x 13] intentionally omitted <==

==> picture [21 x 13] intentionally omitted <==

==> picture [32 x 13] intentionally omitted <==

==> picture [27 x 13] intentionally omitted <==

==> picture [135 x 13] intentionally omitted <==

==> picture [53 x 13] intentionally omitted <==

==> picture [192 x 13] intentionally omitted <==

==> picture [79 x 13] intentionally omitted <==

==> picture [81 x 13] intentionally omitted <==

==> picture [63 x 13] intentionally omitted <==

==> picture [102 x 13] intentionally omitted <==

==> picture [64 x 13] intentionally omitted <==

==> picture [57 x 13] intentionally omitted <==

==> picture [67 x 13] intentionally omitted <==

Sample Analysis Methods

==> picture [286 x 13] intentionally omitted <==

==> picture [182 x 13] intentionally omitted <==

==> picture [59 x 13] intentionally omitted <==

==> picture [18 x 13] intentionally omitted <==

==> picture [12 x 13] intentionally omitted <==

==> picture [76 x 13] intentionally omitted <==

==> picture [24 x 13] intentionally omitted <==

==> picture [35 x 13] intentionally omitted <==

==> picture [44 x 13] intentionally omitted <==

==> picture [48 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [29 x 14] intentionally omitted <==

==> picture [158 x 14] intentionally omitted <==

==> picture [189 x 14] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [326 x 13] intentionally omitted <==

==> picture [138 x 13] intentionally omitted <==

==> picture [210 x 13] intentionally omitted <==

==> picture [59 x 13] intentionally omitted <==

==> picture [201 x 13] intentionally omitted <==

==> picture [59 x 13] intentionally omitted <==

==> picture [377 x 13] intentionally omitted <==

==> picture [96 x 13] intentionally omitted <==

==> picture [363 x 13] intentionally omitted <==

==> picture [82 x 14] intentionally omitted <==

==> picture [53 x 13] intentionally omitted <==

==> picture [369 x 13] intentionally omitted <==

==> picture [66 x 13] intentionally omitted <==

==> picture [396 x 13] intentionally omitted <==

==> picture [29 x 13] intentionally omitted <==

==> picture [120 x 13] intentionally omitted <==

==> picture [38 x 13] intentionally omitted <==

==> picture [56 x 13] intentionally omitted <==

==> picture [50 x 13] intentionally omitted <==

==> picture [11 x 13] intentionally omitted <==

==> picture [91 x 13] intentionally omitted <==

==> picture [7 x 13] intentionally omitted <==

==> picture [22 x 13] intentionally omitted <==

==> picture [12 x 13] intentionally omitted <==

==> picture [22 x 13] intentionally omitted <==

==> picture [18 x 13] intentionally omitted <==

==> picture [7 x 13] intentionally omitted <==

==> picture [18 x 13] intentionally omitted <==

==> picture [22 x 13] intentionally omitted <==

==> picture [26 x 13] intentionally omitted <==

==> picture [19 x 13] intentionally omitted <==

==> picture [11 x 13] intentionally omitted <==

==> picture [24 x 13] intentionally omitted <==

==> picture [35 x 13] intentionally omitted <==

==> picture [13 x 13] intentionally omitted <==

==> picture [14 x 13] intentionally omitted <==

==> picture [17 x 13] intentionally omitted <==

==> picture [23 x 13] intentionally omitted <==

==> picture [14 x 13] intentionally omitted <==

==> picture [11 x 13] intentionally omitted <==

==> picture [30 x 13] intentionally omitted <==

==> picture [24 x 13] intentionally omitted <==

==> picture [53 x 13] intentionally omitted <==

==> picture [38 x 13] intentionally omitted <==

==> picture [258 x 13] intentionally omitted <==

==> picture [86 x 13] intentionally omitted <==

==> picture [342 x 13] intentionally omitted <==

==> picture [109 x 13] intentionally omitted <==

==> picture [207 x 13] intentionally omitted <==

==> picture [41 x 13] intentionally omitted <==

==> picture [165 x 13] intentionally omitted <==

==> picture [26 x 13] intentionally omitted <==

==> picture [31 x 13] intentionally omitted <==

==> picture [22 x 13] intentionally omitted <==

==> picture [28 x 13] intentionally omitted <==

==> picture [61 x 13] intentionally omitted <==

==> picture [49 x 13] intentionally omitted <==

==> picture [105 x 13] intentionally omitted <==

==> picture [96 x 13] intentionally omitted <==

==> picture [88 x 13] intentionally omitted <==

==> picture [14 x 11] intentionally omitted <==

==> picture [102 x 13] intentionally omitted <==

==> picture [83 x 13] intentionally omitted <==

==> picture [27 x 13] intentionally omitted <==

==> picture [26 x 13] intentionally omitted <==

==> picture [47 x 13] intentionally omitted <==

==> picture [103 x 13] intentionally omitted <==

==> picture [28 x 13] intentionally omitted <==

==> picture [50 x 13] intentionally omitted <==

==> picture [16 x 13] intentionally omitted <==

==> picture [33 x 13] intentionally omitted <==

==> picture [96 x 13] intentionally omitted <==

==> picture [117 x 13] intentionally omitted <==

==> picture [13 x 13] intentionally omitted <==

==> picture [33 x 13] intentionally omitted <==

==> picture [60 x 13] intentionally omitted <==

==> picture [151 x 13] intentionally omitted <==

==> picture [23 x 13] intentionally omitted <==

==> picture [67 x 13] intentionally omitted <==

==> picture [56 x 13] intentionally omitted <==

==> picture [86 x 13] intentionally omitted <==

==> picture [58 x 13] intentionally omitted <==

==> picture [176 x 13] intentionally omitted <==

==> picture [183 x 13] intentionally omitted <==

==> picture [85 x 13] intentionally omitted <==

==> picture [93 x 13] intentionally omitted <==

==> picture [200 x 13] intentionally omitted <==

==> picture [90 x 14] intentionally omitted <==

==> picture [74 x 14] intentionally omitted <==

==> picture [67 x 14] intentionally omitted <==

ESTIMATION METHODOLOGY

==> picture [158 x 13] intentionally omitted <==

==> picture [87 x 13] intentionally omitted <==

==> picture [101 x 13] intentionally omitted <==

==> picture [70 x 13] intentionally omitted <==

==> picture [209 x 14] intentionally omitted <==

==> picture [145 x 14] intentionally omitted <==

==> picture [86 x 14] intentionally omitted <==

==> picture [51 x 13] intentionally omitted <==

==> picture [89 x 13] intentionally omitted <==

==> picture [150 x 13] intentionally omitted <==

==> picture [51 x 13] intentionally omitted <==

==> picture [63 x 13] intentionally omitted <==

==> picture [29 x 13] intentionally omitted <==

==> picture [54 x 13] intentionally omitted <==

==> picture [62 x 13] intentionally omitted <==

==> picture [305 x 13] intentionally omitted <==

==> picture [48 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [110 x 13] intentionally omitted <==

==> picture [334 x 13] intentionally omitted <==

==> picture [113 x 13] intentionally omitted <==

==> picture [119 x 13] intentionally omitted <==

==> picture [185 x 13] intentionally omitted <==

==> picture [228 x 14] intentionally omitted <==

==> picture [227 x 14] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [457 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [443 x 13] intentionally omitted <==

==> picture [45 x 13] intentionally omitted <==

==> picture [459 x 14] intentionally omitted <==

==> picture [21 x 13] intentionally omitted <==

==> picture [441 x 13] intentionally omitted <==

==> picture [259 x 13] intentionally omitted <==

==> picture [448 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [228 x 14] intentionally omitted <==

==> picture [251 x 13] intentionally omitted <==

==> picture [11 x 13] intentionally omitted <==

==> picture [155 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [177 x 13] intentionally omitted <==

==> picture [265 x 13] intentionally omitted <==

==> picture [99 x 13] intentionally omitted <==

==> picture [72 x 13] intentionally omitted <==

==> picture [292 x 13] intentionally omitted <==

==> picture [459 x 13] intentionally omitted <==

==> picture [54 x 13] intentionally omitted <==

==> picture [125 x 13] intentionally omitted <==

==> picture [50 x 13] intentionally omitted <==

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CRITERIA USED FOR CLASSIFICATION

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CUT-OFF GRADES AND MODIFYING FACTORS

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MINING METHOD

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PROCESSING METHOD

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OTHER MINERAL RESOURCE ESTIMATES

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PROJECT ('000t) (g/t Au)
MEASURED
('000t) (g/t Au)
MEASURED
INDICATED INDICATED INFERRED INFERRED ('000t)
(g/t Au) ('000oz.)
TOTAL MATERIAL
('000t)
(g/t Au) ('000oz.)
TOTAL MATERIAL
('000t)
(g/t Au) ('000oz.)
TOTAL MATERIAL
(g/t Au) ('000t) (g/t Au) ('000t) (g/t Au) ('000t) **(g/t Au) **
LIGHTS OF ISRAEL - - 74 4.3 180 4.2 254 4.2 34
MAKAI SHOOT - - 1,985 2.0 153 1.7 2,138 2.0 136
Open Pit - - 2,057 2.3 95 2.0 2,152 2.3 157
WAIHI
Underground
- - 278 3.6 324 3.5 602 3.5 68
TOTAL - - 2,335 2.5 419 3.5 2,754 2.5 225
Central Davyhurst Subtotal - - 4,394 2.3 752 3.3 5,146 2.4 396
LADY GLADYS - - 1,858 1.9 190 2.4 2,048 1.9 125
Open Pit 476 1.7 2,118 1.6 117 1.5 2,711 1.6 138
RIVERINA AREA
Underground
266 3.3 3,953 2.7 2,826 2.4 7,046 2.6 586
TOTAL 742 2.3 6,071 2.3 2,943 2.4 9,757 2.3 724
Open Pit - - 386 1.6 17 1.6 403 1.6 21
BRITISH LION
Underground
- - 36 3.2 3 3.8 39 3.2 4
TOTAL - - 422 1.7 20 2.0 442 1.7 25
Open Pit - - - - 691 1.5 691 1.5 33
FOREHAND
Underground
- - - - 153 2.5 153 2.5 12
TOTAL - - - - 844 1.7 844 1.7 46
Open Pit - - - - 127 2.3 127 2.3 9
SILVER TONGUE
Underground
- - - - 77 4.5 77 4.5 11
TOTAL - - - - 204 3.1 204 3.1 21
SUNRAYSIA - - 175 2.1 318 2.0 493 2.0 32
Riverina-Mulline Subtotal 742 2.3 8,526 2.1 4,519 2.3 13,788 2.2 972
Open Pit - - - - - - -
-
-
SAND KING
Underground
108 3.2 1,900 2.7 1,901 2.9 3,909 2.8 348
TOTAL 108 3.2 1,900 2.7 1,901 2.9 3,909 2.8 348
Open Pit - - - - - - - - -
MISSOURI
Underground
- - 464 3.4 246 4.9 710 3.9 89
TOTAL - - 464 3.4 246 4.9 710 3.9 89
PALMERSTON / CAMPERDOWN - - 118 2.3 174 2.4 292 2.4 23
BLACK RABBIT - - - - 434 3.5 434 3.5 49
Siberia Subtotal 108 3.2 2,482 2.8 2,755 3.1 5,345 3.0 508
Open Pit - - 241 3.7 28 1.6 269 3.5 30
CALLION
Underground
- - 255 6.0 156 5.5 411 5.8 77
TOTAL -
-
496 4.9 184 4.9 680 4.9 107
Callion Subtotal - - 496 4.9 184 4.9 680 4.9 107
WALHALLA
Open Pit
- - 4,921 2.0 15,559 1.7 20,480 1.7 1,142
SALMON GUMS
Open Pit
- - 2,231 1.3 2,640 1.1 4,871 1.2 188
TOTAL - - 7,152 1.8 18,199 1.6 25,351 1.6 1,330
Round Dam Subtotal - - 7,152 1.8 18,199 1.6 25,351 1.6 1,330
Davyhurst Total 900 2.2 23,100 2.2 26,400 1.9 50,300 2.0 3,310

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COMPETENT PERSONS STATEMENTS

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FORWARD-LOOKING STATEMENTS

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Appendix 1 - Significant Intersection Table

