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GMC Data Report No. 327
Geologic logs and assays of cores from 1980, 1981, and 1982 drill holes of the Coal Creek tin property of the Talkeetna Mountains D-6 Quadrangle of the Alaska Range. Received March 2006 ,w Total of 314 pages in report Alaska Geologic Materials Center Data Report No. 327 xealy 148' Coal Cr. Cantwell Mt. McKinley ~~X ~ Ruth Luton 4 Mesozoic tlysch samples ~1'p~ samp~ies~ c',c Susitna R. ,~. Talkeetaa e' 0 25 50 75 Mi '~ ~~~--i~~ ~ m 6 ~~ Scale N . Anchorage ' ~~ ~--Seward Hwy. .'til 154' ~ o ~ 148' ~ .. Sterling Hwy. ! gore ~t. -l..ocat-on m,/Q3p of the Coal Creek tin prospect. U,~,/,5urea,.~ o~ Ni,..c~5 GMC DATA REPORT 3 2 ? Page 1/314 2 1~i.Ltia l~ti APPENDIXES ' f 98~) ~~~ ~'~ Appendix A. Drill hole data from the summer 1982 driiIing project at Coal Creek. Hole Number Deuth of Hoie Bearin¢ Div Coordinates ;.........~ ~ •••:::::;:.::az:>..>r:::~::::;`.'ZtB:k: .::::>:.:>">:~ .:`.~: S1SW:: 'E4698>::; Nl'OI6~ +5~ ` ::::: 2 2503 :... . ~ ::. :.: • . ,.. • . , ........ . .....:... .: . SISW SO N10I18,E9892 ; . : . :::.... :. :.:, : .Z01.6> ' ... .:•:>::: ::::» ~ ... :'•:;:_ 570" .;.:: ~::r:.?<:>... ~ 4 196.6 570E 50 N8238.E948S ~ •..i:•: : ,:: 6 1602 ... .. ...... N70W 50 .. N1934,E6710 ' .. t ., ...:.... v . ...... ....:.. ~, . ~:; 2482 .. ~ :'..'::,,::;::;:;: `:,;: ;;;r,; ~ f?. ...::::: + {::.:!.::.::::., p::?;;6; ;...: ~::::.: y~ ~~/~. ... ..~ y~ en..ti ..........:............ ...... CrG . 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ASSAY • OCK TYPES ~ STRUCTURES MINER~QLIZATION ~'~ ~m o ~ n ~°~ ~ ~ ~ 8 ~ s to D ~ , AND ALTERATION ~' ~ r m ~ GMC DATA REPORT 3 2 l Page l9/314 0 „= ~, - ~:~ 26 %:: O ~ ,. ,., ,/~ N ', r ~ O.E. ;v. ~ ~ `7(• O ~ ~ ,~ ~$ ~ ~ ~0 .,.~ ~ f r t 7 _ ~ m ~ >s,, ;, . 1 ... j f Q~ . R~ G v ,51 ~ U rn ~,, __ .. ___ - n ,~,~z , I ~ ,I F~~ I' ~l '~ _ Z ~ ~~ _ , r; - . . . 1:. ;iFf . .. - ,. pi. ~ ~~ C ~ ,~ r =' _. _ ,~ .,~~ ~ _ roa ~t ~ m ~~ ~ .. tr - ~~ n r r^ I ! a ¢ ~ ' 1 ~ 1 om, m .., r °~ L ; ~ .-, - , : ~.~ ~~ SAMPLE. ASSAY - - 'OCK TYPES 8- STRUCTURES MINERALIZATION ~~ ~ a ~~ ~ AND ALTERATION ~ ~ ,; ; _.. r ,1 ~, ~ I .i ~ J~ ^~ ~~ // - I~ I _ - _.: 90 -, - , ~ :- ~u - ~~ Ru - ~ _ ("u~ ' ~, .. , .~ .~.. _ a ~ /-., ~ . ' ~ ~ - - ; ~ rb ~~ L ~ ;~ Z ! :, --- yc a ~( 1 _ ,,..~ .~`. n r r - Page 20/314. GMC DATA REPORT 3 2 l c dv~ ~s ~z e 1 r n n c ....r .. ~ .._ ,~. .... - - - - - . --- f+ rr u H L r c rs rt ((v rr ~ ~ Kcy '~ rn I (~~~ 'Kr~~ ~ ~.._. f r r U~ is ~~,wwljnc f q 3. 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MINtKA!_ILAl1UN AND .ALTERATION. ~m ~~ '~°- ~ ~ ~ ' ~ ~ ,~ ~ ,oo Ga.~-tilr~ ~oe~Ny~~ ~ o: ~ - 1/11/ ~~'Z,. 7 I~ S~t711~ }~RLF~~S ~ jn l {~ ~r$ 1.16 ~.~ .LI~ ~ Iti((((~N'•~ Kf,Y~R~p I'r `` arw,~yiii~lreu..~~klhl~ ww ~u44 ' IDS ~. ~X/~ 7/d~ i s.'' r>`1 trrtii+~c ~~ S ~ it o ~ ,:. ',, Ili 9.b 9L ~ S 1700 Io.o 19$ ~ ~ >'+ , ~ __ ~ ~ ~4 M~NF~L~2A:Y/.c~.-..KE~~ jzo 4/t~h~~{3 , Sai~ ~c QQ I i ~t ~ ; ~ urn a~••~ o~sr.y~K', /" 113 s.~ 88 I~ 7,0 ,s` ~ ~0 190 1 i er d l err lc. ft d .L rr~ c ~ a~ ~t~" lokrtwJtl~r>s~Ls~ I 1 C . 9 L ~~ / / ~~'',, d a ~f - ~ ' ~ , i 2 7 tt 7 ~ s 8 4 OS „~ ~ re, mx t r #r r~C M ~ C~ t ~r~w ; 11 , D 26~ ( . n ~E l~ c~rV 6~:r :o.P~t~,.h.. r~ D ; N .' 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I .~L.l~ 1 Yf-'~5 t~ 5 I I-~UC.I Ut-~t5 AND ALTERATION znj ~ ~ ~ ~ ~ ~ G ~N ITE NoRPh1Y~y ~ .~ _ ,. ~___ i o+'/ ~ ~" KSpAR ~F}t: NOS ,,- , ~ '~ ~ ~ Ise Iz~ ~ ~ G~ t~ c y ~ ~-tEi2E~ ` t Cassw ~'~rto~r.,~ R+z l ;,3 7~ ~ ~, yo ~,r n ' ~ .o 5~~ ~~sT P~G~) , '; _ ~p5 8 _ , ~ 1 ~ ~ ~ ,~ 11~ ' 1 ifL -}ov.ra~.~~.ro-ee+~' (. ; ~ 0 ~::. s ~ 1610 2 A f39 f1 ~~ > ~ ; Z20 z.ns cs / . . ? ~, LA'' I';. IDI 22~ ~ j ~ 6 4 9 ~ ga s F~ . r fl LJ ,. 2D ,~ / s3~ .9 6o 670 ~ - ~ =!% ~ ~ z~ 8 ~ t X4 6 ' r 0 - ~ 4 t o Po ~ S ~ ~ 2,2 ~~ 11 ~ ? .08 3 .. . ~ '. c ' , : ~ 0 l~ 4 "~' - 2 ~ -- - -- -- ~ . ~ ~ 2 0 63 I J 59S , p4 ~ ,~ hr/'~'or--rw Sa'^t 1v ~~t~P G~ _ // .:. ..~ %=~- C y p ,j /9Kf 1~ v-'^` 7fir+.f .. wk sash Af} ~~ w~ (~. t'fow+.. ~ . .. _ s l6 3 I l i ` ~ ,Sp vGn~[fS ~ . ~ S S.D 14 q 3 ~ .OCo 210 S' '~ovra~ ~o~cw ad1~S5 Z1,2-1L~ 1;;; r . ,G% ~~~°w~e.~ L zrne ~ f l ~~ ~ `~ 5 ~ " amass A~,~P,Po,~ -. , ;.o. 14q >. 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Dor,~R.yrvl., k~ 111i~c W }ew~'h. II ~~•e~~~ 4DD2sir'S ~in Ler'G ~ r, _. ---- - - I // / ~~ K!~¢~ ~ Cc„trS s Mn 1 e1' ° 1 Ss+.~t~hr~ 1 ~.rtdral ~ Z . H. ~ _ ' I`' ~ r - , Gtr ., .r~ " a --- - ~ Z$ 0.5 C Page 27/314 ;. :- . w ~ GMC DATA REPORT 3 2 l d'ts-~--au~ ~ `~-~'~`~~ - h X 35 jj~~ ~~,j r ~ u~~~~~ ~/~ ~ ~ ~ ' 1 ~~~ "a ~` V J 7i; y ~i,..c.,~ lJ ~.• F~ ~ ~ ~ C:_ J c~U .~ ~ rc ~. i L ~ V ~ C ~ AND ALTERATION _ , •, ~ ~ ~ ~~ ^ r , m - ~, ~ GMC DATA REPORT 3 2 7 - ~ Page 2s/314 ~.~. . - ~, GQA~-J ITE pv rE'P(-~ RY P~ S w+~!~ ''P~ ~SpF•~~I ~5. F.:~ 'ai~. ~ 14 i -~ (`{ ~~ ~ i ..- -- - p ~ srw nL ~ K.S~aJ h.~-io 4}, ~,,,, he hi4 n ~ ,.,...i w `~ ~ ~ iS~b~~ b1 p~.~ ~f1~'~` S ~ . "'~.'~ , > ~ ( ) ~r'~ _ `i o 0 2 Z gw{~~ ta u . •- ~.+~lo'~YK YR~sbl7 lvws a•-e..l Q ~,' ~ t4 4 5 a s:t vN / ~tto~r~. rt:,. ~ . ~~ , ~ ° ~~p ~S ~ , 1 Z.p ~ ' J _ - 4 Oai0.~ ~ ~'+a T )PKA p~05 AI^[ !it- S~ ~ ~ ~ M 71~iC.''K~GM~ ` • ~ t,~-~11 ~1 ~l ram fi > ~f" r ~V... l ~~ ~~ a~ Ks ''~ ~ c ~i . ~ . I'; _; ~t __., , .: ~ f I 0 0.3 . . " P ~~ MK fi ~ ~~"~`~a. ~'/nc-~ s~.o,a cmlor sl,.sCAp~Y6~rt~ o~}s, t 7~"wig K '''r S1-'~!~ ~'• ~;d ~.~ 1` _ m , 3e ,: . glVl~ _ ~ K W~ ~5~ r J ~{ ~ ~ t~ ~ ~, ~ k ~ ! :._ 3`~ ~ ~ 9D - 0 3 fie, ocEti.:r~ ~, , ~ ~ 6~ ~t Si~ we s S~ % - I i - ~ X90 . _ ~I~GS MNfCq/l~ ,,~yj b~t~ ~(~'§ 0.Jt.wWt~+~N _ -._- llllwsvi~~ ~~ /!',F ~iL~lf ~ ~i ~ ~ ~ ~~ tGGlll . _ { ~~ ` ~ ~ ~ . L bf tR ~ ~ vINN I - - --- --- - - -- _ ~ , IS A , f 0 ~ ~ ..+,_ r..,t a. r C~c~. ~,,,.,s •#' ~ • .. o ~s . KEY ~ /''I~NEer9r.ri°EO F-~r4cN ~ o, Cass. s~ ,, ~~ a-~- ~Igl..>J-~c4~•P, ~+ Ir 6 o , ~ ~ O p~~C~E ~s IIM~' S. '1 ~ S~ -S~If ~ ~ ~ - ~~ L L r.~ W 6A,e~ (x1.r~I~el-R~ cma. r~o~~cd / -- ~ ~ 6 !1.2 v T~ }~l rF p N ~CE ,~ ~ o A~o ~ y i ~ .,~ r n ,~ ~ ~ ~ '~ ~ C~- C~'II oYI~'E Q,1 1~~ _ S~1 Vn~ Y ~ < 3 . ~14Q~ `` ; ~ ~ =9 u ~-~-~~ Par .''T L~~ty cP ~ R rrr~ar~,J ~~i «s n ~ Vic-. 3 S; - ~ ~ ~•e~ ~rui+a c ~ FC~Enirf}~ESuLFcoE ~~ rrn~zroti~ .~ ~ ~~~ - ~,_~~. I,.pbwm~ _ - ~ ~ .. ~ t (T ~ (~cuC til" Flew~C ~ L i to..//4~, 5^'~-.~~~LL.~"Tl,~{,rsf1 ~.~~`y,7~a .- ~ o a - I c C ~ ~'~.t'7~~iS/~.dC ~ttiG~~ly T'~VOfIM~l~tl~ w, I`.~~' a~o of ~~>S SK~~a~ -d15~~~~ Vslvlit srsowd-~ <~-,u;~ro'~-- ~ --- -- ---- - --- -- ---- f n 9 o a vtr e. Po~Q,~, ~t ~ ~" ' - n L ~ ~Ld~:. 'Vti,Ns'. TEA ;f3#•~ ~ `. ~~' _ ~ ~ ~ ~ n C y ~{- f ~ 3 1~ j ~ ~ ~ ~ ~t ~.~5~1\I~COhA ~~ ,~ ~ M.1~• ~ ~ ~ ~ ~ ~ 70 -1L... i; 96 ~, ~ ~ , Go?C. i," 0.o 0 D - - t I / {~-c l~ l o~. 1 Page 28/314 1G0 ~--- DlI -! c ~ IL - _ I v..~~~ ,.~ r-~.~ c:~ .~ , rzvul urtic--u AND ALTERATION ~~' ~ ~ ,I~ ~ '' c, '~ m r m _ r~-k5P~~2 PNENos- ~ Jy,w~ ~"~~~s~ f ~ ~ ~ b = ~~ , 1~ o,~~.a~ ct~~"~~ i- c , , ., 1 - - n ,/~ ~ ~ II ~, ;,r II'S ~ O O S ul ~ t c.o-r~.tQ ;.~ e ~ ~ << ~~- ~ t '~ w~~ ,~ '~ ' 40, ,d~~ .~„ ,Te~~,,,,,, ~~~ ~ ~ w~ ' ~ gi ,~ ~ ~ . o ~ ,~ vK . ~ M r£ S C0. SwI~K+~G /°~~ e~ • - p /~w~t,d 1-'~ ~ I ~ q 1 ~ D ~'~ ~~ '~ ~ Z Nh~ ~wj ~I r i.~ ~riCnl~y w.5i~~::a~µ~ / ~ ~'~~ • I n _ _. 1. b 4 D 1 ~ //~f, J EELS p ~ ~ I?, ~.~ .100 oRt rQrlL(.ITE D~k vK~ ~~ ' occur a ~ ~i.~;A~.~,!`. ~ , ~~;, .F Ie7 ~ p V m 1 `- q: ~ , _. ~ _ ..- . _...-- ~, v d ' 1 ':~A~' ~a v~F, (~2c 8, ~1wL'f~ --~ • 5P 3 'M' ~ a 7,, va„ ~o S p ~~~ wl~(Y`' 1 • +.r., ~Z i5 ~ ~ r~dC • 11 ~(/~ ~~. ` w~~ric ~s~ ~ ~ vti~~~ ~, ~ a" ~..~. ~PcP~,~Nk "' ;.w 3 ~~ ~ ~~,~,. G~i7i~~~~ , Y J -j ., r ~ ~ ry 1~ _ .~ ~ ~ p ~ .~- ,,,~ 60 4 ~ , S - o ~ ~ dG ~ ~1 ~ 139 129 m D ~ ______ ~ S - . ~ 1 ~ + p. g ~, ~~~,, 6-, l~z "bi ~ sb °~~ ~ ~ p -~S `t ~. ~ ~ o2Pt}yJ2Y C Kea rrE _ - ~ 6 - --- - (~+,, - kf p R~ Oc~~w os i ~s .~BoV~ ~~~T ~ ~.. ~,, ~ ~ oZ t~ -STk'o/~~ C-~- / ~-TE~- ' ~ n /1 1 `14 j ~ ~ r ~ ~ ~ .E,~(,~uF.,z"~ acY~ s.c1i -~-1~,,,~- • is Wt,+~ ~Or,~c al~^+ ~ ~, ~ ~ 43 Z.o ~ u~1 1 S ~n orn ~S ~aA..o ~t'~ . 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W rw~sh 'a n Ve i ~ ~ tJ~f l ~~1.~\(or!'F¢ +~il ~ ~ ~'~f.'~"Dkr,~. ~...~5 Q~'z ~~' _ ~0 y D ~ '°-~o 'Die ~',{~~C~. cl ~e~, ~5~+, o; P ~~-sc~4,,~wt i SP wv~i ~n \fi.''c~¢ar. h - 1 - - _ v bqo ASP, `~" ~ 3' K.,~r.E~~~s+'#Rt~~+'~c ~^3K'~1.i..~ ~ q y i (~ ~ ~ m m ' A REPORT 3 2 l . ~~ . , ~ ~ ~s r~ ~, ~,; ~ ~ ~ ' ,J ~~~ ~ D ~/r ~ ~ ~ m Page 34/314 10 ~ C.~m. -c `r ~` c . - - - - - - -- - _ 4+ I i U N L L L' !T H I I V I V r.. ~ ! Js , ~ b m <.. rn I~' y 'Ef}N I ~t ~~~P~,y~:Y ~ h~f/~jj>'9vz'~n ~lcy (f~~~w-„~ I ~" ~}. (~~'z.~ ~~SDkC~vRprt ~ i a ' C ~ ~~ ` STRo a GCS Ac-r~ /~ , '~ : ' ` ~ ~ ~'~, ~ .~ ~' B o rE~ (/~'s ~. ~p ~, R, "' ` ~' ~- ~ ~R ~ ~~ r~Y'!47 ~ - `J _ w~` ~~~ ~U W . ~~ ~ ~teSD.hr~ Vnttt I " ~~' 7'° I ~ ~1~ ,bl~; i ~, l 1 Sit ~ ~~ ~ : - - Po r.~ a ~ .G. - ~~. ~ r,,. 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Q~>~i ~:5~~\:~Y LASS i:Sr'1.~:~: -. _ _ ~ A e 'PY r s '_., 9,c,~s~, m~~,h. -~. i.? ~ ~~~ 0 127.0- 1L7.7 1ri.. ~ .i ~\; rn b° v ' ~ S % disc sP~+aP:Py.~sP;cwsS;:.~:1; 3:'{Y;'f'f iw SGO.•• 73~_ ---- - - - L D 740 2 ~' ~ 7Qi.2- 7 41,9 6\.,,,: ,~'r~ucc' s~\;cess,:b'~4 vn ® G F.. 41' ~n cam. io.o 13vV 0.8 7nS~ io, 94 - - - -- _--- --. ... 750 Z 75s.6 4.4 q~ !~ -- _ _ _ luo 6;S ~ ~~ ,, '/st 9 - 756. c, G ; ch. r1,\+r clay ou1c ,r~.oc~ ry --- ~ i ~' f t ~ f l",~,.. (' G~~...7ry° ~a to r't~ ~P+.l~ to TALY ~T T9P ~ / p 1 ~kls 1G 1.7 Bc. wi-~+f ~~ aa.li, ~. ~l„ 9 %~ ' _ I ~ fs6 Lo r r --~~u~t t~ 7i. la r,.~s--- . 7i,2. 28 78 7,8• - ------• ~ vo 3~ e/ ~ )70 GMC DATA REPORT 3 Z l : P 63 4 ~o age 1 /31 D n O r' m m v m . ~ _ ~ ~~ SOCK TYPES a STRUCTURES MINERALfZATION ~~ ~ ~~ ANO ALTERATION -.. ~•o ~.~ J -- i ,.~ i d . W ~ ~ L` ~ ~e,8- 17. S _ ci nd,.ae c~ ,qo.~e eon. :~ ~ - c.+%e ;p,0 Ir0 i.0 ~I t r '~' ~~~ qp ~4 5 r ~ ,~ ~Z. ^S!-.~ L•r~n at2-PP:ei Su'`f~.e ~ ~~~. i r)~C°~-P t i ~_, 10 i° dis; ~pii.po: ~,T la ic,.. :•, . ._ rP<Q lJ .. i 7 . . R - ~ ;.n c.fi G 8 ~. r r,_~ a ~, s~ C , ~r /,,1p * ~ C Q 'P 5 Q r Q ~ ~ 2 • 55.E-H1~~~ ID Gh~ S"Q(7Y. ~lr a^<f f~~.t^n Fer;F i voL ~tt ~Sl C ~ ~rf- n ~ J s d~ 3 8 ° ~ Gcre e~4~ ~ r ~ . ` A n Y ` e ' i 0 ?'4.8- ~~. i _'}n S n.. c`e ~,1; . p,r, 5' ~~ ~H't [Fj,y P° ! ~ = ~ . ~',~:~ Car~• U "17,a-7~,Z riw,., p~'~: ;-^e=r^%-aLr ,r,^ ~ 4a' `ro Ccv~ ' j ;~ • ~~.0, lQ.J ~ Q:•nn. l 7<.. Q V r.. ~~ So° kP ,~G~'~'`F ``T; •t.7 $6 ~; ~ ~ ~ " . gt~&-E"5„ ~"/6/omr~. Gil f>I wf ,^f y]~,o~~~y'•"O 1'o toYG Od U ~r ~ r /~i ~J.~ fJ~ ~'~' ... ... ~ ,. f ` ~ ~_ S , ,_ 1~ 1 r { - ~ • Page 164/314 ~.~.c-n ~ _ ,~. ~~,',~ r ~; ~ ..af:~ - ~MC DATA REPORT 3 2 ~ ,' "~ ~ ; 7 4'G .C _ ~C. e.•tY.w Y7':•1, lYl 4J~~ S ~ i./~ p 7 ~•• u. S~ acor3 Q CG . , .. _ ~ A ~ ~ .. ZOCK TYPES & S TR UCTURES MINERAlIZA710N ~ ' ~ a ' oe e ~ ~ c7 ANO A L7ERA71 oN '" " ~ s Ha ,~ T~iSs., cw .e,1C. ? F~ -`~ P, ,~.i. , ~ ~ ~ i;,3~,,r Ic•G. S•o~r. G ' 1; 5 0. v7 ~ ~ "5 m r ~~!.;n_i06:r q"f2-5~4~ a ~ ~.~ S~~° 1, cove. ~ Il p If1,0 Tr~1r•^ p'z.-7 ~cIY-'>rK r~ ~ : ? B ~ I ! ~i.~,,.,r.. 5:."~ a '•~ .~~ ico t r 'i.i• ~ 1r.! i~tl t Ivy ~ 0 ~ C r , ~ ~ ~ f_p'¢ Z. JL..::. N G'. S 1 I L• „ i •. ~1 I ~ 2-r,4 '' Pi x~ 4' R9 '; ` O i ~ ie.o _ ¢ I ~. s a M .~ `•~ r ~~, ,~ a~1 ~ v S ~ ~ I . ~ Fr L l . ti r"r .11 ( ~ D .,. ~ c c , i ~ (, . ~ Q J. ~ ~i .._ .._ ~ ~6 I I ~' ( ."i ~•<' < t. ~ _ A f>. ~'~D, ~ ., IICO rC' _r,. ~=~% i , I-.~ ~. €~. I _ . ~:> C v - c, . ~;,.. rI ~ s n n z i. ~ . t ~ ~~. a ti b' c` ::. 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I / ~,~• ~ tih ~ Z / .. , ~~ pp l.:v ~~ ~ GOlrC. ,~;` ~. iyi ~ ~. t~l,+~ ~ -<«.~.u~~ Q~,t,~~:~:~ c c ,S ~_3 jZn v ~y ~ 5a~~ tea, F q pp ~~~c- 5~3 ~ 3 ~ „~.~ .. ~o.~ IvrM a}z ~~. as ~;7 vr, f~ rs° , c , r eiO,J i, a D ~ -}0 _ ~ ' ~rt~~~u. ^ i~° - ,~~ ,~ 43.0 44., I,„ . .,na v :0''3c° t~ Z .. ~ ~ ..oo-e, -\ (: f.' ~~; l_ ? ._ ti?, vk•. aa '<v 1.r" \o a7vC '"r~, ~+~ 4 C . k . e, U ~-• ~, ~ ~ ' t * Sb . r ~ ~z~ n~ _~' _ ~iY - ~ - i I V. ~ ~~ + /' Sf ,~/~.v.a ~ t, i a ~ ~ t ~ ~ ' E r ~ } 3~~.- eYd-t WGG~=2 ~... rn E~ r - ~~ t f ~ a. ~ ~ ~. _ ~~ r- e ~ t~B,S £,7 sa ~ ~ r r ~~ ` E~i.~"" ~v av~e .s ; C R '~'o.DC ~7 ~,G ?