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PROSPECT RESOURCES LIMITED Regulatory Filings 2017

Aug 2, 2017

65617_rns_2017-08-02_f427dae0-5426-4290-9fe0-79526415cae0.pdf

Regulatory Filings

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PROSPECT ANNOUNCES SIGNIFICANT MINERAL RESOURCE ESTIMATE UPGRADES AT ARCADIA

Arcadia is the largest JORC Code reported lithium deposit in Africa – comprising 755 000t contained lithium oxide (over 1 850 000t contained lithium carbonate equivalent – LCE)

Highlights:

  • 16% increase in total Mineral Resource estimates to:
    • 40.5Mt grading 1.44% Li2O (1% Li2O cut off) and
    • 66.6Mt grading 1.13% Li2O (0.2% Li2O cut off)
  • 38% increase in High Grade Measured and Indicated Resource estimates to:
    • 28.6Mt grading 1.39% Li2O (1% Li2O cut off)

Prospect Resources Ltd (ASX: PSC) (the "Company") is pleased to announce a further increase in the Mineral Resource estimates at its flagship Arcadia Lithium Deposit in Zimbabwe to 66.6Mt at 1.13% Li2O (0.2% Li2O cut off). Of importance is the significant conversion of Inferred Resources into Indicated and Measured categories based on infill drilling completed in the last quarter. This increase in confidence in the mineral resource classification can now allow further optimisation of the pit inventory and Ore Reserves that were declared as part of the PFS study completed by the Company in July.

The Mineral Resource upgrade at Arcadia confirms its status as the largest JORC Code reported resource in Africa and the 5th largest globally with an overall Mineral Resource comprising 755 000t of contained lithium oxide, equating to over 1 850 000t contained lithium carbonate equivalent (LCE) (Figure 2).

In response to the upgrades to the Arcadia Mineral Resource estimates, Mr Hugh Warner (Chairman) had the following to say: "Since completion of the PFS last month, we have been working hard to complete this upgrade to Arcadia's Mineral Resource estimates. I'm happy to say that the infill drilling completed within the PFS pit inventory areas has converted a significant amount of Inferred Resources into Indicated and Measured categories. Our team is now undertaking additional pit optimisation studies, after which we plan to update our Ore Reserves."

Prospect Resources Limited | ACN 124 354 329

Suite 6, 245 Churchill Ave. Subiaco WA 6008 | Phone: +61 8 9217 3300 | Email: [email protected]

Arcadia Mineral Resource Update

Digital Mining Services ("DMS") has reviewed the updated data and produced a revised Mineral Resource estimate as at 31 July 2017. Based on additional infill drilling to the west and within the PFS Conceptual Pit (announced 3 July 2017), and receipt of assays from the Phase 4 drilling campaign, the Arcadia Mineral Resource estimate has been upgraded and now represents a significant increase on the Mineral Resource estimate announced on 14 March by Prospect (Figure 1 and Table 1).

High Grade Zone -1% Li2O Cut-off
Category Tonnes Li2O % Ta2O5ppm Li2OTonnes Ta2O5lbs
Measured 6,200,000 1.48% 132 92,400 1,800,000
Indicated 22,300,000 1.36% 117 303,700 5,800,000
Inferred 12,000,000 1.56% 117 186,600 3,000,000
GRANDTOTAL 40,500,000 1.44% 119 582,700 10,600,000

Table 1: Arcadia Lithium Deposit Mineral Resource estimate summary (>1% Li2O)

Table 2: Arcadia Lithium Deposit Mineral Resource estimate summary

Global Resource -0.2% Li2O Cut-off
Category tonnes Li2O % Ta2O5ppm Li2OTonnes Ta2O5lbs
Measured 10,200,000 1.16% 134 117,700 2,800,000
Indicated 37,800,000 1.07% 118 404,600 9,400,000
Inferred 18,600,000 1.25% 109 232,700 5,000,000
GRANDTOTAL 66,600,000 1.13% 117 755,000 17,200,000

Prospect Resources Limited | ACN 124 354 329

Suite 6, 245 Churchill Ave. Subiaco WA 6008 | Phone: +61 8 9217 3300 | Email: [email protected]

W: prospectresources.com.au Page 2 of 6

Figure 1- 3D View of high grade (>1% Li2O) Mineral Resource block model

Figure 2 – Arcadia – 5th largest hard rock Lithium Deposit Globally (reported according to the JORC Code)

Prospect Resources Limited | ACN 124 354 329

Suite 6, 245 Churchill Ave. Subiaco WA 6008 | Phone: +61 8 9217 3300 | Email: [email protected]

W: prospectresources.com.au Page 3 of 6

As detailed in the PFS completed by the Company in July, additional infill drilling was ongoing to convert the existing Inferred Mineral resources located within the pit inventory into Indicated and Measured Resources respectively (Figure 3). The infill drilling was successful in converting a significant amount of these resources into these categories, resulting in a 38% increase to 28.5 Mt grading 1.39% Li2O (1% cut off).

The additional drilling also provided further refinement of the geological model in the southwestern parts of the project where the Basal and Lower Main Pegmatites had both increased in thickness. This contributed to a 16% increase in Global Mineral Resource estimates to 66.6Mt grading at 1.13% Li2O (0.2% cut off) (Table 2).

Figure 3 - 3D View of Mineral Resource Classification

The overall dimensions of the Arcadia Mineral Resource model now represent 2.6km of southwestnortheast strike, by 900m downdip (southeast -northwest) to a 130m depth (Figure 5).

Prospect Resources Limited | ACN 124 354 329

Suite 6, 245 Churchill Ave. Subiaco WA 6008 | Phone: +61 8 9217 3300 | Email: [email protected]

W: prospectresources.com.au Page 4 of 6

Figure 5 – Plan showing drilling completed at Arcadia & Current Pit Shell

For further information, please contact:

Executive Chairman Executive Director Ph: +61 413 621 652 Ph: +263 772 144 669

Hugh Warner Harry Greaves Prospect Resources Prospect Resources

Competent Person's Statement

The information in this announcement that relates to Exploration Targets and Exploration Results, is based on information compiled by Mr Roger Tyler, a Competent Person who is a member of The Australasian Institute of Mining and Metallurgy and The South African Institute of Mining and Metallurgy. Mr Tyler is the Company's Senior Geologist. Mr Tyler has sufficient experience relevant to the style of mineralisation and type of deposit under consideration and to the activity he is undertaking 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 Tyler consents to the inclusion in the report of the matters based on his information in the form and context in which it appears.

