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DART MINING NL Interim / Quarterly Report 2018

Jan 30, 2019

64792_rns_2019-01-30_31b87216-f783-40c0-8cf9-95615608b244.pdf

Interim / Quarterly Report

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ASX Release Report for the Quarter Ended 31 December 2018

Quarterly Corporate Update

Operational Review

The December quarter was frenetic with on-ground exploration activity despite challenging and varied weather conditions. The year has been one of extreme cold and heat across our tenement area from -10c degrees to +42c degrees within three months of each other. Despite this, the collection and processing of a large number of rock and soil samples eventuated and is a great credit to Dart’s geological team that so many samples were taken and processed.

The primary focus has been on the further discovery of Lithium mineralisation and we have achieved some enviable results from a new lithium district (see Exploration Report below).

The huge area now sampled has provided the critical data coverage necessary to enabled us to confidently refine the initial target area of 60km x 15km down to 20km x 8km for closer analysis and further investigation. The pioneering work undertaken to date has occurred within exceptionally rugged country and has required a highly committed field team to amass the large geochemical dataset now available. This has culminated in the identification of the optimal lithium fractionation zones for further work.

A continuation of regional aerial surveys has uncovered a number of previously unknown ground targets and directly contributed to the identification of extensions on previously identified pegmatite dykes, all adding to increased potential tonnage. Gold exploration and discovery has also featured during the period. This includes some geologically unusual and promising mineralisation at the old O’Dell’s mine near Upper Sandy Creek. Underground samples have produced some solid grades (see Exploration Report below).

Further regional soil sampling was undertaken on the Buckland EL to begin to identify the larger scale mineralised structural trends, potentially linking the significant arsenic and gold anomalies already identified, the Fairleys project being the type example. The Fairleys Project is currently subject to a Retention License application to allow further development and resource evaluation to continue.

Tenement Areas

Dart has been focused on re-establishing a number of tenement areas which in the past we have been forced to drop as part of statutory relinquishment requirements. The company is currently negotiating for acquisition of additional tenement areas that will enhance existing properties held by the company. These properties relate to both Gold and Lithium prospectivity.

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ASX Code: DTM

Key Prospects / Commodities:

GOLD

Mountain View / New Discovery - Au Fairleys - Au

Rushworth – Phoenix - Au Onslow – Au Saltpetre Gap - Au

LITHIUM / TIN / TANTALUM

Glen Wills – Li-Sn-Ta Eskdale / Mitta – Li-Sn-Ta

PORPHYRY GOLD / COPPER / MOLYBDENUM

Empress – Au-Cu Stacey’s – Au-Cu Copper Quarry: Cu+/- Au Gentle Annie: Cu

Morgan Porphyry: Mo-Ag-Au Unicorn Porphyry: Mo-Cu-Ag

Investment Data:

Shares on issue: 928,042,803 L isted options: 419,830,574

Substantial Shareholders:

Top 20 Holdings: 50.81%

Board & Management:

Managing Director: James Chirnside Non-Executive Director: Denis Clarke Non-Executive Director: Luke Robinson Company Secretary: Julie Edwards

Dart Mining NL

ACN 119 904 880

Contact Details:

4 Bryant Street, Corryong VIC 3707 Australia

James Chirnside

Exploration Team

Dart has established a reliable and talented pool of senior geologists and field assistants to extend its on-ground exploration activities. Demand for technical personnel is running high across Victoria particularly in Gold exploration.

Phone: +61 (0)419 605 842 Email: [email protected]

Visit our webpage: www.dartmining.com.au

Victorian Gold Activity

Exploration activity in Victoria, particularly in relation to Gold, is running high. There has been a gradual realisation by exploration companies that Victorian prospectivity is amongst the best in the country when considering how little exploration activity has been carried out over the last thirty years within the state.

Kirkland Lake Gold’s Fosterville mine has drawn international attention with it being rated among the highest recovered Gold per tonne producers in the world for 2018. Added to this the rejuvenation of the Stawell Mine and it is fair to conclude that Victorian gold interest has never been higher.

Commodity Prices

Lithium prices have been under pressure throughout most of 2018 and specifically with China domestic pricing. Spodumene 6% Concentrate (China domestic) pricing is at approximately US$750 per tonne down from US$1100 per tonne a year ago.

There seems to be a consensus amongst forecasters that a wall of Lithium supply is about to emerge. In our conversations with analysts and industry participants we remain skeptical of this view. Where we believe the modelling to be wrong is on the demand side where, given the exponential build out of battery manufacturing capacity, demand will continue to outstrip supply for at least the next seven years. At some point financial markets will appreciate this and Lithium producers will re-rate, particularly hard-rock Lithium producers.

A$ Gold is near historic highs, at A$1800 per ounce, supported by a stronger US$ Gold price and further weakening in the US$/A$ exchange rate. We believe that this trend will continue and that the A$ Gold price will establish new all-time highs in the medium term. This factor is also contributing to the renewed focus on Victorian Gold activity.

New Investors

During the quarter Dart raised, through private placement, $500,000 from an investor based in the United Kingdom. Jim Mellon is well known in the Australian resources industry for his interests in Iron Ore and Lithium. We gratefully acknowledge Jim’s investment in Dart and for the confidence that his investment instils in our company.

Marketing & Communications

Dart is close to launching a more integrated, user-friendly and interactive communications platform so that we can communicate more directly and effectively with our shareholders and prospective investors. We will be conducting more regular road-shows as well as one on one meetings going forward, and we hope to build the company’s profile through this. We have an excellent story to tell. In the meantime do not hesitate to call or email me directly.

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Lithium Update

As forecast in the November exploration update (DTM ASX 14 November), assay results from a large number of samples submitted for analysis late in 2018 are now available. Geological interpretation of this data is now also advanced with the large data set providing a comprehensive picture of the regional dyke geochemistry and distribution of lithium mineral phases along the length of the dyke swarm. Multi-element geochemistry from a dataset of 677 rock chip samples is available across the Dorchap Project tenements; results continue to support the interpretation of a core zone of fractionation within the northern Dorchap area. This area represents the most prospective zone along the northern portion of the dyke swarm and has now been refined to a belt some 20km along strike and 8km in width (See Fractionation Target - Figure 1). Dart geologists consider this highly fractionated dyke zone to be the most prospective for high grade lithium mineralisation, with high grade lithium oxide results occurring within the 20km zone across several dyke centres (Boones D1, Gosport Group, Eagle, Scrubby and Hollow Way) with rock chips up to 10m @ 1.37% Li2O from the Hollow Way Dyke showing coarse petalite in outcrop (Figure 1 – Table1).

Table 1 . Lithium Assay Highlights – Northern Section Dorchap Lithium Project

PROSPECT
SAMPLE
**TENEMENT ** **GDA94_EAST(m) ** **GDA94_NORTH(m) ** **AHD_RL(m) ** **SAMPLE TYPE ** WIDTH(m) Li2O(%)
BOONES D1
69241
EL5315 524,438 5,957,969 897 CHIP 1.5 0.62
GOSPORT
68943
EL5315 523,716 5,953,071 700 CHIP 4 1.13
GOSPORT
69010
EL5315 523,830 5,952,598 703 CHIP 5 1.28
GOSPORT
69129
EL5315 523,895 5,952,818 688 CHIP 4.8 1.00
GOSPORT
69301
EL5315 523,718 5,953,080 691 GRAB 1.05
SCRUBBY
69573
EL5315 526,946 5,949,753 695 CHIP 10 1.18
EAGLE
68923
EL5315 523,924 5,949,230 1116 CHIP 10 0.94
HOLLOW WAY
69468
EL006486 534,249 5,943,476 977 CHIP 5 1.15
HOLLOW WAY
69470
EL006486 534,238 5,943,464 990 CHIP 10 1.37

Note: Full sample database listing with key pegmatite dyke assay data is provided in Appendix 1. Samples 69241, 69468 and 69470 show coarse petalite (LiAlSi4O10) while the remaining samples are dominated by the lithium mineral spodumene (LiAlSi2O6 ) .

Lithium mineral distribution has also been defined with coarse petalite found in the Boones D1 target and the Hollow Way target area, representing the outer ends of the fractionation target (Figure 1). Spodumene has a wider distribution but is focused between the Gosport Group and Eagle targets, with minor occurrences noted further southwest.

Regional trace element geochemistry from 677 samples has played a vital role in the focus of exploration attention, partly based on dyke fractionation patterns, with trace element ratios of potassium over both rubidium and caesium being of particular application. Enriched beryllium distribution in the northern dyke swarm is also diagnostic of the higher grade LCT pegmatite dykes (Figure 1).

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Figure 1. North Dorchap Dyke Geochemistry and fractionation target area (Magenta Ellipse) - interpretation (20x 8 km). Note the correlation of low K/Rb and K/Cs ratios (fractionation markers) and high Be assay data positions relative to the highest lithium chip sample values.

Proposed Drilling

As advised in the November update (DTM ASX 14 November), proposed RC drilling into the Boones Dyke 1 and Eagle pegmatite targets was deferred until March in order to secure - at reasonable cost - vegetation offset obligations. Subsequent regional exploration has now identified additional drill targets at the Scrubby and Hollow Way pegmatite targets areas (Figure 1). While a first party vegetation offset is being secured, Phase 1 drilling is planned at Eagle and Hollow Way dykes where existing road access should allow roadside RC drilling to proceed without earthworks or the need for vegetation offset.