_ j'/o GZiSS ~,fe a. ~c ~v, !: C 6 C ~ n 0 ~ ~R iA. "^., _ p. . - ~.k~ - ~ ~i V A / n -y n qq.} °=~ it _~ ~ ~ ' GMC DATA REPORT 3 2 7 Page 1ss/314 ~p -38 l ~` o " ^ ~ L ~• , ?OCK TYPES ~ STRUCTURES MiNERa~izar~oN ~~ ~ ~~ ~ ~ ~_ n A~ ALTERATION ~ 2 , oit<r.' 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Yr',o_~.~wv.. ~~~s,o8.,r,..~c.c~,a,ir~ua.P.k.~1+! ~ o~ ~, ~ tt• 8~4. ~r7~( I9~ ahS' ~.2 o t • o o 2iS.~ o, lo~l los 1.Z ~ Z X5.1 T D. Z .. e V n C C _ f 1 m D ~ .~ Z ~ ~ . V - v ~ -~ l (7 r, r" n _ m m , a ~ ~ r -~ c - n cn e c'' O 3 U ~ a r~ n ~ n 6MC DATA REPORT 3 2 7 page ls4/s14 m v ~ ~ D -~ COAL ANNUAL REPORT ~g81 GMC ~pATA REPORT 3 Z 7 Page 1$51314 TABLE OF CONTENTS Page VOLUME I COAL REPORT. CONCLUSIONS AND RECOMMENDATIONS . . 1 INTRODUCTION , • 2 PROSPECT AREA • 2 Geology . ' 2 Alteration . 6 Mineralization , . ~ Drill Results . 10 ADDITIONAL PROSPECTS . . 12 COAL EXTENSION.REPORT CONCLUSIONS AND RECOMMENDATIONS 20 INTRODUCTION . 20 LONG CLAIM BLOCK , . 21 Summary . . 21 Introduction • 21 Geology , . 21 Sampling Results . 23 -LONG CREEK , 23 Summary . ', . . 23 Introduction • • 24 Geology , • 24 CANYON CREEK {READY CASH).. , 25 Summary , . ., , . 25 GMC DATA REPORT 3 2 7 Pa e 186 3 4 1 9 i TABLE OF CONTENTS (CON'T) Pac,~e Introduction , 26 Geology . ' 26 Mineralization , _ 26 PARTIN CREEK . 28 Summary . 28 Introduction , . 29 Geology . . 29 Mineralization. . . 30 OHIO CREEK . 31 Summary . . 31 Introduction , . 32 Geology . • 32 Mineralization and Alteration . • 33 TALKEETNA MOUNTAINS , . 36 Summary . ' 36 .Introduction. • 36 Geology • • 37 Mineralization and Alteration • - 37 CANTWELL AREA . . 38 REFERENCES CITED , APPENDICES 19 :Appendix I -Photographs and Photomicrographs of Intrusive Rocks and Associated Alterati n o and Mineralization • Appendix II -Dri 11 Logs - 1981 NX Core Drilling 39 Appendix III -Assay Records -.1981 .Core Drilling 40 • ' 41 GMC DATA REPORT 3 2 7 Page 187/314 ~ ;; TABLE OF CONTENTS (CON'T) Pale FIGURES Figure l -Location Map , • 3 • .Figure 2 -Planes to Poles Projection of Mineralized Veins . . 9 Figure 3A -Magnetometer Survey, L30SW-L45SW . . 14 Figure 3B - Soii Lines, t30SW-L45SW, Zinc Geochemistry , 15 Figure 3C -Soil .Lines, L30SW-L45SW, Tin Geochemistry , 16 Figure 4A -Area Near DDH-13, Tin Soil Geochemis ry , 17 Figure 4B -Area Near DDH-13, Zinc Soil Geochemistry , 18 Figure 5 -Location of Plates and Figures , • In Pocket Figure 6 -Generalized Stratigraphic Column , . 22 Figure 7A -Ohio Creek Geology • . 34 Figure 7B -Ohio Creek Cross Section A-A' 35 TABLES Table 1 -Whole Rock Analyses of 1.980 Dri 11 Core • . 6 Table 2 - Composites of Ore Grade Intercepts :1981 , Core Drilling , . Table 3 - Reserves of Tin.Deposits.Geologically Similar• 11 to the COAL Prospect . ' 11 VOLUME II PLATES .Plate 1 - COAL Detai}ed Geology 1"=200' , In Pocket Plate 2 - „- 1 Prospect Area Geology 1 50 • •. . In Pocket Plate 3A - Cross Section A-A' 1"=50' i In Pocket Plate 3B - Cross Section B-B' 1"=50' . In Pocket Plate 3C. - Cross Section C-C' 1"=50' . • _In Pocket Plate 3D - Cross Section D-D' 1"=50' . . In Pocket GMC DATA REPQRT 3 2 ~ 111 Page 188/314 TABLE OF CONTENTS (CON'T) Plate 4A -COAL Geology and Geochemistr .. y • Page n Pocket VOLUME III Plate 4B -COAL EXTENSION Geology and Geochemistry In Pocket Plate 4C - COAL EXTENSION Geology and Geochemistry In Pocke t Plate 5A - Long Creek Geology and Rock: Chip Geochemistry In Pocket Plate 5B - long Creek Silver Geochemistry. . . In Pocket Plate 5C - Long Creek Tin Geochemistry In Pocket Plate 6 - Canyon Creek.Geologyand Rock Chip Geochemistry .. In Pocket Plate 7A - Partin Creek Geology ' • In Pocket Plate 7B - Partin Creek Geochemistry . • In Pocket Plate 8 - Talkeetna Mountains Reconnaissance . In Pocket Plate 9 - Cantwell Reconnaissance . In Pocket 'GMC DATA REPORT. 3 2 7 Page 189/314 ;v CONCLUSIONS AND ..RECOMMENDATIONS Surface exposure of intrusive rock hosting tin mineralization in the prospect. area. is approximately 1700 feet by 600 feet. Bulk mineable ore grade intercepts ..are encountered within 175 feet of the surface and as deep as 700 feet below the surface. The mineralized zones are open in all directions at this time, with a size potential of greater than 40 million tons. .Although the drill-indicated grade presently 'averages about 0.25 percent tin, actual values derived from subsequent bulk sampling_of this particular type of tin deposit worldwide are known. to average 30 percent to 70 percent higher than drill-indicated grade. Realization of this potential tonnage and grade would make the. COAL prospect one. of the best tin ore bodies. in the world. A core drilling program of 25 to 30 drill holes ( 19,000 feet) on a 200 foot .grid is required to prove or .disprove the existence of such an orebody. Additional drilling ( 3,000 feet) of several other. .untested intrusive targets in the immediate vicinity. should proceed simultaneously, with success enhancing. the total tonnage potential`in the area. GMC DATA. REPORT 3 2 7 Page. 190/314 INTRODUCTION The :COAL .protect is located 125 miles due. north of Anchorage, Alaska, and five miles west of Hurricane rail station on the ..Parks Highway (see Figure 1). The property consists of 289 state mining claims of 40-acres each, encompassing a .total of 11,560 acres. The work in 1981 was concentrated on and around granitic stocks hosting .tin mineralization on the southern half of. the. claim block. For additional background information, the reader is referred to the COAL 1980 Annual Report. PROSPECT AREA Geo- logy Most new geologic data in the prospect area has been derived from the core drilling completed in 1981. DDH-l0, DDH-12, and. DDH-17 have shown that granite porphyry extends continuously under alluvium:.for about 1700 feet north-south and averages 600 feet: in-width (see ..Plate 2). A shallowly buried. intrusion extending as much as 700 feet east of DDH-9 is strongly suggested by 'irregularly intruded. masses of quartz aplite porphyry and near vertical subparallel mineralized veins. Four distinct phases of intrusive rock have been identified thus .far in drill core. A detailed description of each type is given below, and photographs are to-be found in Appendix I. Granite Porphyry (Tgp): Seriate granite porphyry, .with phenocrysts up to 8 mm in maximum dimension. Phenocrysts compose about 75% of rock volume, in the .following proportions: quartz:25, K-feldspar:35, plagioclase:35, muscovite:4, biotite:l. The groundmass is very fine=grained, in the GMC DATA REPORT 3 2 l -2- Page 191/314 COAL PROJECT AREq GMC DATA REPORT. 3 2 1 Page 192/314 FIGURE 1 -3- following proportions: quartz:65, K-feldspar:20 and plagoclase:l5. Sericitic alteration is very common, thus the muscovite content may range.. up to 20% at the expense of the feldspars. Quartz. phenocrysts are euhedral to subhedral and 3 to 5 mm in diameter. K-feldspar is also euhedral to subhedral, and range from 1 to 8 mm in maximum dimension. Plagioclase is subhedral and 1 to 4 mm in diameter.. All intrusive outcrop found. in the prospect ..area isgranite porphyry or a chilled aplitic .border phase of the granite porphyry labeled Tqap (quartz aplito porphyry). Quartz Porphyry (Tqp): medium-grained .quartz.-feldspar phenocrysts in an aphanitic groundmass. Phenocrysts compose 25% of the rock, in the following proportions: quartz:45, K-feldspar:34, plagioclase:l8, muscovite:2, biotite:l. The groundmass is very. fine-grained, in the following. proportions: quartz:30, K-feldspar:40, and plagioclase:30. Quartz phenocrysts are subhedral and 1 to 3 mm in maximum diameter, K-feldspar is euhedral to subhedral and 1 to 3 mm in diameter, with an occasional twinned lath 5 to 6 mm in long dimension; plagioclase is ,subhedral and 1 to 3 mm in diameter. Biotite occurs as random plates about. 1 mm in long dimension, while muscovite is disseminated and very fine-grained. Quartz porphyry has been identified in drill core from DDH-12, DDH-15, and DDH-17. Aplito Porphyry (Tap): the appearance of aplito porphyry...varies. widely, with the variations probably due to deuteri c alteration by a volatile-rich fluid phase that accompanied intrusion. Phenocrysts comprise from 20% to 30% of rock .volume in the following proportions: quartz:50, K=feldspar: 30, and plagioclase:20. The groundmass is fine-grained, composed of quartz: 35, K-feldspar:25, and plagioclase:25 to 30, with accessory biotite: 1-2 and mu covite:2-5. Deuteric alteration has created patches GMC DATA REPORT 3 2 l Page 193/314 -4- of pegmatitic texture, especially near ,upper. contacts,' with very coarse quartz, feldspar, and muscovito from a few centimeters to about 30 cm maximum dimension. as .seen in drill core.. Biotite Granite (Tbg): fine to coarse grained biotite-bearing granite, .with the .following composition: quartz:35, K-feldspar:30, plagioclase: 30, biotite;2, muscovite:3. Texture is granular, with subhedral quartz and feldspars 2 to 4 mm in diameter, and with about 5 percent of the K-feldspars occurring as euhedral laths up to 6 mm in long dimension. Bioti e occurs as subhedral books 1 to 2 mm in maximum dimensions. The biotite granite has been identified in DDH-12, and as fine-grained narrow dikes near the bottom of DDH-ll and DDH-16. Relative age relationships between intrusive phases are. consistent throughout .the core. From oldest to youngest, the order of intrusion is granite porphyry, aplite porphyry, quartz porphyry,-Nand biotite granite. Significant volumes of all phases except quartz porphyry are indicated by intercepts. in .1981 drilling (see Plates. 3A-D). Granite porphyry averages about 400 feet thick beneath the central. past of the main intrusive outcrop in DDH-11, DDH-12, DDH-15, and DDH-16; aplite porphyry is greater than 190 feet thick in DDH-15, and biotite granite is greater than 80 feet thick at the. bottom of DDH-12. Quartz porphyry. may exist in narrow dikes and as remnants 'along the upper surface of intrusion of the biotite granite. Although whole rock analyses of the various phases have not been comple- ted, Table 1 shown whole .rock analyses of granite. porphyry completed on the least altered intervals of DDH-1 in the spring of 1981. The high silica and low Ca0 and Mg0 indicate a very highly differentiated granite,_ geochemicaily most closely resembling tin granites in Czechoslovakia, ~~~ BATA REPORT 3 ~ 7 Page 194/314 -5- Table 1: 4Jhole rock analyses of 1980 drill core. -All samples are granite ..porphyry from DDH-1. All values in percent. Interval 30'-40' 130'.-140' 150'-160' 220'-230 i Si02 74.7. 