The information in this announcement that relates to Mineral Resources is based on information compiled by or under the supervision of Ms Gayle Hanssen of Digital Mining Services, Harare Zimbabwe. Ms Hanssen is registered as Professional Scientist with the South African Council for Professional Natural Scientific Professions (SACNASP) which is a Recognised Professional Organisation (RPO). Ms Hanssen is employed by DMS and has sufficient experience which is relevant to the styles of mineralisation and types of deposit under consideration and to the activity which she is undertaking to qualify as a Competent Person as defined in the 2012 Edition of the "Australasian Code for Reporting of Mineral Resources. Ms Hanssen consents to the inclusion in the report of the matters based on her information in the form and context in which it appears.

JORC Code, 2012 Edition – Table 1 report template

Section 1 Sampling Techniques and Data

(Criteria in this section apply to all succeeding sections.)

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Orienionftatodaintalaionttorelogicalgeotrutursce Wheheheienionf slinghievbiasd slingftttatroroampacesuneampo•ibledhehichhisisknideingtruturttenttotpossscesanexwown,consrhedeitttypospe.Ifhelaionhipbehedrillingieniondheieniontttwttatttatreseenoranor•fkeinelised sisidedhaindud atruturtotrooymracesconsrevecelingbiashisholdbed ad rdif mial.ttetersampsuassessenepora, Minelised shallowdiping(10° nhw)ihodtruturttttesteracesaresporespegmas•ihinbalddrillinglandinhetta-tstotertttruturwmesaanwaspnesecsescesdlarlydrlled aheheicu(i80)t -totttperpensoasuhohheihoidebleinelogical adTttart pttestouggeegmacan swconsramrana•lesdeiaionhelogis rlaivelyimle.tent gtttser exravargeoyesp,
Salempitysecur Thekeleitatoty.measuresnensuresampsecur• dleslacdinledbadRCtot mt aancoresampwerepeseagsprevenovemenn•ixinginiml piondoiSalesdinMtte.tratemareparawasneon smpwerensporhiclesiedbyiorhnicianheiontectottcompanyveaccompanasenpre-preparalabolabs(Zim)torary
Auditsoriewrevs Thelf adiiewf slinghniqddatststecta.resuonyauorrevs oampues an• fheCichalCroighheSGrisinullydiingTP(MrMTMA),t ottenwroupconaau•lingdlogingicetsampangpracs.

Section 2 Reporting of Exploration Results

(Criteria listed in the preceding section also apply to this section.)