Round Dam - Historical drilling

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
ROUND DAM 97DRB381 6669759
273152
448
90
-60
11
RAB
0 11 N.S.I.
ROUND DAM 97DRB382 6669759
273094
447
90
-60
25
RAB
0 25 N.S.I.
ROUND DAM 97DRB383 6669759
273034
447
90
-60
41
RAB
0 41 N.S.I.
ROUND DAM 97DRB384 6669762
272974
446
90
-60
30
RAB
0 30 N.S.I.
ROUND DAM 97DRB385 6669763
272915
446
90
-60
19
RAB
0 19 N.S.I.
ROUND DAM 97DRB386 6669760
272851
446
90
-60
42
RAB
0 42 N.S.I.
ROUND DAM 97DRB387 6669760
272795
446
90
-60
41
RAB
0 41 N.S.I.
ROUND DAM 97DRB388 6669763
272734
447
90
-60
35
RAB
0 35 N.S.I.
ROUND DAM 97DRB389 6669759
272674
447
90
-60
40
RAB
0 40 N.S.I.
ROUND DAM 97DRB390 6669761
272615
447
90
-60
59
RAB
0 59 N.S.I.
ROUND DAM 97DRB391 6669767
272551
448
90
-60
60
RAB
0 60 N.S.I.
ROUND DAM 97DRB392 6669765
272493
449
90
-60
61
RAB
0 61 N.S.I.
ROUND DAM 97DRB393 6669765
272433
449
90
-60
63
RAB
0 63 N.S.I.
ROUND DAM 97DRB394 6669768
272371
450
90
-60
57
RAB
0 57 N.S.I.
ROUND DAM 97DRB395 6669766
272309
451
90
-60
68
RAB
0 68 N.S.I.
ROUND DAM 97DRB396 6669761
272250
451
90
-60
58
RAB
0 58 N.S.I.
ROUND DAM 97DRB397 6669761
272191
452
90
-60
17
RAB
0 17 N.S.I.
ROUND DAM 97DRB398 6669766
272130
452
90
-60
51
RAB
0 51 N.S.I.
ROUND DAM 97DRB399 6669766
272072
452
90
-60
50
RAB
0 50 N.S.I.
ROUND DAM 97DRB400 6669764
272013
453
90
-60
68
RAB
0 68 N.S.I.
ROUND DAM 97DRB401 6669765
271951
453
90
-60
69
RAB
0 69 N.S.I.
ROUND DAM 97DRB402 6669765
271890
454
90
-60
17
RAB
0 17 N.S.I.
ROUND DAM 97DRB442 6669356
273122
444
90
-60
23
RAB
0 23 N.S.I.
ROUND DAM 97DRB443 6669356
273063
444
90
-60
43
RAB
0 43 N.S.I.
ROUND DAM 97DRB444 6669368
273001
444
90
-60
52
RAB
0 52 N.S.I.
ROUND DAM 97DRB445 6669361
272943
444
90
-60
46
RAB
0 46 N.S.I.
ROUND DAM 97DRB446 6669357
272883
445
90
-60
44
RAB
0 44 N.S.I.
ROUND DAM 97DRB447 6669360
272822
445
90
-60
48
RAB
0 48 N.S.I.
ROUND DAM 97DRB448 6669356
272762
445
90
-60
52
RAB
0 52 N.S.I.
ROUND DAM 97DRB449 6669360
272703
445
90
-60
39
RAB
0 39 N.S.I.
ROUND DAM 97DRB450 6669360
272644
446
90
-60
38
RAB
0 38 N.S.I.
ROUND DAM 97DRB451 6669357
272583
446
90
-60
33
RAB
0 33 N.S.I.
ROUND DAM 97DRB452 6669359
272523
447
90
-60
35
RAB
0 35 N.S.I.
ROUND DAM 97DRB453 6669362
272462
447
90
-60
40
RAB
0 40 N.S.I.
ROUND DAM 97DRB454 6669368
272404
448
90
-60
48
RAB
0 48 N.S.I.
ROUND DAM 97DRB455 6669357
272342
448
90
-60
51
RAB
0 51 N.S.I.
ROUND DAM 97DRB456 6669363
272302
449
90
-60
23
RAB
0 23 N.S.I.
ROUND DAM 97DRB457 6669357
272224
449
90
-60
45
RAB
0 45 N.S.I.
ROUND DAM 97DRB458 6669362
272163
449
90
-60
51
RAB
0 51 N.S.I.
ROUND DAM 97DRB459 6669365
272106
450
90
-60
50
RAB
0 50 N.S.I.
ROUND DAM 97DRB460 6669360
272052
450
90
-60
66
RAB
0 66 N.S.I.
ROUND DAM 97DRB484 6670657
272747
452
90
-60
47
RAB
0 47 N.S.I.
ROUND DAM 97DRB485 6670657
272727
452
90
-60
45
RAB
0 45 N.S.I.
ROUND DAM 97DRB486 6670657
272707
452
90
-60
49
RAB
0 49 N.S.I.
ROUND DAM 97DRB487 6670657
272677
452
90
-60
38
RAB
0 38 N.S.I.
ROUND DAM 97DRB496 6670557
273057
455
90
-60
78
RAB
0 78 N.S.I.
ROUND DAM 97DRB497 6670557
272977
454
90
-60
72
RAB
0 72 N.S.I.
ROUND DAM 97DRB498 6670557
272937
453
90
-60
49
RAB
0 49 N.S.I.
ROUND DAM 97DRB499 6670557
272897
453
90
-60
47
RAB
0 47 N.S.I.
ROUND DAM 97DRB500 6670557
272817
452
90
-60
42
RAB
0 42 N.S.I.
ROUND DAM 97DRB501 6670557
272827
452
90
-60
40
RAB
0 40 N.S.I.
ROUND DAM 97DRB502 6670557
272707
452
90
-60
35
RAB
0 35 N.S.I.
ROUND DAM 97DRB503 6670557
272687
451
90
-60
25
RAB
0 25 N.S.I.
ROUND DAM 97DRB504 6670557
272667
451
90
-60
34
RAB
0 34 N.S.I.
ROUND DAM 97DRB505 6670557
272637
451
90
-60
37
RAB
0 37 N.S.I.
ROUND DAM 97DRB506 6670557
272597
451
90
-60
55
RAB
0 55 N.S.I.
ROUND DAM 97DRB515 6670157
273077
452
90
-60
17
RAB
0 17 N.S.I.
ROUND DAM 97DRB516 6670157
273047
451
90
-60
34
RAB
0 34 N.S.I.
ROUND DAM 97DRB517 6670157
273017
451
90
-60
54
RAB
0 54 N.S.I.
ROUND DAM 97DRB518 6670157
272917
450
90
-60
60
RAB
0 60 N.S.I.
ROUND DAM 97DRB519 6670157
272897
450
90
-60
60
RAB
0 60 N.S.I.
ROUND DAM 97DRB520 6670157
272847
450
90
-60
57
RAB
0 57 N.S.I.
ROUND DAM 97DRB521 6670157
272767
449
90
-60
48
RAB
0 48 N.S.I.

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
ROUND DAM 97DRB522 6670157
272647
449
90
-60
45
RAB
0 45 N.S.I.
ROUND DAM 97DRB523 6670157
272597
449
90
-60
47
RAB
0 47 N.S.I.
ROUND DAM 97DRB524 6670157
272517
450
90
-60
46
RAB
0 46 N.S.I.
ROUND DAM 97DRB525 6670157
272437
451
90
-60
49
RAB
0 49 N.S.I.
ROUND DAM 97DRB526 6670157
272357
451
90
-60
48
RAB
0 48 N.S.I.
ROUND DAM 97DRB527 6670157
272277
452
90
-60
60
RAB
0 60 N.S.I.
ROUND DAM 97DRB533 6669957
272957
448
90
-60
42
RAB
0 42 N.S.I.
ROUND DAM 97DRB534 6669957
272877
448
90
-60
63
RAB
0 63 N.S.I.
ROUND DAM 97DRB535 6669957
272797
448
90
-60
57
RAB
0 57 N.S.I.
ROUND DAM 97DRB536 6669957
272717
448
90
-60
60
RAB
0 60 N.S.I.
ROUND DAM 97DRB537 6669957
272637
448
90
-60
57
RAB
0 57 N.S.I.
ROUND DAM 97DRB538 6669957
272607
448
90
-60
54
RAB
0 54 N.S.I.
ROUND DAM 97DRB539 6669957
272577
449
90
-60
44
RAB
0 44 N.S.I.
ROUND DAM 97DRB540 6669957
272547
449
90
-60
45
RAB
0 45 N.S.I.
ROUND DAM 97DRB541 6669957
272457
450
90
-60
48
RAB
0 48 N.S.I.
ROUND DAM 97DRB542 6669957
272387
450
90
-60
69
RAB
0 69 N.S.I.
ROUND DAM 97DRB543 6669957
272317
451
90
-60
63
RAB
0 63 N.S.I.
ROUND DAM DSR1 6667321
272525
443
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR10 6667353
272656
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR100 6671011
272446
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR101 6671007
272432
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR102 6671004
272417
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR103 6671000
272403
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR104 6670942
272582
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR105 6670938
272568
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR106 6670935
272554
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR107 6670931
272538
452
77
-60
9
RAB
0 9 N.S.I.
ROUND DAM DSR108 6670927
272524
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR109 6670924
272509
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR11 6667357
272670
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR110 6670920
272495
452
77
-60
30
RAB
15 16 1 1.45 1.5 1.0m @ 1.5 g/t
ROUND DAM DSR111
DSR111
6670916
272480
452
77
-60
24
RAB
13 14 1 1.00 1.0 1.0m @ 1.0 g/t
17 18 1 1.30 1.3 1.0m @ 1.3 g/t
ROUND DAM DSR112 6670913
272466
452
77
-60
18
RAB
0 18 N.S.I.
ROUND DAM DSR113 6670909
272451
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR114 6670906
272437
452
77
-60
30
RAB
26 27 1 1.50 1.5 1.0m @ 1.5 g/t
ROUND DAM DSR115 6670902
272422
452
77
-60
30
RAB
27 30 N.S.I.
ROUND DAM DSR116 6670898
272407
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR117 6670841
272592
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR118 6670837
272577
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR119 6670834
272563
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR12 6667361
272685
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR120 6670830
272548
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR121 6670827
272534
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR122 6670823
272519
452
77
-60
21
RAB
0 21 N.S.I.
ROUND DAM DSR123 6670819
272504
452
77
-60
30
RAB
25 27 2 2.17 4.3 2.0m @ 2.2 g/t
ROUND DAM DSR124 6670816
272490
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR125 6670812
272475
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR126 6670808
272461
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR127 6670805
272446
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR128 6670801
272432
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR129 6670798
272417
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR13 6667364
272700
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR130 6670945
272597
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR131 6670949
272611
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR132 6670845
272606
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR133 6670740
272601
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR134 6670737
272587
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR135 6670733
272572
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR136 6670730
272558
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR137 6670726
272543
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR138 6670722
272529
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR139 6670719
272514
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR14 6667368
272714
441
77
-60
33
RAB
0 33 N.S.I.
ROUND DAM DSR140 6670715
272499
452
77
-60
30
RAB
16 17 1 1.08 1.1 1.0m @ 1.1 g/t
ROUND DAM DSR141 6670711
272485
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR142 6670708
272470
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR143 6670704
272456
452
77
-60
30
RAB
0 30 N.S.I.

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
ROUND DAM DSR144 6670701
272441
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR145 6670697
272427
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR146 6670647
272640
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR147 6670643
272625
452
77
-60
30
RAB
29 30 1 2.05 2.1 1.0m @ 2.1 g/t
ROUND DAM DSR148 6670640
272611
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR149 6670636
272595
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR15 6667372
272729
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR150 6670633
272582
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR151 6670629
272567
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR152 6670625
272553
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR153 6670622
272538
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR154 6670618
272524
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR155 6670614
272509
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR156 6670611
272494
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR157 6670607
272480
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR158 6670604
272465
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR159 6670600
272451
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR16 6667375
272743
441
77
-60
33
RAB
0 33 N.S.I.
ROUND DAM DSR160 6670596
272436
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR161 6670532
272591
450
77
-60
30
RAB
27 29 2 1.54 3.1 2.0m @ 1.5 g/t
ROUND DAM DSR162 6670528
272577
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR163 6670525
272562
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR164 6670521
272548
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR165 6670517
272533
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR166
DSR166
6670514
272519
450
77
-60
30
RAB
19 23 4 8.70 34.8 4.0m @ 8.7 g/t
Incl
20.00
22 2 15.13 30.3 2.0m @ 15.1 g/t
ROUND DAM DSR167 6670510
272504
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR168 6670507
272490
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR169 6670503
272475
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR17 6667379
272758
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR170 6670499
272460
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR171 6670496
272446
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR172 6670492
272431
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR173 6670488
272417
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR174 6670485
272402
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR175 6670431
272601
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR176 6670428
272586
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR177 6670424
272572
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR178 6670420
272557
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR179 6670417
272543
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR18 6667382
272772
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR180
DSR180
6670413
272528
450
77
-60
21
RAB
18 21 3 6.75 20.3 3.0m @ 6.8 g/t
Incl
18.00
19 1 12.20 12.2 1.0m @ 12.2 g/t
ROUND DAM DSR181 6670411
272519
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR182 6670406
272499
450
77
-60
24
RAB
0 24 N.S.I.
ROUND DAM DSR183 6670402
272485
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR184 6670399
272470
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR185 6670395
272455
450
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR186 6670391
272441
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR187 6670388
272426
451
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR188 6669297
272600
446
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR189 6669294
272585
446
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR19 6667386
272787
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR190 6669290
272571
446
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR191 6669287
272556
446
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR192 6669283
272542
446
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR193 6669279
272527
446
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR194 6668691
272648
444
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR195 6668687
272633
444
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR196 6668684
272619
444
77
-60
30
RAB
29 30 1 2.30 2.3 1.0m @ 2.3 g/t
ROUND DAM DSR197 6668680
272604
444
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR198 6668676
272589
444
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR199 6668673
272575
444
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR2 6667324
272539
443
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR20 6667390
272801
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR200 6668182
272671
443
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR201 6668178
272657
443
77
-60
30
RAB
0 30 N.S.I.

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
ROUND DAM DSR202 6668174
272642
443
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR203 6668171
272628
443
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR204 6668167
272613
443
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR205 6668164
272599
443
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR207 6668388
272672
443
12
-60
44
RAB
0 44 N.S.I.
ROUND DAM DSR21 6667393
272816
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR210 6668381
272643
443
12
-60
38
RAB
0 38 N.S.I.
ROUND DAM DSR211 6668376
272623
443
12
-60
39
RAB
0 39 N.S.I.
ROUND DAM DSR215 6669431
272721
446
12
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR216 6669428
272711
446
12
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR217 6669968
272395
450
12
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR218 6669971
272406
450
12
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR22 6667397
272831
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR23 6667401
272845
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR24 6667404
272861
441
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR3 6667328
272554
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR39 6671457
272583
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR4 6667332
272569
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR40 6671454
272568
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR41 6671450
272554
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR42 6671446
272539
455
77
-60
30
RAB
28 30 2 1.30 2.6 2.0m @ 1.3 g/t
ROUND DAM DSR43 6671443
272524
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR44 6671439
272510
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR45 6671435
272495
456
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR46 6671432
272481
456
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR47 6671428
272466
456
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR48 6671425
272452
456
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR49 6671421
272437
456
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR5 6667335
272583
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR50 6671417
272423
456
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR51 6671414
272408
456
77
-60
15
RAB
0 15 N.S.I.
ROUND DAM DSR52 6671353
272578
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR53 6671349
272563
455
77
-60
30
RAB
27 28 1 1.06 1.1 1.0m @ 1.1 g/t
ROUND DAM DSR54 6671346
272549
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR55 6671342
272534
455
77
-60
18
RAB
0 18 N.S.I.
ROUND DAM DSR56 6671338
272520
455
77
-60
25
RAB
0 25 N.S.I.
ROUND DAM DSR57 6671335
272505
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR58 6671331
272490
455
77
-60
30
RAB
28 29 1 1.95 2.0 1.0m @ 2.0 g/t
ROUND DAM DSR59 6671327
272476
455
77
-60
15
RAB
0 15 N.S.I.
ROUND DAM DSR6 6667339
272598
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR60 6671324
272461
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR61 6671320
272447
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR62 6671317
272432
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR63 6671313
272418
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR64 6671309
272403
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR65 6671241
272544
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR66 6671238
272529
454
77
-60
30
RAB
15 16 1 1.98 2.0 1.0m @ 2.0 g/t
ROUND DAM DSR67 6671234
272515
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR68 6671230
272500
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR69 6671227
272485
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR7 6667343
272612
442
77
-60
22
RAB
0 22 N.S.I.
ROUND DAM DSR70 6671223
272471
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR71 6671220
272456
454
77
-60
30
RAB
21 22 1 1.00 1.0 1.0m @ 1.0 g/t
ROUND DAM DSR72 6671216
272442
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR73 6671212
272427
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR74 6671209
272413
454
77
-60
24
RAB
0 24 N.S.I.
ROUND DAM DSR75 6671205
272398
454
77
-60
15
RAB
0 15 N.S.I.
ROUND DAM DSR76 6671201
272384
455
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR77 6671148
272582
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR78 6671144
272568
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR79 6671141
272553
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR8 6667346
272627
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR80 6671137
272539
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR81 6671133
272524
454
77
-60
12
RAB
0 12 N.S.I.
ROUND DAM DSR82 6671130
272510
454
77
-60
30
RAB
3 30 N.S.I.
ROUND DAM DSR83 6671126
272495
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR84 6671123
272480
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR85 6671119
272466
453
77
-60
30
RAB
0 30 N.S.I.