75.5 74.9 73.9 Al 0 2 3 13.6 13.7 13.8 13.4 Fe203 2.06: 1..95 2.14 3.08 Ti02 .02 .Ol .O1 .02 Mg0 .04 .03 .03 •04 Mn0 .08 .06 .10 .13 Na 0 2 .97 .2.98 2 2.83 .87 K20 4.30 4.54 4.50 4.30 Ca0 .47 .40 .50 .50 P2~5 .06 .07 .06 06 Tasmania, and the Seward Peninsula -eastern Siberiaprovince of Alaska and Russia (Taylor, 1979, p. 90-91). Thin section studies indicate low Ca content (generally less than 10 percent) of plagioc]ases from all phases, suggestingthat all phases are very similar geochemically. ATteration . Alteration is systematically zoned about hairline to one cm. wide near- vertical fractures that served as conduits. for hydrothermal fluids and .mineralization, .progressing outward from silicification, through quartz- . sericite and sericite alteration to fresh intrusi ve. The thickness of each successive zone generally increases. with depth, thus the si1'icified margins of the strongest veins at the surface are less than one. mm, wide., at about 250 feet below the surf a ce si licified margins are one o four cm in width (ODH-11), and at 600 feet below. the surface, silicification is four to seven cm wide (.DDH-12): A progressive replacement of K-feldspar GMC DATA REPORT 3 2 7 Page 195/314 -6- phenocrysts by fine-.grained sericite can occasionally be` observed in core specimens, which are in turn replaced by .quartz. and/or tourmaline and finally by sulfides nearer the mineralized fracture (see Figures S-X, Appendix I). Silicification is characterized by complete replacement of feldspar pheno- crysts and the feldspar component of the groundmass by anhedral quartz 0.01 to 0.05 mm in diameter. Quartz phenocrysts .are still recognizable, but are eroded along the crystal boundaries. Occasional isolated grains of fluorite and topaz are seen in thin section. Quartz-sericito alteration is characterized by complete destruction of feldspar phenocrysts and replacement by quartz and sericite, with recrystallization and replacement of the feldspar component of .the groundmass by quartz and sericite. Sericitic alteration is widespread in the granite porphyry, and consists of partial-replacement of feldspar phenocrysts by fine-grained sericite. Minor. patches of chloritic alteration are seen in DDH-10, and consist of partial replacement of .feldspar phenocrysts and the feldspar component-of the groundmass by dark ..green, magnesium-rich chlorite. This weak alter- an on suggests that DDH-]0 is very -high. in or peripheral to the hydro- thermal system. Mineralization Mineralization consists of fracture fillings. and disseminations of sulfides, cassiterite, andminor. wolframite in a uar q tz gangue with subordinate tourmaline, fluorite, and topaz. (see Figures V-Z, Appendix I). Major sulfide phases .are sphalerite and arsenopyrite, with subordinate 6MC DATA REPORT 3 2 7 Page .196/314:. -~- pyrite,: chalcopyrite, pyrrhotite, and minor stannite. Cassiterite occurs asmicroscopic grains to very coarse. crystals, varying from ,nearly black in color and translucent to flesh-colored and opaque `in hand specimen. .Total sulfide content of the mineralizing ..system i s low, rarely exceeding 5 percent of the total rock volume for any 10 foot interval of core.- Mineralization is directly related to near vertical. fractures one cm or Tess in thickness trending roughly east-west .across the intrusive and outward into metasediments east of DDH-9 (see Plate 2). Each strike and dip shown on the map is an average. of at least five measurements of individual fractures on the outcrop. Figure 2, a poles-to-planes lower hemisphere. projection of .all .outcropping mineralized veins, illustrates this predominant near vertical east-west trend.: The distribution of sulfides and cassiterite is confined almost entirely. to fracture fillings .and disseminations replacing original feldspar phenocrysts within the silicified zone bordering the fractures. Polished anal thin section studies by Billiton Exploration (unpub. rept., 1981),and the HIMCO staff .show cassiterite as ..zoned crystals .greater than 1 mm to less than O,l mm in maximum dimension, often surrounded and partially replaced by sphalerite; in other cases cassiterite is fractured,-with vein quartz and arsenopyrite deposited in the fractures (see Figures Y and Z, Appendix I). On the basis of available evidence, the paragenesis of these minerals seems to be early cassiterite with later arsenopyrite and sphalerite. Quartz was probably being deposited throughout the mineralizing event. Very minorstannite usually occurs 'with sphalerite, either as exsolution blebs or as embayed grains. Ore grade mineralization- has been intersected within 175 feet of thee. surface in DDH-1 and DDH-11 and as .deep as 700 feet below the :surface in GMC DATA REPORT 3 2 l - Fage 197/314 -s- -MINERALIZED VEINS IN SURFACE OUTCROPS POLES TO PLANES LOWER HEMISPHERE PROJECTION Q 4-!I% !2-l9% 20-31% 32-39% 40-44% GMC DATA REPORT. 3 2 7 Page i9s/314...:. `FIGURE-2 -~- DDH-12, with ore grade intercepts .occurring irr all in eo us 9 teases p encountered to date. Thin sectionwork has shown 'that the lowermost and youngest phase,.. the biotite granite, is essential y unaltered a short distance away from mineralized fractures, where as the other three phases ' show widespread sericitic alteration of variable intensity.. This evidence su est gg s the biotite granite is the last phase,. and no additional phases .are to be found immediately beneath the drill intercept of biotite granite in DDH-12. For this reason., our working: hypothesis on the genesis of the mineralization is: 1, biotite-granite melt intruded earlier phases rather passively, with the outer .shell. cooling first, surrounding still molten core; 2. as cooling of the. core progressed, volatiles, sulfide phases, and metals' were concentrated, co]lecting beneath the solidified outer shell; 3, structural .readjustment caused vertical east.-west fracturing, tapping the reservoir of trapped volatiles and 'allowing upward and outward migration of silica-rich magmatic fluids.; 4. deposition of sulfide, silicate, and- oxide phases from these fluids in and around fractures occurred in response to declining temperature and :pressure. Dri11 Resu1is Table 2 lists the ore grade intercepts drilled in 198.1, with weighted average grade. for tin, silver and tungsten. Although resul s are not. yet available, a tantalum credit is also anticipated. Other metal values in the. interce is shown p ar e low averaging 250 ppm for copper, 2300. ppm for zinc, and 0.002 ounces per ton for gold. Ore .grade mineralization encountered in drilling is open in all directions at this time. Drill logs .and-assay records for all drill .holes can be found in Appendix II and III, .respectively. 6MC DATA REPORT 3 2 7 Fage 199/314 -lo- Table 2. Composites of ore grade intercepts, :1981. core drilling Weighted Average Dri11 Hole Interval Foo-~ Sn A - ~ W DDH-11 202,0-317,0 115,0 0,211% 6,4 ppm -.070% 356.0-377.0 21.0 0.410% 11.7 Ppm .010% or 202.0-377.0 175.0 0.201% 7.2 ppm O10% DDH-12 740.0-810.0 70.0 0.188% 2.6 ppm .015% DDH-15 300.0-540.0 240.0 0.294% Z.3 ppm ,..012% DDH-16 540.0-620.0 80.0 0.317% 10,g pp~ 710.0-750.0 40.0 0..208% 4.5 PPm --- DDH-17 260.0-360.0 100.0 0.183% 4.5 PPm ..005% Although the drill-indicated .grade presentlyaverages. about 0.25 percent tin, actual values derived from subsequent bulk sampling of this particular type of tin deposit worldwide are known to average 30 to 70 .percent higher than drill indicated grade. This is presumably due to the brittleness of cassiterite and. its susceptibility to loss duringcoring and sampling of core (DeVere, pers. comm., 1981). Size potential for the prospect, given the intrusive outcrop size of 1700 feet by 600 feet and a vertical range of ..greater than. 500 feet, exceeds 40 million tons. These grades and tonnages compare veryfavorably with tin deposits' world- wide,. Table 3 shows reserves as given by Taylor :.(1979, p, 244-245) for the only three deposits of comparable size and grade known to exist. Table 3: Reserves of Tin Deposits Geologically Similar to the COAL Prospect (after Taylor, 1979), Name of Deposit Approximate.Tonnage X 106 Grade Hub (Erzgebirge, .Czech.) 30-40 0.30% Sn Catari-Salvadora Stock (Bolivia) 100-]000 0,20-0,50? San -Pablo Stock .Oruro (Bolivia). 100-1000 0.20-0.50? GMC DATA REPORT 3.2 7 Page 200/314. -11- ADDITIONAL PROSPECTS Potential. for intrusive hosted tin mineralization similar-to that found in the prospect area exists in four other locations on the .COAL claim group (see Plate 1). These areas are discussed separately below. 1. Outcropping subequigranular granite (Tgr) is centralized within a soil geochemical anomaly of up to 600 ppm tin (see Figures 4A-Q) about 2,000 feet: northeast of the prospect area. Although..DDH-13 'intersected tin- anomalous granite itsentire depth of 196 feet, no indication of-hydro- thermal mineralization was noted in .the core. Trace element geochemistry is underway to help determine therelationship of this intrusive to intrusive phases intersected in drilling in the prospect area. If these results suggest. that a mineralized phase may be present, a drill hole will be required to test this possibility. 2. The "bench. area" lies from 600 to 3,500 feet .west. and south of the prospect area, and is. composed of mixed metasedimentary and .mineralized granito porphyry float. Closely .spaced soil sampling-produced excellent tin and .zinc soil anomalies (see Figures 3A-C), but'subsequent drilling (DDH-18) was lost in alluvium at a depth of 47 feet without. penetrating bedrock. A magnetometer survey failed to show a distinctive "low" indicating an intrusive, but this is inconclusive considering thick over- burden and a fluctuation of only 25 gammas crossing an exposed sediment/ granite contact inthe. prospect .area.. Several hallow drill holes are required to determine the potential of this area. 3. Irregular pods .and dikesofquartz aplite porphyry outcropping in an area of .high relief just north and east of the prospect-area, in addition GMG DATA RERORT 3 2 7 Page 2x/324 -12- to anomalous tin soil geochemistry (29 to 38 ppm), indicate the possible presence of a shallowly buried intrusive. One or two drill holes are required to test for mineralization in this location. i GMC DATA REPORT 3 2 7 Page 202/314 -13- BENCH AREA-GROUND MAGNETIC SURVEY ' 4' \'~ O'~f ~bry Ode! 46p O~+ 0 Ob0 `ba„ Qh@ `bh 0 ~0M 0,,0 •e0~' Qh?i ~~ Cit\ ,y_'• to-4 `11 •~Ss `.,. (~+, F:h ~ ~i 3o sw ~ °~ 1 . 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'l: '\., ry ti Q, // • \ \ ~..e • e \ e • ~ : e0 ry rL'y ,LO •0 e~ p0 ee a Ob O O\ •ph 000 `e1 0~,~ ",~^\..ti~.g •,~0 t)F, ^,1 i. ++~L? •~P O Q, •1to .:i~b •0\ r, 60 a~ a O • 4• .y 9 O 44 SW ti ry 2 2 • t e ..- \ \ e9 • • e \Z~ry/ .y eE` •1 ~4- ~ ` 0 °~• OM 90 45 SW ° ° ° ° ° o - o o 0 0 ° c ~ I I 1 1 I 1 I I I ~)~~ 15 14 !3 f2 Il 10 09 08 07 06 05 04 03 02 01 00 STATION o tao 200. aoo w z_ SCALE tN FEET. ~ Unless otherwise indicated, qU readings: ore N :prefixed by 56. Q m GMC DATA REPORT 3 2 l Recdin9s are inqulnmcs. Fi~uRE 3A Page 203/314 SOIL LINES L30SVIf - 45SW, ZINC GEOCHEM OVERLAY 30 SW °n~' ~~'~ o v; ado ~'~o o~~, ~~o o~p oap °~~ ~ o~ ti '~. ~ "~ti~ ,~ ° °y °y op cb b' oo. o o °y o0 of; o 0 `t+~~-- 32 SW °~ ob ,~~,~ o~z 4~© ap o~ti. o~° °~~ o,~~ o~~i a ~ o ~i. 33 SW C~ ~ti ~~" a~'' Q~c a0p etc Q~`°y,~° ~,~5 °~~, ~h ~, ~ ti ti ti ti ~ti ~, ti 35 SW ,~ 0'L ~~p °p6 ~rO 0ti ~h ~~ 'o~~+ °~Q' °~j~ opt ~-~j~° ° ti ~ ,~ 3 8 SW '39 SW °p a p o ,~ \~ \,~. O\~8 fl~r0 O Qy OM\ ° ~ ._ ~G ~J ~~ ~. 40 SW °~d °6`L ~Z o ~ ~.'~ ~C ~~ ~` ~°~ 0 2~ opp o~0 0~0~ o ~ o $ o,~ o ° ~ ~ ti • ? ~~' 't 'l° 1 ~u~©~ °~h aa~ ~~O Zpp ry°o ~~~ o~ o ti~ 41 SW °e~ 0~ °~'' o°$ °~ ° ~ o p ° h ° ~ ° ~ o \ o o ~ ~ er ~g 42 SW ~ ° °cti °~'~ °~ ~2 0~ o o co ° .,a o ° ~ ©g o 0 0 o ti~ t~ 43 SW 6'L ti ~--~. ~'% 0ti °,L~' ~~ °p °,~p °~Z a1h o G o~ o ~ o °~ Z, ~ q, ~g a h ~ ~ 0 44 SW ~`~' ryp0 ti2~ $g °~° °~°"'`oM10 66 1` °~~ o~~, uP, c6a o°~ ~ \ ` ~ ~ o c~<~ o a s~o ~' ~.. `~ O. 5 S W ~ I ~ ~g ~~ ~ ~~ ~~ ,:~ 1p ~O °2s~° .r?° ~°y" p L60 ~~~o . E ~ ~ ~ I ~ I !5 14 l3 f2 f t t0 09 OS O7 06 05 04 03 02 Ot STATION 0 100 >a00 400 Z SCALE.IN FEET w N Q Yatues in parts per million. m GMT BATA ~EP~RT 3 ~ j Page 204/314 FtGURE~ 3B t5 S01L LINES L30SW-45SW, T !N- GEOCHEM OVERLAY 30 SW ~ 01 °"~ °~ °ti °0 °6 °~L °~~ °~ ~~ 9 3! SW °,~ a~~ v~ og oti o~ o 0 0 0 0 /~o 0 ~' ~' ~_~~ J do ~~' a ~.,,,.... ap ,b ~°` ti 32 SW ~ °.~p °ry`L ~~: ~ ok~,, o,~ ~~ °~t) ono o4a o 0 ~ ~ ~ ~+1, 33 SW °~ ~p al o~ o~ o~ o.~ rs~ a~.. ~+ ° b 3 4 SW ~o -°e ° ~ °o °6 Quo °`~ °.go ~,2 0 ~ °v o 35 SW °~`t ~~ ~ °~ 01 °•y °6 °0 °6 °.y~ ~ ~ e6 day o __ _.~---~. ~' ry 36 SW °~° titi ob °o ~~ °1 i°~%o ~~ ~~ °~~ •q o ~ ° '~~ ~ ti ti ° 37 SW °'Z °~ °ti °~ °~ °~ a~ ° ~ o h` ° ® o 0 ,//~ ~ 0 o a~ o 0 0 op o ti °. ~~+o ° 39 SW ~ °~o °5 °,yo ~~ °,y0 0~ otio ti~ 09 0~ ti~ ti~ o R 41 SW °~ °ti ~.`' °"~~ ~a ~~ ° g`~ oho- ~~ ~o °~i~' ~~, o 0 42 SW ~ ' ~`' _ °h °e ~"' titi gu °~' ``~~ °~ °~ °~ °~ ~ a ~ ~, ~ ~ 43 SW ~p °'b°' ~~ °0 °~ao °6 °h °~h ~:~ ~~ °~~ 2p ~~ oar, o 44 SW°'~°~ ~GM °o °o °'bo °~ °o °o °~ °~ a~; c o 0 0 Z a 4. 9. ro ro ~`' ti~ ti~ ~ 45 SW ° °~. ~ °r~ °~, °~, c` oti q~6 oA ory ~o ~ I I l I I~~ ~~~ 15 l4 13 12 i! 10 09 08 OT 06 05 04 _ 03 02 01 STATION ~ 100 t00 400 W Z SCALE 4N FE£T .J W Values in parts per million, m GMC DATA REPORT 3 2 7 Page 205/14 FIGURE 3C -Ib- 1 Z Z Z W {~ N N N Z ~ ~. W~ ~ 2 Z Z _ , J J .J $TA.BSE ° 1 *, ; STA.9SE ~ DDhi= x,196,-'S{J° _ ,„ STA. IOSE •_ ~S ~O 6P ~ ~° .%~° •s i ° ° Q° ~ o. outcxop d Tpr S Q d b'• ... O ~r' STA. I 1 SE ~~~ s~°~~ ° o I ~~+ ~ i~ rsa w~ Sao r °?: i?