Criteiar JORCCodelantioexpan Cotammenry
Minelradtent aemennlandtenuretatuss /nTyferbelociond ohipincludingtpe,reencenameumr,aanwners•ialissihhird piesh ajintsterttttagreemenormaues warsucsohipidingliesiveileinturtnettttterts,venesparrss,overrroyanaes,,hisical siildeionl pk ad eiroltortesttawrness or naaarnnvnmen,ingttses.Theifheheld aheimf ringlonih atyttentttttsecurouree oeporagwny•knimdimbiningliceinhetstotatotetownpeenoanceoperaarea. ArdiaV,ArdiaH,ArdiaI,ArdiaL,Ardia2V,ArdiaTrdArdiaLcacacacacacaanca•laimheldbyixinvbedExaJVProRe(90%)tmts,twtcs,meseneenspecsourcesanlocl plhimbodzPaCtneaarrua.ff airol olandileissimdimiicalNoEIAtattts.tteenvnmenrues orpeenceropprova•dbyheirolll ofheEnMaAgtettattotgranvnmennagemenency,coveralor's eioniviiestttcompanxpaacyfarfaffecfunfarlland –llowivelydeialRutt cramecommercm.•,
Exloriontpadobyhetneoriestpar Acknledgd aisal of elorionbyheiest atttowmennppraxpaor par• dsfhisicaldrillingdohreholesdrilledin1TwTEXT969too rounorwereneewere•h sfroheloglfbabwhefhehiGeicaSuZimiisicttttttettouppormorveoe,asorwyihelogilable,dhelihologiesbsdisihTt.tttent wtpses areavaanoerveareconshabydrillingProRe'tt steenspecsourceshef alealydrlleddboholeshalsobeTi10iouiNQizetesttsosprevssreveaen•ideifiedinhefield.hedeiled rdsfhis phabelosTButttatt.tnecororogrammeveenhekdoinhelabydinededbyhelogical1970'sRaMGetttetwornens,was recorofSuinheir1989Habullein,heim18Mis rded.ttttetrverarereanesaoecoryw
Gelogoy Deilogical singd slef minelisaionttytttytpospe,geoeanora• hedeiisebef pihodinbalfheTt cttesteta-tstposomprs anumr oegmasmesao•ionihinhelArFoHaGrBeturttttot.cusrmawrareeensnehebelonhelbclasfhelemTiPeiRaEittestottatett pttepegmagsus ore-enegma•deilasdbelonheCifamily.LT pt ctottteposs angegmaheilydelydbuicallyT(ttestotett strpegmaarepoormorazonenoymmeor•llyddhahelhbeica).Tiniiumingtrtztasymmezoneanvenoquacoremaarrinelsdoinalylidduih sb-odinaittatettette,mraaremnpeanspomenewureucryp,bikiidinolepidoliddiiondissinadliisIntate,te.ttetantatet.anmraempresen,feGainels alkalildsd mitz,te.nguemrarequaaparsanuscovrheiikeddip1hehwT045° a0°ttestrttottt.pegmasnanores•
DrillholeInforiontma Af allinforionialhededingfhettertottantsummaryomamaunrso•lorionlincludingbulaionfhefollowinginforionttstatttexparesuaomaforllMaialdrillholestera:ingd nhingfhedrillholellarttteasanorocoolevionRL(RedudLel –levionbolevlintteaorceveeaaveseaeo dixSeApIepen•
Criteiar OCCoJRdelantioexpan Cotammenry
)fhedrillholellartertmesocofdipd aimhheholettanozuodoholelenh adiniondehtterttwngnceppoholelenh.tgoffforfIhelusionhisinionisjiied ohebaishahettttttttexcomausns•inforionisMaial adhislusiondodefrotttertttratmanonexcesnocmfCohededinghehePehold clealyttantt,ttentnrsorepormperson sruulainhyhisishettexpwcase
Dataiontaggregahodstme IningExlorionRelighinginghniqttts,ttecreporpasueaveragues,w•imd/oinimdeion(ingfhightrutttmaxumanr mumgrancasegcuo)ff gded cdellyMaial ad sholdbed.t-otertategrasanras areusuansuufWheinincholenhshigh gdetetertstettreaggregaceporporasrgora•ldlonlenhsflowdelhedudtstts,tresuangergograresuprocereuseforfh aionholdbed ad sical elesttatetysucggregasusnomepxampoh aionholdbehoindeil.ttasucggregas suswnTheiondforingf ml eivalenluetttat vassumps useanyreporoequas•holdbelealyd.tatescrsu holeddoholelenhhdBoinioningigterttetteresecswerereporuswngwe•inghodsiminimdeiond.heNoTttrutaveragmemaxumormumgrancas wereuseinelisaionis cinedihinheittratottttesmraonswpegmaffFohisMinelReimimdeingttte,twttest orasource esao esaeremaone usacu•rw,defheisicallydeined0.2i2O,dding%Lttatttergraosmanaseconusamorelisic miningff,fi21%LO.tt oreacuo
Relaionhiptsbetweeninelisaiontmraidhsdtwanintertceplenhstg fThelaionhipicularlyiminheingtttantttseress areparporreporo•ExlorionReltts.pasuIfhefheinelisaionih rhedrillholettrytttttotgeomeomrawespec•leiskniholdbed.tsturteangown,nae sreporufIiisknd olyhedoholelenhsd,hetttttetnoown annwngarereporre•holdbeleahisffec('doholelenh,tatemttottttrusuacr seneegwnge').idh nknttwoown lldrllholesdrlled wh ah ofhedf allheholesAiiiim135°.Tipis -80°,ttteren ao•wzulandinheidicularly.toterttttespnesecpegmaperpenirllyllholesindheiland,hohheiVtuatertetttesttttesasecpegmaaspneugpegma•furdobidinhicknThekablylileltettttruturcaanvaessreareemarscaryrlicaioninheiesf nhehwikingfaulheAtttt –tt strtsttcompsareaseroorassouescubodybuihliledisplact wttttt.oreapparenemen,fauforTheNNEdingMahoikalhichheivelleyhetret zttotnsnganone wmsayrr v•fhelandihaldinblocksfinibeingMaPet ott pt,tetteeascurrenneps resuogmadofauld ad pdfroioniled alyis ofheli-elemDetetatttwnnreservemerosnasmuenfauheisisdebuihahislhadtrytt atttt ztuategeocmunrwayppearsones accen,ficial gheicalleahingf cinfhelemincludinglihiumtatts;tsureocmcoeroeen
Diagrams Apiad sion(ih sles)dbulaionftetttatproprmaps anecscaans ow•inholdbeincludedforigificadiscbeingtertstcepsuanysnnoveryfdTheholdincludebubelimidlaniewtet nttetoreporsesoa pouv, d cionhedinhebodyfheMatttactttps anross secs areaorepor•
Criiater JORCCodelaniotexpan Cotammenry
Balandceingtrepor drillholellarlociond aiaionl viewttetcoas anpproprsecas.Wheheiveingf allExlorionRelistttstrecomprensreporopasuno•icable,iveingfbohlowdhigh gdettatttpracrepresenreporoanras/odidhsholdbeicedid misleadingingftttotanr wsupracavoreporoExlorionReltts.pasu heCohall rlhabeddlyihTtatestt atstetmpanysesuveenreporancompw•baland ringtceepor
Ohetrbsivetantsuloriontexpadata Of mfuheloriondaiingl ad mial,holdbedttta,terter expaeannasreporu•including(bulimid)logical obsionhyicalt nttetoto: geoervas;geopslheical slbulk slesizedts;ts;surveresugeocmurveresuampsanyy–hod oflluricallbulkdeittretmt;tatest rts;ty,meaenmegesunsdwhnical ad rk chaisicsialtertecterttentgrounageonocracpo;,deleiouinaingbstertamttans or consuces. hal salinglsoied ohedjdoiioulyinedCt atttt pt,nnempacarruaacenrmanprevsm•inhe190sCoinu1mleshal saled adhad sled7ttnoussampwerecnnempnnamplonlineheifacimlykgles2mAp3tttteagcus,everyonpe.proxasampwerellecd,d ad afhd mlllabsALS aingiingZimAstettertcoanssaecrusanasays wereyincdinheMRE.tetotorporalogical mingdekedo-dipdlonikefheidGetatrtt aoappwasunrnwnanagsopn•habedheincinMRE.tetottsenorporacurrenSoil slingienionlinehadudlihiumheical aliestattamporsveprocegeocmnoma•haincideih sb-oingjionfheitt cttcrttttesowuuoppproecs opegma
Fuhektrr wor f pfur(forThed slelandheklalturtteststernae ancaoner worega•iondehionlarledrilling).tenttenteptexss orpexss orge-scas-ouDiaglealyhighlighinghef pibleiontttenramscrareasoossexss,•fuincludingheinlogicalinionddrillingttertatturmageopres aneareas,idedhisinforionisiallyiivettt ctprovmanoommercsens helandhadrlllllvedrllholesheTP5iingiinviing8 x120mtterpneseoonesn•wwdgfhelandinihisisdell pionfinferdMaPTtt.toteeopneupgraasmaororeindicad,haibedtotettt ctetoresourcesoanconverreserves.

Section 3 Estimation and Reporting of Mineral Resources

(Criteria listed in section 1, and where relevant in section 2, also apply to this section.)