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
ROUND DAM DSR86 6671115
272451
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR87 6671112
272437
453
77
-60
18
RAB
0 18 N.S.I.
ROUND DAM DSR88 6671108
272422
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR89 6671104
272408
454
77
-60
28
RAB
0 28 N.S.I.
ROUND DAM DSR9 6667350
272641
442
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR90 6671101
272393
454
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR91 6671044
272577
453
77
-60
28
RAB
0 28 N.S.I.
ROUND DAM DSR92 6671040
272563
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR93 6671036
272548
453
77
-60
30
RAB
15 16 1 1.04 1.0 1.0m @ 1.0 g/t
ROUND DAM DSR94 6671033
272534
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR95 6671029
272519
453
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSR96 6671026
272505
452
77
-60
21
RAB
0 21 N.S.I.
ROUND DAM DSR97 6671022
272490
452
77
-60
13
RAB
0 12 N.S.I.
ROUND DAM DSR98 6671018
272476
452
77
-60
21
RAB
15 16 1 1.35 1.4 1.0m @ 1.4 g/t
ROUND DAM DSR99 6671015
272461
452
77
-60
30
RAB
0 30 N.S.I.
ROUND DAM DSRB001 6666957
272417
444
0
-90
86
RAB
0 86 N.S.I.
ROUND DAM DSRB002 6666957
272457
444
0
-90
90
RAB
0 90 N.S.I.
ROUND DAM DSRB003 6666957
272497
444
0
-90
91
RAB
0 91 N.S.I.
ROUND DAM DSRB004 6666957
272537
444
0
-90
82
RAB
0 82 N.S.I.
ROUND DAM DSRB005 6666957
272577
443
0
-90
68
RAB
0 68 N.S.I.
ROUND DAM DSRB006 6666957
272617
443
0
-90
67
RAB
0 67 N.S.I.
ROUND DAM DSRB007 6666957
272657
443
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB008 6666957
272697
442
0
-90
65
RAB
0 65 N.S.I.
ROUND DAM DSRB009 6666957
272737
442
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB010 6666957
272777
442
0
-90
68
RAB
60 61 1 1.02 1.0 1.0m @ 1.0 g/t
ROUND DAM DSRB011 6666957
272817
442
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB012 6666957
272857
442
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB013 6666957
272897
441
0
-90
55
RAB
0 55 N.S.I.
ROUND DAM DSRB014 6666957
272937
441
0
-90
65
RAB
0 65 N.S.I.
ROUND DAM DSRB015
DSRB015
DSRB015
6666957
272977
441
0
-90
86
RAB
52 53 1 3.29 3.3 1.0m @ 3.3 g/t
72 73 1 2.86 2.9 1.0m @ 2.9 g/t
84 86 2 5.02 10.0 2.0m @ 5.0 g/t
ROUND DAM DSRB016 6666957
273017
441
0
-90
61
RAB
0 61 N.S.I.
ROUND DAM DSRB017 6667757
272417
443
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB018 6667757
272457
443
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB019 6667757
272497
443
0
-90
64
RAB
0 64 N.S.I.
ROUND DAM DSRB020 6667757
272537
443
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB021 6667757
272572
442
0
-90
37
RAB
0 37 N.S.I.
ROUND DAM DSRB022 6667757
272617
442
0
-90
69
RAB
0 69 N.S.I.
ROUND DAM DSRB023 6667757
272657
442
0
-90
46
RAB
0 46 N.S.I.
ROUND DAM DSRB024 6667757
272697
442
0
-90
49
RAB
0 49 N.S.I.
ROUND DAM DSRB025 6667752
272737
442
0
-90
44
RAB
0 44 N.S.I.
ROUND DAM DSRB026 6667757
272777
442
0
-90
53
RAB
0 53 N.S.I.
ROUND DAM DSRB027 6667757
272817
441
0
-90
65
RAB
0 65 N.S.I.
ROUND DAM DSRB028 6667757
272857
441
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB029 6667757
272897
441
0
-90
44
RAB
0 44 N.S.I.
ROUND DAM DSRB030 6667757
272937
441
0
-90
50
RAB
0 50 N.S.I.
ROUND DAM DSRB031 6667757
272977
441
0
-90
53
RAB
0 53 N.S.I.
ROUND DAM DSRB032 6667757
273017
440
0
-90
44
RAB
0 44 N.S.I.
ROUND DAM DSRB033 6668157
273017
441
0
-90
37
RAB
0 37 N.S.I.
ROUND DAM DSRB034 6668157
272977
442
0
-90
44
RAB
0 44 N.S.I.
ROUND DAM DSRB035 6668157
272937
442
0
-90
32
RAB
0 32 N.S.I.
ROUND DAM DSRB036 6668157
272897
442
0
-90
34
RAB
0 34 N.S.I.
ROUND DAM DSRB037 6668157
272857
442
0
-90
30
RAB
0 30 N.S.I.
ROUND DAM DSRB038 6668157
272817
442
0
-90
46
RAB
0 46 N.S.I.
ROUND DAM DSRB039 6668157
272777
442
0
-90
49
RAB
0 49 N.S.I.
ROUND DAM DSRB040 6668157
272737
442
0
-90
47
RAB
0 47 N.S.I.
ROUND DAM DSRB041 6668157
272697
443
0
-90
47
RAB
0 47 N.S.I.
ROUND DAM DSRB042 6668157
272657
443
0
-90
47
RAB
0 47 N.S.I.
ROUND DAM DSRB043 6668157
272617
443
0
-90
33
RAB
0 33 N.S.I.
ROUND DAM DSRB044 6668157
272577
443
0
-90
52
RAB
0 52 N.S.I.
ROUND DAM DSRB045 6668157
272537
443
0
-90
64
RAB
0 64 N.S.I.
ROUND DAM DSRB046 6668157
272497
444
0
-90
46
RAB
0 46 N.S.I.
ROUND DAM DSRB047 6668157
272457
444
0
-90
58
RAB
0 58 N.S.I.
ROUND DAM DSRB048 6668157
272417
444
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB049 6669557
272417
449
0
-90
43
RAB
0 43 N.S.I.
ROUND DAM DSRB050 6669557
272457
448
0
-90
47
RAB
0 47 N.S.I.
ROUND DAM DSRB051 6669557
272497
448
0
-90
50
RAB
0 50 N.S.I.

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
ROUND DAM DSRB052 6669557
272537
447
0
-90
48
RAB
0 48 N.S.I.
ROUND DAM DSRB053 6669557
272577
447
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB054 6669562
272617
447
0
-90
47
RAB
0 47 N.S.I.
ROUND DAM DSRB055 6669557
272657
446
0
-90
44
RAB
0 44 N.S.I.
ROUND DAM DSRB056 6669557
272697
446
0
-90
35
RAB
0 35 N.S.I.
ROUND DAM DSRB057 6669557
272737
446
0
-90
46
RAB
0 46 N.S.I.
ROUND DAM DSRB058 6669557
272777
446
0
-90
44
RAB
0 44 N.S.I.
ROUND DAM DSRB059 6669557
272817
446
0
-90
39
RAB
0 39 N.S.I.
ROUND DAM DSRB060 6669557
272857
446
0
-90
32
RAB
0 32 N.S.I.
ROUND DAM DSRB061 6669557
272897
445
0
-90
42
RAB
0 42 N.S.I.
ROUND DAM DSRB062 6669557
272937
445
0
-90
26
RAB
0 26 N.S.I.
ROUND DAM DSRB063 6668957
273017
443
0
-90
38
RAB
0 38 N.S.I.
ROUND DAM DSRB064 6668957
272977
443
0
-90
43
RAB
36 37 1 1.09 1.1 1.0m @ 1.1 g/t
ROUND DAM DSRB065 6668957
272937
443
0
-90
40
RAB
0 40 N.S.I.
ROUND DAM DSRB066 6668957
272897
443
0
-90
46
RAB
0 46 N.S.I.
ROUND DAM DSRB067 6668957
272857
443
0
-90
29
RAB
0 29 N.S.I.
ROUND DAM DSRB068 6668957
272817
443
0
-90
41
RAB
0 41 N.S.I.
ROUND DAM DSRB069 6668957
272777
444
0
-90
35
RAB
0 35 N.S.I.
ROUND DAM DSRB070 6668957
272737
444
0
-90
32
RAB
0 32 N.S.I.
ROUND DAM DSRB071 6668957
272697
444
0
-90
39
RAB
0 39 N.S.I.
ROUND DAM DSRB072 6668952
272657
444
0
-90
42
RAB
0 42 N.S.I.
ROUND DAM DSRB073 6668957
272617
445
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB074 6668957
272577
445
0
-90
45
RAB
0 45 N.S.I.
ROUND DAM DSRB075 6668957
272537
445
0
-90
60
RAB
0 60 N.S.I.
ROUND DAM DSRB076 6668957
272497
445
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB077 6668957
272457
446
0
-90
43
RAB
0 43 N.S.I.
ROUND DAM DSRB078 6668957
272417
446
0
-90
50
RAB
0 50 N.S.I.
ROUND DAM DSRB079 6668557
272417
445
0
-90
59
RAB
0 59 N.S.I.
ROUND DAM DSRB080 6668557
272457
444
0
-90
48
RAB
0 48 N.S.I.
ROUND DAM DSRB081 6668557
272497
444
0
-90
38
RAB
0 38 N.S.I.
ROUND DAM DSRB082 6668557
272537
444
0
-90
40
RAB
0 40 N.S.I.
ROUND DAM DSRB083 6668557
272577
444
0
-90
32
RAB
0 32 N.S.I.
ROUND DAM DSRB084 6668557
272617
444
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB085 6668557
272657
444
0
-90
24
RAB
0 24 N.S.I.
ROUND DAM DSRB086 6668557
272697
443
0
-90
20
RAB
0 20 N.S.I.
ROUND DAM DSRB087 6668557
272737
443
0
-90
41
RAB
0 41 N.S.I.
ROUND DAM DSRB088 6668557
272777
443
0
-90
34
RAB
0 34 N.S.I.
ROUND DAM DSRB089 6668557
272817
443
0
-90
43
RAB
0 43 N.S.I.
ROUND DAM DSRB090 6668557
272857
442
0
-90
47
RAB
0 47 N.S.I.
ROUND DAM DSRB091 6668557
272897
442
0
-90
38
RAB
0 38 N.S.I.
ROUND DAM DSRB092 6668557
272937
442
0
-90
53
RAB
0 53 N.S.I.
ROUND DAM DSRB093 6668557
272977
442
0
-90
45
RAB
0 45 N.S.I.
ROUND DAM DSRB094 6668557
273017
442
0
-90
50
RAB
0 50 N.S.I.
ROUND DAM DSRB095 6669957
272507
449
0
-90
45
RAB
0 45 N.S.I.
ROUND DAM DSRB096 6669957
272837
448
0
-90
57
RAB
0 57 N.S.I.
ROUND DAM DSRB097 6669957
272917
448
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB098 6666757
272617
443
0
-90
65
RAB
0 65 N.S.I.
ROUND DAM DSRB099 6666757
272657
443
0
-90
55
RAB
0 55 N.S.I.
ROUND DAM DSRB100 6666757
272897
441
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB101 6666757
272937
441
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB102 6666757
272977
441
0
-90
61
RAB
0 61 N.S.I.
ROUND DAM DSRB103 6666757
273017
441
0
-90
73
RAB
0 73 N.S.I.
ROUND DAM DSRB104 6666757
273057
441
0
-90
73
RAB
63 65 2 1.93 3.9 2.0m @ 1.9 g/t
ROUND DAM DSRB105 6666757
273097
441
0
-90
63
RAB
47 51 4 1.59 6.4 4.0m @ 1.6 g/t
ROUND DAM DSRB106 6667157
272577
443
0
-90
68
RAB
0 68 N.S.I.
ROUND DAM DSRB107 6667157
272617
443
0
-90
60
RAB
0 60 N.S.I.
ROUND DAM DSRB108 6667157
272657
442
0
-90
42
RAB
0 42 N.S.I.
ROUND DAM DSRB109 6667157
272697
442
0
-90
53
RAB
0 53 N.S.I.
ROUND DAM DSRB110 6667157
272737
442
0
-90
47
RAB
38 39 1 5.41 5.4 1.0m @ 5.4 g/t
ROUND DAM DSRB111 6667157
272777
442
0
-90
59
RAB
0 59 N.S.I.
ROUND DAM DSRB112 6667157
272817
441
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB113 6667157
272857
441
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB114 6667157
272897
441
0
-90
65
RAB
0 65 N.S.I.
ROUND DAM DSRB115 6667157
272937
441
0
-90
101
RAB
0 101 N.S.I.
ROUND DAM DSRB116 6667157
272977
440
0
-90
80
RAB
0 80 N.S.I.
ROUND DAM DSRB117 6667157
273017
440
0
-90
81
RAB
0 81 N.S.I.
ROUND DAM DSRB118 6667157
273057
440
0
-90
61
RAB
0 61 N.S.I.
ROUND DAM DSRB119 6667957
272497
443
0
-90
53
RAB
0 53 N.S.I.