° , ~ ° Q ~ sD s !'~ STA. 12 S E S ~_ r ~O iQ a° °-~ r° r' r~ . ri r~ STA. t3SE ~~ ~~ ~o ri ~ is 6~ ~'° r~ ri ~~° ri r, r, r° r° ° t i S STA. i4SE EXPLANATION D 0-50 ppm so-too ppm F iG.-.4A > i00 ppm COAL PROJECT GMC DATA REPORT 3 2 7 Page 206/314 AREA NEAR DDH-l3 TtN SOIL GEOCHEMISTRY too ~ _ o ioo 20o COMPILEO~ G. Thurow 8/8! aRAFTED~ M. Rust x/82 SCALE i H FEET ,, , SCALE=t =.100 OATE~2/8/82 -17- _: ti m z z ~ ~{• N N N Z~ Z Z J Jt J STA. 8SE ° o ~ ~ ,,. d ~ ~: ~ i STA. 9SE DDH-13,196 ;-50° ~ ~ e 2 J STA. LOSE .; outcropaf Tqr STA. i f SE X60 ~,~ ~~o ~ o ~~,, ~o X30 ~~o ~ o ' ~ ~ ~ A O ~ ° iii . ~o ~~ ~ o ~ o , o . o 0 '' ~ sy ~~ .: si ~'~ .~, STA. 12 SE ~. ~- `i7, poi ~i~ 2s }o° 26° ,.2c ~o X30 ~o 9 STA. f 3 SE d ~ ~ 9 ~ 2 0 0 ~o ~° o o o ro ~ o STA. f4SE ° o 0 0 ,, EXPLANATION [_7 O-IOOppm loo-20o ppm FiG.-48 > 20o ppm COAL PROJECT AMC DATA REPORT 3 2 7 Page 20/314 AREA NEAR DDH 13 .ZINC SOIL GEOCHEMISTRY t00 !90 0 f00 200 COMPILED 6. Thc~row 8/81 DRAFTED M. Rust, ~I82 SCAM !N FEET SCALES 1"=100 DATE-2,/8/82 t5- REFERENCE CITED Taylor, R. G., 1979, Geology of Tin Deposits, Elsevier Scientific Publis ' hing Company,. N. Y., N.Y., pp. 241-254.. GMC DATA REPORT 3 2 1 Page 2os/314 -19- COAL EXTENSION ANNUAL REPORT 1981 GMC DATA REPORT: 3 2 ~ Page 209/314 ---._ CONCLUSIONS_AND RECOMMENDATIONS Reconnaissance mapping and sampling indicate low otential f p or the Talkeetna Mountains and Cantwell areas covered in 1981. The Canyon Creek, Partin Creek, and Long Creek .prospects have limited near-.surface precious metal potential, in addition to deeper tin granite potential at Canyon Creek- and.Long Creek. Ln each case, tonnage potential is low to moderate, and indicated precious metal grade from surface samplingis marginal. Because of the probable size and grade limitations, these prospects would be of interest only if a mineable deposit were proven at COAL and the mill life could be lengthened by handling additional precious metal ores. Projected assessment work overruns at COAL. in 1982 should make it possible to hold all COAL EXTENSION claims, including those covering he Long Creek prospect, .through 1986, with no additonal. required expenditures. This is deemed a wise move for both geological and political reasons. Because of the limited potential, it is unlikely that exploration will. be undertaken by a competifor on either the Partin Greek or Canyon Creek prospects; therefore any decision regarding additional work should be delayed pending resu is at COAL in 1982. INTRODUCTION The COAL EXTENSION area of .interest extends approximately 60 miles east, :fourmiles west and 30 miles north of the :COAL area. Each of the several areas examined in detail and on a reconnaissance basis within .the area of interest are discussed separately below. For additional background infor- mationthe reader is referred to the 1980 Annual Report. GMC DATA REPORT 3 2 7 Pa e 210/ 314 9 -20- LONG CLAIM BLOCK Summary Extensive detailed geologic mapping and geochemical sampling along the trend of EM conductors delineated in a 1980 airborne survey failed to locate any new. significant mineral occurrences. The conductors appear to coincide, without exception, with carbonaceous shale and argillite stratigraphic units, some of which contain .graphitic zones due to shearing. Because of the negative results of the 1981 sampling, no further work is recommended. Introduction The LONG claim block consists of 346 state claims and adjoins the COAL/GUN claim block on its northeast corner. A program consisting of detailed geologic mapping and .soil, rock, and stream sediment/pan concentrate sampling initiated to follow up airborne EM and magnetic anomalies generated in .1980 was completed in about four weeks.. Geology The sedimentary rock package exposed on the LONG claims represents basin margin deposition of clastic sediments. as turbidites and .fans: grading seaward into ,carbonaceous shales and deep water cherts (see Plate `4A-C and Figure 6). Subsequent to deposition, major deformation, possibly associated with Jurassic mountain building in the Alaska Range to the northwest; resulted in open to near-isoclinal ..folding of the strata, with wavelengths on the order of one mile and amplitudes: perhaps greater than-one mile. These major folds are commonly sheared out on one limb, especially in-interbedded GMC DATA REPORT 3 Z 7 -21- Fage 211/314 Medium-bedded to massive_chert, light tan or buff-colored,. .with subordinate interbedded cherty argillite becoming more .prominent near lower .contact. -~ Carbonaceous shale with subordinate interbedded chest and chesty argillite; siltstone and graywacke in some areas; -~` disseminated pyrrhotite and pyrite up to 5 percent common.. Interbedded graywacke, siltstone and whale, with lenses of chest or chertlargillite pebble conglomerate; local graded bedding. Gray medium-grained limestone, fossiliferous in part, ~ ~ occasionally accompanied by .carbonaceous argil I ite. - - Dark gray massive argillite, commonly, somewhat slaty, with occasional wispy siltstone lamellae; this unit has been recognized only on the COAL claims east of the prospect area. Units are not necessarily drawn to scale. i COAL /COAL EXTENSION GENERALIZED STRATtGRAPHIC COLUMN Page 212/314 FIG.-6 GMC DATA REPORT 3 2 7 _~~_ .sequences of variable composition. Late Cretaceous to early Tertiary plutonism resulted in emplacement of andesitic to rhyolitic dikes and small quartz diorite to granite stocks. _Sampling Results The resulis of the sampling program, shown on Plates 4A-C, are generally negative. Two pan concentrate samples in Sec. 36, T.20S., R.11W., show anomalous gold which is believed to be related to small.quartz-sulfide veins reported near the head of the drainages from. which the samples were°taken. One 'rock chipsample highgraded from a one inch wide shear zone in Sec. 1,` T.21S., R.11W. is interesting but not economically important. No signifi- cant tin values were reported. LONG CREEK Summary Two potential ore targets are present at Long Creek. Silver=gold minerali- zation'of economic grade and tonnage .may be present at shallow depth (less than-.300 feet) in a 100 foot wide northeast trending structural zone. In` addition, tin mineralization may be present: at depth associated with a granite .stock from which the quartzfeldspar porphyry dikes emanated. By comparisonwith the system at the prospect. area, it appears likely that if a tin ore zone is present it would be at adepthof at least several. hundred :feet below the present erosion level. Both targets could be evaluatedfrom a single drill pad .located at station 00 on line 2`N by drilling one angle hole to the southeast and one vertical hole. GMC DATA REPORT 3 Z 7 Page 213/.314 -23- Introduction At Long Creek, anomalous silver values were found. in a rock chip sample taken during reconnaissance mapping. To determine the type and extent of mineralization the area was mapped at 1"=50' and soil 'samples were taken` every 50' over a 500' X 500' area. The land in this area is .currently controlled by the HIMCO-Billiton joint venture as part of the Coal Ex erasion, Geology Bedrock consists of thinly-bedded black argillite with a l00 foot thick interbed of, chert pebble conglomerate (see Plates 5A=C). Bedding strikes_ northeast and dips. steeply to the southeast. Several small dikes of quartz-feldspar porphyry have been emplaced along structures subparallel to bedding.. The intrusive dikes are composed of small quartz and K-feldspar phenocrysts in a finely crystalline to aphanitic groundmass. Intense pervasive silicification of the dikes is accompanied by local. areas of weak to moderate sericitization. The degree of- silicification .roughly: correlates. with the amount of pyrite present which ranges from 2 to 5 percent and occurs as tiny disseminated grains and in quartz veins. Tin' and silver concentrations,. up to 96 and 37 ppm respectively,, are anomalous in all of the intrusive rocks. Mineralization is also present as quartz-sulfide veins in northeast trending faults and shear zones in the sediments. One 5 foot chip sample across bedding in quartz-veined argillite near the dikes contained 21.8 oz/ton silver. A 15 foot chip sample across a shear zone in chert pebble conglomerate yielded 4.5 oz/ton silver. ~M~ BATA ~FPORT 3 2 .7 -24- Page 214/314 The mineralization in this area is probably the top of a hydrothermal system associated with the emplacement of a granitic plug. Thee minerali- zationand composition of the dikes at Long Creek are similar to those in the outer zones of the hydrothermal system now being drilled at the .prospect area. CANYON .CREEK (READY CASH) Summary Mineralization at the Ready Cash prospect consists of disseminated to_ massive sulfides of exhalative origin and quartz-sulfide veins probably associated. with a .buried intrusive. The exhalative mineralization is predominantly pyrrhotite. Although the massive sulfide bodies are anomalous in copper, zinc, lead, gold and silver, none approach ore grade. Vein. type mineralization is characterized by bulb quartz, arsenopyrite, chalcopyrite, pyrrhotite, and galena filling shear zones and open ,fractures. These zones contain significant concentrations of gold (up to 2.4 ppm), silver (up to 8.3 oz/ton), and tin (up to 0.18 percent). The veins found during- the 1981 field .season are too small to be of economic importance. However, completion of the mapping and sampling may lead to .the discovery of .more continuous veins. Canyon Creek may also be underlain by a tin-bearing. granite stock similar to the Ohio-Creek stock 2.5 miles to the northwest. To help evaluate this ..:.possibility, a detailed investigation of all intrusive rocks in-the area should be made. This work should include .whole rock analysis, petro- graphic .investigation, and expansion of .the .map area. to determine if any large alteration patterns are evident. ~~~ BATA REPORT 3 2 ~ Page 215/314 -25- Introduction Canyon Creek is located approximately eleven milesnorth of the prospect area. Eleven. patented. claims covering the core of the area are' held by Hughes Mining Co.,. Twin Bridges, Montana; adjacent ground is held as unpatented claims by Chulitna Mining Corp., Anchorage, Alaska. Due to bad weather near the end of the summer., only about a quarter of the prospect was evaluated. Geology.... Bedrock at Canyon Creek consists of Triassic basalt, limestone, argillite, graywacke, and silica-rich exhalite (see Plate 6). In the southern part of the ..mapped area, these have been intruded by a single rhyolite porphyry dike. The silica exhalito is interbedded. with and gradational into the argillite: In the central part of the area the basalt has been altered to serpentine. Mineralization Sulfide mineralization is widespread at Canyon Creek, and can be separated into stratabound and vein ..type occurrences. Stratabound mineralization consists predominantly of pyrrhotito with traces of arsenopyrito and chalcopyrite. These occur as finely disseminated grains .and bands 'in all of the sedimentary and volcanic units. In addition, zones of `massive sulfide up to 20 feet. wide and 50 feet long are. present in the silica exhalite, argillite, and basalt. In the areas of disseminated sulfide, geochemical values are uniformly low for all metals. analyzed .. Values are somewhat higher in the. massive sulfide zones with anomalous copper, gold and silver. However, these values are still .well below ore grade. GMC DATA REPORT 3 2 7 _26_ Page 2.16/314 Vein type mineralization consists of bull quartz veins and mineralized .shear zones which locally contain pyrrhotite, arsenopyrite, chalcopyrite, and galena. These .zones are normally 4 to 20 feet wide and up to 100 feet in length. All of the high tin analyses and most of the high gold and silver values are from these vein type. occurrences. Tin ranges from 400 to 1800 ppm accompanied by up to 2.4 ppm goldand 8.3 oz/ton silver. It is likely that. the vein type mineralization -is part'. of an epithermal vein system: overlying an intrusive plug. Two. possible sources of mineralization are suggested by this theory. One is that the source of the metals ..was the sulfide-bearing sedimentary and volcanic rocks and that the intrusive only served as a heat pump for convection of meteoric water which scavenged metals out of the sediments and deposited them in the shear zones. The second possibility is'that part of the hydrothermal fluid and some or most of the metals were derived directly from the intrusive. At Canyon Creek both processes may have occurred. The following evidence suggests a dual model. 