Criteiar OCCoJRdelantioexpan Cotammenry
Dabataseinitegtyr forMkehadahabedbytatotttatteeasuresnensures noencorrup•,le,ipionkeingbeiiniial clleciontrattwtsttexampnscroryerrors,eenofordiMinelReimiontsttanuserasourceesapurposesDalidaiondud.tatvaproceres use• lldadl sdshehhhekedbyheAisinExcicProjtatots,ttsreepreaeareccec•wGelogisioriminbaAcDat ptottotaorporancessse.luminhedshehabeinsdlculahelelenhsCotttetotettnsspreaeveenercasampg•d chehadedbyhelerttott retanomparemcorsamps.hedshellowlydadizedlogingdeCheksTtst uto,tanspreaearesepaonsrgcos.c•lsododuingdadiorimhetaturtottotareanercape anprporensurerearenofinl olelapdulicaiondalesterttavar sampovers,poorsamp
Siisitetsv CoiisidekebyheCoPedt otetstattentmmenn anysvunrnmperson an•hefhoisittcotts.ome oseuvIf niisihabedekeindicahyhisishetetstatetto sveennrncasevuw• hejhalarlybeisidbyheCo'sChiefGelogisdCTP.ttett aproecs reguenvmpanyon•ddiionichalighfheiialisInMrMCroTMSAGrtt ottetaenwroup,apegmaspec,f sdCPhadekebeiisidviseiiontatetstottetans unn anumr oaon pegmazonarv
Criiater JORCCodelaniotexpan Cotammenry
d minelogd obslingicetanrayanerve samppracs.
Gelogicaloiniontertatpre Cofidein(ly,heinf)helogicalttatytnnceorconversencerogeou•inionfheineldeitertattt.preomraposNafhedad ad of aiondeturttate ousennyassumps ma•Theffecif af aliveinionMinelRet,terttertatenyonapres onrasource•,imionttesaThef gloginidingd cllingMinelRetrouseoeoyguanonrasource•imionttesafacffecf gTheinginuibohded glogtortttyts aconoraaneoy.• helogfhedeiis rlaivelyimle,bef shallowdipingT(10°tttgeoyoposespa numr op•hehodbalhedebyNW)iinTiistotttesteta-t.ttpegmasmesaposcross-cuhwhed nh nhwh shedingfaulheTtt-ntt attt –ttttrets.souesorasnororessououasnlaishohhallediniial elacfheitterttttotrott otttesseugveconmpemenpegma,fbuheislilediscibledisplacheilonhettttt otttestreernemenpegmaagm.imionhabedolyh ofhejhreiEstttettttesasveenneseparaoneacmaore pegma•bodiesheinihediaidheinMaPeInPeLoMattte,ttertettet;gmamegmaanwerPeittegmaihiumis ahighlybilelemd wheinghaffecd adleahedheLtt,ttetmoeenanears anc•dedodeh.imionhabedehe20-30mSetottetttgrawnpparaesasveenmaonhed ad uhed zttwearenn-weareones.
Dimionenss ThediabilifheMinelRed atent atytexnvarorasourceexpresses•(),lenhlonikeheiselanidh,ddehbelowttrtttgagsor orwpanpwfachedlowlimifheMinelRetottstsureupperanerorasource heblock mdel e2.6kmfhe3.kmfSike,by900mT5W-NE sttroncompassesoo•dodip,ddeh ofhelogical mdelishick,hich130mT300mtottwnanapgeoowdehhahebinedimhicheightsttertttot,represenapgreancommaxumpograplusimdehdrilled.tpmaxump
Esimionttad mdellinganohniqtecues Thed aiafheimionhniq()turtenttttecnae anppropress oesaues•lied adkeionincludingf edettretmt otreappnyassumps,aenxme graluedoininginlaiond mimdisterttertanvas,mapoparames anaxumce,f elaionfrodainIf aisd eimiontrattats.tertettoxpompocompuasssaf cfhodhoincludedeipiondtttertwmewas csenascroompsoare anud.terparames useTheilabilif chek eimiouimd/oinetyttesttesavaocsapres esaanr mv•,duiondsdheheheMinelReimketttttetaprocrecoranwrrasourceesasiaf shdatet ota.appropraccounucTheiondedingfbydutts.assumps maregarrecoveryo-proc•Esimionfdeleioulemhedeiablesftttertstaos eenoror non-gravaro•icigifica(lphuforid minedrinaeconomsnnceegsuracagehaisaion).tertcracInhefblock mdelinlaionheblock sizeinlaiontterttttocaseoopore•,heleingdhehloyd.ttaverage sampspacansearcempeAnionbehind mdellingf sleciveiningittts.yassumpsooemun•Anionbolaionbeiablestt cttwyassumps auorreeenvar•fDeipionhohelogicaliniondltttertattotroscrogeopreasseconwwu• heiniial glogical mdelsdinfrofbadTLeattrutetweoowereconscpgsoareseon•fhaddraioniledbyhejdChieGelogisheblockProTttt ats.nwnsecs compecnodel wdbyigiliningiceinfDMSe(DMS)SuNotrutetatwmoasconscrvsrpacsoarelied,heisical olierdfreBatot wttatttpcuasappasrewerenoss.seonquencyuff ofdisibuionlyishobo0.2%i2Od.ddiionLIntrtttot otanaswever amcuwas usea,highededefined,ingff ofi2dina0.8%%LO.Ort-oar graresource wasusacuryloyd.hel mdel wd,h sh pKriging(OK)A sicaitterwas empeproasuseearcarameswfollowheSikeddipfheiW-NE sNWttottrtttesseanopegmaN/A•lsodelumhebydudbEsimionimioiumtttantatt aas wereamaonprary-procnn•,,hichisinimlyinelogicallyiadihidlsobidiumhe()Tttetett,wamraassocwanarulahahighbakgdlevl adisidedbeiad wihttertotets averycrounenconsreassocheldsbulkelyforlK-Feiicineisaiontt utotpar,nmeconommraleioulemh aCd,dblelowlevls.DeFeU aterts,t atatos eensucsanreaccepe•iialblockizedadimbabwhIn40m40m5m(ZBett attanswassexxsreannc•hehb –blockdoig).Suing10 x10 x2.5mttneaSisical alyislaionbeCs&b,dbRTaNtatttstrottwnassuggesa sngcorreeenan•