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
ROUND DAM DSRB120 6667957
272537
443
0
-90
65
RAB
0 65 N.S.I.
ROUND DAM DSRB121 6667957
272577
443
0
-90
53
RAB
0 53 N.S.I.
ROUND DAM DSRB122 6667957
272617
443
0
-90
63
RAB
0 63 N.S.I.
ROUND DAM DSRB123 6667957
272657
442
0
-90
51
RAB
49 51 2 5.58 11.2 2.0m @ 5.6 g/t
ROUND DAM DSRB124 6667957
272697
442
0
-90
36
RAB
0 36 N.S.I.
ROUND DAM DSRB125 6667957
272737
442
0
-90
39
RAB
0 39 N.S.I.
ROUND DAM DSRB126 6667957
272777
442
0
-90
39
RAB
0 39 N.S.I.
ROUND DAM DSRB127 6667957
272817
442
0
-90
40
RAB
0 40 N.S.I.
ROUND DAM DSRB128 6667957
272857
442
0
-90
38
RAB
0 38 N.S.I.
ROUND DAM DSRB129 6667957
272897
441
0
-90
36
RAB
0 36 N.S.I.
ROUND DAM DSRB130 6667957
272937
441
0
-90
38
RAB
0 38 N.S.I.
ROUND DAM DSRB131 6667957
272977
441
0
-90
42
RAB
0 42 N.S.I.
ROUND DAM DSRB132 6667957
273017
441
0
-90
39
RAB
0 39 N.S.I.
ROUND DAM DSRB133 6669157
272417
447
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB134 6669157
272457
447
0
-90
44
RAB
0 44 N.S.I.
ROUND DAM DSRB135 6669157
272497
446
0
-90
33
RAB
0 33 N.S.I.
ROUND DAM DSRB136 6669157
272657
445
0
-90
52
RAB
0 52 N.S.I.
ROUND DAM DSRB137 6669157
272697
445
0
-90
35
RAB
0 35 N.S.I.
ROUND DAM DSRB138 6669157
272737
445
0
-90
25
RAB
0 25 N.S.I.
ROUND DAM DSRB139 6669157
272777
445
0
-90
31
RAB
0 31 N.S.I.
ROUND DAM DSRB140 6669157
272817
444
0
-90
34
RAB
0 34 N.S.I.
ROUND DAM DSRB141 6669157
272857
444
0
-90
35
RAB
0 35 N.S.I.
ROUND DAM DSRB142 6669157
272897
444
0
-90
36
RAB
0 36 N.S.I.
ROUND DAM DSRB143 6669157
272937
444
0
-90
27
RAB
0 27 N.S.I.
ROUND DAM DSRB144 6669157
272977
444
0
-90
31
RAB
0 31 N.S.I.
ROUND DAM DSRB145 6669157
273017
444
0
-90
55
RAB
0 55 N.S.I.
ROUND DAM DSRB191 6667557
272497
442
0
-90
59
RAB
0 59 N.S.I.
ROUND DAM DSRB192 6667557
272537
442
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB193 6667557
272577
442
0
-90
53
RAB
52 53 1 1.97 2.0 1.0m @ 2.0 g/t
ROUND DAM DSRB194 6667557
272617
442
0
-90
46
RAB
0 46 N.S.I.
ROUND DAM DSRB195
DSRB195
6667557
272657
442
0
-90
58
RAB
30 31 1 1.24 1.2 1.0m @ 1.2 g/t
51 52 1 1.53 1.5 1.0m @ 1.5 g/t
ROUND DAM DSRB196 6667557
272697
442
0
-90
54
RAB
49 50 1 2.99 3.0 1.0m @ 3.0 g/t
ROUND DAM DSRB197 6667557
272737
441
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB198 6667557
272777
441
0
-90
77
RAB
0 77 N.S.I.
ROUND DAM DSRB199 6667557
272817
441
0
-90
95
RAB
0 95 N.S.I.
ROUND DAM DSRB200 6667557
272857
441
0
-90
88
RAB
0 88 N.S.I.
ROUND DAM DSRB201 6667557
272897
440
0
-90
88
RAB
0 88 N.S.I.
ROUND DAM DSRB202 6667557
272937
440
0
-90
67
RAB
0 67 N.S.I.
ROUND DAM DSRB203 6667557
272977
440
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB204 6667557
273017
440
0
-90
63
RAB
0 63 N.S.I.
ROUND DAM DSRB205 6668357
272417
444
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB206 6668357
272457
444
0
-90
47
RAB
0 47 N.S.I.
ROUND DAM DSRB207 6668357
272497
444
0
-90
41
RAB
0 41 N.S.I.
ROUND DAM DSRB208 6668357
272777
443
0
-90
43
RAB
0 43 N.S.I.
ROUND DAM DSRB209 6668357
272817
442
0
-90
33
RAB
0 33 N.S.I.
ROUND DAM DSRB210 6668357
272857
442
0
-90
28
RAB
0 28 N.S.I.
ROUND DAM DSRB211 6668357
272897
442
0
-90
29
RAB
0 29 N.S.I.
ROUND DAM DSRB212 6668357
272937
442
0
-90
30
RAB
0 30 N.S.I.
ROUND DAM DSRB213 6668357
272977
442
0
-90
50
RAB
0 50 N.S.I.
ROUND DAM DSRB214 6668357
273017
442
0
-90
34
RAB
0 34 N.S.I.
ROUND DAM DSRB232 6666657
273217
441
0
-90
31
RAB
0 31 N.S.I.
ROUND DAM DSRB233 6666657
273177
441
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB234 6666657
273137
441
0
-90
61
RAB
0 61 N.S.I.
ROUND DAM DSRB235 6666657
273097
441
0
-90
64
RAB
0 64 N.S.I.
ROUND DAM DSRB236
DSRB236
DSRB236
6666657
273057
441
0
-90
81
RAB
68 69 1 1.66 1.7 1.0m @ 1.7 g/t
76 80 4 14.02 56.1 4.0m @ 14.0 g/t
Incl
76.00
77 1 50.90 50.9 1.0m @ 50.9 g/t
ROUND DAM DSRB237 6666757
273177
441
0
-90
37
RAB
0 37 N.S.I.
ROUND DAM DSRB238 6666757
273137
441
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB239 6666857
273137
440
0
-90
46
RAB
0 46 N.S.I.
ROUND DAM DSRB240 6666857
273097
440
0
-90
63
RAB
0 63 N.S.I.
ROUND DAM DSRB241 6666857
273057
440
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB242 6666857
273017
441
0
-90
81
RAB
57 58 1 2.91 2.9 1.0m @ 2.9 g/t
ROUND DAM DSRB243 6666857
272977
441
0
-90
70
RAB
0 70 N.S.I.
ROUND DAM DSRB244 6666857
272817
442
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB245 6666857
272777
442
0
-90
67
RAB
0 67 N.S.I.

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
ROUND DAM DSRB246 6666857
272737
442
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB247 6667057
272657
443
0
-90
66
RAB
0 66 N.S.I.
ROUND DAM DSRB248 6667057
272697
442
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB249 6667057
272737
442
0
-90
50
RAB
36 37 1 1.13 1.1 1.0m @ 1.1 g/t
ROUND DAM DSRB250 6667057
272777
442
0
-90
53
RAB
0 53 N.S.I.
ROUND DAM DSRB251 6667057
272817
442
0
-90
49
RAB
0 49 N.S.I.
ROUND DAM DSRB252 6667057
272857
441
0
-90
59
RAB
0 59 N.S.I.
ROUND DAM DSRB253 6667057
272897
441
0
-90
57
RAB
0 57 N.S.I.
ROUND DAM DSRB254 6667057
272937
441
0
-90
71
RAB
0 71 N.S.I.
ROUND DAM DSRB255 6667057
272977
440
0
-90
74
RAB
55 56 1 2.34 2.3 1.0m @ 2.3 g/t
ROUND DAM DSRB256 6667057
273017
440
0
-90
66
RAB
0 66 N.S.I.
ROUND DAM DSRB257 6667257
272977
440
0
-90
71
RAB
0 71 N.S.I.
ROUND DAM DSRB258 6667257
272937
441
0
-90
84
RAB
62 63 1 1.28 1.3 1.0m @ 1.3 g/t
ROUND DAM DSRB259 6667257
272897
441
0
-90
86
RAB
78 79 1 1.19 1.2 1.0m @ 1.2 g/t
ROUND DAM DSRB260 6667257
272857
441
0
-90
71
RAB
0 71 N.S.I.
ROUND DAM DSRB261 6667257
272817
441
0
-90
68
RAB
0 68 N.S.I.
ROUND DAM DSRB262 6667257
272777
442
0
-90
77
RAB
0 77 N.S.I.
ROUND DAM DSRB263 6667257
272737
442
0
-90
63
RAB
0 63 N.S.I.
ROUND DAM DSRB264 6667257
272697
442
0
-90
57
RAB
0 57 N.S.I.
ROUND DAM DSRB265 6667257
272657
442
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB266 6667257
272617
442
0
-90
52
RAB
0 52 N.S.I.
ROUND DAM DSRB267 6667357
272537
442
0
-90
66
RAB
0 66 N.S.I.
ROUND DAM DSRB268 6667357
272577
442
0
-90
62
RAB
0 62 N.S.I.
ROUND DAM DSRB269 6667357
272617
442
0
-90
50
RAB
0 50 N.S.I.
ROUND DAM DSRB270 6667357
272657
442
0
-90
60
RAB
0 60 N.S.I.
ROUND DAM DSRB271 6667357
272697
442
0
-90
61
RAB
26 27 1 1.09 1.1 1.0m @ 1.1 g/t
ROUND DAM DSRB272 6667357
272737
441
0
-90
72
RAB
0 72 N.S.I.
ROUND DAM DSRB273 6667357
272777
441
0
-90
73
RAB
0 73 N.S.I.
ROUND DAM DSRB274 6667357
272817
441
0
-90
50
RAB
0 50 N.S.I.
ROUND DAM DSRB275 6667357
272857
441
0
-90
93
RAB
0 93 N.S.I.
ROUND DAM DSRB276 6667357
272897
441
0
-90
74
RAB
0 74 N.S.I.
ROUND DAM DSRB277 6667357
272937
440
0
-90
56
RAB
0 56 N.S.I.
ROUND DAM DSRB278 6667457
272897
440
0
-90
82
RAB
0 82 N.S.I.
ROUND DAM DSRB279 6667457
272857
441
0
-90
87
RAB
0 87 N.S.I.
ROUND DAM DSRB280 6667457
272817
441
0
-90
90
RAB
0 90 N.S.I.
ROUND DAM DSRB281 6667457
272777
441
0
-90
68
RAB
0 68 N.S.I.
ROUND DAM DSRB282 6667457
272737
441
0
-90
49
RAB
0 49 N.S.I.
ROUND DAM DSRB283 6667457
272697
442
0
-90
58
RAB
0 58 N.S.I.
ROUND DAM DSRB284 6667457
272657
442
0
-90
48
RAB
36 45 9 1.63 14.7 9.0m @ 1.6 g/t
ROUND DAM DSRB285 6667457
272617
442
0
-90
42
RAB
0 42 N.S.I.
ROUND DAM DSRB286 6667457
272577
442
0
-90
50
RAB
0 50 N.S.I.
ROUND DAM DSRB287 6667457
272537
442
0
-90
46
RAB
0 46 N.S.I.
ROUND DAM DSRB288 6667457
272497
442
0
-90
53
RAB
0 53 N.S.I.
ROUND DAM DSRB289 6666657
273017
441
0
-90
59
RAB
58 59 1 1.03 1.0 1.0m @ 1.0 g/t
ROUND DAM DSRB290 6666657
272937
441
0
-90
60
RAB
0 60 N.S.I.
ROUND DAM DSRB291 6666657
272977
441
0
-90
55
RAB
0 55 N.S.I.
ROUND DAM DSRB292 6666557
272977
442
0
-90
47
RAB
0 47 N.S.I.
ROUND DAM DSRB293 6666557
273017
442
0
-90
43
RAB
0 43 N.S.I.
ROUND DAM DSRB294 6666557
273057
442
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DSRB295 6666557
273097
441
0
-90
66
RAB
52 53 1 1.45 1.5 1.0m @ 1.5 g/t
ROUND DAM DSRB296 6666457
273097
442
0
-90
49
RAB
0 49 N.S.I.
ROUND DAM DSRB297 6666457
273057
442
0
-90
55
RAB
0 55 N.S.I.
ROUND DAM DSRB298 6666457
273017
442
0
-90
49
RAB
0 49 N.S.I.
ROUND DAM DSRB299 6666457
272977
442
0
-90
50
RAB
0 50 N.S.I.
ROUND DAM DSRC001 6670570
272536
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC002 6670566
272521
460
77
-60
60
RC
0 56 N.S.I.
ROUND DAM DSRC003 6670562
272507
460
77
-60
60
RC
20 21 1 1.30 1.3 1.0m @ 1.3 g/t
ROUND DAM DSRC004 6670512
272504
460
77
-60
60
RC
34 36 2 1.77 3.5 2.0m @ 1.8 g/t
ROUND DAM DSRC005 6670465
272521
460
77
-60
60
RC
14 56 N.S.I.
ROUND DAM DSRC006
DSRC006
6670414
272528
460
77
-60
60
RC
15 22 7 8.77 61.4 7.0m @ 8.8 g/t
Incl
15.00
17 2 23.75 47.5 2.0m @ 23.8 g/t
ROUND DAM DSRC007 6670462
272506
460
77
-60
60
RC
14 60 N.S.I.
ROUND DAM DSRC008 6670409
272514
460
77
-60
60
RC
49 50 1 1.18 1.2 1.0m @ 1.2 g/t
ROUND DAM DSRC009 6670366
272545
460
77
-60
60
RC
0 52 N.S.I.
ROUND DAM DSRC010
DSRC010
6670358
272532
460
77
-60
60
RC
13 18 5 3.60 18.0 5.0m @ 3.6 g/t
Incl
14.00
15 1 10.00 10.0 1.0m @ 10.0 g/t
ROUND DAM DSRC011 6670359
272516
460
77
-60
60
RC
34 35 1 1.04 1.0 1.0m @ 1.0 g/t

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
DSRC011 40 44 4 1.33 5.3 4.0m @ 1.3 g/t
ROUND DAM DSRC012 6671021
272485
460
77
-60
60
RC
54 55 1 1.25 1.3 1.0m @ 1.3 g/t
ROUND DAM DSRC020 6669390
272543
460
77
-60
60
RC
19 22 3 2.57 7.7 3.0m @ 2.6 g/t
ROUND DAM DSRC021 6669391
272566
460
77
-60
60
RC
15 16 1 2.35 2.4 1.0m @ 2.4 g/t
ROUND DAM DSRC022 6669392
272592
460
77
-60
60
RC
21 51 N.S.I.
ROUND DAM DSRC023 6669185
272550
460
77
-60
60
RC
3 60 N.S.I.
ROUND DAM DSRC024 6669193
272575
460
77
-60
60
RC
39 51 N.S.I.
ROUND DAM DSRC025 6669189
272596
460
77
-60
60
RC
30 60 N.S.I.
ROUND DAM DSRC026
DSRC026
6668366
272584
460
77
-60
60
RC
27 31 4 5.58 22.3 4.0m @ 5.6 g/t
Incl
29.00
30 1 15.50 15.5 1.0m @ 15.5 g/t
ROUND DAM DSRC027 6668372
272609
460
77
-60
60
RC
27 30 N.S.I.
ROUND DAM DSRC028 6668378
272633
460
77
-60
60
RC
N.S.I.
ROUND DAM DSRC029 6668384
272657
460
77
-60
60
RC
N.S.I.
ROUND DAM DSRC030 6668390
272681
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC031 6668396
272706
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC032 6670314
272543
460
77
-60
50
RC
0 50 N.S.I.
ROUND DAM DSRC033 6670310
272528
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC034 6670338
272537
460
77
-60
50
RC
0 50 N.S.I.
ROUND DAM DSRC035 6670343
272556
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC036 6670391
272544
460
258
-60
45
RC
0 45 N.S.I.
ROUND DAM DSRC037 6670395
272559
460
258
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC038 6670436
272517
460
77
-60
35
RC
2 35 N.S.I.
ROUND DAM DSRC039 6670434
272508
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC040 6670483
272500
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC041 6670487
272515
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC042 6670491
272530
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC043 6670533
272493
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC044 6670538
272513
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC045 6669342
272532
460
77
-60
70
RC
0 70 N.S.I.
ROUND DAM DSRC046 6669337
272554
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC047 6669342
272573
460
77
-60
50
RC
0 50 N.S.I.
ROUND DAM DSRC048 6669381
272522
460
77
-60
70
RC
0 70 N.S.I.
ROUND DAM DSRC049 6669429
272510
460
77
-60
70
RC
0 70 N.S.I.
ROUND DAM DSRC050 6669434
272530
460
77
-60
60
RC
0 60 N.S.I.
ROUND DAM DSRC051 6669439
272549
460
77
-60
50
RC
0 50 N.S.I.
ROUND DAM DSRC052 6668363
272564
460
77
-60
75
RC
66 68 2 1.29 2.6 2.0m @ 1.3 g/t
ROUND DAM DSRC053 6668315
272587
460
77
-60
60
RC
30 32 2 1.19 2.4 2.0m @ 1.2 g/t
ROUND DAM DSRC054 6668319
272604
460
77
-60
50
RC
0 50 N.S.I.
ROUND DAM DSRC067 6666657
273017
455
90
-60
120
RC
59 60 1 1.02 1.0 1.0m @ 1.0 g/t
ROUND DAM DSRC068 6666657
272977
455
90
-60
170
RC
0 170 N.S.I.
ROUND DAM DSRC069 6667960
272650
455
90
-60
80
RC
0 80 N.S.I.
ROUND DAM DSRC070 6667960
272610
455
90
-60
108
RC
0 108 N.S.I.
ROUND DAM DSRC071 6668010
272650
455
90
-60
80
RC
0 80 N.S.I.
ROUND DAM DSRC072 6668010
272610
455
90
-60
84
RC
0 84 N.S.I.
ROUND DAM DSRC073 6668340
272595
455
90
-60
78
RC
0 78 N.S.I.
ROUND DAM DSRC074 6668340
272575
455
90
-60
90
RC
0 90 N.S.I.
ROUND DAM DSRC075 6668340
272555
455
90
-60
99
RC
0 99 N.S.I.
ROUND DAM DSRC076 6668400
272580
455
90
-60
102
RC
0 102 N.S.I.
ROUND DAM DSRC077 6668400
272560
455
90
-60
99
RC
44 48 4 1.03 4.1 4.0m @ 1.0 g/t
ROUND DAM DVHC114 6671077
272578
450
90
-60
50
RC
0 50 N.S.I.
ROUND DAM DVHC115 6671077
272558
450
90
-60
50
RC
0 50 N.S.I.
ROUND DAM DVHC116 6671077
272518
450
90
-60
50
RC
0 1 1 2.03 2.0 1.0m @ 2.0 g/t
ROUND DAM DVHC117 6671077
272498
450
90
-60
50
RC
0 50 N.S.I.
ROUND DAM DVHC118 6671077
272478
450
90
-60
70
RC
16 19 3 4.20 12.6 3.0m @ 4.2 g/t
ROUND DAM DVHC119 6671077
272458
450
90
-60
70
RC
37 38 1 1.16 1.2 1.0m @ 1.2 g/t
ROUND DAM DVHC120 6671077
272438
450
90
-60
60
RC
40 41 1 1.07 1.1 1.0m @ 1.1 g/t
ROUND DAM DVHC152
DVHC152
DVHC152
6671357
272477
450
90
-60
70
RC
49 50 1 4.50 4.5 1.0m @ 4.5 g/t
54 56 2 2.82 5.6 2.0m @ 2.8 g/t
69 70 1 4.60 4.6 1.0m @ 4.6 g/t
ROUND DAM DVHC153
DVHC153
DVHC153
6671357
272487
450
90
-60
60
RC
37 39 2 3.57 7.1 2.0m @ 3.6 g/t
42 43 1 1.13 1.1 1.0m @ 1.1 g/t
46 47 1 1.88 1.9 1.0m @ 1.9 g/t
ROUND DAM DVHC154 6671357
272497
450
90
-60
50
RC
0 50 N.S.I.
ROUND DAM DVHC155 6671437
272477
450
90
-60
65
RC
0 65 N.S.I.
ROUND DAM DVHC156 6671437
272487
450
90
-60
56
RC
0 56 N.S.I.
ROUND DAM DVHC157
DVHC157
6671437
272497
450
90
-60
50
RC
13 15 2 20.15 40.3 2.0m @ 20.2 g/t
Incl
13.00
14 1 36.00 36.0 1.0m @ 36.0 g/t