1. Canyon Creek .lies within a belt of Triassic rocks known to contain volcanogenic copper, zinc, lead, goad, and silver mineralization. The Partin Creek occurrence lies in the belt six miles to the southwest. 2. The exposed .massive sulfide pods contain sufficiently high concentrations of copper, .lead, zinc, gold and silver to have been the source for these metals in the veins. 3, At the Partin Creek occurrence, tin values are very low. 4. Tin values are very low. in the volcanogenic mineralization except when quartz veins are present. GMC DATA REPORT 3 2 ~ Page 217/314 -27- 5. Tin-bearing greisen is present in the granite stock at Ohio Creek 2.5.miles northwest of the'Ready.Cash claims. I suggest that a tin-bearing granite plug may have been emplaced below Canyon Creek and that the rhyolito porphyry outcrop represents. high level .diking from-this plug. -Heat from the plug set up convection cells which scavenged metals from the volcanogenic sulfide horizons and deposited them in the veins and shear zones. In addition, hydrothermal fluids migrating upward from the cooling margin .carried tin and possibly additional base metals into the vein system. If this. is indeed the case then a tin-bear- ing gresen and/or vein system similar to :that at the prospect area may exist at depth. If present, such a tin ore zone would be at' too great a :depth for open pit mining. However, most of the Canyon Creek prospect is 1,000 feet above valley level, and it might be possible. to drift 'in from Ohio Creek and blockcave such. an ore body. PARTIN CREEK Summa Stratiform sulfide mineralization of exhalative origin is present in a sequence of graywackes, volcaniclastics, argillites, and limestones. Anomalous copper, silver, and gold .values are present in some units, with one graywacke-argillite bed containing between 2 and 10 ppm .gold over a strike length of approximately 500 .feet. This gold mineralization is significant. enough to warrant further field investigation in the area. Several more samples. should be taken across the gold-bearing horizon to get a butter idea of average grade. In addition, a detailed examination of .the gold-bearing zones should be made AMC DATA REPORT 3 2 7 Page. 21s/si4 -28- to determine if any characteristics are, present that would help in recognizing other such zones in the field. Mapping and sampling should be expanded to thenorth and .west along. the strike of the sulfide.-bearing units. A regional reconnaissance of the belt of Triassic. rocks containing the Partin Creek prospect is also recommended. Sulfide-bearing sediments are visible along strike for several miles in-each direction.from.Partin Creek, and other zones of mineralization may be present. Introduction The Partin Creek prospect is located approximately. six miles northwest of the prospect area on the east side of Partin Creek. Mineralized rock crops out on several narrow ridges separated by snow fields and talus slopes. Elevations range from 4,500 to 6,000 feet. The terrain is very steep with many slopes in excess of 70°. Ropes will be required to complete the mapping. Mapping planned for the 1981 field season was approximately one-half completed when heavy snowfall made the area inaccessible. Geology The Partin Creek prospect is located within the same belt of `Triassic .sedimentary and volcanic rocks as the Ready Cash prospect. At Partin Creek, this unit includes graywackes, volcaniclastics, di abase,. massive .sulfide,. limestone, argillite, cfierty dolomite, chest, and back shale (see Plates 7A-B). These .have been intruded by small plugs and dikes of granodiorite and dikes of quartz-latte po-rphyry. The sedimentary-volcanic package strikes north-northeast and di s 35° ° to 65 P to the northwest. Interbedding and lateral gradation is common between the 6MC DATA REPORT 3 2 l Page .21.9/314 -29- graywacke, volcaniclastics, argillites, and limestones. The chert and cherty dolomite units may. be wholly or partly chemical precip- hates of exhalative origin. Numerous dikes, plugs, and sills of medium-grained, biotite granodiorte are scattered throughout the mapped area. In addition, two widely apaced dikes or sills of finel -cr stalline u r at Y Y q z lathe porphyry are present. The emplacement of the intrusive was passive, and had .relatively litt e effect on the. sediments or stratiform mineralization. Weak hornfelsing of the argillito adjacent to the granodionte contact and minor remobiliza- tion of sulfides .into faults and fractures were the only effects evident in the field. Mineralization At the Partin Creek .prospect, mineralization i characterized by disseminated to massive stratiform sulfides.: These sulfides are generally accompanied by several. percent silica and occasionally by carbonates. Pyrrhotito is the predominant sulfide with minor amounts of chalcopyrito and arsenopyrite present at some locations. Disseminated sulfide content of the sediments commonly reaches 10% or more. In addition, sulfide and/or silica sulfide bands and stringers are common in several units. The origin' of the mineralization isbelieved to be syngenetic chemical precipitation on the sea floor with a volcanogenic exhalative source for the metals. Rock chip samples were taken at 31 locations and >analyzed for copper, zinc, lead, tin, silver and .gold. Lead and zinc values are uniformly low over the entire area. A low level (14-42 ppm) tin anomaly is present in a sulfide rich zone of mixed volcaniclastics and graywacke. There. is a GMC DATA REPORT 3 2 7 Page 220/314 -30- positive correlation between the copper, silver, and gold values. The maximum .copper and silver: values encountered are 9900 ppm and 38 ..ppm respectively. Although anomalous, these are too low to be considered of .economic importance. Gold .values area highly. anomalous in two horizons. The volcaniclastic-graywacke units beneath the massive sulfide contained 1.4 ppm Au in a 40 foot chip sample across the bed.. A pyrrhotite-arseno- pyrite vein .cutting through this unit contained 9.6 ppm gold in a 5 foot / chip sample. Two samples taken 300 feet apart from what is inferred to be the same sulfide-rich argillite-graywacke bed contained 10 ppm .and 2.3 ppm gold. This bed is exposed for approximately 500 feet along sarike and is 5 to 8 feet thick. It is apparent, therefore, that the. highest potential for economic miner- alization at Partin Creek is in the gold-beardng stratiform horizons. .These need to be studied in detail and their lateral extent more clearly defined. OHIO CREEK Summary .The Ohio Creek stock is a complex multi-phase granitic pluton probably differentiated from a sin le ma ma source .This 9 9 magma contained a high background concentration of tin now reflected by a low level tin anomaly.. across the entire stock. During cooling of the later phases, .volatiles including tin, boron and fluorine collected in small restricted zones near. the roof of the pluton. If any sizeable areas of greisen ever developed within the boundaries of the .exposed part of the stock they have now been eroded off by the Ohio Creek Glacier. The greatest .potential for ore grade mineralization is beneath the. sediments. to the northwest of the GMC DATA REPORT 3 2 7 Page .221/314 -31- stock. Forover 1,000 feet in this direction the Cretaceous argillito is highly anomalous in fluorine (up to 1.6 percent) and tin (18-32 ppm), No .additional work is recommended at the Ohio Creek stock at this time because of land .status. However, if a change. in the McKinley Park boundary opens this area for exploration, most. of sections 7, 8, 17 and 18, T.20S., R.12W. should be staked. If thin. occurs the stock should be remapped, .dividing out as many phases as possible, and emphasis should be placed on determining .the relationship between the mineralization and each of the phases. In addition, mapping should be extended to the northwest with special. attention placed on locating areas of alteration in the sediments. Introduction The Ohio Creek prospect is located approximately l2 miles north. of the prospect area and 2.5 miles northwest of the Ready Cash prospect. A granite porphyry stock with zones of greisen mineralization crops .out on both sides of the Ohio Creek glacier. The topography is characterized by steep talus .covered slopes cut by deep. stream canyons. Elevations range from `2700 to 5000 feet.. This property is currently within the boundaries of the Mt. McKinley National Park. The stock and surrounding sediments were mapped at 1"= 100' and 61 rock chip. samples. were analyzed `for copper, zinc,° silver, gold, tin and fluorine. Geo109.~ Bedrock is composed of Cretaceous argillites, graywackes and minor conglomerates which .have been intruded by amulti-phase .Tertiary. granitic stock (see Figures 7A-B). The sediments generally strike north northeastly GMC DATA REPORT 3 2 7 Page 22~z/3,14 -32- and have stee di s. Near the p contact i p w th the stock, stron bioti to hornfels is developed in the argillite and graywacke. Outward from the contact, biotite decreases and an erratic zone of feldspar hornfels can be distinguished. Visible indications of mineralization in the sediments are generally absent except adjacent to the stock where a few quartz veins are present. The Ohio Creek stock is composed of at least five separate .phases of granite and granite porphyry. .There is a biotite granite, a garnet- bearing muscovite .granite, a tourmaline granite, and at least two additional phases of muscovite-bearing granite. During field mapping only the biotite granite and a few areas of tourmaline granite were mapped separately.. Numerous small dikes of aplite, biotite granite, and muscovite _granite intrude the sediments near the contacts of the stock. Greisen mineralization. appears to be related to those phases of the stock containing primary tourmaline. However, .additional mapping and sampling. would be necessary to verify this hypothesis._ Textures in all intrusive types .except the garnet-bearing granite range from equigranular to porphyritic. The garnet-bearing granite is finely-crystalline and equi- granular with tiny,: pink garnets which are probably spessartine in compr~sition. Mineralization and Alteration Mineralization consists of small isolated greisenpods and a few scattered quartz-sulfide veins. Greisen zones characteristically contain coarse muscovite, quartz, and tourmaline plus or minusfluorite, arsenopyrite, chalcopyrite, pyrite, sphalerite, and cassiterite. The largest of the greisen zones-is 20 to 30 feet in diameter. Seven of the ten pods of GMC DATA REPORT. 3 2 7 " Page 223/314 -33- I GLACIER A` ~~ ~ 1 ~,. ~ Ks Kaf ~ . _ ~ 1 -' Tgtg Tgtg Ksf Tgp / i ~ / ~~ Ksf ~ // ~ ~ ~ ~ ~ ~ 1 ~ ~ ~ T9P ~ `~ ~ `f J ~lTgt9 ~\ TQtg / ~ ` d /~ Ks ~\ - ~ / GLACIAL A ~' OU T WASH Aim Greisen~ quartz-tourmoline-muscovite t sulfides and cossiterite. Tip Granite muscovite bearing granite and granite porphyry with minor garnet, biotite and tourmaline bearing phases. `Ks Hornfels~ Cretaceous argillite and groywacke altered to biotite and/or feldspar hornfels. Ks Sediments Cretoceous argillite, graywacke and conglomercte. F{GORE 7A- CAI. PROJECT OHIO CREEK GMC DATA REPORT 3 2 7 Page 224/314 STOCK GEOLOGY 1000 500 0 1000 2000 COMPILED~G.Thurow,Il/.8I DRAFTEDi M. Rust, I2/81 SCALD iN FEET Scule~ t°=1000' Oa1e ~t2/14/81 34- A~ N 50° E i 5000 ~^ izeci Ks j _--- " Ksf j ;." ~? ~,~ _ ~~~ ,l ~ 4000 f ~ 3000 r9 P i i 2000' F~VURG 78 ~,aAL PROJECT OHIO CREEK .CROSS SECTION, A-A' GMC DATA REPORT 3 2 l Page 225/314 r T OMPlLEO~'v'. ,hurow,Ii/'~31 pRAFTE"~~ M. Rvs+, f2/81 a S 50° W 1 Zone of minerali gre'isen pons ~ /' ~, a i °~ .