Phase 1 drill planning is now complete and steps to secure a drilling contractor are well advanced. RC drilling is proposed to make an initial assessment of the dyke targets with up to 5 RC holes proposed at the Hollow Way

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dyke target (MCHWRC001-005 - Figure 2) and up to two holes proposed at the Eagle dyke target (MIEDRC001002 - Figure 3).

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Figure 2. Proposed roadside Phase 1 RC drill program – Hollow Way Dyke Target (Dorchap Project).

The Hollow Way dyke target shows up to 10m @ 1.37% Li2O from a dyke currently mapped in outcrop up to 30m in width and some 260m total strike extent (Figure 2). The dyke shows coarse petalite in outcrop at the roadside and is an ideal Phase 1 drill target to test for potential lithium depletion due to weathering in surface rock chip samples and for dyke depth continuity.

The Eagle dyke target shows up to 10m @ 0.94% Li2O along a roadside chip sample at the northern extent of the dyke outcrop. The Eagle dyke outcrops over a 180m strike extent and up to 80m in width. The Dorchap Road provides possible access for up to two roadside RC drill holes as part of the Phase 1 RC program. Previous XRD analysis of the Eagle dyke pegmatite by Dart has shown the mineral spodumene to be the dominant lithium mineral phase at the locality. Proposed Phase 2 drill access and drill pads are shown in Figure 3 and are subject to Work Plan approval and native vegetation offset agreements currently under negotiation.

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Figure 3. Proposed Phase 1 roadside RC drill program – Eagle Dyke Target (Dorchap Project).

Helicopter Survey Update

The fractionation chemistry has also been a key parameter in the design of the last three detailed helicopter survey programs, where maximum exploration expenditure and focus is applied to the most prospective zones along the large dyke swarm to identify new dyke targets. Field mapping and sampling follow-up to the Phase 3 & 4 helicopter surveys has located the new Scrubby target area, with a chip sample of up to 10m @ 1.18% Li2O (Figure 4). Field work follow-up of several new dykes between the Scrubby and Hollow Way targets identified in the latest Phase 5 helicopter survey is ongoing. This zone lies along the axis of the fractionation target and is considered highly prospective for lithium mineralisation (Figure 4).

Further helicopter surveys are planned to continue dyke identification and testing at Glen Wills to the north of the current surveys and to the south of the Hollow Way dyke group at the southern end of the fractionation target zone (Figure 4). Helicopter surveys remain the most cost effective and timely method of regional exploration for pegmatite targets along the Dorchap Dyke Swarm and continue to locate new dyke zones for follow-up ground exploration. The technique has enabled a vast extent of remote, rugged country to be effectively explored very quickly and has enabled Dart geologists to identify a number of significant new dyke targets.

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Figure 4. Helicopter Survey Phases 3, 4 & 5 - Flight Paths and Lithium Rock Chip Geochemistry.

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Gold Update

– Sandy Creek Goldfield Disseminated Gold Associated with Pegmatites

The northern limit of the Dorchap Dyke Swarm occurs at Sandy Creek, corresponding with the Sandy Creek Goldfield. The pegmatite dykes at Sandy Creek are not known to show tin mineralisation but do show an association with high grade historic gold lodes, hosted in both metasediment and the Lockhart Granite. The geological setting is one of a shallow roof pendant of Pinnack Sandstone sitting above the Lockhart Granite. Shears of several orientations cut both the granite and overlying sediments. Some shears appear to have been exploited by the pegmatite dykes and host the gold-mineralised lodes. The mineralised portion of the dykes are distinct from the usual pegmatites of the dyke swarm to the south east from Eskdale to Glen Wills and consists almost entirely of feldspar and quartz with significant disseminated sulphide. Where hosted by the Lockhart Granite, the composition of the lode is very similar to the host rock, the absence of micas and the presence of sulphide being the distinguishing feature. Historically, the enclosing pegmatites are often reported to have been barren and rapidly pinch along strike, forming discontinuous lenses.

The distribution of mineralised pegmatites appears to be associated with the proximity of the contact zone of the granite and sediment. Locally, the dykes become strongly enriched in free gold where segregation of quartz and feldspar occurs in the form of erratic pods or lenses. The historic accounts did not record the altered halos to these pods which show silica-sulphide with lower grade sulphide-related gold. This unrecorded style has been noted in recent exploration and limited modern small scale mining at the A1 O’Dells mine. The intense alteration can show more than 10% sulphide across a broad area of adjacent granite / pegmatite, evident as a zone of distinct pink feldspar and epidote alteration. Recent mapping and sampling of the A1 O’Dells mine workings (see below) has now confirmed the high grade potential of this style of mineralisation and warrants detailed follow-up exploration throughout the Sandy Creek Goldfield.

Underground Mapping and Sampling – A1 O’Dells Mine

Dart’s initial exploration of the Sandy Creek Goldfield has focused on the A1 O’Dells mine site with underground mapping and sampling completed. Initial samples of altered Lockhart Granite and pegmatite within the underground workings have shown high grade gold mineralisation is associated with granite showing silicasulphide alteration outside of the historically mined lodes. Small scale mining during the late 1980s – early 1990s (now predominantly inaccessible) has provided limited new development access. The south cross cut and rise (Figure 5) has exposed a new area of altered granite with intense sulphide mineralisation directly adjacent to an area previously mapped by NEGC P/L when accessible (D. Turnbull, 1992 unpub.). The mapping shows an area of broad altered granite with disseminated sulphide mineralisation (predominantly arsenopyrite) to the east of sample 69697. The new development is immediately west of the previous mapping and shows a chip sample with approximately true width 0.8m @ 14.4 g/t Au (Sample 69697) across the rise above the level (Figure 5). Mineralisation appears to extend into the south wall of the drive. A grab sample collected from ground collapse in the main drive returned 15 g/t Au (Sample 69698), the material is altered pegmatite / granite showing disseminated sulphide and pink feldspar with epidote. This sample is along strike from the main O’Dells lode, reported to consist of a short feldspar – quartz – free gold lens some 3m in length and of unknown depth; within an altered pegmatite some 37m long and approximately 1m in width (Cuffley, 1985). Previous mapping by NEGC P/L illustrates the broad zone of alteration within the adjacent granite / pegmatite to the south of the high grade lode; the extension to the west has now been confirmed within the modern development, showing high grade gold along a strong fault structure.

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Target Style

Broad zones of gold mineralisation associated with the alteration halos of sheared pegmatites may offer a larger target style for disseminated gold mineralisation within the structurally controlled roof pendants above the Lockhart Granite. This target style can be explored via regional pXRF soil testing using arsenic as a pathfinder element due to its close association with the gold mineralisation and alteration at Sandy Creek. Previous exploration by Goldsearch Ltd (EL4812, 2004 – 2008) across other mines in the Sandy Creek Goldfield reported altered granite from mine waste rock with samples showing associated gold mineralisation. The reported absence of historic mining of the halo zone of altered granite / pegmatite zones together with the identification of widespread altered granite within mine workings during modern exploration is very encouraging. The recent high grade sampling at the O’Dells mine is evidence that disseminated sulphide-related gold has been historically overlooked and warrants further investigation as part of regional gold exploration activities.

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Figure 5. A1 O’Dells Mine Workings. Mapping and Sampling, December 2018.

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– Buckland Goldfield (El006861 Application Area) Regional Mineralised Shear System

The Buckland EL application area (Figure 7) is located near Bright, NE Victoria some 1.5 hr drive from Albury / Wodonga. The application area surrounds Dart’s Retention Licence (RL) Application over the Fairleys Gold Project. Fairleys was discovered by Dart geologists in 2005 after an extensive review of the area’s mining history and recognition of the marked geological differences noted in contemporary reports of the Fairleys mineralisation style. Dart carried out the first modern exploration at the site and discovered an entirely new style of disseminated (non-reef) gold mineralisation with marked similarities to the shallow sulphide gold mineralization at Fosterville in Central Victoria. Further work identified a number of other geologically similar prospects with limited follow-up fieldwork showing significant arsenic and gold rock chip / soil anomalies at Centennial, Great White Star and Kaufmanns (Figure 6).

The Buckland Goldfield was a traditional narrow vein, high grade (free gold) reef style field with a very large alluvial gold footprint. The recognition of disseminated sulphide-related gold within regional shear systems was a significant discovery and is the prime target of ongoing exploration in the region. The EL application is designed to test the scale and continuity of the shear-related gold mineralisation, particularly along the western portion of the Goldfield with the aim of adding to Dart’s existing project pipeline.

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Figure 6. EL006861 Buckland Application. Completed and proposed regional soil traverses showing previously identified shear hosted gold targets and the Fairelys RL Application area.

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Regional Soil Geochemistry Program

Work is already well underway on the Buckland Regional Exploration Program within EL006861 (Under Application) with 292 samples collected from 2 of the initial 4 planned regional pXRF soil lines (BRE_T_0 & BRE_T_1), representing 7.3km of the planned 19.3km of soil lines (Figure 6). Soil samples are taken every 25m across the general strike of the interpreted shear systems (striking northwest), dried and sieved to -2mm. Sieved samples will be analysed by pXRF early in March Quarter 2019. Samples showing significant anomalous As will be sent for Au assay to better define any regional As / Au shear trends. Further exploration is dependent upon results with significant further work pending the grant of the tenement.