Criiater JORCCodelaniotexpan Cotammenry
heimtttesresourceesaDiscionfbaisforingingdeingingt uttussosusor nosgracuor capp•f vThelidaionhehekingd,heisotttprocessoaccprocesssecomparnu•,f mdeldadrillholedadf riliaiondaiftatota,ttaooanuse oeconcilable.ava dbukivefhelihiumlmll ohelemBet atottttot atts.anweanegaone oaosr een,lhh vlueff.l alyd aNoierigSisicais s0.2ttottot-otattteouaswarranpcunasugges•ff.%i2OlowLt-oercuionlicedhrohhebodyinls adboholeinSe100mtttttertertcs weresugavanrecep•deisullyd ainsheimdblock gdettttegras vacomparegaesaras.
Misturoe Wheheheimd odrybaisih nltttonttetturrnagesareesan asorwaa•isdhehod ofdeinaionfheisturttterttturtent.moe,anmemomoe con imd odrybaisEsttean as•
Cufft-oterparames Thebaisfhedod cff gde()littet-otytersoaprasorquaparamesu•lied.app diisinduial minel.luedriveii2dedCoKeL(LO)tytrmmoansravarsareorgraan•yff ofinelog0.2%i2Odeined sisically.LoLt -tertattmray.wer cuomllurical ad minelogicalkhabeled adis oingMetatest wtegnraorsencompnngo•
Miningfactorsoriontassumps Asiondedingibleininghodsinimttsumps maregarpossmmemum•,iningdimiondinl(if alicable,l)iningtertermenss annaorppexnam,diluionIislwfhefdeiningttt otteraays necessaryasparprocessombleforl eicionidetstuatrattoreasonaprospecevenconomexcconsrial mininghodsbuheiondedingtentttttpomeassumps maregar,ininghodsd pheimingMinelRetterttmmeanarames wnesarasourceslwbeigWhehisishehisholdbet atttmanoaysrorous.recasesyu,dih alanionfhebaisfheiningiontetttttreporwnexpaosomassumpsdema blockhehdfh sdadbabwbehheh5migizeirmiZimigt stottant.useconreannc•wfOpiningislandinhehebodyloiboht mttert ottottencaspneeasn paroreexphein,diadiniLoMaIn? aMaPettertetteswermengmafleshadehhabeded.A sipingio2.79 :1130minetrtttotterpraosnpsenm•Alhoh nhinibads(14inll)isical minimizettttet;tugumerouspegmanaexpracums•fisdedibleicallyinebuke2m(totestotoemeposseconommequaaveragecdhf adshhahlldhefi).Bainnisiicittottttatettyonexcavarnernnecessowwblishinglowdek pileshich mbeicinetatoctoesgraswayeconomprocessoncem,dfloaionlandiirciingfully.heTtatt atytstanpngravcuarerunnsuccesscurrendehefouhkebadsheimicUpPeiMainttetttttte,esawasmaonrsn;pergmaiheiddleiinil adlPeMPeLoMaPeBaLoBatte,tttette,gmagmawergmasanwersaiPettesgma
Mlluricaltaegfactors oriontassumps forThebaisiondiciondinglluricaltttasassumps or pres regarmeg•biliIislwfhefty.tt otamenaaays necessaryasparprocessofordeiningblel eiciontertstuatrattomreasonaprospecevenconomexcideial mllurical mhodsbuheiontenttattttconsr poegeassumps,dinglluricald pdetatretmt pterregarmegaenrocessesanarames maheingMinelRelwbeigtt awnreporrasources maynoaysrorous.fWhehisishehisholdbedih alanionttttettrecasesureporwnexpao,hebaisfhellurical aiondetttatsomegssumps ma leddhlhabeled.heDeiXRDicainvigionTtatrottteanpegrapesasveencomp•flindicaheineloghelihiuminelisaionisinedtstettttresumrayomracoarsegralidfineineddubohfhichbletatettopeangraspomeneowareamena,l rhodsforheduf allyleableionioniatttttentconvenaecoverymeprocoposalihiumhebedffineindingbyfloionTttrate.twtetertatconcenocanseparaagr,liis cined adiniial mlluricallhabedPetatettatest rtsteoarsegranegesuveenreporfavbyFTGelabsdble.(ACD017,018,022,033,ACD031,041,oanareeryourav00608,09,01,0066,068-1 ad03 -081liqid sion45,444555,77).Hetnavyueparalinliinglarlyhefload sduheinks.Antstatettottstotresupereporgeanpomenesffrode3.4%lihiumideduddetratetaverageconcengraooxwasprocemnsediumionihlihiumf%%li7.4tteststttate.meseparawarecoveryoaspe
Criiater JORCCodelaniotexpan Cotammenry
duinginksdedlihiumf ~SpDMS s~5%7%.ttot atomenereporgraarecoveryo,ff sThellecl rdudliinels.tst ntotatateseresreeaecoveryopomeneanpemraurhiskisinuingk cledbyGOholesC031 adTWNARMADtteworconoromponnhadudimilarldionfhisis041tstentsprocesresuananexsoprogrammeffecffforingheinehingDMS pttsassesseor crusonermance.hefollowingih gdeialshabedud;Ttterwramaveenproce•[email protected]%Li2O0.33%[email protected]%Li2Od0.52%[email protected]%LO0.08%Fe2O3tatetrateconcenanofocfrofackisingduinglihiumboheiloiliWttetttesttyornowuson proccarnamp•blishedinKwKwtaesee.