~" ''~ Ks ,E OHIO CREEK GLACIER ~~~ `'~-Ksf Ksf . , ~ "" %~.~ '° r { Tg p ~_~;~„' Greisen~ quartz-•tourmaiine-muscovite * sulfides and cassiterite. F" Granites muscovite bearing gron!te and gran!te porphyry. with. minor garnets biotite and tourmaline beariny phases. rte: ~ .. 1~.~,;_~ Hdrnfeis~ Cretaceous argi(lite cnd graywacke altered to biotite and/or feldspar-hcrnfels. i Ks Sediments: Cretaceous ar iiiite, ra ~•---~ y y ywocke and conglomerate, L.L~~ ArBfL Of UfP..71v.~t (J: tt;htt:7l~ fVr t_:"ri !:i: milt'. tlh. iLlnerilll L`it l0 ri .. 6MC DATA REPORT 3 2 7 Page 226/314 ~cx~o 5oc~ o icxx~ 4xao SCALE iN FEE`T greisen mapped forma northeast trending zone 1,000 feet long and- 200 feet wide. Tin rades within these 9 pods range from 36 to 20000 ppm with an average of 0.37 percent. Thee other greisen zones at Ohio Creek contain between 62 and 90 ppm tin. Quartz-tourmaline veins are scattered throughout the stock. These are .generally barren, :although arsenopyrite, sphalerite, chalcopyrte, and pyrrhotite were noted at a few locations. One high grade-sample from an Y arsenopyrite-rich veincontained 20000 ppm tin. However, it should be noted that. the volume of rock represented by this sample is extremely small. Overall hydrothermal alteration of the stock is weak. Clay alteration of the feldspars is widespread with local zones of sericite and silica-sericite present near some of the greisen pods. There are no significant alteration envelopes. surrounding the quartz-tourmaline-sulfide veins. TALKEETNA MOUNTAINS Summary Most.. of the results from the Talkeetna.Mountains Recon were negative.. The geochemical anomalies obtained by the U.S.G. S. were not confirmed. by this. study. In areas where the. U.S.G.S. obtained .concentrates with greater than 1000 ppm. tin, most of the HIMCO samples.:contained none and all contained less than 20 .ppm. The cause_of the discrepancy between values reported by the U.S.G.S. and those obtained by HIMCO is unknown. .Introduction The area of the reconnaissance is in the western Tal keetn a Mount ' ai ns north GMC DATAREPORT 3 2 l Page '227/314 -3b- and west of Indian River and south of Honolulu Creek. The objective of the. study was to investigate an area of anomalous tin values in stream sediment pan concentrates outlined by a U.S.G. S. study.. A similar area of tin anomalies just south and west of Indian Creek was not examined because of its inclusion within Denali State Park. Geology. Bedrock consists of Triassic and Cretaceous sediments which have been intruded by a Tertiary granitic batholith (see Plate 8). Sedimentary rocks are mostly argillite,.graywacke, and arkosic sandstone accompanied by subordinate chert and conglomerate. The main intrusion phase is a biotite-bearing granite porphyry which. contains xenoliths 'of biotite-rich granodiorite and. finely crystalline biotite aplite. Near the contacts with. sediments the biotito granito is cut by numerous barren quartz.. veins; siliceous finely-crystal-line aplite dikes, and quartz-K feldspar pegma- tites, all of which occasionally extend into the surrounding sediments. Mineralization and Alteration During this study only a few areas of mineralization were delineated.' In Secs. 17, 20 and 29, T.22S., R.9W. there area few areas of silicification and pyritizati'on in the argillito adjacent tosome biotito..granite dikes. An area of clay-sericito alteration isassociated with a finely crystal- line felsic phase. of .the batholith in Sec. 4, T.22S., R.IOW. One rock chip sample: from this area was anomalous in tin and fluorine and one pan concentrate contained 11 ppm silver. Two diamond drill_ holes of unknown. depth are present. In Sections 14 and 15, T.22S., R.IOW. small areas of clay and clay-serici to alteration are cut by a few quartz and_quartz- GMC DATA REPORT 3 2 7 Page 228/314 -37- pyrite veins. A rock chip sample from the mostly intensely altered of these .areas contained 75 ppm tin and 8 ppm silver. CANTWELL AREA In the Reindeer Hills area east of Cantwell, a regional tin-reconnaissance program was conducted using .pan concentrates of stream sediment samples as . the primary exploration tool (see Plate 9). Thin program was undertaken because bedrock in the Reindeer Hills consists.. of the same Paleozoic units .that are present at the prospect area and. are intruded by a Tertiary bi oti te-bearing granitic stock. .Sampling i n thus area was not completed due. to lack of time at the end of the field season. Results from this recon are mostly negative. Only one pan concentrate contained more than 10 ppm tin and none of the samples were. anomalous in any other. metal s. The area to the north and west of sample 995644 (33 ppm tin) was not examined at all during this. study and a brief follow up survey should be made to determine the source of :this tin anomaly. GMC DATA REPORT 3 2 7 Page 229/314 -38- BONDAR-CLEGG ~. COMPANY LTD. 130 PEMBERTON AVENUE, NORTH VANCOUVER, B.C. (604) 985-0681 TLX: 04.352667 Geochemical Lab Report FROM: Houston International Minerals Corp. REPORT NUMBER: 122-0735 PROJECT: NOT LISTED DATE; May 26, 1982. SAMPLE NUMBERS La PPm Nd PPm Sm PPm Ce PPm Lu PPm Eu PPm. Yb PPm Tb PPm 8100529 - 531 ~^f ~°"P 14 25 12 66 1 L 1 i l 2 8100540 - 542. ~, Powp 14 25 13 52 _l Z 1` 9 3 8100549 = 552 ~~ ~'"~ 2 15 4 16 L 1 L 1 2 l 8100554 - 556 ~~. P' 6 15 4 16. L l L 1 L 1 L 1 8100557 -.558 9rnn P°~ 6 5 3 16 L l L 1 1 l 8100561 - 564 ? 7 25 3 16 L L L l L 1 L 1 .8100566 - 568 ~ 7 10 3 18 L 1 L 1 1 L 1 8100797 - 800 0,}01, r°'1~ 8 20 6 30 L 1 L 1 3 1 8101443 - 447 ,~e+n~ P°rp 5 L 5 4 20 L 1 L 1 L I 1 8101463 - 467 frxn. P.v~~, . 6 15 4 20 L 1 L 1 1 1 8117606 - 610 9"~^• pow 6 20 4 20 L 1 L 1 1 L 1 .8117674 ~PI• P'"P~ 13 15 9 48 1 L 1 7 2 8117675 - 67.7 ~~ Pfl~• 12 30 9 44 1 L 1 7 1 8'117678 - 680 b..f. 9nh • 14 25 12 54 1 L 1 8 2 8117685 - 688 btuE- 1~n. 15 20 12 60 1 L 1 9 2 8117690 - 693 ~ 13 25- 10 50 1 L l 8 2 8117697 - 700 ' 13 20 8 46 1 L l 8 2 8117811 T~ ~ 8 15 9 26 L 1 L 1 5 2 8117812 - 81 S~S 16 10 4 30 L 1 1 2- L 1 8117894 - 895T~r~ 8 25 5 20 L 1 L 1 1 1 L denotes 'less than' GMC DATA REPORT 3 2 7 Page 230/314 FOR METHOD, EXTRACTION AND FRACTION USED. - SEE ATTACHED BONDAR-CLEGG ~ COMPANY LTD. 130. PEMBERTON AVENUE, NORTH .VANCOUVER, B,C. (604) 985-0681. TLX: 04-352667 Geochemical Lab Report PAGE lA FROM: Houston Oil & Minerals Exploration REPORT NUMBER, 122-- 0735 PROJECT: NOT LISTED DATE:_ May 26, 1982 FOR. METHOD, EXTRACTION AND FRACTION USED =SEE ATTACHED ~_ RITQ~~ pow - f 1~ ~ ~~l~l~r~ X00 ~ ' ~~{t vt~n w/~M~~def A~ G1 ~l~~tr~~ ~~~ ~ w ~~ ~ts'rr~w~c ~ttiftw a1~s~A'~w~. +~r~"~•MMft ~~~itn v~i~ ~~ th~ C~ui~N~'s at~~c ~ t de ~ ~~~~- ~~ craf~o n ~-SSean61~ Rela~iorn , s ~ 9~ p ~M~.~ATA REPORT 3 2 ~ Page 233/314 _... ... _ ~. zr _ v ~_ ..~ O ~.. O ~ Q N ~/ v Q ~ GMC DATA REPORT 3 2 7~ ~' _. ~ ~. J J_ ~ ~ Page 234/314 -. APPENDIX II Dri 11 Logs - 1981 NX Core Drilling DON-/a j ~z~~as~ ,''~ ~h n N - l ~ 4~s-~,~~U~~.y Pa e 235 3 4 GMC Ara REPORT ~ 2 ~ ~ 1 9 -40- APPENDIX III Assay Records - 1981 Core Drilling d~~ ~~o /~~,- i7 ,. GMC DATA :REPORT 3 2 l Fage 236/314 -41- HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD ole No. DDH-10 Date Started 6/5/81 Date Sto ed_ 6/12/81 PP epth of Hole 270.0.' Coord. N. Reason Hola Stopped ~Bdd ground ollar Elev. 2920':MSL Coord. E. Project COAL Property COAL Baring S14W Dip -50°` Alaska, Quadrangle Talkeetna Mtns. D-6 g~c, 21 T. 22S R. 12W Sheet # l of 3 ample Interval Thick- Rec. GRADE S o. From To Hess Core Sn ppm Ag ppm Remarks 3.101365 10.0 20.0 10.0 8.8 125 1.0 3101366 20.0. 28.4 8.4 7.0 100 0.7 3101367 28.4 39..0 10.6 7.4 150 0.6 8101368 39.0 46.4 7.4 7.3 1050 1.4 8101369 46.4 53.0 b.6 6.3 145 2.3 6101.37 53.0 59.5 6.5 6.5 165 2.0 8101371 .59.5. 64.0 4.5 3.9 455 2.3 810137 64.0 70.0 6.0 5.8 295 1.1 810137 70.0 80.0. 10.0 7.2 83 1.4 810137 80.0 87.0 7.0 6.0 120 1.9 8101451 87.0 93.0 6.0 4.1 400 ~ 1.6 810145 93.0 101.0 8.0 7.6 170 1.2 810145 101.0 110.0 9.0 5.0 - 1.090 2.4 GEC DAT REP~~T 3 2 7' ~ Pag 237/314 810145 110.0 120.0 10.0 8.3 125 l.3 DDH-10 cont. .Page 2 of 3 Sample Interval Thick- R G R A D E S ec. No. From To ness Core Sn ppm Ag ppm Com sites Remarks. X8101455 120.0 125`.0. 5.0 4.0 180 0.6 8101456 125.0 130.0 5.0 4.5 1100 1.1 8101457. 130.0 136.0 6.0 5.3 275 2.6 8101458 136.0 144.0 8.0 6.0 240. 1.8 8101459 144.0 150.0 6.0 4.1 220 2.8 8101460 150.0 155.0 5.0 4.3 390 2.8 8101461 155.0 160.0 5.0 4.6 720 2.4 S10i462 160.0 165..5 5.5 4.5 2~0 0.9 8101463 165.5 174.0 8.5 6.9 55 0.8 8101464 174.0 179.0 5.0 5.l 40 0.6 8101465 179.0 184.0 5.0 4.6 27 0.4 8101466 184.0 189.0_ ~ _ 5.0 5.2 105 2.9 8101467 189.0 195.0 6.0 4.3 150 3.6 8101468 195.0 200.0 5.0 3.9 50 0.5 8101469 200.0 206.0 6.0 5.7 435 3.7 8101470 206.0 214.0 8.0 6.3 220 3.2 8101471 214.0. 221.0 7.0 6.8 85 2.0 8101472 .221.0 228.0 7.0 57 125 1.2 GMC D TA REPORT 3 ~ ~ `~ Page 238/314 8101473 228.0 -235.0 7.0 5.9 76 1.3 DDH-10 cont. Page 3 of 3 ample :Interval Thick- Rec: GRADE S o. From To ness Core Sn ppm Ag ppm Com sites Remarks 3101474 235.0 240.0 5.0 4.0 220 1.8 3101475 240.0 249.0 9.0 5.9 130 1.0 3101476 249.0 258.OA 9.0 7.0 47 1.5 3101477 258.0 270.0. 12.0 3.1 55 1.4 27 .0` T.D Overal Recove y = 80.4°6 . AMC D TA REPORT ` 3 2 7 _Pa e 239/314 HOUSTON INTERNATIONAL ASSAY MINERALS RECORD CORPORATION Nole No. DDN-11 Depth of Hole ~ Collar Elev. .Bearing N14E 405' 2880 .Dip SL -50° ~ Coord. N. Coord. E. Alaska, Quadrangle roject Talkeetna OAL Mtns. D-6 Date. Started Reason xole ec. ?1 T, 6/13/87 Date Stopped 6/24/£ stopped --Lost string in Gavin rounc 9 9 Property COAL 22S R, 12W Sheet ~ 1 of 4 -_._,. ..__ ~Ple o. 8101478 Interval From To 0.0 8.0 Thick- Rec. Hess Core 8.0 6.6 PPm Sn 115 PPm Ag 2.0 PPm c Cu R A D E s Pb PPm PPb Zn Au om sites emarks 8101479 8.0 15.0 7.0 7.8 305 3.0 8101480 15.0 23..0 8.0 7.2 93 2 4 . 810T443 23.0 30.0 7.0 7.2 96 1.8 810144 30.0 38.0 8.0 7.5 540 3.2 810144 38.0 43.0 5.0 5.1 71 1.2 8 1 810144 8101448 43.0 51.0 58.0 51.0 58.0 65..5 8.0 7.0 7.5 6.2 6.7 7.6 135 505 125 2.8 4.5 3.4 108. 80 17 29 350 186 25 5 810T44 65.5 73.0 7.5 7.3 205 810145 8101551 810155 8) 0155 - 73.0 80.D 87.0 93.0 80.0 81.0.. 93.0 100.0 7.0 7.0 6.0 7. fl 6.7 7.0 7.2 4 ~ 180 500 445 1 ~Qn 1.7 1.3 2:7 , ~ „ 76 49 121 ,,..., 8 12 14 460 340 645 50: GM 120 160 DATA REPORT 3 2 7 `~ Page-240/314 . ODN-11 cont. Page 2 of 4 nple Interval Thick- Rec. G R A D E S .From To ness . Core. Sn ppm Ag ppm Cu m Pb m Zn m Au ppb Com sites. Remarks 01554 100.0 108.0 8.0 7.6 7.15 3.8 116 19 211 30 01555 108.0 116.0 8.0 8.1 1700 10.0 196 46 440. 15 01556 116.0 123.0 7.0 6.0 550 9.0 190 101 134 10 01557 123.0 133.0. 10.0 4.7 260 5.8 .112 14 122 30 01558 133.0 138.0 5.0 4.8 345 6.0 210 11 400 10 01559 138.0 146.0 8.0 7.0 500. 6,g }78 4 140 10 01560 146.0 154.0 8.0 7.1 435 ~ 5.1 67 23 135 10 01561 154.0 161.0 7.0 6.2 68 1.3 75 4 144 15 01562 161.0 110.0 9.0 6.6 125 4.8 175 13 320 15 01563 170.0 176.0 6.0 6.3 110 1.8 47 7 160 35 01564 176.0 183.0 7.0 6.9 280 5.4 111 24 340 190 OT565 183.0 189.0 6.0 5.8 190 6.4 220 69 ,400 20 page 241/314 :01566 189.0 195.0 6.0 5.8 390 4.7 130 26 625 35 ~M DATA REPORT 3 2 7 101567 195..0 202.0. 7.0 6.1 495 4.4 178 30 440. 10 101568 202.0 209.0 - 7.0 7.3 1400 4.6 138 35 1270 10 202' - 377 Sn and 7.2. 1755' of._0.2i m A~ ID1569 209.0 215.0 6.0 6.6 220 1.2 57 7 280- 10 or . )1570 215.0 223.0 8.0 8.0 1010 2.0 89 17 580 10 238' - 377' -0.228X Sn & 139' of 3 ppm Ag J1571- 223.0 231.0 8.0 7:6 1420 4.8 189 20- 745 30 or „~,., ~„ ~ ~~o ~ ~ n ~ ~ ~~n ~ ~ ~R- ~ ~ non i ~ 238' - 317' 79' of ODH-11 ..cont. Page 3 of 4 ~Pla i~. 101573 101574 101575 Interval From To 238.0. 245.0 245.0 252..0 252.0 262.0 Thick- ness 7.0 7.0 10.0 Rec. Core fi.5 6.7 8:3 Sn PPm 1550 2320 1630 A9 PPm 2.2 2.0 5.0 Cu Ppm 76 63 140 GRADE S Pb PPm 11 13 31 An ppm 265 545 1480 Au ppb 25 lp 10 Com sites Remarks 01576 01577 262`.0 268..0 268.0 276:0. 6.0 8.0 6.6 7.5 11400 1840 20.0 7:4 680 148 ~ 149 46 5600 3000 5 10 ...01578 01579 01580 01.581 015$2 276.0 284.0 291.0 299.0 307.0: 284.0 291.0.. 