Tenement Status Update

Tenement applications continue to pass through the approvals process with the tenements remaining in good standing as at 31 December 2018 (Figure 7).

Table 2. Tenement Status

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Tenement Area (km [2] )
Name Tenement Type Interest Location
Number Unless specified
EL5194 Mt. Alfred Exploration 27 100% NE Victoria
EL5315 Mitta Mitta [4] Exploration 195 100% NE Victoria
EL006277 Empress Exploration 221 100% NE Victoria
EL006300 Eskdale [3] Exploration 245 100% NE Victoria
EL006486 Mt Creek Exploration 190 100% NE Victoria
EL006764 Cravensville EL (Application) ~170 100% NE Victoria
EL006861 Buckland EL (Application) ~414 100% NE Victoria
EL006865 Dart EL (Application) ~500 100% NE Victoria
EL006866 Cudgewa EL (Application) ~500 100% NE Victoria
RL006615 Fairley’s [2] Retention License Application 340 Ha 100% NE Victoria
RL006616 Unicorn [1&2] Retention License Application 23,243 Ha 100% NE Victoria
MIN006619 Mt View [2] Mining License Application 224 Ha 100% NE Victoria
MIN5246 Chinaman’s [4] Mining 5 Ha 100% Central Victoria
MIN5306 Phoenix [4] Mining 5 Ha 100% Central Victoria
MIN5538 Rushworth [4] Mining 34.8 Ha 100% Central Victoria
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All tenements remain in good standing at 31 December 2018.

NOTE 1: Unicorn Project area subject to a 2% NSR Royalty agreement with Osisko Gold Royalties Ltd dated 29 April 2013. NOTE 2: Areas subject to a 1.5% Founders NSR Royalty Agreement. NOTE 3: Areas subject to a 1.0% NSR Royalty Agreement with Minvest Corporation Pty Ltd (See DTM ASX Release 1 June 2016). NOTE 4: Areas are subject to a 0.75% Net Smelter Royalty on gold production, payable to Bruce William McLennan

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Figure 7. Dart Mining Tenement Locations as at 31 December 2018.

Competent Person’s Statement

The information in this report that relates to Exploration Results is based on information reviewed by Chris Bain B App Sc.(Geol), a Competent Person who is a Member of the Australian Institute of Mining and Metallurgy. Mr Bain is an independent consultant. Mr Bain has sufficient experience that is relevant to the style of mineralisation and type of deposits under consideration and to the activity being undertaken to qualify as a competent person as defined in the 2012 Edition of the “Australasian Code for Reporting of Exploration Results, Mineral Resources and Ore Reserves”. Mr Bain consents to the inclusion in the report of the matters based on the information in the form and context in which it appears.

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APPENDIX 1. Assay Database Listing

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SampleID Tenement East_MGA North_MGA RL Be_ME- Cs_ME- K_ME- Nb_ME- P_ME- Rb_ME- Ta_ME- Li_ppm_ACC Li2O_%ACC Au_Au-
MS61_ppm MS61_ppm MS61
% MS61_ppm MS61_ppm MS61_ppm MS61_ppm AA26_ppm
68923 EL5315 523924 5949230 1116 29.9 48.2 3.21 34.2 610 780 11.65 4350 0.937
68924 EL006486 520159 5950872 632 1.75 11.6 3.42 3.9 920 323 1.12 14.8 0.003
68925 EL006486 520069 5951155 692 4.62 4.38 1.13 8.6 1520 127 2.21 27.3 0.006
68926 EL006486 525970 5944603 1140 38.9 138 6.42 44.5 1260 1780 47 97.1 0.021
68927 EL006486 524504 5942813 1165 7.11 30.1 3.11 69.9 2990 730 13.65 270 0.058
68928 EL006486 524340 5942688 1187 4.08 19.65 3.60 40 2820 700 6.56 196 0.042
68929 EL006486 526812 5944854 938 49.6 69.8 2.55 74.4 1810 810 47.3 77.2 0.017
68930 EL5315 523944 5949218 1109 74.6 49.5 2.18 65.1 870 620 33.9 1260 0.271
68932 EL5315 526501 5948360 922 45.8 48.2 2.68 63.9 1860 710 36.6 66.2 0.014
68933 EL5315 524593 5950425 991 43.7 34.7 2.31 72 1460 690 23.7 930 0.200
68937 EL5315 527430 5953361 635 4.62 55.5 1.38 82.6 400 438 120 93.9 0.020
68936 EL5315 527434 5953366 640 16.1 102 2.51 108 600 840 120 57.5 0.012
68938 EL5315 526237 5954441 829 85.5 98 3.30 246 150 1310 140 55.9 0.012
68941 EL5315 524813 5959400 946 91.8 55.6 2.36 153 1120 890 110 124 0.027
68942 EL5315 523746 5953848 577 142 112.5 2.16 88.4 910 1000 95.2 114.5 0.025
68943 EL5315 523716 5953071 700 152.5 61.4 1.75 85 690 630 46.2 5230 1.126
68944 EL5315 523694 5953087 708 104.5 52.3 2.23 86.5 910 700 42.2 960 0.207
68945 EL5315 524226 5959573 930 5.84 28.2 1.47 62.2 790 500 41.5 43.4 0.009
68946 EL5315 524278 5959479 931 13.65 23.5 1.42 91.4 1120 356 59.8 41.3 0.009
68947 EL5315 524235 5959794 891 4.92 45.4 2.67 90 2160 740 55.6 65.9 0.014
68948 EL5315 525563 5959619 852 11.75 46.3 1.79 66.3 730 830 37 48 0.010
68949 EL5315 525570 5959587 851 43.6 105.5 3.14 109 480 1650 64 81.3 0.018
68951 EL5315 526147 5954165 819 112.5 28.3 2.09 54.5 720 540 38.7 2190 0.472
68952 EL5315 526104 5954207 821 133.5 47.4 1.40 157.5 810 740 130 57.6 0.012
68953 EL5315 524206 5949133 1123 35.2 72.8 3.53 65.8 1510 940 51.1 98.3 0.021
68954 EL5315 525722 5947731 1018 5.45 28 1.73 77.2 1790 560 28.1 5.7 0.001
68955 EL006486 523554 5948187 1087 103.5 35.3 2.41 67.1 1200 460 42.3 135.5 0.029
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68956 EL5315 523938 5949229 1104 47.9 43.7 1.66 45.2 690 470 18 4430 0.954
68957 EL5315 520003 5950993 591 2.75 16.1 3.72 18.6 860 385 6.47 40.8 0.009
68960 EL006486 520872 5950756 961 5.54 31.3 2.27 262 2360 600 >100 29.5 0.006
68962 EL5315 521552 5950232 1112 4.06 33.2 1.78 87.9 1930 570 43 48.1 0.010
68964 EL5315 522557 5948682 1114 9.29 57.4 3.72 69 2260 820 40.9 33.3 0.007
68965 EL006486 526674 5945640 970 0.42 0.76 0.03 1.4 30 7 0.73 33.8 0.007
68966 EL006486 526057 5945425 1017 9.25 41 2.73 70.1 1660 860 38 118 0.025
68969 EL006486 525873 5945414 1027 6.98 34 1.89 80.2 1580 490 57.8 16 0.003
68971 EL5315 524294 5947175 991 11.75 42 1.84 114.5 2080 630 53.9 36.4 0.008
68973 EL5315 524009 5947520 1025 10.5 36.2 2.51 73.3 2020 650 41.5 22.7 0.005
68974 EL5315 517804 5949513 657 1.81 11.6 2.18 13 740 249 3.69 28 0.006
68977 EL5315 516842 5951113 1031 2.7 20.5 2.82 13.1 1010 316 4.79 19.4 0.004
68978 EL5315 516285 5950977 1069 1.29 15.95 2.83 9.4 950 288 1.94 25.3 0.005
68979 EL5315 515071 5950900 1093 1.44 11.15 4.47 10.2 1010 401 1.78 9.2 0.002
68982 EL5315 515356 5949484 1081 5.79 186 3.33 45 1920 1150 27.5 117.5 0.025
68984 EL006486 517332 5944239 1046 1.32 4.81 4.27 4.3 480 171 1.1 18.3 0.004
68985 EL006486 518467 5942804 1037 1.45 4.42 3.81 3.3 460 161.5 0.59 16.3 0.004
68986 EL006486 522756 5941617 1146 1.67 33.3 3.05 16.6 690 295 15.4 14 0.003
68987 EL006486 523961 5941348 1214 1.6 8.54 2.39 13.4 960 233 3.87 13.8 0.003
68990 EL006486 524034 5941479 1216 1.19 11.4 3.80 15.1 1030 344 6.33 7.8 0.002
68993 EL006486 527685 5946778 846 4.3 23.2 1.56 34.9 1770 520 15 62.5 0.013
68994 EL006486 527697 5946787 849 11.05 25 1.81 101.5 1960 620 46.8 74.2 0.016
68996 EL006486 527669 5946782 871 3.93 53.4 2.95 39.2 2020 910 25.8 63.1 0.014
69003 EL006486 521232 5943655 1077 1.28 16.45 2.94 14.4 960 343 3.76 14 0.003
69005 EL006486 520777 5942753 1150 2.42 10.9 2.70 20.6 1020 298 6.51 20 0.004
69006 EL5315 523803 5952620 692 21.2 106.5 2.80 97.4 880 1180 100 292 0.063
69007 EL5315 523818 5952615 695 37.8 68.2 3.18 55.9 400 1150 56.8 1060 0.228
69008 EL5315 523855 5952607 705 3.4 47.5 4.38 53.8 1430 1210 19.35 102 0.022
69009 EL5315 523868 5952608 709 3.73 22.4 1.80 71.3 1270 500 22.5 113.5 0.024
69010 EL5315 523830 5952598 703 5.4 28.1 1.77 36.1 350 620 13.6 5940 1.279
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69011 EL006300 514514 5966117 674 0.86 4.08 4.70 2.6 670 192.5 0.71 18.8 0.004
69012 EL006300 514211 5965995 743 0.81 3.01 3.61 2.9 850 172.5 0.63 9.8 0.002
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==> picture [726 x 467] intentionally omitted <==