Enironmenvlfactators oriontassumps Asiondedingibled piduttesumps maregarposswasanrocessrese•displ oionIislwfhefttt otosaps.aays necessaryasparprocessodeiningbleforl eiciontertstuatrattomreasonaprospecevenconomexcideheial eirolimfheiningdttenttatstconsrponvnmenpacomaningionWhilehishedeinaionfttttagttertprocessoperaasemoial eirolimicularlyforfieldsjtenttats,tt,ponvnmenpacparagreenproeclwbell advd,hef elyideionft attatustmaynoaysweancesoarconsraoheial eirolimholdbed.Whettenttatsteseponvnmenpacsreporreuhehabeidedhisholdbedihttstttetseaspecvenoenconsresureporwlanionfheirol aiondetttatanexpaoenvnmenssumps ma fiicahabeissdbyheirolAnEIAEnMaAgttettatcersenuevnmennagemenency•fimbabwforbohheloriondheininghailizaion(EMA)ZStttttertoeexpaanmpsesdrllfullydohelandlanlocdfroiingittt steteassuccessneapnepaawaymanwyial whefdehuhabiionTtertertatperennacourses.rearenocens onseman
Bulkdeityns f aforWhehed odeined.Id,hebaishetterttr assumermssumes•ionIfdeined,hehodd,hehedryhettertttt otassumps.mmeusewr wer,frefheheizedtts,tturquencomeasuremennae,sanyivefhelestattrepresennessosampThebulkdeiforbulk mial mhabedbytytertnsausveenmeasure•for(hodshadelyid sittt atetty,mequaaccounopacesgs,porosvvu),isddifferbek ad aliontcturtwtertemoe anenceseenrocnazonesihinhedeittt.poswDiscionforbulkdeiimdinhettyttestuss assumpsnsesaseu•luaionfhedifferials.ttt mterevaprocessoena fforlldleshabed,bohSpiiciiesRCDDinttecgravaancoresampveenmeasure•hed adhed zheiiihTttttestent utstwearenun-weareones.pegmaare compenwidsdheificiiesdidedbedtttonovoanspecgravmeasureareconsreagoo,ffudbulkdeimineiiesttetutesaoremnshehimdehniqhabedbyheheCInArFoRttecttcore,cesuesenusecompany.r•hipdbydhehimdehniqbySGSHaArtertteccs,a pycnomewasuserare,ancesuefroZimlabsThelheDDhadbeisicallybudtsttotattt,resumveprovemoresrosanlyinheheishaheSGfroDDtttsonareaswrerenocoverage,vemeasuremenmhebed.RCtenuse
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BHID EastingsARC50 NorthingsARC50 Elevation Azimuth Dip Depth
ACD001 331,375.37 8,034,084.52 1,406.87 145 -80 67.10
ACD002 331,344.43 8,034,059.89 1,408.65 148 -79 104.70
ACD003 331,331.21 8,034,127.59 1,404.69 144 -80 86.70
ACD004 331,336.18 8,034,179.68 1,399.66 135 -80 80.70
ACD005 331,404.84 8,034,110.33 1,401.06 135 -80 71.60
ACD006 331,387.09 8,034,224.41 1,386.85 135 -80 77.70
ACD007 331,292.17 8,034,033.50 1,402.76 135 -80 74.32
ACD008 331,243.12 8,034,063.75 1,393.43 135 -79 53.60
ACD009 331,201.73 8,033,968.64 1,405.58 142 -80 62.70
ACD010 331,109.41 8,033,902.90 1,398.59 135 -80 67.35
ACD011 331,220.44 8,033,907.17 1,405.97 135 -80 32.70
ACD012 331,100.31 8,033,851.10 1,397.82 135 -80 71.96
ACD013 331,075.76 8,033,936.72 1,391.31 145 -79 60.70
ACD014 331,291.75 8,034,171.09 1,404.12 135 -80 29.75
ACD014B 331,288.54 8,034,174.19 1,404.36 150 -78 86.70
ACD015 331,134.81 8,033,976.09 1,398.27 158 -79 58.00
ACD016 331,464.00 8,034,145.40 1,378.00 135 -80 86.70
Phase 2 RC
ACR001 331,539.78 8,034,132.39 1,366.49 130 -79 51.00
ACR002 331,503.95 8,034,179.73 1,361.24 151 -81 52.00
ACR003 331,453.30 8,034,256.34 1,373.19 144 -80 76.00
ACR004 331,610.58 8,034,203.15 1,343.05 147 -80 37.00
ACR005 331,589.70 8,034,234.81 1,342.52 144 -80 33.00
ACR006 331,535.33 8,034,315.34 1,343.68 148 -80 56.00
ACR007 331,708.76 8,034,254.73 1,327.65 139 -81 43.00
ACR008 331,671.74 8,034,296.39 1,330.92 148 -80 50.00
ACR009 331,612.23 8,034,370.25 1,327.21 155 -79 55.00
ACR010 331,471.00 8,034,399.00 1,346.00 156 -80 70.00
ACR011 331,685.21 8,034,448.12 1,318.22 156 -80 76.00
ACR012 331,639.00 8,034,510.44 1,316.34 146 -80 81.00
ACR013 331,779.82 8,034,489.41 1,312.28 135 -79 81.00
ACR014 331,781.48 8,034,309.88 1,319.29 150 -78 82.00
ACR015 331,751.79 8,034,346.86 1,321.29 135 -80 68.00
ACR016 331,554.34 8,034,449.37 1,325.61 158 -79 76.00
ACR017 331,500.25 8,034,537.82 1,323.51 135 -80 53.00
ACR018 331,417.16 8,034,475.73 1,332.79 135 -80 82.00
ACR019 331,345.31 8,034,424.79 1,343.41 128 -80 77.00
ACR020 331,398.64 8,034,322.36 1,359.26 127 -77 69.00
ACR021 331,313.46 8,034,289.43 1,381.18 132 -80 85.00
ACR023 330,956.26 8,033,777.46 1,403.47 129 -81 89.00
ACR024 330,881.57 8,033,718.84 1,417.00 150 -77 55.00