299.0. 307.0 317.0 8.0 7.0 8.0 8.0 10.0 7.6 7.3 7.8 7.5 9.2 2630 2790 1970 1130 1550 10.0 11.0 9.7 5.8 8.2 210 310 250 105 139 75 81 140 92 81 `2400 3500 2150 1490 730 5 10 35 ~p 30 X1583 )1584 )1585 317.0 324.0 333.0 324.0. 333.0 341.0 7.0 •9.0 8.0 7.1 7.6 7.7 125 1250 >810 2.7 5.9 8.0 60 186 220 37 37 139 425 1320 1280 10 90 35 . )1.586 )1587 341.0.. 349.0 .349.0 356.0 8.0 7.0 7.6 7.3 250 630 3.2 7.6 60 190 47 47 600 1500 35 5 ]1588. )1589. )1590 11591 .. 356.0 363.0 371,0 377..0. 363.0 371.0 377.0 384.0 7.0 8.0 7.0 7.n 7.2. 7.7 6.9 ~_~ 1590. 7510 21:30 ~d~ 5.3 12.0 16.0 Q „ 77 330 330 40 110 187 2200 3300 4000 5 D 5 ~~~ 5:' Pa e 242/314 9 DICTA REPORT 2 7 I DON-1T cost. Page 4 of 4 aple Interval Thick- Rec. GRADE S 101592 From 384.0 To 392.0 Hess ~8,0 Core 6.7 Sn PPm 28 Ag ppm 1,6 Cu m pb m Com sites Recaarks ,01593 392.0 397.0 5.0 5.3 28 0.5 :01594 397.0 405.0 8.0 7.7 235 0.8 8 T.D. 40 5 .Page 243/314 GMC DATA REPORT 3 2 7 . ., HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD le No. DDH-12 Date Started 6/24/81 Date Stopped 7/20/81 pth of Hole. 874.0' Coord. N. Reason Hole Stopped .Bottomed the mineralization llar.Elev.. Coord. E. Project COAL Property COAL.. aring N14E Dip -50 Alaska, Quadrangle TALKEETNA MTNS. D-6 sec. 21_T. 22S R, 12W \Sheet # 1 of 5 rple Interval Thick- Rec. GRADE $ (ppm) From To ness Core Sn A Com sites Remarks 17601 8.0 14.0 6.0 6.0 370 1.0 2 T4.0 20.0 6.0 4.7 145 0.2 3 ..20.0 30.0 10.0 10.0 355 0.3 4 30.0 40.0. 10.0 9:5 ttg0 0.3 5 40.0 50.0 10.0 9.8 54 0.2 6 50.0 60.0 10.0 9.2 160 0,2 7 _G0.0 70.0 10.0 10.0 36 0.2 8 70.0 80.0 10.0 9: 4 39 0, 6 9 80.0 90.0 10.0 9.9 23 0.8 7610 90.0 100.0 1.0.0 9.6 70 0.2 11 ..100.0. 110.0 10.-0 9.2 14 0.2 12 .110.0: 121.0 11.0 1.0 5 0.2 6M DATA REPORT 3 Z 7 13 121.0 ' 130.0 9.0 8.9 70 ~ 0.2 Pag 244/314 J 14 130.0 139.0 9.0 6.5 600 50.0 Page _-2 of 5 ` G R A D E S mple Interval Thick- Rec.. S A i arks R From To ness Core n g tes Com os em 17615 139.0 146.0 7.0 6.8 5G 0.7 16 146,0 153.0 7.0 6.9 30 0.2 17 153.0 160.0 7.0 6.3 43 2.0 18 160.0 167.0 7.0 6.9 36 3.0 19 167.0 177.0 10.0 10.0 375 7.8 7.62.0 177.0 188.0 TT.O 10.7 850 13.0 21 188.0 194.0 6.0 6.3 T20 2.6 22 194.0 200.0. 6.0 G.1 400 2.1 23 200.0 210.0 10,0 9.8 49 1.0 24 210.0 220.0 10.0 10.0 250 1.9 25 220.0 230.0 10.0 9.3 490 0.9 26 230.0 240.0 10.0 9.5 700.. T.5 27. .240.0 .250.0 10.0 9.8 990. 4.3 28 250.0 260.0 10.0 9.6 780 4.7 29 260.0 271.7 11.7 11.1 115 4.5. 7630 271.7 290.0 18.3 8.6. ~ 90 `2.5 31 290.0 300.o To.o 9.0 21 ~.2 GM DATA REPORT 3 2 7 32 300.0 310.0 10.0 9.5 61 3.6 Page 245/314 33 3 T 0.0 320.0 10.0 _9.5 515 2.5 ; Page 3 of 5 ple Interval Thick- Rec. ~ G R A D E S From To Hess Core Sn Ag Com osites Remarks 17634 320.0 330.0 10.0 9.6 3i5 7.1 35 ...330.0 .34.0.0 10.0 9.7 520 31.0 36 '340.0. 350.0 10.0 9.9 63 2.0 . 37 350.0 360.0 10.0 9.9 425 2.2 ~ 38 360.0 370.0 10.0 9.7 190 5.2 39 370.0 380.0 10.0 9.7 95 1.2 40 380.0. 390.0 1.0.0 9.7 675 ~ 2.4 41 390.0 400.0 10.0 9.0 1545 1.2 3q~ _ 44~ 42 43 400.0 410.0 410.0 420.0 10.0. 10.0 9.9 9.6 1625 535 2.8 1.8 ~v ~ ~-- ~ . / ~~ 5 3 3 .~ ~ 44 .4.20.0. 430.0 10.0 7.7 2000 3,l 45 .430.0. 440.0 10.0 9.8 1520 4.2 46 440.0 450.0 10.0 1.0.4 92 1.4 47 450.0. 460.0 10.0 8.9 825 1.5 48 460.0 470.0` 10.0 10.1 315 1.l 49 4:70.0. 480.0. 10.0 9.8 590 ~3.9 5 480.0 490.0, 10.0 10.1 370 3.2 ~M ~aTA REPORT 3 2 j 51 490.0 5.00.0 10.0 10.3 490 2.4 Page 246/314 52 500.0 510.0 10.0 10.6 60 4.9 Page 4 of 5 plo Interval Thick- Rec G R A D E S ~PPm) . - From To ness Core Sn Ag Com oeites Remarks 17653 510.0 ~ 520,0 10.0 9:7 120 0.5 54 520:0 530.0 10.0 9.6 46 2,4 55 530.0 540.0 T0.0 10.1 26 0.3 56 540.0 550.0 10.0 10.0 130 0.6 57 550.0 560.0. 10.0 9.9 105 0.7 58 560.0 570.0 10.0 9.7 535 1.4 59 570.0 58.0.0 10.0 9.8 465 1.7 7660 580.0 590.0 10.0 `9.5 615 4.2 61 590.0 60.0 10.0 9.4 285 1.2 ..62 :600.0 610.0 10.0 10.8 285 0.7 63 610.0 620,.0 10.0 8.4 860 7.7 ',64 620.0 630.0 10.0 8.7 71 0.3 65 630.0 ~ 640.0 10.0 9.2 90 0.9 66 640.0 `650.0 10.0 9.3 325 1.8 67 650.0 660.0 10.0 9.8 52 0,2 68 .660.0 670.0 10.0 10.0 30 0,4 69 6~0.0 680. o a o. o ~ o. 5 GMC D TA REPORT 3 2 7 250 2.1 ~~~ - ~ 7670 680.0 690.0 10.0 9.7 Page. 247 314- 210 1.0 ~~ ` ~~ ~ ~l S~ 71 690.0 700.0 10.0 9.4 1060 0.9 ~` ~ PP"~- i Page 5 of 5 ~nple Interval Thick- Rec. ~ G R A D E S m From To ness Core $n q Com osit m es Re arks 117672 .700.0 710.0 10.0 10.9 60 0.5 73 710.0 _720.0 10.0 10.0 22 Q.6 74 720.0. 730.0 10.0. 8.6 220 0.7 75 730.0: 740.0 10:0 _ 9.8 ~ 780 5, i 76 74~J. O 750.0 10.0 9.9 3500 6.2 ~ '~ - ~ IO 77 750..0 760.0 1.0.:0 9.8` 1525 5 2 d ~ /~8 S . , ~o ~ ~ ~ 78 760.0. 770.0 10.0 i0.3 550 0 3 Z 6 . . ,o 79 770.0 780.0 10:0, 9.9 220 0.3. 7680 780.0 790.0 10.0 8.9 420 ].3 81 790.0 800.0 10.0 9.1 4850 3.4 : 82. 800.0 . . 810.0 10.0 9.5 2060 1 2 . . 83 810.0 820.0 10.0 10.0 165 0 3 . 84 ..820.0 830.0 10.0 10.1 580 3.0 85 830 0 844 . .0 14.0 8.6 125 0:2 86 844 0 854 . .0 10:0 8.7 55 0.4 ~ . 87 8x4.0 864.0 10.-0 9.5 135 0.2 17688 864..0 874.0 10.0 9.8 _40 0.2 T. o. 874.0' GMC D TA REPORT 3 2 l : a e 248I3i4 HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD ..Hole No. DDH-13 Depth of Hole 196 0 Coord Date Started 7/21/81 Date stopped 7/23/81 _ . N. Collar . Elev Reason Hole Stopped Hole lost when anchor washed c . Co ord. E. Project COAL an OC e o e Property COAL Bearing S45E ~- Dip -50 Alaska, Qu adrangle TALKEETNA P~TNS D-6 2 9 sec. _ .._T, 22S R. 12W Sheet # 1 of 1 Sample. ' Interval Thick- Rec. ~PPm Ppm G RADE S ~ o. From To ness Core f1- 3] 17689 32.0 60 0 28 0 7 ~_ Com osites Remarks . . . , 5 40 1.0 90 60.0 70.0 10.0 5.3 55 0. -91 70.0 80 0 10 0 . . 9.3 115 0.2 92 30.0 90.0 10..0 8.7 97 0.3 93 .:.90.0 100.0 10.0 7.7 30 0.4 94 100.0 110.0 10 0 9 7 N . . Q 0.2 95 110.0 120.0 10.0 9.8 6 0.2 96 T20.0 130.0 10.0 g 9 Np p , 2 97 130.0. 140.0 10.0 9 7 80 0 . . .2 98 140:0 150.0 10.0 10 0 2 . 1 0.4 99 150.0 160.0 10 0 9 3 275 . . 0.4 311 »o0 160. o ~ ~o. 0 10 0 8 6 5 . . 3 0.6 GA9C D TA REPORT X1.17899 170.0 187.0 17.0 6 9 125 3 2 ~ e Pag ,2 4 49/31 . 0.4 X117900 .187..0 196.0 9.0 6.8 83 0 4 I . T.D. 196.'0 --- HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY .RECORD Hole No. DDH-14 Date Started 7/24/81 Date Stopped 8/1/81 Depth of Hole `37Fi Coord. N. - Reason Hole Stopped No intrusive found Collar Elev. Coord. E. Project COAL ---- Property COAL Bearing. 583 E Dip -70~ Alaska, Quadrangle TALKEETNA P1TNS D-6 Sec. 29 T. 22S R. 12W Sheen # 1 of ______ Sam 1 p e Interval Thick- Rec. G R A D o. From To Hess. Core Cu Pb Zn Sn 811.7801. 16.0 24.0 8.0 7.0 41 802 . 24.0 30.0 6.0 5.8 40 803 30..0 40.0 10.0 8.7 ND 804 40.0 50.0 10.0 7 9 . ND 805 50.0. 60.0 1.0.0 9.5 ND .806 60.0 70.0 10.0 10.0 ND 807 70.0 80.0 1D.0 9.9 ND .8.08 80.0 90.0 10.0 9 6 . ND 809 90.0 98.0 8.0 9.2 ND 810 98.0 ]07.0 9~.0 8.1 Np `811 107:0 115.0 8.0 8.3 40 81`2- 115.0 122.0 7.0 68 2 9 813 122.0 130.0 8: 0 8.2 ~~~ D TA REPORT 3 2 l ND 814 130.0 140.0 10.0 7 9 . ND S Ag Au Com osites Remarks 1.2 l.2 1.2 0.7 0.4 0.2 0.2 0.2 0.5 1.4 0.4 0.7 0.6 age 250/314 0.6 E Sample Interval Thick- Rec. G R A D E S ~o• From T o Hess Core Sn A Com osites Remarks 8117815 ..816 140.0 150.0. 10.0 8.2 ND 0,4 8 150.0 160.0 10.0 7.3 ND 0.2 17 160. 0 170 0 10 0 818 . 1 . . . 8.3 ND 0.2 . 70 0 180..0 10 0 4 7 8i9 180 . . ND 0.4 .0 -190.0 10.0 6 4 8 20 190 0 200 . ND 0.2 . . .0 : 10.0 9 7 821 200.0 2] 0.0 10.0 . 9.4 ND 0.3 822 210.0 220 0 10 0 ND 0.3 82 3 220 0 . ` 23 . 8.9 ND 0.2 . . 824 230 0 0.0 10.0 9.7 ` N0 0.3 . 240.0 10.0 g , 2 ND 0.3 825 240 `0 250 0 . . 10.0 8.8 ND 0.4 326 250 0 . . 260...0 10.0 9.1 ND 0 4 7 . 82 260.0 2 70 0 . .. 10.0 9.8 24 0 4 . 828 270 .0. .280.0 10.0 10.1 ND 0 3 1 . 329 280.0 ----J 290.0 10.0 94 ND 0 3 3 . 0 0 290.0 300.0 10.0 9.7 ND 0 3 8 . 31 300.0 310.0 .10.0 9.5 ND 0.2 32 31 0 0.0 320.0 10.0 10.1 ~M~ ~ TA REPORT 3 2 7 ND 0.3 Page 251/314 b33 320 0 330.0 . 10.0 10.2 ND p.4 page 3 of 3 .Sample Interval Thick- Rec. G R A D E S Jo. From To ness Core S11 Ag Com osites Remarks 1117834 330.0 340.0 10.0 10.1 15 0.3 835 340.0.. 350.0 10.0 10.0 ND 0.2 836 350.0 360.0 10.0 9.1 ND 0.3 837 360.0 369.0 9.0 9.2 ND 0.2 5117838. 369.0 376.0 7.0 6.7 ND 0.2 T.D. 376.0': GMC~D TA REPORT 3 ~ T Page 252 / 314 HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD xole No. DDH-15 Depth of Hole 570' Date Started .8/2/81 Date Stopped 8/25/81 Coord. N. Collar Elev . Reason Hole Stopped Bottomed the mineralization . Coord. E. Project Cf?/!L Property COAL searing Dip -90 Alaska,. Quadrangle TALKEETHA MTf~S D-6 2 Sec. 1 T. 22S _R. 12W Sheet # 1 of 4 --"'--- i Sample Interval Thick- Rec. GR ADE S i::o. From To ness Core m ~8]i7839 7.0 14.0 7.0 6.8 Sn Ag Com osites Remarks 125 3.4 340 14.0 20.0 6.0 6.1 95 2.3 341 20.0 30.0 10.0 8.7 . 430. 6.6 X42 30.0 40.0 10.0 9.4 77 3.0 843 40.0 50.0 10.0 10.2 900 6.0 ~~+4 50.0 60.0 10.0' 9.4 185 3.3 845 60.'0 70.0 10.0 9.6 715' 17.0 846 70.0 80 0 10 . .0 9.6 350 8.0 347 80.0 92.5 12.5 11.9 . 325. 12.0 848' 92.5 100.0 7~. 5 7.4 ~~ 25 2.8 &49 ] 00:0 110 .0 10.0 9 g , 19 0.3 850 110.0 120 0 10 . .0 9.9 1050 0,2 851 120.0 l 30 o T0 0 . G . ., 9 7 MC D TA REPORT 3 Z Z 630 0.6 II52 130...0. 140.0 10.0 9,g Pa e 253/314 17 0.2 Pa a of 4 2 4 nple Interval Thick- Rec GRADES m . - - - I From # To Hess Core Com osites .Remarks i 7u 5 :; ~ .140..0 150.0 10.0 8.9 205 0.8 10050 i 150.0 .161.0 11.0 9.6 -55 1.2 5G2 161.0 170.0 9.0 5,7 275 4.9 503 170.0 180.0 10.0 6.9~ 310 8.8 504 180.0 190.0 10.0 8.1 510 11.0 505 J90.0 200.0 ]0.0 8.2 81 1.8 506 200.0 .215.0. .15.0 7.5 27 1.5 507 215.0 230.0. 15..0 8.8 14 l.0 5Gr 230.0 240.0 10.0 7.7 440 2.1 509 240.0 250.0 10.0 9.3 130 3.7 51.0 250.0 260.0 10.0 9.8 190 6.0 X11 260.0 270.0 10.0 9.9 37 3,6 ;512 270.0 280'.0. _10.0 9.5 320 8.4 513 280.0 290.0 10.0 9.2 415 7,2 -514 290.0 300.0 T0.0 9.7 _ 185 3.3 515 300.0 310.0 10.0 9.9 2000.. 24.0 516 310.0 320.0 10.0 6.6 4500 17.0 517 320.0 330.0 10.0 6.7 ~~~ ~ A REPORT 3"2 ~ 2300 7.l P g 254/314 51 B .330..0.. :..340.0:. 10.0 8.9 .7300 16.0 _ i .' _ P~y_ ~ -t 9 ample Interval Thick- Rec. G R A D E S o. From To Hess Core Sn A Com oeites Retaarks 8100519 . 340.0 350.0 10.0 8.7 135. 4,3 520 350.0 360..0 10.0. 7.1 795 12.0 :521 350.0 370.0 10.0 9.0 2.20 3.6 " 522 370.0 380.0 10.0 9.6 5 0.5 3~ D . S' 523 380.0. 390.0 .10.0 10.0. NQ 0.6 29'0. D,z~f~° cc l ~i 524 390.0 400.0. 10.0 9.4 840 6.0 ?.3 A .,,~ 525 526 400, 0 407..0 40T. 0 414.0 7.0 7.0 6.4 7.0 2350 X20000 13.0 39.0 527 414.0 420.0 6.0 4.7 1650 5.0 528 420.0 430.0 T0.0 8.7 1050. 7.7 529 430.0 440.0. 10.0 9.1 ~ 185 1.8 530 440.0 450.0 10.0 9.2 220 1.6 531 450.0 460.0 10.0 9.0 585 2.0 532 460..0 470.0 10.0 7.8 4500 4.4 533 470.0 4$0.0 " 10.0 5.5 2800 1.2 534 480.0 490.0 T0.0 9.6 2200 l.6 535 490.0 500.0 10.0 9.3 1000 6.8 .:'.536 500.0 510..0 10.0 9.3 1550 6.7 537 510.0 -520.0 10.0 9.5 ~~~ © TA REPORT 3 2 7 X20000 8.1' P ge 255/314 Page 4 of 4 ~~pla Interval Thick- Rec. G R A D E S 1a. From To Hess Core Sn Ag 3100533. 520..0 530.0 10.0 10.2 Com osites 'Remarks 1030 1.8 539 530.0. 540.0 10.0 10.9 . 715 0,6 540 540.0 550.0 10..0 9.8 180 0.3 541 ..550..0.. 560.0 10.0 9.6 130 0.5 542 560.0 570.0 i 0.0 9.4 13 0.3 T.D. 570.0' GMT ~ A RE~OR~ 3 Z ~ ` , Page 256/314 HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD xole rho. DDH-16 ' Date Started 8/4/81 Date Stopped 8/]7/81 Depth oP Hole 866 Coord. N. .Reason Hole Stopped Approaching DDH-12 Collar . Elev. Coord. E. Project COAL ` Property COAL He-arin9 -_____ Di -70 _ P Alaska, Quadrangle TALKEETNA f1T~lS D-6 Sec. 21 T. 22S R. 12W --_ Sheet # 1 of , Sar;~ple ~ Interval Thick- Rec. GRADE S :•;o. From To Hess Core Cu Pfj Zn S ~ n Ag :~ ~ ~ 7854 0 18.0 18.0 7.4 Com osites Remarks. 59 0.3 055 18.0 30.0 12.0 9.9 130 2.0 ~50 30 0 40 0 10 . . .0 10.2 . 31 1.0 X57 40.0 . 50.0 10.0 10.2 7 0.3 058 50.0 60.0 10.0 10.1 67 1.5 859 60.0 70.0 10.0 11.0. 115 0.4 _860 70.0 80.0 3 10.0 9 . 47 0.3 Sul 80.0 90.0 10.0 9.2 79 2.0 802 90.0 100.0 10.0 10.2 430 2.5 X03 100 0 110 0 . . 10.D 8.4 325 1.8 ~0a 110 0 120 0 _ . . 10.0 10 1 . -120 0.8 8b5 120.0 130, 0 10.0 8.9 115 0.7 1. ~~0 130.0 1`40.0 10 0 9 0 G . . . MC D TA REPORT 65 3 2 7 0.7 Page 2 57/314 X67 140.0 150.0 10.0 8 7 . 