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==> picture [726 x 467] intentionally omitted <==

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==> picture [726 x 467] intentionally omitted <==

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==> picture [726 x 467] intentionally omitted <==

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==> picture [726 x 467] intentionally omitted <==

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==> picture [726 x 467] intentionally omitted <==

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==> picture [726 x 467] intentionally omitted <==

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69524 EL006277 543787 5917513 1323 0.52 6.25 0.43 1.6 590 31.4 0.14 40.3 0.009
69525 EL006277 543792 5917509 1322 1.08 7.77 3.52 7.4 330 182 0.99 22 0.005 <0.01
69526 EL006277 543806 5917508 1326 0.12 0.32 0.21 0.2 30 9.2 <0.05 2.2 0.000 <0.01
69527 EL006277 543775 5917533 1318 0.51 0.34 0.25 0.2 50 10.1 <0.05 6.7 0.001 <0.01
69528 EL006277 543777 5917542 1318 1.41 7.17 1.62 5 100 110 0.67 20.5 0.004
69529 EL006277 543828 5917532 1333 0.57 0.4 0.18 0.5 60 8.5 0.05 3.5 0.001 <0.01
69530 EL006277 543745 5917531 1308 1.39 0.22 0.10 0.1 130 3.4 <0.05 22.5 0.005 <0.01
69531 EL006277 543852 5917516 1326 0.08 0.2 0.01 0.1 20 0.9 <0.05 1.1 0.000 <0.01
69532 EL006277 543754 5917508 1316 0.31 0.18 0.07 0.2 40 3.6 <0.05 4.4 0.001 <0.01
69533 EL006277 543722 5917400 1316 1.12 0.81 0.56 2 530 37.8 0.2 14.9 0.003 0.11
69534 EL006277 543712 5917414 1311 1.47 1.76 0.94 3.9 300 69.3 0.43 19.9 0.004 0.14
69535 EL006277 543697 5917421 1304 1.56 0.6 0.31 1.4 130 21.3 0.16 24.6 0.005 0.15
69536 EL006277 543692 5917417 1303 1.43 0.2 0.06 0.4 10 3.7 0.05 26.9 0.006 0.04
69537 EL006277 543675 5917423 1299 1.68 0.84 0.36 2.2 400 26.1 0.27 25.4 0.005 0.33
69538 EL006277 543665 5917428 1293 1.11 0.91 0.47 0.9 780 36.7 0.07 14.7 0.003 0.62
69539 EL006277 543658 5917429 1287 1.48 0.65 0.38 1.6 590 25.6 0.19 24.1 0.005 0.41
69540 EL006277 543632 5917447 1279 1.36 1.37 0.77 3.4 500 56.3 0.39 16.3 0.004 0.07
69542 EL006277 547207 5920113 1365 1.12 11.5 2.55 22.2 1770 348 5.34 12.3 0.003
69543 EL006277 547152 5920076 1390 0.81 16.1 3.79 11.1 1370 470 1.69 8.5 0.002
69544 EL006277 547125 5920045 1407 0.98 22.6 3.65 38.3 1240 650 6.38 14.4 0.003
69545 EL006277 547339 5920008 1341 0.94 11.85 4.11 12.9 920 370 2.55 9.4 0.002
69546 EL006277 547329 5920005 1340 0.16 0.99 0.21 1.4 80 24 0.35 4.7 0.001 <0.01
69547 EL006277 547330 5920021 1342 0.88 8.67 2.45 16.5 840 256 3.04 13.9 0.003
69548 EL006277 547249 5920002 1369 1.12 17.4 4.02 30.7 1460 470 8.28 10.8 0.002
69549 EL006277 547825 5919968 1270 1.36 23.1 3.92 33.3 640 580 10.05 11.6 0.002
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69550 EL006277 548344 5920320 1265 1.88 34.8 3.47 56.3 1180 750 11.9 21.1 0.005
69551 EL006277 549065 5921551 1114 3.48 46.3 1.42 53.1 3360 384 38.5 7.1 0.002
69552 EL006277 548492 5920667 1234 3.35 81.2 3.15 81.6 2290 970 37.7 29.8 0.006
69553 EL006277 547000 5920300 1381 1.04 12.95 4.06 15.2 1010 392 3.02 12 0.003
69554 EL006277 547455 5921199 1284 5.38 >500 3.12 84 1920 1990 84.6 1470 0.316
69555 EL006277 547494 5921174 1292 3.59 172 3.57 95.8 3100 1020 53.4 71.4 0.015
69556 EL006277 547508 5921182 1292 2.76 64.8 2.70 100 2040 650 30.4 90 0.019
69557 EL006277 547383 5921462 1211 1.72 14.15 2.67 44.7 1280 343 10.05 13 0.003
69558 EL006277 547389 5921464 1210 2.29 14.95 1.30 84.8 1230 255 18.7 12.1 0.003
69559 EL006277 547437 5921851 1194 1.76 16.55 2.82 222 1160 470 45.7 22.7 0.005
69560 EL006277 547414 5922008 1182 2.07 36.4 3.85 47.2 1170 520 19.75 23.5 0.005
69561 EL006277 547636 5921179 1301 3.92 133 4.01 105.5 2290 1130 35.6 84.5 0.018
69562 EL006277 547634 5921185 1299 3.2 131 3.34 98.9 2100 1070 31.1 89.7 0.019
69563 EL006277 547603 5921197 1302 3.58 105.5 2.96 164 1930 980 96.4 81.2 0.017
69564 EL006300 521909 5956005 475 13.1 38.1 2.31 63.2 1660 570 22.1 51.8 0.011
69565 EL006300 521909 5956020 478 3.41 56.8 4.56 18.6 1930 790 7.89 21.2 0.005
69566 EL006300 521832 5956133 532 3.29 58.2 3.72 28.4 1400 760 9.16 65.5 0.014
69567 EL006300 521803 5956135 524 2.14 18.75 3.94 14.5 1500 610 4.67 24.4 0.005
69568 EL006300 521794 5956146 525 2.79 28.5 2.68 28.3 970 610 6.98 30.7 0.007
69569 EL006300 521779 5956108 498 4.96 87 2.35 28.5 1530 560 9 46.9 0.010
69570 EL5315 523912 5959631 827 87.7 30.7 2.17 64.1 1010 470 45.3 127.5 0.027
69571 EL5315 523893 5959647 826 80.9 21.4 2.06 65.3 1090 381 30.4 71.9 0.015
69572 EL5315 526991 5949736 721 58.1 22.7 2.04 68.1 1690 510 27.3 1430 0.308
69573 EL5315 526946 5949753 695 71.8 34.3 1.95 55.5 820 630 32.6 5490 1.182
69574 EL5315 524842 5948069 935 6.98 35.9 2.66 68.9 2530 730 20.6 23.8 0.005
69575 EL5315 519926 5952137 782 0.67 0.78 0.31 0.9 70 25.3 0.12 26.8 0.006 4.77
69576 EL5315 519926 5952137 782 3.52 6.35 3.14 7.9 2240 240 0.62 36.4 0.008 6.81
69577 EL5315 519926 5952137 782 0.58 0.85 0.21 0.6 100 19.2 0.06 48.3 0.010 1.53
69578 EL5315 519926 5952137 782 0.57 0.65 0.28 0.8 50 19.4 0.06 25.4 0.005 0.53
69579 EL006486 520303 5952187 924 2.65 14.15 3.02 29.1 1350 450 10.2 22.3 0.005
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----- Start of picture text -----