==> picture [14 x 11] intentionally omitted <==

Project Hole ID MGA
North
MGA
East
RL Azi Dip End
Depth
Hole
Type
Depth
From
Depth
To
Interval Grade Gram
Metres
Au g/t interval
DVHC157
DVHC157
42 43 1 1.66 1.7 1.0m @ 1.7 g/t
45 46 1 1.07 1.1 1.0m @ 1.1 g/t
ROUND DAM DVHC158 6671477
272437
450
90
-60
57
RC
0 57 N.S.I.
ROUND DAM DVHC159 6671477
272457
450
90
-60
60
RC
0 60 N.S.I.
ROUND DAM DVHC160 6671477
272477
450
90
-60
60
RC
0 60 N.S.I.
ROUND DAM DVHC161 6671477
272497
450
90
-60
60
RC
0 60 N.S.I.
ROUND DAM DVHC162 6671317
272457
450
90
-60
60
RC
57 58 1 1.64 1.6 1.0m @ 1.6 g/t
ROUND DAM DVHC163 6671317
272477
450
90
-60
60
RC
47 48 1 4.70 4.7 1.0m @ 4.7 g/t
ROUND DAM DVHC164 6671317
272497
450
90
-60
60
RC
19 20 1 1.59 1.6 1.0m @ 1.6 g/t
ROUND DAM DVHR1 6671008
272785
454
0
-90
58
RAB
0 58 N.S.I.
ROUND DAM DVHR2 6671009
272864
455
0
-90
64
RAB
0 64 N.S.I.
ROUND DAM DVHR29 6668679
273177
441
0
-90
52
RAB
0 52 N.S.I.
ROUND DAM DVHR3 6671010
272947
456
0
-90
52
RAB
0 52 N.S.I.
ROUND DAM DVHR30 6668675
273097
442
0
-90
64
RAB
0 64 N.S.I.
ROUND DAM DVHR31 6668679
273017
442
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DVHR32 6668676
272937
442
0
-90
34
RAB
0 34 N.S.I.
ROUND DAM DVHR33 6668679
272857
442
0
-90
38
RAB
0 38 N.S.I.
ROUND DAM DVHR34 6668679
272777
443
0
-90
34
RAB
0 34 N.S.I.
ROUND DAM DVHR35 6668679
272697
443
0
-90
40
RAB
0 40 N.S.I.
ROUND DAM DVHR36 6668678
272617
444
0
-90
52
RAB
0 52 N.S.I.
ROUND DAM DVHR37 6668735
272537
444
0
-90
40
RAB
0 40 N.S.I.
ROUND DAM DVHR38 6668675
272458
445
0
-90
44
RAB
0 44 N.S.I.
ROUND DAM DVHR39 6668677
272377
445
0
-90
60
RAB
0 60 N.S.I.
ROUND DAM DVHR4 6671014
273028
456
0
-90
58
RAB
0 58 N.S.I.
ROUND DAM DVHR40 6668679
272297
446
0
-90
54
RAB
0 54 N.S.I.
ROUND DAM DVHR41 6668677
272217
446
0
-90
58
RAB
0 58 N.S.I.
ROUND DAM DVHR42 6668677
272137
446
0
-90
48
RAB
0 48 N.S.I.
ROUND DAM DVHR43 6668677
272057
446
0
-90
68
RAB
0 68 N.S.I.
ROUND DAM DVHR44 6668677
271977
447
0
-90
78
RAB
0 78 N.S.I.
ROUND DAM DVHR45 6668677
271897
447
0
-90
80
RAB
0 80 N.S.I.
ROUND DAM LERC078 6671444
272531
456
80
-60
40
RC
0 40 N.S.I.
ROUND DAM LERC079
LERC079
6671235
272518
455
83
-60
80
RC
21 23 2 4.91 9.8 2.0m @ 4.9 g/t
52 53 1 7.38 7.4 1.0m @ 7.4 g/t
ROUND DAM LERC080 6671239
272538
455
84
-60
80
RC
0 80 N.S.I.
ROUND DAM MWR181 6671473
272495
456
282
-60
12
RAB
0 12 N.S.I.
ROUND DAM MWR182 6671483
272698
456
282
-60
6
RAB
0 6 N.S.I.
ROUND DAM MWR183 6671561
272888
458
282
-60
15
RAB
0 15 N.S.I.
ROUND DAM RO266 6666342
272808
443
80
-57
42
RAB
0 42 N.S.I.
ROUND DAM RO267 6666347
272838
443
80
-57
39
RAB
0 39 N.S.I.
ROUND DAM RO268 6666350
272857
443
80
-57
50
RAB
0 50 N.S.I.
ROUND DAM RO269 6666537
272738
443
80
-57
30
RAB
0 30 N.S.I.
ROUND DAM RO270 6666540
272758
443
80
-57
48
RAB
0 48 N.S.I.
ROUND DAM RO271 6666545
272787
442
80
-57
39
RAB
30 36 6 1.13 6.8 6.0m @ 1.1 g/t
ROUND DAM RO272 6666549
272812
442
80
-57
59
RAB
0 59 N.S.I.
ROUND DAM RO273 6666554
272836
442
80
-57
33
RAB
0 33 N.S.I.
ROUND DAM RO393 6666551
272822
442
80
-60
26
RAB
0 26 N.S.I.
ROUND DAM RO394 6666548
272802
442
80
-60
60
RAB
0 60 N.S.I.
ROUND DAM RO395 6666741
272814
442
80
-60
60
RAB
0 60 N.S.I.
ROUND DAM RO396 6666736
272790
442
80
-60
60
RAB
0 60 N.S.I.
ROUND DAM RO397 6666732
272765
442
80
-60
42
RAB
0 42 N.S.I.
ROUND DAM RO398 6666728
272740
442
80
-60
45
RAB
0 45 N.S.I.
ROUND DAM RO399 6666723
272716
443
80
-60
56
RAB
0 56 N.S.I.
ROUND DAM RO421
RO421
6666441
272841
443
80
-60
47
RAB
33 34 1 1.08 1.1 1.0m @ 1.1 g/t
43 44 1 1.60 1.6 1.0m @ 1.6 g/t
ROUND DAM RO422 6666436
272816
443
80
-60
45
RAB
0 44 N.S.I.
ROUND DAM RO423 6666638
272807
442
80
-60
48
RAB
33 37 4 1.23 4.9 4.0m @ 1.2 g/t
ROUND DAM RO425 6666633
272782
442
80
-60
45
RAB
36 37 1 1.42 1.4 1.0m @ 1.4 g/t

==> picture [13 x 11] intentionally omitted <==

==> picture [103 x 22] intentionally omitted <==

==> picture [160 x 22] intentionally omitted <==

==> picture [68 x 22] intentionally omitted <==

Section 1 Sampling techniques and data – Round Dam

Criteria JORC Code explanation Commentary
Sampling
techniques

Nature and quality of sampling (eg cut
channels, random chips, or specific
specialised industry standard
measurement tools appropriate to the
minerals under investigation, such as
down hole gamma sondes, or handheld
XRF instruments, etc). These examples
sh
ould not be taken as limiting the
broad meaning of sampling.

Include reference to measures taken to
ensure sample representivity and the
appropriate calibration of any
measurement tools or systems used.

Aspects of the determination of
mineralisation that are Material to the
Public Report.

In cases where ‘industry standard’ work
has been done this would be relatively
simple (eg ‘reverse circulation drilling
was used to obtain 1 m samples from
which 3 kg was pulverised to produce a
30 g charge for fire assay’). In other
cases more explanation
may be
required, such as where there is coarse
gold that has inherent sampling
problems. Unusual commodities or
mineralisation types (eg submarine
nodules) may warrant disclosure of
detailed information.

Aberfoyle/Bardoc
-
Reverse Circulation (RC) and Rotary Air Blast (RAB) sampling methods generally unknown however usually collected as 1m sample
s and
composited to 2 to 4m samples when outside mineralised zones. RC drilling between 4 and 6 inch diameter ha
mmers with use of face sampling hammer
known from 1992 onwards. Pre
-
1990 Rotary Air Blast (RAB) holes generally sampled on 2
-
3m intervals and composited to 6m.

Cons Gold (Consolidated Gold)

Reverse Circulation (RC) 1m samples where alteration is visible. Remainder of hole composited to 4m. 2 to 3 kg samples
sent to laboratory for crushing, pulverising and 50g Fire Assay. NQ diamond except for geotechnical purpo
ses (HQ triple)

Croesus

Reverse Circulation (RC) 1m samples collected under cyclone. 5m comps assayed for gold by 50g Fire assay. NQ diamond except f
or geotechnical
purposes (HQ triple)

DPPL (Davyhurst Project Pty. Ltd.)
-
4.25 to 5.5 inch Reverse Circulation (RC) drilling with face hammer. Potential mineralisation sampled and assayed on a
metre basis otherwise 4m composites. NQ diamond except for geotechnical purposes (HQ triple)

EGS (Eastern Goldfields)
-
Reverse Circulation (RC) samples collected from the riffle splitter directly off tig into calico bags. Splitter maintained on
level site
to ensure sample representivity. 1m samples are pulverised and a 40g charge is analysed by Fi
re Assay

Monarch
-
Riffle split Reverse Circulation (RC) samples were collected at 1m intervals and despatched for analysis by pulverisation and
fire assay. Selected
Rotary Air Blast (RAB) 2m
-
4m scoop composites and 1m intervals were despatched for analysis. Not al
l intervals were sampled. SRK holes were Reverse
Circulation (RC) and were 4m composites of 1m samples

Swan Gold Diamond
-
Half core samples, cut by saw. Samples intervals selected by geologist and defined by geological boundaries. Minimum sample
length is 0.3m, maximum 1.5m. Core is aligned and measured by tape, comparing back to down hole core blocks, consistent with
indus
try practice.
Samples are pulverized and a 40g charge is analysed by Fire Assay. 1m Reverse Circulation (RC): 5.125 inch face sampling hamm
er with samples collected
under cone splitter

Texas Gulf

sampling methods unknown

West Coast Holdings

Rotary Air Blast (RAB) drilling 2m intervals were passed though riffle splitter for approximately 1kg sample.

WMC
-
Reverse Circulation (RC) Sampling on 1m basis

WESCEF
-
1m RC samples using face sampling hammer with samples collected under cone splitter.
All pegmatite, felsic rocks, and altered/veined intervals
are sampled, and a 10m buffer either side of these intervals are also sampled. Li
-
pegmatite specific standards, and field duplicates (taken via the rig
-
mounted cone splitter during drilling) are bot
h inserted at a rate of one every 25 samples.
Fo
r
gold assay s
ample piles
scoop sampled
into
4m comps
by OBM
personnel
. Samples prepped
in SGS site lab by either
pulverising (Fire Assay) or
crush
ed
using orbis crusher
(Photon Assay).
Samples analysed at SGS,
Kalgoorlie or SGS Perth.
Splits take where composite grad
e
>0.1g/
t.
For
elements other than gold
,
s
amples submitted to ALS for
multielement
analysis by 3
suites:
ME
-
ICP89
, ME
-
MS89L and
ME
-
ICP61
. For gold assays
samples

Ora Banda Mining Limited (OBM)
-
Ora Banda Mining Limited (OBM)
-
1m RC samples using face sampling hammer with samples collected under cone
splitter. 4m composite RC samples were taken outside of mineralised zone, collected using a scoop from the sample p
iles at the drill site. 1m cone spilt
samples were taken within the expected mineralised zones. Core sample intervals selected by geologist and defined by geologic
al boundaries. All samples
were dispatched to the SGS laboratory at the Davyhurst site for pu
lverising. Prepared samples were then despatched to SGS laboratories in Kalgoorlie for a
50g charge Fire Assay. From 7 March 2025 samples were analysed by 500g photon analysis by SGS, with selected samples analysed
for a Multielement suite
by 4 Acid digest
(ICO
-
MS finish) and Gold by 50g Fire Assay (GO_FAP50V10).

==> picture [14 x 11] intentionally omitted <==

Criteria JORC Code explanation Commentary
Drilling
techniques

Drill type (eg
core, reverse circulation,
open
-
hole hammer, rotary air blast,
auger, Bangka, sonic, etc) and details
(eg core diameter, triple or standard
tube, depth of diamond tails, face
-
sampling bit or other type, whether core
is oriented and if so, by what method,
etc).