APPENDIX – SUMMARY OF DRILL HOLES USED IN MINERAL RESOURCE ESTIMATE

BHID EastingsARC50 NorthingsARC50 Elevation Azimuth Dip Depth
ACR025 330,795.46 8,033,657.62 1,420.24 130 -79 55.00
ACR026 330,705.33 8,034,116.03 1,390.68 135 -77 60.00
ACR027 330,652.92 8,034,195.07 1,391.80 144 -75 74.00
ACR028 330,740.59 8,034,249.39 1,394.10 131 -59 70.00
ACR029 330,815.74 8,034,313.91 1,380.42 130 -79 70.00
ACR030 330,621.81 8,034,059.22 1,408.56 141 -80 53.00
ACR031 330,818.97 8,033,796.31 1,411.68 131 -78 61.00
ACR032 331,671.13 8,034,114.18 1,336.15 135 -79 24.00
Phase 3 (DD)
ACD017 331,337.01 8,034,200.90 1,398.38 127 -80 83.85
ACD018 331,644.87 8,034,412.88 1,322.11 125 -80 74.75
ACD019 331,827.50 8,034,408.51 1,314.25 124 -80 77.70
ACD020 331,573.20 8,034,593.51 1,316.06 133 -79 139.40
ACD021 332,023.14 8,034,485.85 1,303.85 130 -80 65.60
ACD022 331,511.40 8,034,419.82 1,334.54 132 -79.5 74.75
ACD023 331,719.05 8,034,567.88 1,310.43 137 -78 182.70
ACD024 332,000.03 8,034,344.41 1,306.64 137 -80 101.60
ACD025 331,825.32 8,034,627.66 1,305.46 133 -79.5 197.70
ACD026 331,863.90 8,034,275.86 1,315.11 139 -78.6 89.70
ACD027 331,883.06 8,034,692.43 1,303.98 136 -79.2 191.00
ACD028 331,857.12 8,034,551.29 1,307.64 135 -79.4 164.70
ACD029 331,460.90 8,034,511.98 1,327.78 118.6 -79.13 125.70
ACD030 331,638.77 8,034,652.11 1,310.90 132.3 -79.1 205.25
ACD031 331,583.86 8,034,412.21 1,326.37 133.5 -79.5 77.75
ACD032 331,519.88 8,034,676.15 1,315.39 134.9 -79.2 188.60
ACD033 331,363.44 8,034,566.64 1,325.95 133.9 -79.2 137.60
ACD034 331,962.93 8,034,723.46 1,302.06 128.9 -80.2 188.70
ACD035 331,290.29 8,034,512.25 1,331.84 127.8 -79.3 104.60
ACD036 332,042.88 8,034,810.39 1,298.79 131.2 -81.4 191.60
ACD037 332,114.47 8,034,870.89 1,296.15 125.2 -78.3 164.60
ACD038 331,207.90 8,034,444.88 1,343.14 132.9 -78.1 113.60
ACD039 332,001.12 8,034,931.82 1,303.99 132.7 -78.2 86.40
ACD039B 332,098.53 8,034,733.24 1,298.53 132.7 -78.2 200.60
ACD041 331,441.74 8,034,613.53 1,320.77 126.4 -80.1 141.25
ACD040 332,099.00 8,034,730.00 1,305.00 134.9 -79.9 77.33
ACD042 332,182.00 8,034,948.00 1,305.00 138.2 -79.5 170.70
ACD043 332,170.00 8,035,053.00 1,290.00 149.3 -79.9 176.70
ACD044 332,088.00 8,034,993.00 1,295.00 134 -77.4 203.60
ACD045 331,708.00 8,034,500.00 1,316.00 135.7 -79.6 104.85
ACD046 331,648.00 8,034,581.00 1,316.00 129.6 -80.4 116.85
ACD048 331,845.00 8,034,478.00 1,311.00 127.6 -79.2 113.85
ACD049 331,788.00 8,034,560.00 1,310.00 124.5 -79.6 107.85
BHID EastingsARC50 NorthingsARC50 Elevation Azimuth Dip Depth
ACD050 331,240.00 8,034,228.00 1,388.00 141.1 -79.4 80.60
ACD051 331,597.00 8,034,483.00 1,318.00 130.4 -79.3 89.95
ACD052 331,768.00 8,034,420.00 1,321.00 137.8 -80.1 80.60
ACD053 331,160.00 8,034,172.00 1,382.00 130.8 -79.7 83.60
ACD054 331,297.00 8,034,717.00 1,328.00 146.1 -78.8 68.25
ACD055 331,412.00 8,034,414.00 1,349.00 124.4 -78.9 74.85
ACD056 331,182.00 8,034,314.00 1,361.00 131.8 -79.3 104.70
ACD057 331,068.00 8,034,464.00 1,343.00 136.1 -79.4 95.70
ACD058 331,684.00 8,034,361.00 1,329.00 137 -78.9 75.10
ACD059 331,099.00 8,034,257.00 1,369.00 129.6 -79.6 80.70
ACD060 330,982.00 8,034,412.00 1,347.00 139.5 -79.3 89.70
ACD061 331,018.00 8,034,198.00 1,355.00 131.6 -79.6 131.70
ACD062 330,900.00 8,034,373.00 1,361.00 143.7 -79.2 89.70
ACD063 330,939.00 8,034,137.00 1,358.00 135.5 -80 131.60
ACD064 332,019.00 8,034,669.00 1,305.00 138 -78.4 149.60
ACD065 331,674.00 8,034,789.00 1,312.00 141.5 -77.5 203.70
Phase 3(RC)
ACR034 330,416.00 8,035,708.00 1,393.00 159 -74.8 80.00
ACR035 330,437.00 8,035,660.00 1,393.00 248 -87.4 100.00
ACR036 330,655.00 8,035,698.00 1,401.00 337 -74.5 90.00
ACR037 330,473.00 8,035,611.00 1,392.00 343 -67.8 82.00
ACR038 330,521.00 8,035,643.00 1,397.00 335 -71.7 72.00
ACR039 330,381.00 8,035,607.00 1,393.00 340 -70 90.00
ACR040 330,580.00 8,035,700.00 1,398.00 340 -70 78.00
ACR041 330,653.00 8,035,736.00 1,398.00 353 -74.7 64.00
ACR042 330,707.00 8,035,776.00 1,394.00 334 -68.7 60.00
ACR043 331,760.18 8,034,172.79 1,322.82 131 -80.8 75.00
ACR044 331,457.41 8,034,025.65 1,376.89 137 -82.2 82.00
ACR045 330,853.00 8,035,804.00 1,393.00 344 -72 65.00
ACR046 331,922.41 8,034,282.84 1,311.24 137 -80.3 83.00
ACR047 331,819.83 8,034,096.44 1,319.15 140 -80.8 81.00
ACR048 331,840.66 8,034,227.19 1,317.12 134 -80.7 77.00
ACR049 331,724.19 8,034,023.21 1,326.88 129 -79.5 79.00
ACR050 331,759.53 8,033,900.35 1,322.79 130 -80.6 75.00
ACR051 330,911.08 8,033,869.20 1,400.10 155 -81.3 80.00
ACR052 331,869.71 8,033,999.45 1,316.20 140 -80.1 67.00
ACR053 331,901.85 8,034,147.66 1,314.46 144 -75 75.00
ACR054 330,831.09 8,033,952.91 1,384.08 145 -79.3 73.00
ACR055 331,982.73 8,034,208.03 1,309.51 142 -80.7 88.00
ACR056 331,950.69 8,034,425.78 1,308.07 131 -81 75.00
ACR057 332,288.00 8,034,881.00 1,302.00 150 -60 57.00
ACR058 332,244.00 8,035,050.00 1,292.00 150 -60 74.00
BHID EastingsARC50 NorthingsARC50 Elevation Azimuth Dip Depth
ACR059 332,650.00 8,034,950.00 1,307.00 180 -60 50.00
ACR060 332,650.00 8,035,000.00 1,300.00 180 -60 58.00
ACR061 332,650.00 8,035,050.00 1,302.00 180 -60 76.00
ACR062 332,650.00 8,035,146.00 1,299.00 180 -60 80.00
ACR063 332,650.00 8,035,247.00 1,296.00 180 -60 125.00
ACR064 332,750.00 8,035,000.00 1,305.00 180 -60 63.00