69580 EL006486 520437 5952149 914 27.4 17.6 2.43 56.3 2570 510 18.9 55 0.012
69581 EL006486 520452 5952132 918 10.6 22.2 3.30 43.3 3320 740 13.1 65.3 0.014
69582 EL006486 520425 5951995 909 22.7 25.4 2.32 55.4 2500 510 29.8 78 0.017
69583 EL006486 520085 5951943 880 4.28 13.45 2.71 34.7 1250 391 10.15 17.4 0.004
69584 EL5315 518915 5952104 491 3.52 7.46 3.23 9.3 630 224 2.63 18.2 0.004
69585 EL5315 518887 5952120 487 1.44 9.54 3.37 9.1 650 244 1.61 9.8 0.002
69586 EL5315 518857 5952139 482 2.1 9.17 3.02 7.8 680 246 1.4 11.6 0.002
69587 EL5315 518781 5952177 453 0.9 11.15 4.44 10.6 840 322 1.91 37.3 0.008
69588 EL006486 523414 5947990 1004 4.19 53.1 2.84 65.6 3110 850 19.85 133.5 0.029
69589 EL006486 523414 5947984 1002 5.31 45 2.31 78.8 3470 710 36.1 219 0.047
69590 EL006486 523175 5948168 1040 129 52.2 2.45 84.7 3110 680 >100 325 0.070
69591 EL006486 523156 5948224 1059 41.1 19.25 1.56 90.2 2350 428 26.4 45.7 0.010
69592 EL006486 523085 5948210 1043 21.5 41.8 2.27 94.3 1700 710 49.4 87.2 0.019
69593 EL5315 523960 5949341 1045 28.3 44 2.81 72.7 2420 750 43.5 47.8 0.010
69594 EL5315 523957 5949439 997 78.8 40.4 2.13 65.6 920 660 34.8 444 0.096
69595 EL5315 526542 5956701 987 17.95 49.4 1.39 63.8 1510 470 57.8 19.8 0.004
69596 EL006486 534342 5943389 961 84.3 39.3 2.42 64.1 1940 710 35.7 680 0.146
69597 EL006486 534346 5943373 967 98.2 46.4 1.90 150 1570 690 >100 77.7 0.017
69598 EL006486 534364 5943377 956 342 112 1.21 161.5 1700 860 >100 96.4 0.021
69599 EL5315 522095 5950317 981 10.5 34 3.60 59.8 2750 750 17.5 93.8 0.020
69600 EL5315 522051 5950367 967 31.4 39.3 3.10 72.1 2750 780 19.75 154 0.033
69601 EL5315 521963 5950424 992 155.5 28.2 2.33 71.5 1200 490 38.6 138.5 0.030
69602 EL5315 521943 5950426 993 49.4 22.3 3.43 29.8 1370 580 7.28 213 0.046
69603 EL006277 546856 5921613 1294 2.79 48.8 3.56 62.3 1130 600 11.7 186 0.040
69604 EL006277 547369 5922579 1172 100.5 356 3.96 50.9 2380 1480 75.4 58.8 0.013
69605 EL006277 547259 5922581 1199 49 349 4.08 46.5 2870 1390 78.1 16 0.003
69606 EL006277 547262 5922510 1218 2.63 20 3.23 17.2 1090 336 6.63 19.1 0.004
69607 EL006277 547182 5922640 1233 3.38 21.6 2.78 35.1 1080 409 22.4 26.1 0.006
69608 EL006277 547313 5922820 1220 6.55 41.3 3.07 32.8 1850 610 15.35 21.4 0.005
69609 EL006277 547661 5923045 1181 3.68 18.95 2.41 48.5 870 420 15.7 11.4 0.002
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69610 EL006277 547607 5922997 1174 4.08 31.1 2.71 63.3 940 580 25.5 31.3 0.007
69611 EL006277 547804 5925043 1146 3.51 25.5 2.85 40.6 1150 540 18.3 11.6 0.002
69612 EL006277 547767 5923061 1156 3.78 23 2.93 54 1130 640 19.3 9.7 0.002
69613 EL006277 546935 5921581 1309 2.09 23.4 3.37 27.7 1360 440 8.47 50.2 0.011
69614 EL006277 546951 5921557 1303 1.82 13.75 1.99 15.9 1310 263 2.83 33.5 0.007
69615 EL006277 546989 5921594 1292 2.24 38.1 4.91 17.6 1620 770 3.8 58.5 0.013
69616 EL006277 547173 5921380 1288 2.95 44.8 2.89 50.9 1110 550 13.8 76.5 0.016
69617 EL006277 547294 5920724 1344 1.38 34.9 1.85 40.1 850 510 11.85 13.2 0.003
69618 EL006277 547248 5920730 1367 1.42 31.7 1.31 37 940 346 7.8 39.9 0.009
69619 EL006277 546434 5919681 1419 0.56 17.05 3.85 13.6 1380 449 2.95 17.2 0.004
69620 EL006277 548191 5919875 1275 1.88 41.1 3.12 33.8 1280 640 6.87 22.3 0.005
69621 EL006277 548193 5919902 1272 2.35 31.6 2.55 36.2 1590 490 9.02 8.6 0.002
69622 EL006277 548142 5919822 1261 0.91 14.6 3.00 29 1140 429 11.25 10 0.002
69623 EL006277 548179 5919807 1276 1.01 11.4 3.41 13.8 1370 439 3.75 9 0.002
69624 EL006277 548014 5919700 1249 1.25 8.27 2.48 16.1 1060 260 5.05 3.1 0.001
69625 EL006277 547978 5919668 1273 0.96 8.13 3.43 14.1 1060 323 3.25 4.7 0.001
69626 EL006277 548439 5920332 1261 1.59 30.2 2.00 34.5 1860 416 17.15 6.7 0.001
69627 EL006277 548437 5920335 1260 2.1 25.8 0.99 54 5780 292 24.4 4.5 0.001
69628 EL006277 548461 5920307 1256 1.55 28.2 2.72 51.4 1360 590 11.9 14.6 0.003
69629 EL006277 548358 5920403 1249 1.75 14.25 1.88 41.9 1540 337 13.8 9.3 0.002
69630 EL006277 548345 5920440 1241 1.8 16.2 1.45 43.1 1400 343 11.4 2.9 0.001
69631 EL006277 548444 5920695 1222 2.39 44.1 3.36 50.2 1950 790 14.8 9.7 0.002
69632 EL006277 546315 5919764 1439 0.92 12.8 2.53 14.9 990 316 2.55 11.4 0.002
69633 EL006277 547625 5919927 1240 1.77 38.1 3.74 19.1 1130 431 4.82 67.5 0.015
69634 EL006277 547704 5919893 1256 0.77 13.95 4.10 13.5 1050 389 3.06 6.4 0.001
69635 EL006277 546704 5922362 1196 2.16 16.75 3.82 14.6 820 397 4.98 11.9 0.003
69636 EL006277 546782 5922263 1204 1.76 10.95 3.00 14.3 990 271 7.59 10.1 0.002
69637 EL006277 546669 5921988 1238 1.48 17.4 4.59 16.4 880 377 4.29 17.3 0.004
69638 EL006277 546667 5921715 1268 0.63 18.35 4.80 11.3 850 396 2.47 17.5 0.004
69639 EL006277 548131 5921655 1214 4.82 201 2.06 50.8 1760 790 26.9 450 0.097
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69640 EL5315 532419 5947911 533 133 49 1.52 105 1070 660 91.9 1740 0.375
69641 EL5315 526974 5949741 698 77.9 25.3 2.19 70.9 1380 590 37.8 1650 0.355
69642 EL5315 526961 5949754 692 55.6 21.5 1.89 63.6 830 490 33.7 650 0.140
69643 EL5315 526927 5949756 674 101 35.5 3.11 71.4 1840 770 30.8 850 0.183
69644 EL5315 524008 5947518 1020 12.5 40.7 2.92 78.5 1700 710 60.4 23.3 0.005
69645 EL5315 524189 5947289 996 13.3 41.8 1.58 104 3220 490 59.9 35.7 0.008
69648 EL5315 529434 5949783 551 223 43.7 1.31 172 >10000 580 100 1710 0.368
69649 EL5315 529525 5949727 551 205 49.6 2.54 145 6020 950 >100 1340 0.289
69650 EL5315 529485 5949746 553 283 74.7 2.53 168 2000 1130 >100 77.2 0.017
69651 EL5315 530061 5949093 537 60.1 20.3 2.34 89.3 420 470 65 12.9 0.003
69652 EL5315 527367 5946791 854 55.5 97.5 1.85 101 1190 1090 >100 23.6 0.005
69653 EL5315 526108 5945426 998 6.72 26.6 2.20 58.5 2190 570 19.65 37.8 0.008
69654 EL5315 524777 5958441 822 4.67 38.9 3.00 60.8 2940 830 31.1 61.1 0.013
69655 EL5315 524823 5958248 853 10.5 38.6 4.66 57.5 2110 820 23.7 45.1 0.010
69656 EL5315 524815 5958247 861 5.73 34.7 3.51 60.5 2520 650 27.7 65.2 0.014
69657 EL5315 524715 5958238 903 38.2 32.3 1.54 83.2 1430 480 65.6 98.5 0.021
69658 EL5315 524610 5958190 945 3.97 37.1 2.67 52 1110 790 28 50.6 0.011
69659 EL5315 524601 5958187 954 4.51 61.7 3.61 72 1540 1200 35.9 44.8 0.010
69660 EL006300 521783 5952837 803 6.83 36.6 3.05 57.6 2320 770 32.5 23.6 0.005
69661 EL006300 521289 5953002 788 5.86 17.3 2.48 65.2 2360 560 22.8 56 0.012
69662 EL006300 521282 5953182 745 3.51 24.5 3.01 52.7 1850 660 20 79 0.017
69663 EL006300 521248 5953421 730 4.06 20.3 2.48 52.9 1360 570 12.15 39.8 0.009
69664 EL006300 521227 5953591 665 5.21 20.2 2.26 40 1780 470 13.65 52 0.011
69665 EL006300 520078 5953418 845 6.98 19.3 2.66 49 1500 550 17.1 24.7 0.005
69668 EL006277 543149 5917514 1117 0.77 4.76 4.84 1.9 640 189.5 0.64 11.6 0.002
69669 EL006277 542966 5917169 1111 0.69 4.56 5.98 3.6 950 192 0.75 6.2 0.001
69670 EL006277 549001 5921044 1137 3 30.4 2.54 85.9 2850 620 36.6 18.3 0.004
69671 EL006277 549478 5921491 1039 3.04 18 2.91 84.5 5100 610 31.7 33.2 0.007
69672 EL006277 549852 5921795 1056 3.11 23.7 2.13 76.4 2400 500 38.9 15.2 0.003
69673 EL006277 549396 5921978 976 3.55 38.3 1.01 96 1630 348 57.7 4.1 0.001
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69674 EL006277 548146 5919074 1410 1.47 29.5 2.77 47.9 1620 640 12.4 7.3 0.002
69675 EL006277 548041 5919091 1444 1.57 15.05 2.67 25 1720 354 10.4 14.7 0.003
69676 EL006277 548221 5918479 1362 1.2 10.4 3.72 17.9 1250 366 7.43 3.1 0.001
69677 EL006277 548142 5918407 1343 1.06 15.7 3.73 13.5 1270 449 3.27 3.8 0.001
69678 EL006277 548328 5918451 1381 1.32 14.1 2.47 35.6 1090 460 7.66 14 0.003
69680 EL006277 548347 5918371 1325 1.23 4.08 2.67 19 1300 272 5.59 5 0.001
69681 EL006277 548369 5918313 1304 1.1 15.45 5.00 21.4 1720 670 4.85 4.7 0.001
69682 EL006277 548354 5918311 1302 0.9 8.8 3.69 13.9 1250 400 3.49 5.7 0.001
69683 EL006277 548385 5918652 1403 1.17 18.65 3.57 14.9 1370 510 5.64 6.4 0.001
69684 EL006277 548301 5918672 1409 1.76 35.4 3.45 41.6 1890 630 13.15 8.2 0.002
69685 EL006277 546820 5919271 1406 1.03 16.05 1.66 26.4 650 251 4.36 24.5 0.005
69686 EL006277 546826 5919308 1424 0.68 10.35 3.98 10 1120 379 2.52 6.2 0.001
69687 EL006277 546782 5919296 1401 0.69 9.99 3.14 9.1 1180 305 1.96 7.5 0.002
69691 EL006277 546576 5922687 1152 3.55 38 3.30 36.9 1090 790 19.1 62.3 0.013
69692 EL006277 547813 5916480 1307 1.29 2.65 0.98 10.8 590 78.5 3.67 5.1 0.001
69693 EL006277 547865 5916104 1285 1.02 3.08 0.79 18.9 590 66.1 6.18 3.9 0.001
69694 EL006277 546977 5916969 1369 1.86 63 3.31 174 850 610 38.8 8.8 0.002
69695 EL006277 547127 5920553 1361 0.81 7.74 4.44 16.3 1500 421 4.2 5.7 0.001
69697 EL006300 514248 5975045 680 1.06 5.58 4.22 5.6 290 238 1.51 17.8 0.004 14.4
69698 EL006300 514242 5975050 677 1.03 5.51 4.16 5.5 290 229 1.34 16.5 0.004 15
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JORC CODE, 2012 EDITION – TABLE 1