Aberfoyle/Bardoc
-
RC, RAB and Diamond details unknown however NQ diamond known to be used. RC drilling with use of face sampling hammer known
from 1992 onwards.

ConsGold

NQ diamond, RAB and RC. 4.25 to 5.5 inch RC drilling with stabilisers and face sampling hammers.

Croesus

Diamond holes NQ2 diameter. RC details unknown but assumed to be face sampling hammers

DPPL
-
NQ and RC. RC drilling with stabilisers and face sampling hammers.

EGS
-
NQ and RC. RC drilling using Face sampling Hammer, 5.25" diameter

Monarch
-
RC samples were collected by Kennedy Drilling using a 4 inch blade. 5.5 inch diameter RC drilling

Swan Gold "HQ3 to approx. 40m, then NQ2 to BOH. All core oriented by spear RC: 5.125 inch face sampling hammer"

Texas Gulf

RC hammer type unknown

West Coast Holdings

Bit, roller and open hole hammer used for RAB drilling.

WMC
-
RC and RAB drilling details unknown

WESCEF
-
5.5

5.625 inch diameter RC holes using face sampling hammer with samples collected from a rig mounted cone splitter into calico b
ags which
are submitted for assay
at ALS
.

Ora Banda Mining Limited (OBM)

5.5

5.625 inch diameter RC holes using face sampling hammer with samples collected from a rig mounted cone
splitter into calico bags which are submitted for assay. Some core holes have RC pre
-
collars, then NQ2, HQ3 or PQ3
coring to BOH. All core oriented by Axis
instrument. Drilling was carried out by contractors Top Drill Pty Ltd.
Drill
sample
recovery

Method of recording and assessing core
and chip sample recoveries and results
assessed.

Measures taken to maximise sample
recovery and ensure representative
nature of the samples.

Whether a relationship exists between
sample recovery and grade and whether
sample bias may have occurred due to
preferential loss/gain of fine/coarse
_material. _

RC drill recoveries were not recorded by Aberfoyle/Bardoc, Consolidated Gold, Croesus, DPPL, EGS, Monarch, Texas Gulf, West c
oast holdings or WMC

Swan
-
Diamond drill recoveries are recorded as a percentage calculated from measured core against downhole drilled intervals (core
blocks).

WESCEF
-
RC sample recoveries are approximated based on the size of the bulk sample and recorded in drill log tables. Sample weights a
re determined by
the laboratory.

OBM
-
RC sample recoveries are approximated based on the size of the bulk sample and recorded in drill log tables.
Sample weights are
determined by
the laboratory.
Diamond drill recoveries are recorded as a percentage calculated from measured core against downhole drilled intervals (core
blocks).
Logging
Whether core and chip samples have
been geologically and geotechnically
logged to a level of detail to support
appropriate Mineral Resource
estimation, mining studies and
metallurgical studies.

Whether logging is qualitative or
quantitative in nature. Core (or costean,
channel, etc) photography.

The total length and percentage of the
relevant intersections logged.

Aberfoyle/Bardoc
-
Qualitative: lithology, colour, grainsize, structures, alteration
Quantitative: Quartz mineralisation

Consolidated Gold/ DPPL
-
Qualitative: lithology, colour, oxidation, alteration, with grainsize, texture and structure often recorded in diamond drilli
ng.
Quantitative: Quartz veining. Core photographed

Croesus
-
Most holes photographed, geologically logged and geotechnical and magnetic susceptibility measurements were taken.
Qualitative: Lithology, colour, grainsize, alteration, oxidation, texture, structures, regolith
Quantitative: Quartz veining

EGS
-
Qualitative: Lithology, colour, oxidation, grainsize, texture, structure, hardness, regolith
Quantitative: estimates are made of quartz veining, sulphide and alteration percentages. Core photographed

Monarch
-
Qualitative: lithology, colour, oxidation, grainsize, texture, structure, hardness, regolith
Quantitative: estimates are made of quartz veining, sulphide percentages.
Core photographed

Swan
-
Qualitative: lithology, colour, oxidation, grainsize, texture, structure, regolith
Quantitative: estimates are made of quartz veining, sulphide and alteration percentages.

Texas Gulf
-
Qualitative: lithology, oxidation

West coast holdings
-
Qualitative: colour, oxidation, lithology, alteration
Quantitative: Quartz, Iron

WMC
RC: Qualitative: Lithology, Colour, Grainsize, Alteration and oxidation. Some logging detail was lost during translation from
one logging system to
another. This has been rectified by referring back to original logs.

WESCEF
-
Holes are geologically logged in their entirety.

OBM
-
Field logging was conducted using Geobank MobileTM software on Panasonic Toughbook CF
-
31 ruggedized laptop computers. Qualitative: Lithology,
colour,oxidation, grainsize,texture,structure,hardness,regolith.Quantitative: estimates are made ofqu
artz veining,sulphide and alteration

==> picture [14 x 11] intentionally omitted <==

Criteria JORC Code explanation

Commentary

==> picture [421 x 8] intentionally omitted <==

==> picture [78 x 8] intentionally omitted <==

==> picture [366 x 10] intentionally omitted <==

==> picture [124 x 10] intentionally omitted <==

==> picture [124 x 9] intentionally omitted <==

Criteria JORC Code explanation Commentary
percentages. Core photographed wet and dry. Magnetic susceptibility recorded for core holes. Bulk density measurements taken
at regular intervals for
core holes (determined by Archimedes Principle). Downhole density measurements also acquired from selected
holes, principally for additional data
from oxide and transitional material.
Sub-sampling
techniques and
sample
preparation

If core, whether cut or sawn and
whether quarter, half or all core taken.

If non
-
core, whether riffled, tube
sampled, rotary split, etc and whether
sampled wet or dry.

For all sample types, the nature, quality
and appropriateness of the sample
preparation technique.

Quality control procedures adopted for
all sub
-
sampling stages to maximise
representivity of samples.

Measures taken to ensure that the
sampling is representative of the in situ
material collected, including for
instance results for field
duplicate/second
-
half sampling.

Whether sample sizes are appropriate to
the grain size of the material being
_sampled. _

Aberfoyle/Bardoc

Diamond core sawn in half.
RC and RAB samples with variable compositing lengths and often 1m samples. Method unknown before 1992, but thereafter riffle
split to approximately
2kg samples. RC and RAB was usually prepared by single stage mixer and grind. Diamond, when known was jaw c
rushed and ring milled for a 50g charge
fire assay. Duplicate studies undertaken at times, usually with good correlation
.

Consgold RC Samples collected via cyclone at 1m intervals and passed through 3 stage riffle splitter. A 2
-
3kg fraction was calico bagged for analysis, the
residue collected in plastic bags and stored on site. Potentially mineralised zones were sampled at 1
m intervals, the remainder composited to 4m by
unknown method. Composite samples returning >0.19g/t were re submitted at 1m intervals. Samples underwent mixermill preparati
on (2
-
3kg) by Amdel
Laboratories. RAB 4m composite samples using PVC spear. Samples
returning >0.19g/t were re submitted at 1m intervals
Diamond drill samples were sawn
into half core. One half was jaw crushed, then pulverised using a labtechnics mill. A quartz blank was pulverised between eac
h sample to avoid
contamination. Field duplicates at 1 in 20 frequency from residues submitted.

Croesus RC
-
1m samples collected under cyclone. 5m comps, spear sampled with 50mm PVC pipe. Wet RC drill samples were thoroughly mixed in
the
sample retention bag and scoop sampled to form a composite sample. 3
-
5kg five metre composite analytical samples,
returning values greater than
0.1g/t gold, were riffle split at 1m intervals, were samples where dry, and grab sampled where wet. Diamond tails were cut to
half core and sampled
based on geological boundaries and identified prospective zones. Samples size
varied from 0.2m to1m. Core samples were sent to Ultratrace
Laboratories of Perth

DPPL

RC
3 stage riffle split then 4m compositing. RAB 4m composite samples using PVC spear. BOTH RC and RAB composites returning >0.1
9ppm Au re
-
submitted as 1m samples. Duplicates at 1 in 20 frequency from residues submitted.

EGS
-
Riffle split into calico bags. Wet or moist samples are noted during sampling

Monarch
-
RC samples were collected at 4m or 1m composites intervals and despatched for analysis. Samples were riffle split and prepare
d with single
stage mix and grinding.
Duplicates are taken 1 in 25 when taking 1m splits straight from the rig. When doing re
-
splits on composite results 1 in 20 duplicate with occasional
triplicates (about 1 every 50 re
-
splits)

Swan
-
Core was cut with Almonte diamond saw and half core sampled

Texas Gulf
-
Whole metres placed in plastic sacks and were then split to approximately 500g samples. Split method unknown.
Samples crushed, disc pulverized then split to 250g.
Petrographic study completed by Mintek Services.

West
C
oast
H
oldings
-
2m intervals with passed though riffle splitter for approximately 1kg sample.

WMC
-
RC Sampling on 1m basis, methods undocumented. Assay by aqua regia method, unknown laboratory.

WESCEF
-
RC samples
for non gold elements
were submitted as individual 1m samples taken from the onsite cone splitter.
4m comp samples
taken
from
1m sample piles
for gold
assay.
Samples submitted for gold
analysis with
OBM
routine blanks and standards for
monitoring
lab
performance.

OBM
-
RC samples were submitted either as individual samples taken from the onsite cone splitter or as four metres composite sample
s taken by metal
scoop. Core sample intervals selected by geologist and defined by geological boundaries, cut by saw and subm
itted as half core. RC and core samples
were initially dispatched to the SGS laboratory at the Davyhurst site for pulverising. Prepared samples were then despatched
to SGS laboratories in
Kalgoorlie for a 50g charge Fire Assay (GO_FAP50V10). Field duplicat
es, blanks and standards were submitted for QAQC analysis. From 10 March 2025
samples were crushed by Orbis crushers at the site lab and analysed by 500g photon analysis by SGS. Field duplicates, blanks
and standards were
submitted forQAQC analysis.
Quality
of
assay data and
laboratory
tests

The nature, quality and appropriateness
of the assaying and laboratory
procedures used and whether the
technique is considered partial or total.

For geophysical tools, spectrometers,
handheld XRF instruments, etc, the
parameters used in determining the
analysis including instrument make and
model, reading times, calibrations
factors applied and their derivation, etc.

Nature of quality control procedures
adopted (eg standards, blanks,
duplicates, external laboratory checks)
and whether acceptable levels of
accuracy (ie lack of bias) andprecision

Aberfoyle/Bardoc
-
multiple methods at Sheen, Amdel, Genalysis, Classic, Comlabs and Australian Laboratories usually 50g fire assay for RC and a
qua
regia or 50g fire assay for RAB. QA samples unknown

Consolidated Gold/ DPPL

RC and RAB
-
Mixermill prep with fire assay 50g charge at AMDEL, Minilab or Analabs Laboratories in Kalgoorlie
.
Core was
diamond sawn, jaw crushed, milled using LABTECHNICS mill at AMDEL for 50g charge by fire assay. Gannet standards submitted to
monitor lab accuracy for
infill resource drilling. Pulp umpire analysis was done but frequency unknown (1995). Screen fir
e assays of selected high grade samples. Quartz blanks
between each diamond sample

Croesus
-
S
amples analysed for Au by Fire Assay/ICPOES by Ultratrace in Perth.
Samples were dried, crushed and split to obtain a sample less than 3.5kg,
and then fine pulverised prior to a 50gm charge being collected and analysed.
Every 20
th
sample was duplicated in the field and submitted for analysis.
Gannet standards and blank samples made by Croesus were submitted with split sample submissions.
QAQC analysis of repeats was analysed by Croesus
Mining NL. for their drilling completed during 2000

Monarch
-
ALS Laboratory procedures:
The samples were sort and dried where necessary. The samples were split via a riffle splitter to <3 kg and round in a ring mi
ll pulverized using a standard
low chrome steel ring set to >85% passing 75 micron. If sample was >3 kg it was split prior to pulve
rising and the remainder retained or discarded. Then a
250g representative split sample was taken and the remaining residue sample stored. A 50g sample charge was taken from the 25
0g representative sample,

==> picture [14 x 11] intentionally omitted <==

Criteria JORC Code explanation Commentary
have been established. fused with a lead concentrate using the laboratory digestion method FA
-
Fusion, then digested and analysed by Atomic Absorption Spectroscopy (Au
-
AA26)
against matrix matched standards. Ultra Trace procedures:
The samples were sort and dried where necessary. 2.5

3kg sample was pulverized using a
vibrating disc then split into a 200
-
300g charge and the residue sample stored. A 40g sample charge is taken and analysed for gold (Au) by lead collection
fire assay.

Texas Gulf
-
Samples crushed, disc pulverized then split to 250g. Bromine digest followed by ketone extraction at Pilbara Las, Kalgoorlie.
Noted as not
suitable in presence of sulphides.
Values greater than 0.8g/t re
-
assayed by Fire Assay.

WMC
-
D
rill samples were assayed by aqua regia method, unknown laboratory.

WESCEF
-
Commercially prepared standard samples and blanks are inserted in the sample stream at a rate of 1:25 for standards and 1:25
for blanks, when
analysing for gold. Sizing results (percentage of pulverised sample passing a 75
μ
m mesh) are undertaken on approximately 1 in 40 samples. Duplicate
samples are submitted for RC holes only at a rate of approximately 1:30. The accuracy (standards) and precision (repeats) of
assaying are acceptable

OBM

Up to 2022 Samples sent to Nagrom in Perth. The samples have been analysed by Firing a 50gm portion of the sample. Lower samp
le weights may
be employed for samples with very high sulphide and metal contents. This is the classical fire assay process a
nd will give total separation of gold. An
ICPOES finish is used. Commercially prepared standard samples and blanks are inserted in the sample stream at a rate of 1:25
for standards and 1:25 for
blanks. Sizing results (percentage of pulverised sample passin
g a 75μ
m mesh) are undertaken on approximately 1 in 40 samples. Duplicate samples are
submitted for RC holes only at a rate of approximately 1:30. The accuracy (standards) and precision (repeats) of assaying are
acceptable. For all drilling
from 2022, All samples
were sent to the accredited onsite SGS laboratory at Davyhurst for sample preparation. Prepared samples were then despatched
to SGS laboratories in Kalgoorlie for a 50g charge Fire Assay (GO_FAP50V10) with MP
-
AES finish or 500g Photon analysis. Com
mercially prepared standard
samples and blanks are inserted in the sample stream at an average rate of 1:25. Sizing results (percentage of pulverised sam
ple passing a 75
μ
m mesh)
are undertaken on approximately 1 in 20 samples. The accuracy (standards) and precision (repeats) of assaying are acceptable.
Standards and blanks
were inserted into the sample stream at a rate of approximately 1:12. Duplicates were submitted at a
rate of approximately 1:30. The accuracy
(standards)andprecision(repeats)of assayi
ngare acceptable.
Holes
not deliberatelytwinned.
Verification of
sampling
and
assaying

The verification of significant
intersections by either independent or
alternative company personnel.

The use of twinned holes.

Documentation of primary data, data
entry procedures, data verification, data
storage (physical and electronic)
protocols.

Discuss any adjustment to assay data.