ACR066 332,850.00 8,035,001.00 1,300.00 180 -60 74.00
ACR067 332,850.00 8,035,050.00 1,302.00 180 -60 84.00
ACR068 332,950.00 8,035,000.00 1,295.00 180 -60 85.00
ACR069 332,950.00 8,035,050.00 1,296.00 180 -60 93.00
ACR070 333,050.00 8,035,000.00 1,295.00 180 -60 92.00
ACR071 333,050.00 8,035,050.00 1,297.00 180 -60 92.00
ACR072 333,150.00 8,035,000.00 1,292.00 180 -60 108.00
ACR073 332,950.00 8,034,900.00 1,296.00 174 -62 70.00
ACR074 332,950.00 8,034,800.00 1,309.00 180 -59 60.00
ACR075 333,150.00 8,034,700.00 1,287.00 178 -59 77.00
ACR076 333,238.00 8,034,700.00 1,286.00 169 -63 73.00
ACR077 333,150.00 8,034,800.00 1,283.00 175 -66 75.00
ACR078 333,150.00 8,034,600.00 1,291.00 177 -61 75.00
ACR079 332,550.00 8,035,146.00 1,299.00 180 -63 79.00
ACR080 332,452.00 8,035,150.00 1,294.00 182 -61 80.00
ACR081 332,350.00 8,035,146.00 1,301.00 173 -62 80.00
Phase 3 Tails
ACDT01 331,228.39 8,034,595.14 1,329.10 130.8 -80.7 140.50
ACDT02 331,314.86 8,034,640.81 1,324.39 154.1 -79.9 134.60
ACDT04 331,598.00 8,034,727.00 1,317.00 132.1 -79.8 170.60
ACDT07 331,147.60 8,034,525.55 1,334.51 135 -80 110.60
Phase 3DD
ACD059 331,099.00 8,034,257.00 1,369.00 129.6 -79.6 80.70
ACD060 330,982.00 8,034,412.00 1,347.00 139.5 -79.3 89.70
ACD061 331,018.00 8,034,198.00 1,355.00 131.6 -79.6 131.70
ACD062 330,900.00 8,034,373.00 1,361.00 143.7 -79.2 89.70
ACD063 330,939.00 8,034,137.00 1,358.00 135.5 -80 131.60
ACD064 332,019.00 8,034,669.00 1,305.00 138 -78.4 149.60
ACD065 331,674.00 8,034,789.00 1,312.00 141.5 -77.5 203.70
ACD066 331,858.00 8,034,367.00 1,316.00 128.5 -79.6 67.95
ACD067 331,733.00 8,034,713.00 1,314.00 136.1 -77.6 173.70
ACD068 331,262.00 8,034,547.00 1,333.00 146 -79.3 101.75
ACD069 331,568.00 8,034,524.00 1,329.00 139.4 -79.7 101.85
ACD070 331,391.00 8,034,525.00 1,333.00 145.4 -79.5 101.85
ACD071 331,191.00 8,034,557.00 1,332.00 135 -79.6 113.85
ACD072 331,808.00 8,034,773.00 1,311.00 130.9 -79.7 143.70
BHID EastingsARC50 NorthingsARC50 Elevation Azimuth Dip Depth
ACD073 331,495.00 8,034,535.00 1,325.00 133.1 -79.3 108.12
ACD074 331,358.00 8,034,069.00 1,410.00 132.1 -79.7 41.85
ACD075 331,392.00 8,034,090.00 1,409.00 129.6 79.1 44.85
ACD076 331,322.00 8,034,053.00 1,413.00 128.9 80.5 29.85
ACD077 331,349.00 8,034,102.00 1,403.00 130.1 80.5 41.85
ACD078 331,304.00 8,034,073.00 1,409.00 136.1 79.6 35.75
ACD079 331,293.00 8,034,324.00 1,374.00 131.7 79.3 44.85
ACD080 331,244.00 8,034,398.00 1,349.00 137.8 79.5 44.85
ACD081 331,379.00 8,034,119.00 1,402.00 140.6 79.9 44.85
Phase 4 (RC)
ACR074 332,950.00 8,034,800.00 1,309.00 180 -59 60.00
ACR075 333,150.00 8,034,700.00 1,287.00 178 -59 77.00
ACR076 333,238.00 8,034,700.00 1,286.00 169 -63 73.00
ACR077 333,150.00 8,034,800.00 1,283.00 175 -66 75.00
ACR078 333,150.00 8,034,600.00 1,291.00 177 -61 75.00
ACR079 332,550.00 8,035,146.00 1,299.00 180 -63 79.00
ACR080 332,452.00 8,035,150.00 1,294.00 182 -61 80.00
ACR081 332,350.00 8,035,146.00 1,301.00 173 -62 80.00
ACR082 330,980.00 8,034,699.00 1,333.00 133 -81 50.00
ACR083 330,921.00 8,034,780.00 1,337.00 143 -80 44.00
ACR084 331,134.00 8,034,915.00 1,333.00 130 -81 30.00
ACR085 331,110.00 8,034,758.00 1,326.00 127 -81 50.00
ACR086 331,054.00 8,034,840.00 1,335.00 135 -80 70.00
ACR087 330,998.00 8,034,920.00 1,344.00 143 -84 51.00
ACR088 331,210.00 8,034,810.00 1,331.00 136 -81 40.00
ACR089 330,878.00 8,034,647.00 1,338.00 141 -81 48.00
ACR090 330,937.00 8,034,565.00 1,343.00 130 -80 50.00
ACR091 331,638.00 8,033,946.00 1,332.00 135 -80 50.00
ACR091B 331,634.00 8,033,947.00 1,332.00 114 -82 85.00
ACR092 331,528.00 8,033,891.00 1,340.00 134 -80 75.00
ACR093 331,422.00 8,033,823.00 1,360.00 140 -82 76.00
ACR094 331,370.00 8,033,725.00 1,360.00 150 -79 84.00
ACR095 331,213.00 8,033,634.00 1,372.00 135 -82 72.00
ACR096 331,511.00 8,033,634.00 1,348.00 135 -80 36.00
ACR097 330,469.00 8,033,552.00 1,442.00 138 -79 76.00
ACR098 330,419.00 8,033,447.00 1,469.00 153 -80 73.00
ACR099 330,356.00 8,033,362.00 1,443.00 107 -78 80.00
ACR100 330,581.00 8,033,745.00 1,405.00 135 -80 76.00
ACR101 330,365.00 8,033,739.00 1,398.00 135 -80 72.00
ACR102 331,575.00 8,033,759.00 1,339.00 133 -84 95.00
ACR103 331,670.00 8,033,820.00 1,330.00 141 -82 93.00
ACR123 331,127.00 8,034,386.00 1,355.00 140 -80 90.00
BHID EastingsARC50 NorthingsARC50 Elevation Azimuth Dip Depth
ACR126 331,048.00 8,034,327.00 1,347.00 144 -81 90.00
ACR128 330,955.00 8,034,265.00 1,361.00 137 -80 90.00
ACR134 331,775.00 8,034,809.00 1,455.00 128 -81 130.00
ACR136 330,880.00 8,034,207.00 1,318.00 141 -81 90.00
ACR139 331,030.00 8,033,704.00 1,387.00 147 -83 70.00
ACR140 330,758.00 8,033,883.00 1,407.00 140 -82 80.00
ACR142 330,952.00 8,033,644.00 1,398.00 147 -81 50.00
ACR145 331,109.00 8,033,644.00 1,381.00 130 -81 100.00
ACR146 331,110.00 8,033,772.00 1,379.00 146 -82 85.00
ACR147 331,199.00 8,033,824.00 1,388.00 144 -83 100.00
ACR148 331,291.00 8,033,864.00 1,384.00 128 -80 103.00
ACR149 331,499.00 8,033,794.00 1,347.00 138 -79 79.00
ACR152 331,177.00 8,033,722.00 1,387.00 135 -80 109.00
ACR153 331,269.00 8,033,768.00 1,384.00 140 -82 105.00
ACR154 331,349.00 8,033,852.00 1,370.00 137 -80 105.00
ACR155 331,377.00 8,033,946.00 1,399.00 136.3 -81 102.00
ACR156 331,162.00 8,033,601.00 1,377.00 142 -81 82.00
ACR157 331,033.00 8,033,855.00 1,390.00 137 -81 110.00