SECTION 1 SAMPLING TECHNIQUES AND DATA

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Criteria JORC Code explanation Commentary
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Sampling Nature and quality of sampling (e.g. cut channels, Chip samples are taken
techniques random chips, or specific specialised industry standard continuously perpendicular to
measurement tools appropriate to the minerals under the general strike of
investigation, such as down hole gamma sondes, or pegmatites in outcrop, large
handheld XRF instruments, etc.). These examples samples (4 – 10kg) are taken
should not be taken as limiting the broad meaning of where possible to take a more
sampling. representative sample of the
Include reference to measures taken to ensure sample large crystals in the
representivity and the appropriate calibration of any pegmatites. The chip samples
measurement tools or systems used. are of adequate quality to be
Aspects of the determination of mineralisation that are indicative of the small area
Material to the Public Report. sampled.
In cases where ‘industry standard’ work has been done Grab samples were collected
this would be relatively simple (e.g. ‘reverse circulation from the outcrop over a small
drilling was used to obtain 1 m samples from which 3 area (<1 – 5m in diameter).
kg was pulverised to produce a 30 g charge for fire The grab samples are
assay’). In other cases more explanation may be generally small (ie. <10kg) and
required, such as where there is coarse gold that has represent the local area only,
inherent sampling problems. Unusual commodities or sampling only tests a small
mineralisation types (e.g. submarine nodules) may aerial extent. The samples of
warrant disclosure of detailed information. pegmatite are not considered
as being representative of the
dyke on mass. The grab
samples are of adequate
quality to be representative of
the small area sampled and
approximate the sampled
insitu mineralisation.
Rock samples are dried,
crushed and whole sample
pulverised, riffle split and a
sample aliquot taken for
analysis using ALS ME-MS61
method by a 4 acid digest an
ICP-MS analysis. A short trial
of ALS assay method ME-
ICP89 was undertaken by RSC
Global that failed to include Be
and other key low DL elements.
Dart later re-reported some
elements that are included in
the dataset. All Li assay data is
reported as Li_ppm_ACC and
Li2O (%) using standard lithium
oxide conversion factor (2.153).
Gold sampling via rock chip is
also taken perpendicular to
strike where possible or known
with 2 – 5kg samples collect,
and shipped to the laboratory.
Samples are then dried, whole
sample pulverized and riffle
split. A sample aliquot (25g) is
taken for analysis. Gold has
been analysed by ALS Method
AuAA26 – a fire assay
Criteria JORC Code explanation Commentary Commentary
technique for total digestion.
pXRF soil samples are
collected from the top of the B-
Horizon clay interface and
sieved to -2mm (dried if
necessary). Sieved samples
are then anaylsed for As using
an Olympus Delta portable XRF
unit and results reported out as
a digital text file.
Drilling
techniques
Drill type (e.g. core, reverse circulation, open-hole
hammer, rotary air blast, auger, Bangka, sonic, etc.)
and details (e.g. 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.).
NA
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.

NA
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.

Chip / Grab samples were
logged for qualitative mineral
percentages, mineral species
and habit and each sample is
photographed and its location
recorded.
pXRF soil samples are
located by GPS and notes
taken where cultural
contamination is suspected or
adjacent to historic workings.
Sub-sampling If core, whether cut or sawn and whether quarter, half Individual <10kg chip / grab
techniques and or all core taken. samples were collected from
sample If non-core, whether riffled, tube sampled, rotary split, outcrop, individual chips
preparation etc. and whether sampled wet or dry. making up the sample were
For all sample types, the nature, quality and <40mm and chipped from a
appropriateness of the sample preparation technique. random selection of the
Quality control procedures adopted for all sub-sampling mineralisation to generate a
stages to maximise representivity of samples. representative average sample
Measures taken to ensure that the sampling is of the mineralisation targeted.
representative of the in situ material collected, including The <10kg sample size is
for instance results for field duplicate/second-half considered appropriate to test
sampling. the mineralisation for the
Whether sample sizes are appropriate to the grain size
of the material being sampled.
presence of lithium and
associated elements. The
sample is considered suitable
for the purposes of estimating
the magnitude of lithium within
the mineralisation at a local
scale only and not as a sample
representative of the wider
area of the pegmatite dyke on
average.
The whole sample was
crushed and pulverised prior to
sub-sampling at the laboratory
via riffle splitting.
Criteria JORC Code explanation Commentary
Gold chip sampling generally
collects <5kg of finly chipped
rock sample across outcrop or
underground openings with the
entire sample sent for whole
sample crush and grind. The
sample size and sub-sampling
method is thought suitable for
a sulphide / fine gold
environment.
Sampling was conducted at a
reconnaissance level and only
one duplicate chip / grab
sample has been collected at
the Eagle lithium pegmatite
prospect.
The sample size used for
lithium geochemistry is smaller
than ideal when compared to
the grain size of the pegmatite
crystals and any lithium
mineralisation observed at
outcrop. The pegmatite dyke
shows considerable grain size
variability and possible
zonation of mineralisation. In
particular coarse Petalite (up
to 40 x 200mm) makes
representative sampling
difficult and subject to nugget
effect.
Quality of The nature, quality and appropriateness of the assaying Chip and Grab samples were
assay data and and laboratory procedures used and whether the submitted to ALS Chemex and
laboratory technique is considered partial or total. analysed for a suit of trace
tests For geophysical tools, spectrometers, handheld XRF elements using ALS Methods
instruments, etc., the parameters used in determining ME-MS61 (A four-acid digest is
the analysis including instrument make and model, performed on 0.25g of sample
reading times, calibrations factors applied and their to quantitatively dissolve most
derivation, etc. geological materials). Analysis
Nature of quality control procedures adopted (e.g. was via ICP-MS + ICP-AES
standards, blanks, duplicates, external laboratory and for over limit elements Cs,
checks) and whether acceptable levels of accuracy (i.e. Rb and Ta by ALS method ME-
lack of bias) and precision have been established. MS85 (lithium borate fusion
and ICP-MS) for quantitative
results of all elements,
including those encapsulated in
resistive minerals. These
techniques are appropriate and
considered a total extraction
technique. RSC Global trialed
ALS assay method ME-ICP89
that did not to include Be and
other key low DL elements.
Dart later re-reported some
elements that are included in
the dataset.
Due to the reconnaissance
nature of the sampling, no
QAQC procedures were
adopted other than internal
laboratory CRM.
Sn(where requested)has also