OBM
-
Geological and sample data logged directly into field computer at the drill rig or core yard using Geobank Mobile. Data is tr
ansferred to Perth via
email or through a shared server and imported into Geobank SQL database by the database administrator
(DBA). Assay files are received in .csv format
and loaded directly into the database by the DBA. Hardcopy and/or digital copies of data are kept for reference if necessary.

WESCEF

Geological
logging and Li
sampling data all supplied to
OB
M
.
Gold sampling
and assay verification same as for OBM.
procedures

Monarch Gold Mining Company Ltd; Geological and sample data was logged digitally and .csv or .xls files imported into Datashe
d SQL database with in
-
built validation. Samples bags were put into numbered plastic bags and then cable tied. Samples collected da
ily from site by laboratory.

Data entry, verification and storage protocols for remaining operators is unknown.

No adjustments have been made to assay data.
Location
of
data points

Accuracy and quality of surveys used to
locate drill holes (collar and down
-
hole
surveys), trenches, mine workings and
other locations used in Mineral
Resource estimation.

Specification of the grid system used.

Quality and adequacy of topographic
_control. _

RAB and AC holes are/were not routinely collar surveyed or downhole surveyed due to their limited use in resource estimation.
To this end, discussion of
RAB and AC drilling is omitted from this section. RC/GC (grade control) and shallow RC holes are/were n
ot routinely downhole surveyed due to their
shallow nature reducing the chance of significant deviation. Barren exploration RC holes not routinely downhole surveyed or c
ollar surveyed. DD holes
routinely collar and downhole surveyed by most operators or ha
ve been re
-
surveyed by subsequent operators
.

The influence of magnetic rocks on the azimuths of magnetic down hole surveys is minor. Early holes surveyed in AMG zone 51 a
nd converted to MGA
using Geobank and or Datashed data management software.

Aberfoyle/Bardoc (RC, RC/DD, DD) Various local grids which have undergone 2 point transformations. RC collars and downhole su
rveys known to be
surveyed at times, presumably when anomalous gold intersected. DD holes downhole surveyed by Eastman single shot
(25m interval average) or
Multishot (5m interval average)

Cons Gold/DPPL (RC, DD) Local grids and AMG84 zone 51 used. RC and DD Collars surveyed by licensed surveyors to respective gr
ids. Holes of all types
routinely collar surveyed whist RC resource holes routinely downhole surveyed by various methods including
gyro and EMS with average intervals ranging
between 10
-
25m.

Croesus (RC, DD) Various local grids and AMG zone 51. RC, DD holes routinely collar surveyed and downhole surveyed using Elec
tronic Multishot (EMS),
GRYO, Eastman single shot or combination thereof at 10
-
15m average interval.

Monarch
(RC)
-
Various local grids and MGA. Holes routinely collar surveyed and downhole surveyed using EMS, or GYRO at 5m interval average
or Eastman
single shot (28m interval average).

Texas
G
ulf (RC) Local grid: MC30/1317 based on 351.5

baseline, parallel to tenement boundary. MC30/1327 based on 355.5

WMC (RC, DD)
-
Digital data provided by ConsGold. (Wamex
report a50226). Downhole surveys when performed were by undocumented method with a 16m
interval average

EGL and Swan; Collar locations were surveyed by DGPS and downhole surveys were collected using electronic multishot by the dr
illers. Subsequent to
drillingholes were open holegyro surveyed byABIMS wherepossible. Thegird system used is GDA1994 MGA Zone
51.

==> picture [14 x 11] intentionally omitted <==

Criteria JORC Code explanation Commentary

WESCEF
-
MGA94, zone 51. Drill hole collar positions were picked up by an OBM mining surveyor using RTKGPS subsequent to drilling. All
downhole surveys
were taken every 10m by Gyro.

OBM (RC, DD) MGA94, zone 51. Drill hole collar positions were picked up by a contract surveyor using RTKGPS subsequent to dri
lling. Drill
-
hole, downhole
surveys are recorded every 30m using a reflex digital downhole camera. Some RC holes not surveyed if ho
les short and/or drilling an early stage
exploration project.
For all drilling from 2022
Drill hole collar positions were picked up by an OBM mining surveyor using RTKGPS subsequent to drilling. All
downhole surveys were taken every 10m by Gyro.
Data
spacing
and
distribution

Data spacing for reporting of Exploration
Results.

Whether the data spacing and
distribution is sufficient to establish the
degree of geological and grade
continuity appropriate for the Mineral
Resource and Ore Reserve estimation
procedure(s) and classifications
applied.

Whether sample compositing has been
_applied. _

Data spacing highly variable from wide spaced ~800m x ~80m regional RAB to close spaced resource drilling ~10m x ~10m and gra
de control drilling at
~5m x ~5m.

Drill hole spacing is adequate to establish geological and grade continuity for the deposits that currently have resources re
ported.

Drill
i
ntercepts are reported at a Lower cut off of 0.5g/t with a secondary cut off of 1.0g/t
or
a Lower cut off of 1.0g/t with a secondary cut off of 10.0g/t.
Maximum 4m internal dilution.
Orientation of
data in relation
to
geological
structure

Whether the orientation of sampling
achieves unbiased sampling of possible
structures and the extent to which this
is known, considering the deposit type.

If the relationship between the drilling
orientation and the orientation of key
mineralised structures is considered to
have introduced a sampling bias, this
should be assessed and reported if
_material. _

Drilling by Aberfoyle/Bardoc, Consolidated Gold, Croesus, DPPL, EGS, Monarch, Texas Gulf and WMC was
predominately inclined at between
-
50 and
-
60
degrees towards local grid east (~80
o
MGA Azi). Some early exploration RAB holes drilled vertically

OBM

RC drilling is predominately inclined at between
-
50 and
-
60 degrees towards local grid east (~80
o
MGA Azi). Drilling inclined to the west is only done
when lodes are deemed to be vertical or if local landforms prevent access.

WESCEF

Holes primarily drilled for lithium e
x
ploration
in varying orientations that are frequently not perpendicular to gold mineralisation.
Sample
security

The measures taken to ensure sample
_security. _

Unknown for earlier operators.

West coast holdings
-
Residues stored on site but security measures unknown

Texas Holdings
-
Residues stored on site but security measures unknown

Monarch
-
Pre
-
numbered sample bags were put into numbered plastic bags. These numbers were written on the submission forms which were chec
ked
by the geologist. Plastic bags were then securely cable tied and placed in a secure location. Samples were then
picked up by the Lab in Kalgoorlie or
deliver to Perth via courier. Awork order conformation was emailed to Monarch personnel for each sample submission once sampl
es were received by
the Laboratory.

Swan Gold

Samples are bagged, tied and in a secure yard. Once submitted to the laboratories they are stored in cages within a secure fe
nced
compound. Samples are tracked through the laboratory via their LIMS.

WESCEF

Same as OBM for samples assayed for gold.

OBM

Samples are bagged into cable
-
tied polyweave bags and stored in bulka bags in a secure yard. Once submitted to the laboratories they are stored
in cages within a secure fenced compound. Samples are tracked through the laboratory via their LIMS
Audits
or
reviews

The results of any audits or reviews of
sampling techniques and data.

No audits of sampling techniques have been done.

==> picture [14 x 11] intentionally omitted <==

Section 2 Reporting of Exploration Results – Round Dam

==> picture [324 x 11] intentionally omitted <==

Criteria JORC Code explanation Commentary Commentary Commentary
Mineral tenement
and land tenure
status

Type, reference name/number,
location and ownership including
agreements or material issues with
third parties such as joint ventures,
partnerships, overriding royalties,
native title interests, historical sites,
wilderness or national park and
environment
al settings.

The security of the tenure held at the
time of reporting along with any
known impediments to obtaining a
licence to operate in the area.



All tenure pertaining to this report is listed below: AGREEMENTS
Farm
-
in and JV with Davyston Exploration Pty Ltd for all minerals other than
gold and its byproducts (portion of tenement only)
Davyston Exploration Pty Ltd holds a consent caveat and a mortgage
e area.
TENEMENT HOLDER Expiry Date AGREEMENTS
M30/255 CARNEGIE GOLD PTY LTD. 10/01/2038 Farm
-
in and JV with Davyston Exploration Pty Ltd for all minerals other than
gold and its byproducts (portion of tenement only)
Davyston Exploration Pty Ltd holds a consent caveat and a mortgage
Carnegie Gold PT
There are no kno
There are no kno
Y LTD is a wholly owned subsidiary
wn heritage or native title issues.
wn impediments to obtaining a lice
of OBM.
nce to operate in th
Exploration
done
by other parties

Acknowledgment and appraisal of
exploration by other parties.
Drilling, sampling and assay procedures and methods
considered acceptable and to industry standards of t
majority of drilling in the
Round Dam
area. The
time. As part of each resource upgrade, OBM will co
as stated in the da
he time. There is su
company is confide
mmit to additional
tabase and confirmed from Wamex reports and hard copy
records are
fficient understanding of drilling, sampling an
d assay methodologies for the
nt that previous operators completed work to standards considered acceptable for the
drill
ing to confirm the style, widths and tenor of mineralisation at each deposit.
Geology
Deposit type, geological setting and
style of mineralisation.



F
B
B
Regional Geology
-
Rocks of the Coolgardie domain (Kalgoorlie Terrane) are prevalent in the Davyhurst area. Rocks of the Coolgardie Domain are n
ot well
exposed at Davyhurst and the distribution of rock types suggests that it is mainly represented by the upper part of the
stratigraphic sequence, namely
basalts, felsic volcanics and sedimentary rocks. The abundant ultramafic
-
mafic sills of the Ora Banda Domain do not occur in the Coolgardie Domain.
Granitoids in the Davyhurst Project area can be classified by
magnetic signature into three types: low, medium and high magnetic response. Binns et al.
(1976) distinguished ‘static style’ and ‘dynamic style’ regional metamorphism. Static style areas generally occupy the centra
l, low
-
strain part of the
greenstone reg
ions away from the granitoids and typically have lower metamorphic grades (prehnite

pumpellyite to upper greenschist facies). Strain is
concentrated in narrow zones so that textures are well preserved in more massive and competent rocks. Dynamic
-
style area
s of greenstone have higher
metamorphic grades (upper greenschist to upper amphibolite facies) and are characterized by more pervasive foliation, particu
larly along the contacts
with large granitoid terrains. There appears to be two major controls on miner
alisation in the Davyhurst area. Both mineralisation styles rely on
mineralisation taking place during reactivation of earlier ductile shear zones. In the case of the Lights of Israel group of
deposits, the early shears are
moderately to gently west dippin
g, whereas in the Federal Flag

Lady Eileen group of deposits, the early shear is steeply west dipping. In the northern
portion of the Davyhurst tenements most gold mineralisation is aligned in planar corridors that have N
-
to NW
-
trends. The overall dip o
f the mineralised
corridors is mostly steep (>75º) E
-
or W
-
dipping with moderate to steep (~60º) and shallow
-
dipping (~15º) ore zones at the Federal Flag and Lady Gladys
deposits, respectively. Within these planar corridors of mineralisation linear trends
to gold distribution are mostly shallowly plunging. Internal variations
within the corridors at individual deposits are common and discussed later. Mineralisation at the Lights of Israel and Makai
deposits differs from the other
examined deposits in that m
ineralisation has a linear form that plunges moderately (~20º) to the NNW.
Local Geology

EAST

Interbedded volcaniclastic sediments / tuffs

CENTRAL

mafic / ultramafic sequence consisting of:

Eastern Ultramafic unit (chlorite tremolite schist), sometimes contains internally a wedge of high
-
Mg pillow basalt (chlorite
schist)

Western Basalt unit, this basalt weathers much deeper than the UM

Potentially a thin (~5m) unit of interflow sediment lies along the contact of the basalt and UM

WEST

Interbedded shales and volcaniclastic sediments
Mineralisation
our principal gold lodes identified at Round Dam:
asalt Lode

Gold lode wholly within the basalt
asalt/UM Contact Lode

==> picture [14 x 11] intentionally omitted <==

Criteria JORC Code explanation Commentary

Highly altered basalt immediately in hanging wall to ultramafic / basalt contact. Strong banded biotite
-
silica
-
sulphide (pyrrhotite)
alteration + py/cpy. Possible narrow interflow sediment on this contact
UM Quartz Vein Lode(s)

Highly deformed early quartz veining within ultramafic unit acts as preferential host for gold mineralisation due to rheologi
cal contract.
Visible gold associated with pyrrhotite + py/cpy/apy

Main lode is consistent thick zone of quartz veining approximately 40m east of UM/Mb contact. Minor other lodes come and go a
long strike

Plunge of mineralisation defined by plunge of folded / boudined quartz veins
Eastern Lode

High
-
grade lode in eastern portion of the mafic/ultramafic sequence. No available access to map this lode and define its controls
/
alteration

diamond drillingrequired

Drill hole
Information

A summary of all information
material to the understanding of the
exploration results including a
tabulation of the following
information for all Material drill
holes:
o
easting and northing of the drill
hole collar
o
elevation or RL (Reduced Level

elevation above sea level in
metres) of the drill hole collar
o
dip and azimuth of the hole
o
down hole length and
interception depth
o
hole length.

If the exclusion of this information is
justified on the basis that the
information is not Material and this
exclusion does not detract from the
understanding of the report, the
Competent Person should clearly
explain why this is the case.

See list of drill intercepts.

Widths reported in the Significant Intercepts table are all down hole lengths.
Data
aggregation
methods

In reporting Exploration Results,
weighting averaging techniques,
maximum and/or minimum grade
truncations (eg cutting of high
grades) and cut
-
off grades are
usually Material and should be
stated.

Where aggregate intercepts
incorporate short lengths of high
grade results and longer lengths of
low grade results, the procedure
used for such aggregation should be
stated and some typical examples of
such aggregations should be shown
in detail.

The assumptions used for any
reporting of metal equivalent values
should be clearly stated.

Original assays are length weighted. Grades are not top cut. Intercepts are reported at a Lower cut off of 0.5g/t
with
a secondary cut off of 1.0g/t
or
a
Lower cut off of 1.0g/t with a secondary cut off of 10.0g/t
. Maximum 4m internal dilution.

No metal equivalents reported
Relationship
between
mineralisation

These relationships are particularly
important in the reporting of
Exploration Results.

If thegeometry of the mineralisation

Intercept widths are down hole lengths. True widths are not reported
.

The geometry of the mineralisation on the Round Dam Trend is approx. 3
5
0
o
and
60
o
to 70
o
West dipping
. Drilling is oriented perpendicular the strike of
the mineralisation.

==> picture [14 x 11] intentionally omitted <==

Criteria JORC Code explanation Commentary
widths
and
intercept lengths
with respect to the drill hole angle is
known, its nature should be
reported.

If it is not known and only the down
hole lengths are reported, there
should be a clear statement to this
effect (eg ‘down hole length, true
width not known’).
Diagrams
Appropriate maps and sections (with
scales) and tabulations of intercepts
should be included for any
significant discovery being reported
These should
include, but not be
limited to a plan view of drill hole
collar locations and appropriate
sectional views.

See plans and sections.
Balanced
reporting

Where comprehensive reporting of
all Exploration Results is not
practicable, representative
reporting of both low and high
grades and/or widths should be
practiced to avoid misleading
reporting of Exploration Results.

