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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]
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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
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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
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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
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Round Dam remains open along strike and at depth. Drilling for both resource extension and category conversion is ongoing
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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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GEOLOGY & GEOLOGICAL INTERPRETATION
Lithology
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Structure
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Alteration & Mineralisation
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Weathering
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DRILLING AND SAMPLING, AND SAMPLE ANALYSIS TECHNIQUES
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Sample Analysis Methods
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ESTIMATION METHODOLOGY
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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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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 |
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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). |
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| 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 |
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Criteria JORC Code explanation
Commentary
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| 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, |
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| 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 ⁰ 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. |
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| 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. |
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| 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. |
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Section 2 Reporting of Exploration Results – Round Dam
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| 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. |
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| 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 |
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| 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 |
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| 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 |
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| 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 |
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| • 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: oeasting and northing of the drill hole collar oelevation or RL (Reduced Level – elevation above sea level in metres) of the drill hole collar odip and azimuth of the hole odown hole length and interception depth ohole 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. |
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| 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. |
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Section 3 Estimation and Reporting of Mineral Resources – Round Dam
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| 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: oView geology in existing open pit oView 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 |
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| 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: oVisual comparison of block grades with nearby drill assay results on a section by section basis. oStatistical comparison of estimated grades and composite grades on a domain by domain basis. oTrend 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. _ |
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| 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 |
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| Mafic 1.71 2.33 2.80 |
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| Pegmatite 2.00 2.59 2.63 |
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| Sediments 2.09 2.41 2.57 |
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| Ultramafic 1.78 2.50 2.90 |
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| Dolerite 1.71 2.33 2.80 |
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| 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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