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Criteria JORC Code explanation Commentary
been analysed by XRF using
ALS Method XRF05 due to
potential for partial digestion.
 Gold has been analysed by
ALS Method AuAA26 – a fire
assay technique for total
digestion.
Verification of  The verification of significant intersections by either  No verification process or
sampling and independent or alternative company personnel. independent review of assay
assaying  The use of twinned holes. data has been carried out.
 Documentation of primary data, data entry procedures,  Chip / Grab samples were
data verification, data storage (physical and electronic) geologically logged,
protocols. photographed in the field and
 Discuss any adjustment to assay data. entered into the company
database from hard copy field
sheets for long term electronic
storage.
 Lithium analysis generally
reports Li ppm, Li2O (%) is
derived by using a conversion
factor:
Li2O = Li x 2.153
 Tantalum analysis reports Ta
(ppm) Ta2O5 (ppm) is derived
by using a conversion factor:
Ta2O5 = Ta x 1.2211
 Li_ppm_ACC is reported in
Appendix 1, this is the
accepted analysis method
where there are two methods
for a single sample. Li2O(%)
is the conversion of Li (ppm)
ACC to lithium oxide as
detailed above.
Location of  Accuracy and quality of surveys used to locate drill  The location of the chip / grab
data points holes (collar and down-hole surveys), trenches, mine / soil samples and geological
workings and other locations used in Mineral Resource mapping used a Garmin
estimation. GPSMAP 62S GPS using the
 Specification of the grid system used. MGA94 Grid Datum (Zone 55)
 Quality and adequacy of topographic control. with topographic control taken
from the GPS. Accuracy is
variable but maintained <5m
during the mapping process
with constant visual quality
assessment conducted.
 Mine workings are located
using GPS control and then
tape and compass survey for
underground development.
Data spacing  Data spacing for reporting of Exploration Results.  Chip / Grab samples are not
and  Whether the data spacing and distribution is sufficient presented or considered to be
distribution to establish the degree of geological and grade representative of the
continuity appropriate for the Mineral Resource and Ore pegmatites average grade.
Reserve estimation procedure(s) and classifications Grab samples only represent
applied. the grade at a single point
 Whether sample compositing has been applied. within the pegmatite body.
Sample spacing is designed to
allow an initial assessment of
the mineral sought and is not
suitable for future resource
estimation activities.
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Criteria JORC Code explanation Commentary
Soil sample spacing is variable
and designed to capture
variability in the key pathfinder
element analysed with respect
to the geological model of the
mineralisation under review.
Soil pXRF results are used for
geochemical studies only.
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.
As above, Grab samples do
not capture any aspect of the
potential variation in grade in
relation to the orientation of the
mineralisation and represents
only a single point inside the
mineralisation. Chip samples
are collected perpendicular to
strike where possible to avoid
any sample bias and only
where outcrop or subcrop
exists.
Sample
security
The measures taken to ensure sample security. All samples submitted for
analysis are placed in sealed
plastic bags and enclosed in
strong plastic boxes, delivered
to a commercial transport
company for delivery to the
laboratory. Any evidence of
sample damage or tampering
is immediately reported by the
laboratory to the company and
a decision made as to the
integrity of the sample and the
remaining samples within the
damaged / tampered bag/s.
Audits or The results of any audits or reviews of sampling The mapping and sampling
reviews techniques and data. methodology and results were
documented and supplied to
an independent expert who
acts as the competent person
for this report.

SECTION 2 REPORTING OF EXPLORATION RESULTS

Criteria
JORC Code explanation
Commentary
Criteria
JORC Code explanation
Commentary
Criteria
JORC Code explanation
Commentary
Criteria
JORC Code explanation
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 environmental 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 tenements remain in good standing at 31 December 2018.
NOTE 1: Unicorn Project area subject to a 2% NSR Royalty agreement with Osisko Gold Royalties Ltd dated 29
April 2013.
NOTE 2: Areas subject to a 1.5% Founders NSR Royalty Agreement.
NOTE 3: Areas subject to a 1.0% NSR Royalty Agreement with Minvest Corporation Pty Ltd (See DTM ASX
Release 1 June 2016).
NOTE 4: Areas are subject to a 0.75% Net Smelter Royalty on gold production, payable to Bruce William
McLennan
Tenement
Name
Tenement Type
Area(km2)
Interest
Number
Unless specified
EL5194
Mt. Alfred
Exploration
27
100%
EL5315
Mitta Mitta~~4~~
Exploration
195
100%
EL006277
Empress
Exploration
221
100%
EL006300
Eskdale~~3~~
Exploration
245
100%
EL006486
Mt Creek
Exploration
190
100%
EL006764
Cravensville
EL(Application)
~170
100%
EL006861
Buckland
EL(Application)
~414
100%
EL006865
Dart
EL(Application)
~500
100%
EL006866
Cudgewa
EL(Application)
~500
100%
RL006615
Fairley’s2
Retention License Application
340 Ha
100%
RL006616
Unicorn~~1&2~~
Retention License Application
23,243 Ha
100%
MIN006619
Mt View2
MiningLicense Application
224 Ha
100%
MIN5246
Chinaman’s~~4~~
Mining
5 Ha
100%
MIN5306
Phoenix~~4~~
Mining
5 Ha
100%
MIN5538
Rushworth~~4~~
Mining
34.8 Ha
100%
Tenement

Name
Tenement Type
Number
EL5194
Mt. Alfred
Exploration
27
100%
EL5315
Mitta Mitta~~4~~
Exploration
195
100%
EL006277
Empress
Exploration
221
100%
EL006300
Eskdale~~3~~
Exploration
245
100%
EL006486
Mt Creek
Exploration
190
100%
EL006764
Cravensville
EL(Application)
~170
100%
EL006861
Buckland
EL(Application)
~414
100%
EL006865
Dart
EL(Application)
~500
100%
EL006866
Cudgewa
EL(Application)
~500
100%
RL006615
Fairley’s2
Retention License Application
340 Ha
100%
RL006616
Unicorn~~1&2~~
Retention License Application
23,243 Ha
100%
MIN006619
Mt View2
MiningLicense Application
224 Ha
100%
MIN5246
Chinaman’s~~4~~
Mining
5 Ha
100%
MIN5306
Phoenix~~4~~
Mining
5 Ha
100%
MIN5538 Rushworth~~4~~ Mining 34.8 Ha 100%
Exploration
done by other
parties
Acknowledgment and
appraisal of exploration by
other parties.
No commercial exploration for Li has previously occurred,
geological investigations as part of academic research
has been reported for the pegmatite dykes of the area in:
Eagle, R. M., 2009. Petrology, petrogenesis and mineralisation of
granitic pegmatites of the Mount Wills District, northeastern
Victoria. Unpublished thesis, University of Ballarat.
Eagle, R. M., Birch, W. D & McKnight, S., 2015. Phosphate minerals
in granitic pegmatites from the Mount Wills district, northeastern
Victoria. Royal Society of Victoria. 127:55-68.
Previous exploration in the district has focussed on gold
exploration at Glen Wills and historic Sn production from
pegmatite dykes.
Gold exploration at Sandy Creek Goldfield has focused
on the high grade lode style and later the potential for
disseminated gold in pegmatite / altered granite. D.
Turnbull (1992) reviewed the potential for tribute mining
the O’Dells Mine and carried out limited mapping and
sampling, mapping from a currently inaccessible portion
of the mine from this work is presented in Figure 5. Past
exploration work shows very limited underground
mapping and sampling of the historic workings and very
few insitu samples taken of the alteration style targeted.
Limited altered granite mullock samples from various
mines were sampled with encouraging results. The most
thorough exploration was carried out under EL4163
(Cuffley, 1985 – 1988). A further review of the goldfield
occurred under EL4812 (Goldsearch Ltd – 2004 -2008).
Regional granite contact mapping was carried out over
some of the goldfield and a number of small soil traverses
completed with encouraging results. Goldsearch Ltd
drilled 3 short diamond drill holes at O’Dells workings in
2006, all failed to reach the target as designed for a total
of 148m. Holes DDH1 & 2 were terminated in Lockhart
granite (thought to be non-prospective) and DDH3
terminated at 28m after passing through a cavity – no
samples were taken. Goldsearch identified altered
granite / pegmatite in wste dumps from a number of
historic workings showing high grade gold assay results.
No underground mapping was carried out.

The Buckland Goldfield has been explored in thepast to
access the remaining alluvial potential and limited effort to
review reef style historic mines with surface and
underground mapping and sampling carried out (EL1394,
1985 – 1988). There has not been any previous
assessment of Fairleys style disseminated gold (shear
hosted) within the goldfield . Dart are the first to
recognize this style of mineralisation and initiate
exploration, this started in 2005.
Geology Deposit type, geological
setting and style of
mineralisation.

The lithium mineralisation reported is hosted within
highly evolved, late tectonic peraluminous granite
pegmatites of the complex Lithium, Caesium,
Tantalum (LCT) class. These dykes are thought to
be distal to a source granitic body and are present as
lenticular, discontinuous bodies of variable length
and width (up to many hundreds of metres in length
and tens of metres in width). Lithium mineralisation
within the pegmaties is poorly understood at this
early exploration stage but suspected to be spatially
related to the zonation within the complex
pegmatites. Lithium mineralisation observed to date
appears to be as spodumene and Petalite with
Cassiterite also evident within some of the dykes.