Results from all holes in the current drilling have been reported.

Results reported include both low and high gram metre (g/t x down hole length) values.

The significant intercept table provides details of drill hole intercepts shown on diagrams. There is no lower cut
-
off grade, the holes listed include those
with NSI (no significant intercept). Holes in the significant intercept table are shown on diagrams
coloured according to gram metre grade bins. This
provides spatial context to the number of holes in the project area with significant gold intercepts versus the number of hol
es with lesser or no
significant intercepts
Other substantive
exploration data

Other exploration data, if
meaningful and material, should be
reported including (but not limited
to): geological observations;
geophysical survey results;
geochemical survey results; bulk
samples

size and method of
treatment; metallurgical test
results;
bulk density, groundwater,
geotechnical and rock
characteristics; potential
deleterious or contaminating
substances.

Preliminary M
etallurgical
leach tests have demonstrated gold recoveries of >95%
using standard CIL
processing

Numerous deposits on the Round Dam Trend were previously mined and processed at Davyhurst plant with no known metallurgical i
ssues.

Geotechnical work is ongoing.

Waste rock characterisation is progressing.
Further work
The nature and scale of planned
further work (eg tests for lateral
extensions or depth extensions or
large
-
scale step
-
out drilling).

Diagrams clearly highlighting the
areas of possible extensions,
including the main geological
interpretations and future drilling
areas, provided this information is
not commercially sensitive.

Exploration and Resources Development drilling is continuing

Statutory approvals for mining in progress.

==> picture [14 x 11] intentionally omitted <==

Section 3 Estimation and Reporting of Mineral Resources – Round Dam

==> picture [324 x 11] intentionally omitted <==

Criteria JORC Code explanation Commentary
Database
integrity

Measures taken to ensure that data has not been
corrupted by, for example, transcription or keying
errors, between its initial collection and its use for
Mineral Resource estimation purposes.

Data validation procedures used.

Data from EGL/OBM drilling captured into Field Marshall
or Geobank Mobile
logging software. Data sent from site and imported into SQL
database via DBMS. Validation checks in SQL database are carried out to ensure data integrity is not compromised.

The data is verified by company geologists before being sent to the DBA for validation or passing Geobank Software validation
protocols

A
drill hole
database validation report was completed
on the historical and recent drilling. This included collar location, downhole survey
confidence and assay reviews.

The Competent Person has undertaken a number of validation checks on the database, using
Leapfrog
and Micromine
software which
include, but are not limited to, checks for overlapping intervals, checks for missing data/records, visual checks on drillhol
e locations and
traces to identifyany possible surveyissues. No major issues were detected.
Site visits
Comment on any site visits undertaken by the
Competent Person and the outcome of those visits.

If no site visits have been undertaken indicate why
this is the case.

Numerous site visits have been completed by the Competent Person with the following objectives:
o
View geology in existing open pit
o
View and log drill core
Geological
interpretation

Confidence in (or conversely, the uncertainty of) the
geological interpretation of the mineral deposit.

Nature of the data used and of any assumptions
made.

The effect, if any, of alternative interpretations on
Mineral Resource estimation.

The use of geology in guiding and controlling
Mineral Resource estimation.

The factors affecting continuity both of grade and
_geology. _

Lodes were generally interpreted on E
-
W sections and flitches using LeapfrogTM software. Round Dam mineralisation is generally 60
-
70°
west dipping, 350° striking parallel lodes. The mineralisation follows along the contacts of the Ultramafic in the HW and
FW as well as
internally in the Ultramafic
.
Mineralisation in the HW mafic and FW sediments is present but not well constrained or defined.

Late stage E
-
W structures have been mapped and may offset the mineralised lodes slightly. These structures have also been exploited by
thin pegmatite dykes
.

Gold mineralization along The Round Dam Trend is associated with shear folding and shear structures producing boudinage quart
z veins.
The main high
-
grade shoot or plunge of mineralization ranges from
-
20 to
-
35 degrees to the North. This is matched with th
e measured
fold hinges, lineations and boudinage quartz veins in both diamond drill core and from mapping within the historic open pits
of Federal
Flag and Walhalla.

The proximity to the Zulieka shear likely had a great impact on the amount of simple shearing that occurred along the Round D
am Trend.
We can observe this in the shear jog at Walhalla North, with approximately 100m of West

East offset of the lithology an
d lodes. Resulting
in the high
-
grade shoots forming on either side of the jog.

Inspection of core, RC chips and pit exposures shows the mineralisation to be associated with biotite and silica alteration a
nd quartz
-
carbonate veining.

Geological continuity of mineralised strictures are well defined, although sometimes terminate abruptly, possibly due to the
minor offsets
caused by the E
-
W structures.
The
Lynx and Grizzly
lodes at
Round Dam
are geologically continuous over
8
km. Grade continuity is less
extensive but well defined at a low cut
-
offgrade(0.
3
g/t)
Dimensions
The extent and variability of the Mineral Resource
expressed as length (along strike or otherwise), plan
width, and depth below surface to the upper and
lower limits of the Mineral Resource.

The
Lynx and Grizzly
lodes at
Round Dam
are geologically continuous over
8
km in
an
N
NW
-
S
SE
direction and defined to a depth of
310
m
below surface.
Estimation and
modelling
techniques

The nature and appropriateness of the estimation
technique(s) applied and key assumptions,
including treatment of extreme grade values,
domaining, interpolation parameters and
maximum distance of extrapolation from data
points. If a computer assisted estim
ation method
was chosen include a description of computer
software and parameters used.

The availability of check estimates, previous
estimates and/or mine production records and
whether the Mineral Resource estimate takes
appropriate account of such data.

The assumptions made regarding recovery of by
-
products.

Estimation of deleterious elements or other non
-
grade variables of economic significance (eg
sulphur for acid mine drainage characterisation).

In the case of block model interpolation, the block

1m composite samples coded to the mineralised domains were used as inputs to estimation. Only RC and diamond drilling samples
used
for estimation.

Ordinary Kriging (OK) was used to estimate gold grades into a 3
-
dimensional block model. Estimation parameters derived from modelled
semi
-
variograms.
Leapfrog
software was used for the estimation.

For some of the mineralised zones categorical subdomains were created and estimated with Ordinary kriging. Thresholds for cat
egorical
subdomains are chosen from log probability inflections that are representative of the geological understanding of grade po
pulations.
Typically, only a single low
-
grade threshold was chosen to allow separation of lower grade zones for better estimation of the ore sub
-
domains.

Lodes with a low number of samples or discrete lodes with a low coefficient of variation were interpolated by Inverse Distanc
e Squared
(ID2).

High grade cuts up to
8
0 g/t were applied to 1m composite data based on analysis of individual domains.

The parent block dimensions used were
20
mN by
5
mE by 10mRL with sub
-
cells of 1
.25
m by
1
.
2
5m by 1.
25
m. Drillhole spacing is
approximately
50
m between section and
5
0m along section. The parent block size was selected (approx. 50% of data spacing) using QKNA.

An orientated ellipsoid search was used to select data and was based on Kriging Neighbourhood parameters derived from the var
iography.

Estimation completed in 3 runs each with less restrictive search, and minimum sample parameters. The initial interpolation pa
ss was
used with a maximum range greater than the range of the principal direction of the modelled variograms. Maximum number of sa
mples
was 1
2
, minimum was 4. Range increased progressively and the minimum number of samples reduced.

No estimation of deleterious elements was carried out. Deleterious elements have not been recorded duringminingby previous
operators

==> picture [14 x 11] intentionally omitted <==

Criteria JORC Code explanation Commentary
size in relation to the average sample spacing and
the search employed.

Any assumptions behind modelling of selective
mining units.

Any assumptions about correlation between
variables.

Description of how the geological interpretation
was used to control the resource estimates.

Discussion of basis for using or not using grade
cutting or capping.

The process of validation, the checking process
used, the comparison of model data to drillhole
data, and use of reconciliation data if available.
Only Au was interpolated into the block model.


No assumptions have been made regarding recovery of by
-
products. Silver has not been routinely assayed.

Selective mining units were not modelled in the Mineral Resource

Only Au was estimated so correlation analysis was not possible

The deposit mineralisation was constrained by wireframes constructed using a 0.
3
g/t Au cut
-
off grade in association with logged geology,
particularly the presence of quartz veining and biotite
-
sulphide alteration. The wireframes were applied as hard boundaries in the
estimate.

Grade capping was applied on a domain by domain basis due to the usually highly positively skewed grade populations

The validation was carried out by three methods:
o
Visual comparison of block grades with nearby drill assay results on a section by section basis.
o
Statistical comparison of estimated grades and composite grades on a domain by domain basis.
o
Trend analysis of estimated block modelgrades versus compositegrades on
4
0m northingand
20
m vertical intervals.
Moisture
Whether the tonnages are estimated on a dry basis
or with natural moisture, and the method of
determination of the moisture content.

Tonnages and grades were estimated on a dry in situ basis. No moisture values were reviewed.
Cut-off
parameters

The basis of the adopted cut
-
off grade(s) or quality
parameters applied.

The Mineral Resource has been reported at a 0.
3
g/t Au cut
-
off within an optimised pit shell, based on assumptions about economic cut
-
off grades for open pit mining.
Mining factors
or assumptions

Assumptions made regarding possible mining
methods, minimum mining dimensions and
internal (or, if applicable, external) mining dilution.
It is always necessary as part of the process of
determining reasonable prospects for eventual
economic extraction to
consider potential mining
methods, but the assumptions made regarding
mining methods and parameters when estimating
Mineral Resources may not always be rigorous.
Where this is the case, this should be reported with
an explanation of the basis of the mining
assumptions made.

It is intended to adopt a selective open cut mining practise at the deposit.

The MRE is reported under conditions
that are considered to b
e
RPEE
E
through open pit mining operations.
R
esources have been reported
within a $5000 reporting pit shell derived from
contractor derived mining costs, projected processing costs
and
pit wall angels determined
from geot
e
chnical assessment
.
Reporting shells were produced using diluted grades
derived from
M
ine Stope Optimised (MSO)
shapes
with 2.5m minimum width
.
Metallurgical
factors
or
assumptions

The basis for assumptions or predictions regarding
metallurgical amenability. It is always necessary as
part of the process of determining reasonable
prospects for eventual economic extraction to
consider potential metallurgical methods, but the
assumption
s regarding metallurgical treatment
processes and parameters made when reporting
Mineral Resources may not always be rigorous.
Where this is the case, this should be reported with
an explanation of the basis of the metallurgical
assumptions made.

Round Dam
has no known reported metallurgical issues and has been previously mined.

Preliminary Metallurgical leach tests have demonstrated gold recoveries of >95% using standard CIL processing

Numerous deposits on the Round Dam Trend were previously mined and processed at Davyhurst plant with no known metallurgical i
ssues.
Environmental
factors
or
assumptions

Assumptions made regarding possible waste and
process residue disposal options. It is always
necessary as part of the process of determining
reasonable prospects for eventual economic
extraction to consider the potential environmental
impacts of the mining
and processing operation.
While at this stage the determination of potential
environmental impacts, particularly for a
greenfields project, may not always be well
advanced, the status of early consideration of these
potential environmental impacts should
be
reported. Where these aspects have not been
considered this should be reported with an

Flora and Faun
a
surveys are
complete.

Waste rock characterisation is ongoing

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Criteria JORC Code explanation Commentary
explanation of the environmental assumptions
_made. _
Bulk density
Whether assumed or determined. If assumed, the
basis for the assumptions. If determined, the
method used, whether wet or dry, the frequency of
the measurements, the nature, size and
representativeness of the samples.

The bulk density for bulk material must have been
measured by methods that adequately account for
void spaces (vugs, porosity, etc), moisture and
differences between rock and alteration zones
within the deposit.

Discuss assumptions for bulk density estimates
used in the evaluation process of the different
_materials. _

Bulk density determinations were derived from measurements (immersion method) made on recent core samples drilled by OBM
and
from
downhole density measurements take
n
from selected
RC and diamond holes
.

Bulk densityvalues used in the
MRE
were
assigned
bylithologyand oxidisation and shown below in the table
.
LITH
OX
TRANS
FRESH
Mafic
1.71
2.33
2.80
Pegmatite
2.00
2.59
2.63
Sediments
2.09
2.41
2.57
Ultramafic
1.78
2.50
2.90
Dolerite
1.71
2.33
2.80
Classification
The basis for the classification of the Mineral
Resources into varying confidence categories.

Whether appropriate account has been taken of all
relevant factors (ie relative confidence in
tonnage/grade estimations, reliability of input data,
confidence in continuity of geology and metal
values, quality, quantity and distribution of the
data).

Whether the result appropriately reflects the
Competent Person’s view of the deposit.

Mineral Resources were classified in accordance with the Australasian Code for the Reporting of Exploration Results, Mineral
Resources
and Ore Reserves (JORC, 2012). The classification takes account of confidence in the geological interpretation, sample de
nsity and assay
QAQC. In order to avoid a mosaic style of classification, solid wireframes were constructed to encompass areas considered to
adequately
fulfil the requirement to be classified as either, measured, indicated or inferred:

Measured

No areas of the current resource attained Measured status.

Indicated

Areas with drill spacing up to approximately 25m x 25mN up to 25m x 40m along strike and with reasonable confidence
in the geological interpretation and grade continuity

Inferred

Areas with drill spacing up to approximately 50m x 50mN up to 50m x 80m along strike and where grade continuity is
poorer as defined by a lower sample density, even though geological continuity may be apparent.

Areas of some lodes, particularly at depth have fairly low/no sample support and were not classified.

The input data is comprehensive and of sufficient quality for use in the MRE. Significant recent drilling, has confirmed the
location and
tenor of many historic drill
-
holes. Assay QAQC is of sufficient quality for the assays to be used in the MRE. There is
sufficient understanding
of the geology to support the current interpretation in terms of continuity.

The Mineral Resource estimate appropriatelyreflects the view of the Competent Person.
Audits
or
reviews

The results of any audits or reviews of Mineral
Resource estimates.

The MRE has not been
internally peer reviewed.
Discussion
of
relative
accuracy/
confidence

Where appropriate a statement of the relative
accuracy and confidence level in the Mineral
Resource estimate using an approach or procedure
deemed appropriate by the Competent Person. For
example, the application of statistical or
geostatistical procedures
to quantify the relative
accuracy of the resource within stated confidence
limits, or, if such an approach is not deemed
appropriate, a qualitative discussion of the factors
that could affect the relative accuracy and
confidence of the estimate.

The statement should specify whether it relates to
global or local estimates, and, if local, state the
relevant tonnages, which should be relevant to
technical and economic evaluation. Documentation
should include assumptions made and the
procedures used.

These statements of relative accuracy and
confidence of the estimate should be compared
withproduction data, where available.

The
Round Dam
Mineral Resource estimate is considered to be reported with a reasonable degree of confidence. The data quality is good
and the drillholes from recent drilling have detailed logs produced by qualified geologists. Historic logging has been review
ed.

The Mineral Resource statement relates to global estimates of tonnes and grade. Confidence in the estimate allows reasonable
quantification of global metal content. The interpretation is considered globally robust but at a local scale
,
variations to ore geometry
and/or grade can be expected.

The deposit is not currently being mined.

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