The geological setting of the Sandy Creek field is of
numerous shallow roof pendants of Pinnack
Sandstone sitting above the Lockhart Granite, a
number of shear orientations cut both the granite and
overlying sediments, some shears appear to have
been exploited by the pegmatite dykes and host the
mineralised lodes. The target style sought is
disseminated gold within broad alteration halos of
sheared pegmatites that may offer a larger target for
disseminated gold mineralisation within the
structurally controlled roof pendants above the
Lockhart granite.

The Buckland Goldfield was a traditional narrow vein,
high grade (free gold) reef style field with a very large
alluvial gold footprint. The recognition of
disseminated sulphide related gold within regional
shear systems was a significant discovery and is the
prime target of ongoingexploration in the region.
Drill hole A summary of all information NA
Information material to the understanding
of the exploration results
including a tabulation of the
following information for all
Material drill holes:
o easting and northing of the
drill hole collar
o elevation or RL (Reduced
Level – elevation above
sea level in metres) of the
drill hole collar
o dip and azimuth of the hole
o down hole length and
interception depth
o hole length.
If the exclusion of this
information is justified on the
basis that the information is
not Material and this exclusion
does not detract from the
understanding of the report,

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----- Start of picture text -----

the Competent Person should
clearly explain why this is the
case.
Data  In reporting Exploration  NA
aggregation Results, weighting averaging
methods techniques, maximum and/or
minimum grade truncations
(e.g. 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.
Relationship  These relationships are  NA
between particularly important in the
mineralisation reporting of Exploration
widths and Results.
intercept  If the geometry of the
lengths mineralisation 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
(e.g. ‘down hole length, true
width not known’).
Diagrams  Appropriate maps and  NA
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.
Balanced  Where comprehensive  Lithium exploration highlights have been report in table
reporting reporting of all Exploration format as a summary of 677 rock chip samples. A full
Results is not practicable, assay listing is provided in Appendix 1 to provide
representative reporting of background values for the key LCT dyke geochemistry
both low and high grades results. The large area covered by the regional
and/or widths should be exploration conducted warrants reporting via graduated
practiced to avoid misleading plots to illustrate grade trends and geochemical ratio value
reporting of Exploration distribution – Maps are provided in the body of the report.
Results.
Other  Other exploration data, if  Any other relevant information is discussed in the main
substantive meaningful and material, body of the report.
exploration should be reported including
data (but not limited to): geological
observations; geophysical
survey results; geochemical
survey results; bulk samples –
----- End of picture text -----

size and method of treatment;
metallurgical test results; bulk
density, groundwater,
geotechnical and rock
characteristics; potential
deleterious or contaminating
substances.
Further work The nature and scale of Planned work is discussed in the body of the report and is
planned further work (e.g. dependent on future company direction.
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.

Appendix 5B Mining exploration entity and oil and gas exploration entity quarterly report

+Rule 5.5

Appendix 5B

Mining exploration entity and oil and gas exploration entity quarterly report

Introduced 01/07/96 Origin Appendix 8 Amended 01/07/97, 01/07/98, 30/09/01, 01/06/10, 17/12/10, 01/05/13, 01/09/16

Name of entity

DART MINING NL

==> picture [431 x 4] intentionally omitted <==

ABN Quarter ended (“current quarter”) 84 119 904 880 31 December 2018

Consolidated statement of cash flows Consolidated statement of cash flows Current quarter Year to date
$A’000 (6 months)
$A’000
1. Cash flows from operating activities
144 Receipts from customers - -
1.2 Payments for
(a) exploration & evaluation (446) (593)
(b) development - -
(c) production - -
(d) staff costs (46) (121)
(e) administration and corporate costs (65) (224)
1.3 Dividends received (see note 3) - -
1.4 Interest received - 2
1.5 Interest and other costs of finance paid - (1)
1.6 Income taxes paid - -
1.7 Research and development refunds - -
1.8 Other - -
1.9 Net cash from / (used in) operating (557) (937)
activities
2. Cash flows from investing activities
2.1 Payments to acquire:
(a) property, plant and equipment (89) (94)
(b) tenements (see item 10) - -
(c) investments - (10)
(d) other non-current assets - -
  • See chapter 19 for defined terms 1 September 2016

Page 1

Appendix 5B Mining exploration entity and oil and gas exploration entity quarterly report

Consolidated statement of cash flows Consolidated statement of cash flows Current quarter Year to date
$A’000 (6 months)
$A’000
2.2 Proceeds from the disposal of:
(a) property, plant and equipment - -
(b) tenements (see item 10) - -
(c) investments - -
(d) other non-current assets - -
2.3 Cash flows from loans to other entities - -
2.4 Dividends received (see note 3) - -
2.5 Other (provide details if material) - -
2.6 Net cash from / (used in) investing (89) (104)
activities
3. Cash flows from financing activities
3.1 Proceeds from issues of shares 500 1,623
3.2 Proceeds from issue of convertible notes - -
3.3 Proceeds from exercise of share options - -
3.4 Transaction costs related to issues of - (101)
shares, convertible notes or options
3.5 Proceeds from borrowings - -
3.6 Repayment of borrowings - -
3.7 Transaction costs related to loans and - -
borrowings
3.8 Dividends paid - -
3.9 Other (provide details if material) - -
3.10 Net cash from / (used in) financing 500 1,522
activities
4. Net increase / (decrease) in cash and
cash equivalents for the period
4.1 Cash and cash equivalents at beginning of
period 1,302 675
4.2 Net cash from / (used in) operating
activities (item 1.9 above) (557) (937)
4.3 Net cash from / (used in) investing activities
(item 2.6 above) (89) (104)
4.4 Net cash from / (used in) financing activities
(item 3.10 above) 500 1,522
4.5 Effect of movement in exchange rates on - -
cash held
4.6 Cash and cash equivalents at end of 1,156 1,156
period
  • See chapter 19 for defined terms

1 September 2016

Page 2

Appendix 5B Mining exploration entity and oil and gas exploration entity quarterly report

5. Reconciliation of cash and cash Current quarter Previous quarter
equivalents $A’000 $A’000
at the end of the quarter (as shown in the
consolidated statement of cash flows) to the
related items in the accounts
5.1 Bank balances 406 302
5.2 Call deposits 750 1,000
5.3 Bank overdrafts - -
5.4 Other (provide details) - -
5.5 Cash and cash equivalents at end of 1,156 1,302
quarter (should equal item 4.6 above)
6. Payments to directors of the entity and their associates Current quarter
$A'000
6.1 Aggregate amount of payments to these parties included in item 1.2 66
6.2 Aggregate amount of cash flow from loans to these parties included -
in item 2.3
6.3 Include below any explanation necessary to understand the transactions included in
items 6.1 and 6.2
7. Payments to related entities of the entity and their Current quarter
associates $A'000
7.1 Aggregate amount of payments to these parties included in item 1.2 63
7.2 Aggregate amount of cash flow from loans to these parties included -
in item 2.3
7.3 Include below any explanation necessary to understand the transactions included in
items 7.1 and 7.2

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  • See chapter 19 for defined terms 1 September 2016

Page 3

Appendix 5B Mining exploration entity and oil and gas exploration entity quarterly report

8. Financing facilities available Total facility amount Amount drawn at
Add notes as necessary for an at quarter end quarter end
understanding of the position $A’000 $A’000
8.1 Loan facilities - -
8.2 Credit standby arrangements - -
8.3 Other (please specify) - -
8.4 Include below a description of each facility above, including the lender, interest rate and
whether it is secured or unsecured. If any additional facilities have been entered into or are
proposed to be entered into after quarter end, include details of those facilities as well.

==> picture [431 x 48] intentionally omitted <==

9. Estimated cash outflows for next quarter $A’000
9.1 Exploration and evaluation 330
9.2 Development -
9.3 Production -
9.4 Staff costs 120
9.5 Administration and corporate costs 150
9.6 Other (land assets) 155
9.7 Total estimated cash outflows 755
10. Changes in Tenement Nature of interest Interest at Interest
tenements reference beginning at end of
(items 2.1(b) and and of quarter quarter
2.2(b) above) location
10.1 Interests in mining
tenements and
petroleum tenements
lapsed, relinquished
or reduced
10.2 Interests in mining
tenements and
petroleum tenements
acquired or increased
  • See chapter 19 for defined terms 1 September 2016

Page 4

Appendix 5B Mining exploration entity and oil and gas exploration entity quarterly report

Compliance statement

  • 1 This statement has been prepared in accordance with accounting standards and policies which comply with Listing Rule 19.11A.

  • 2 This statement gives a true and fair view of the matters disclosed.

Sign here: ............................................................ Date: 31 January 2019 Company secretary

Print name: Julie Edwards

Notes

  1. The quarterly report provides a basis for informing the market how the entity’s activities have been financed for the past quarter and the effect on its cash position. An entity that wishes to disclose additional information is encouraged to do so, in a note or notes included in or attached to this report.

  2. If this quarterly report has been prepared in accordance with Australian Accounting Standards, the definitions in, and provisions of, AASB 6: Exploration for and Evaluation of Mineral Resources and AASB 107: Statement of Cash Flows apply to this report. If this quarterly report has been prepared in accordance with other accounting standards agreed by ASX pursuant to Listing Rule 19.11A, the corresponding equivalent standards apply to this report.

  3. Dividends received may be classified either as cash flows from operating activities or cash flows from investing activities, depending on the accounting policy of the entity.

  4. See chapter 19 for defined terms 1 September 2016

Page 5