65 0.5 - Page 2 of 5 iml~le Interval Thick- Rec. G R A D E S ~ Fro . m To Hess Core Sn Ag C om osites Remarks 117~6b 150.0 160.0 10.0 9, 3 24 ao9 160.0 170.0 10.0 9.5 19 0.6 v7G 170.0 180.0 10.0 9.9 ND 0.4 ~71~ 180.0 190.0 10.0 10.2 12 0 4 . ~72~ 190.0 200.0- 10.0 9.3` 14 0.3 7 3 200.0. 2.10.0 T 0.0 9.3 20 0.4 74 ~ 210 0 220 . .0 10.0 5.4 26 0,4 ;75 1220.0 230, 0 10.0 7.3 ND 0 4 . 76 230.0 240.0. 10.0 10.3 ~ 12 0.2 877 2 40.0 250.0 10.0 9.8 70 0.6 ;:78 I 250.0 260.0 10.0 8.3 33 0, 7 ~ X19 260.0 270.0 10.0 6.9 3~ 1.3 ~~s0 270 0 2 . 80.0 10.0 Fi 5 . 31 l.2 ~~l 280 0 2 90 t . ..0 10.0 9 9 . 28 0.9 8~2 ~ 290.D 300.0 10.0 1O.tS 25 1, 3 8331 300.0 310.0 10.0 9.5 19 0.4 :;4 ~ 310.0 320.0 10.0 9.5 ND 0.3 :;~5 i 320.0 330.0 ]0.0 9.5 GMC D TA REPORT 3 2 7 `46 0.3 Page 258/31:4 ~~:;~ 330.0 340.0 10.0 9.5 33 0.3 Page 3 of 5 ,a.Tple ~ Inte rval Thick- Rec.. G R A D E S '~. From To ness Core Sn A Com osites Remarks ;i17887 ~340.0 350.0 10.0 9.5 2.90.. 0.4 888 350..0 360..0 10.0 7.5 40 0.4 L89 ~ 360.0 380.0 20.0 9.5 39 0.5 X90 380.0 390.0 10.0 8.6 395 5.5 X91 390.0 . 400..0 1.0.0 5.0 64 1.0 892. 400..0: 410.0 10.0 8.2 39 1 , 3 ;93 ~ 410.0 420.0 10.0 10.0 500 2.0 8911420.0 430.0 10.0. 9.7 305 4.4 895 430.0 440.0 10.0 9.1 90 3.8 89u 440..0. 450.0 10.0 10.0 1700 1.5 397 450.0 4..60.0 10..0 7.9 0 77 ~ 1.1 098 1460.0 470.0 _ 10.0 8.7 1050 >50..0 13,~7c,1 470.0 480.0 1-0.0 9.1 62 0.8 702 480.0 490.0 10.0 9.4 635 2.0 i .703. 490.0 500.0 10.0 9.9 55 0.6 764..) 500.0 510.0 10.0 10.2 39 1.1 755 510.0 520.0 10.0 10.7 285 6.7 700 520.0 530.0 10.0 9.3 GMC ~ TA REPORT 3,2 l 730 10.0 Page 259/314 767 530..0 540.0 10.0 9.9 510 7 5 Page - 4 of 5 ~a~ple Interval Thick- Rec. G R A D E S ~o. From To Hess Core $t1 A9 Com it a os es Rem rks ~T~076 8 54.0.0 550.0 10:0 9.7 3700 6.0 _ 769 550.0 560.0 10.0 9.9 5600 ~ 31.0 770 560.0 570.0 10.0 9.8 1095 3.8 771 570.0 580.0 10.0 9.7 ~ 2640 12.0 772 1..580.0 590.0 10.0 9.8 705 5.6 r4~o - 6 z,o ' 773 590:0 600.0 10.0 10.0 920 10 do ~ r- o-~ ~ 17 ~e S~ .0 o 774 600.0 61.0.0 10.0 9.8 173 0 6 7 . 775 610.0 620.0 10.0 9.9 9000 12 0 . 776 --! 620.0 630.0 10.0 10.2 575 3.9 777 630.0 640.0 10.0. 9.4 200 2.4 778 640.0 650.0 10.0 10.3 ...100 1 4 . ]79, 650.0 660.0 10.0 9.7 56 1 2 . I30 660.0 670.0 10.0 9.8 790 1.1 781 670.0. 680.0 1-0.0 9.7 24 0.8 7821 -680.0 690.0 10.Q 9.5 22 _0.6 7&3I 690.0 700.0 10.0 9.6 14 _ 0.5 78G 700.0 710. Q 10.0 9.8 335... 0.5 _7~5 710.0 X20.0 ~o.0 9.3 GMCD TAREPQRT 3 2 T 1170 1.2 `7~0- ?S~ 7vo 720.0 730.0 10.0 7.8 Page 260/314 57 _ 0.4 ~a' G.?.d8 . S M ~o k _~ ~-_ Page 5 of 5 ~,;.l~le I Interval Thick- Rec.. G R A D E S o. i From To ness Core _ + S Com osites Remarks ~lvu7$8 I 740..0 750.0 10.0 9.0 789 7.50.0 760. 790 760.0. . 770.0 1 . 791 1 77D.0 780.0 10.0 9.5 1010 3 0 792 780.0 790.0 10.0 7.6 27 . 0.8 793 790:0 800.0 10.0 7.6 ND 0 8 . 794 800.0 810.0 10.0 7.6 10 0 5 . .795 310.0 820.0 T0.0 8.8 53 0.9 795 820.0 . 830..0 10.0 10.1 19 0.7 7 97 830.0 840..0 .10.0 9.7 235 0.7 798 840 0 850 0 1 . . 0.0 8.9 60 0.6 799 850.0 858.0 8.0 7.9 .400 0.5 ~ ~~.iGO 858.0. ... 866..0 8.0 7.7 170 1.0 T.D. 866.0' ~ GMC D TA REPORT 3 2 T Page 261/314 HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD :olc No. DDH-17 ' . Date. Started. - 8/25/81 Date Stopped . 8/27/81 Lei Lh of Hole 501.0 Coord. N. . Reason xole stopped Budget and geologic considerat ollar Elev. Coord. E. Project COAL COAL Property e~riny N14E Dip Alaska .Quadrangle TALKEETNA MTNS D-E 21 Sec. T, 22S R, 1241 Sheet 1 of 3 # arple I ,Interval Thick -- Rec. GRAD E S ~ _ from To Hess Core ~,~:=F ~ 12 0 20 0 Sn Ag Com sites Remarks , . . 8.0 8 2 . 1290 1.5 :,-:~ 20 0 30 0 10 . . .0 9 5 . 785 1.0 545 30.0 .40.0 10.0 10 3 . 585 1.4 :~40 40.0 50..0 10.0 9 1 . . - 945 ' 1.3 ~~+7 50.0' G0.0 10.0 9 4 . 835 2.4 54D b0.0 70.0 10.0 10 1 . G20 2.8 :;49 70.0 80.0 10.0 9 9 . 265 3.0 .550 80.0 89.0 9.0 9 3 . 115 0.5 X51 89.0 95.0 6.0 5 7 . . 53 p,6- 5J2 95.0. 104.0 9.0 9 3 . 165 3.4 53 104.0` 110.0 6.0 6 4 , . 450 0.8 X54 110.0 120.0 10.0 9 0 . 68 0.8 ~~~ 120.0 130. o " 10. o ~ 0.2 6MC D TA_REPORT 3 2 l 305 1.1 5 u 130 0 140 0 '1 P ge 26/314 ; . . 0.0 9.5 420 1. i Page 2 of 3 ar;,pie Interval Thick- Rec G R A D E S o. From To Hess . Core $ Com osites Remarks ,10~~57 558 ~ 140'.0 , 150.0 150.0. 160.0 . 10.0 10.0 9.1 9.4 54 45 0.9 0.7 559 ' 160.0 170.0 10.0 9.9 81 1.3 560 170.0 180.0 10.0 9.3' 20 0.5 5~1 ~ 180.0 190.0 10.0 9.7 375 0.7 ~u2 190.0 20G.G 10.0 7.3 69 0.9 :;v3 ~ 200.0 210.0 10.0 9.8 61 0.7 i ~~~4 ~ 210.0 220.0 10.0 7.9 86 1.2 565 220.0 .230.0 10.0 9.0 35 0.7 roc 230.0 240.0 10.0 9.0 96 2.4 ;G7 24D.0 250.0- 10.0 3.8 52 1.3 5~8 L 250.:0 260.0 10.0 9.4 49 3 4 X09 260.0 270.0 10.0 8.3 2695 10.0 Z,~v _ 3b ~ J70 L i 270.0' 280.0 10.0 9.1 :2015 2.9 ~~o ~ X71 280..0 290.0.. 10.0 8.8 2055 3.6 D. l f~3 ~ ti 572 ~ 290.0 300.0 10.0 8.4 2250 _ 2.7- '" J7~ 1300.0 310..0 10.0 10.3 135 2.3 7ti ~ 310.0 320.0 10:0 9.8 GMG ~ A REPQRT 3 2 l 2450 10.0 Page 263/314 7 ~ i ....320.0 330.0 10.0. 8.9 975 2.5 Page ~ sample Interval Thick- Rec. G R A D E S Via. From To ness Core Com osites I~, 31G0576 330.0.• 340.0. 10.0 8.3 1720 4.j _°f.~_ Remarks :77 .340.0.:. 350.0 10.0 9.2 435 2.2 578 350.0 360.0 10.0 9.5 3965 4 6 . X79 360.0 370.0 10:0 6.8 430 1 2 X8 . 0 370.0 380.0 10.0 6.0 155 0.7 j~l X380 0 390 0 . . i0.0 8.1 445 1 0 :: 82 ~ 39 . , _ 0.0 400..0 10.0 8.8 180 1,7 583 400.0 410.0 10.0 8.4 230 1.1 584j 410 .0 420.0 10.0 8.9 1845 1.7 ~ ~~~ 420.0 ' 430.0. 10.0 7.3 70 0,6 ~~6 430.0. 4:40.0 10.0 5.4 82 0.4 58 7 i 440.0 450.0 10.0 6.9 91 0.3 ::;88 450.0 ~ 460.0 T0.0 7.0 40 0 3 . .:589 460.0 470.0 10.0 7.3 20 0.2 ~ ~ 0 I470.0 480.0 10.0 7.8 2960 0.5 591 480 0 490 0 1 . . . 0.0 9.0 300 0.4 .~3~4~2 490.0 501 .0 10.0 9.3 360 0 7 _.- • . T.D: 501 ~~~ ~ TA'R~P~RT 3 2 T Page 264/ 314 i APPENDIX 3 ASSAY REPORTS 1917 ' `~% f ~' ~ 1 ~ ~ ,~~ IO~...~ e l' C icN~ /Jc, N.~ ..a~T GMC DATA REPORT 3 ~ 7 Page 265/314 HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD 'le No. DDH-19 Date Started- .6/9/92 Date Stopped. 6/19/82 pth of Hole _ 6 93.3', Coord. N. (200' from N 30° W DDH T5) Reason Hole Stopped Drilled be ond~mineraliz y ation Ilar El ev. Coord. E. Project COAL .Property - Prospect Area firing Dip -90 Alaska, Quadrangl T l e a keetna Mtns. Sec. 21 T. 22S R 12W Sh t # 1 f . . . ee o 5 iple I nterval Thick- Rec. GR ADES From To Hess Core Sn Ag Composites Remarks 7001 5 10 5 3.5 2100 19.0 7002 10 20 10 9.3 105 3 8 ~ ~' 7003 20 28 8 8.4 47 . 3.3 n_ ~ n 7004 28 37 9 9.D 390 5.1 ~ v X005 37 47 10 10.0 500 2.6 0 -~°-~ '006:.. 47 57 10 10.0 280 2.5 W ru '007 57 63 ~ 6 6.0 620 8.3 ~ '008 63 71 8 7.7 1480 14.0 -a ~ 009 71 78 7 ' 6.4 140 4.0 0~ 010 78 88 10 8.0 1000 8.0 .A D11 88 98 l0 8.2 180 4,1 )12 98 108 10 8.4 205 3.7 J13 108 115 7 6.1 110 6.1 -le No. DDN-19 Page 2 of 5 mple Interval Thick- Rec. GRADE S • From To Hess C ore Sn Ag Composites Remarks 17014. 115 125 10 8.8 32 2,4 17015 125 135 10 7.5 160 4.4 17016 135 145 10 9.8 820 6,3 17017 145 154 9 8.9 90 4 ~ .2 n 7018 154. .164 10 9.8 1500 4.4 v 7019 164 174 10 9.9 25 3 1 ~ ~ ..7020 ~ 174 179 5 5.0 1000 , 11.0 ~-~ 7021 179 .189. 10 9.9 1000 2 1 w . ro 7022 189 199 10 9.5 180 4.7 1023. 199 207 8 7.9 135 2.4 . 7024 207 213 6 5.9 535 18.0 X025 213 220 7 7.0 830 2 g , ~u '026 220 225 5 4.9 80 4.8 +~ '027. 225 235 10 9.8 475 3.1 w 028: 235 245 10 10.0 36 5,g 050 245 253 8 7.9' L 5 0.4 X29 253 261 8 8.0 595 8.1 261 271 10 10.0 1070. 2.2 151 271 281 10 9.9 19 9.2 ole No. DDH-19 Page3of5 ample. Interval Thick- Rec. GRADE S ~• From To ' Hess Core Sn qg Composites Remarks J '~70~2 281 290 g g 0 3150 6.5 ~ ~~ II ~_~Q53 290 300 10 9.4 . 1750 9.2 ~~4 300 309 9 8.0 •1000 9.g ']7055'. `~ 309 319 10 10.0 390 2:0 R 1~~~` ,~ ~ ~ ~ ']7056 319 329 10 10.0 3175 ~ r` a O 9 2 Cal ~ . n '17057 329 339. 10 10 .0 4000 6 3 ~ . . --~ '17058 339 350 11 10.9 3250 25.0 m ~ '17059 ~...., 350 360 10 9.6 315 1 1 O ~' . -~ `~:~Q~Q -r 360 370 10 9.6 2300 - ~ 3.5 c~ ~, 11061 370 380 10 9.1 28 1.0 _ ~ 17062 380. 39] )] 9.9 :330 1.4 17063 391 401. 10 9.7 57 1 2 17064 401 411 10 9,3 E 5 . 0.5 (7065 411 421 10 9.3 12 0.4 N w 17066 421 428 7 6.8 13 0.4 ~ 7067 428: 438 10 9.2 170 3.6 7068 438 448. 10 10.0 100 0.4 7069 448 458 10 9.8 65 0.4 I 7070 458 468 0 .8 95 8 ale No. DDH-19 .Page 4 of 5 mple Interval Thick- Rec. G R g 0 E S • From To He , ss Core Sn qg Composites Remarks 1707 1 468 478 10 9.7 225. 7.5 ~ . .- -~-.. 478. 488 10 9.5 6000 ~- 7 5 ' . ~ . 't70t4 T 488 498 10 9.7 2200 2,6 it 17075 7~ L-- ~ 498 508 10 9.8 225 0 ~~~ ~~' ,~ o.s ,3~~ n o 17076 `: 508 518 10 9.8 2400 8 0 ~ . a _ 17071 5.18 528 10 9.9 4360 16.0 ~ r: ~..~ ~ m -v (7018 ~ 528. 538 _10 10.0 415 1.2~''~ .i'~ ~_ ~ 17072 538 548 10 10.0 175 ' 2.4 w ~, ,7079. 548 _553 5 5.0 28 l 4 ~ 0 -~ 7080, .... _ t 553. 563 l0 9.9 2700 . ' 2.0 / 7081 563 573 10 10.0 210 0,3 :~~. 7082 573 583 10 10.0 713 0.3 - 7083 583 593 lp 9,g 195 0.2 o ~° ~ )084. 593 603 20 10.0 87 0 2 `° '085 603 613 10 10•U 660 . 2.6 ~ '086_ 613 623 10 10.0 1000 1.9 .087. 623 633 10 10.0 41 0,2 088:. ` 633 643 10 10.0 365 0.3 089 643 b53 10 )0.0 215 0,2 ole No. DDH-19 Page 5 of 5 ~mP1e Interval Thick- Rec. GRADE S ~. From To Hess Core Sn Ag Composites Remarks '17090 653: 663 10 10.0 29 0.2 ?17091. 663 673 10 10.0 26 0.2 '17092 673 __683 10 10.0 62 0.2 '17093 683 693.3 10.9 10.3 77 0 2 . v -~-~ v m -v O w N v iL ca ~p N V O W t--~ -P . HOUSTON INTERNATIONAL MINERALS CORPORATION .ASSAY RECORD No. DDH-20 Date Started 6/20/82 Date Stopped 6/29/82 h of Hole b09.8' Coord. N. 9915.. ~ Reason Hole Sto ed _ pp Bottomed the mineralization ar El ev. 2943 Coord. E. 9790 Project COAL Property Prospect Area ing Dip -90 Alaska, Quadrangle Talkeetna Mtns. Sec. 21 T. 22S R. -12W Sheet # 1 of 4 le Interval Thick- Rec. m m GRADE S From To Hess Core Sn Ag Composites Rema rks )94 0 8 8 7.8 L 9 5.8 )95 g 17 9 8.8 160 6 6 ~ . ~ )96 l7 27 10 9.7 195 1 4 •- n° . n )97 27 3T 10 9.4 205 2,4 ~' 198 37 47 10 9.6 545 1 5 ° ~' . . i99~ .s 47 52 5 5.0 3450 3.6 w N 00 ~ 52 59 7 7.0 2320 3.5 Q1~'~ 59 69 10 9.8 210 2.p _° R2 s 69 79 _ 10 9.8_ 2590 7,q N 73 ~ 79 87 8 7.9 3000 2 6 w il)4 ' 87 97 10 9.8 385 , ~,0 15 97 107 10 9.8 1.800 l,g No. DDH-20 Page 2 of 4 ~le Interval Thick- ... Rec m m G R'A D E S From To Hess . Core $n A9 Composites Remarks 107 117 ~ 10 9.6 6300 14.0 07 117 127 10 7.8 7350 20.0 08 127 137 10 7.5 500 2, 7 ~ ~ c-~ U9 137 147 10 9.7 210 l .4 n n IO 147 157 10 9.8 185 2 g ~ 11 I 157. 167. 10 8.5 3050 • 2.2 °~ --r 12 167 177. 10 4 9 .~~,~ ~~ ~y.~. 1:~`: ~ ~ w . .3.900 l .4 ^' 13 .177 187 10 8.9 1800 2.9,E ~ 14 187. 191 10 8.9 5700 4.5 ~ = 15 197 207 10 ~ 8.6 200. ,2 ._ : ;,- ::' 6 207 217 10~ 8.2 1900 5,3 7 217 222 5 4.6 3860 3.1 B 2.22 232 10 9.5 110 --- 1.4 g 232 242 10 9.8 380 0 9 ~ ~' 1 242 252 10 9.8 820 . 0 6 N W ~' . ' 252 262 10 9.4 4360 8.5 262 `.. ,272 ~ 10 g.5 ...615 3,2 272 282 l0 9.8 600 6,0 282 293 1 10.8 690 2.6 ale No. DDN-20 . ~ Page 3 of 4 ',-mple Interval Thick- Rec m m GRADE S ~_ F rom To Hess Core Sn Ag Composites ~ Remarks. )7125 293 303 10 9.8 4200 9,2 X7126 303 313 10 9.8 325 4.0 ~ 1712.1 313 . 323 10 10.0 110 1.6 c~ a ~?128 323 333 10 10.0 3800 6.6 v ~ 17129 -333 343 10 10 0 r"• . I t~'., ~ ~ ,~~, (mil ~ ~~- m '~ o . 530 3.3 11130 343 353 10 9.9 29 O,g ~-^' 17131 353 363 l0 9.9 1400 3,7 N _" 1.7132 _363 373. 10 10.0 32 0.6 7133. 373 38.3 10 10.0 1.200 ~4.0 _ 7134 383 393 l0 9.8 $500 35,0 1135 393 403 10 9.4 125 0.5 X136 403 413 i0 9.2 27.00 18,0 -~ ~ 7137 413 423 10 8.9 140 ----_ 0 7 N v X138 423 433 10 9.5 38 , 0!2 -A '139 433 443 10 9.8 210 0,6 '140 443 453 10 9.8 220 _ _. _ ~ 2.9 •~~~ ~ ~~ a ~~a.,. ' ~: 14.1 453 463 10 9.5 1900 12.0 142 463 473 10- 10.0 725 11:0 143 473 483 ~ 10 10.0 2750 0.5 Hole No. DDH-20 Page:4 of 4 Sampler Interval Thick- Rec. m m GRADE S No. From To Hess Core' Sn qg .Composites Remarks :8217144 483: 487.3 4.3 4.3 550 3.3 . ~ c~ 0 a a m -v o w --~t w N r -o cn fD _. N V _. W ~-' '.. i HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD Hole No. DDH-21` Date Started 6/30/82 Date ..Stopped 7/12/8 Depth of Hole 653.8 Coord. N. 9656 Reason Hole Stopped Reached tar et de th .Collar Elev. 2848 Coord. E. 9740. Project COAL Property Pros ect Area Bearing Dip -9 0° Alaska, Quadrangle TaTkeetna Mountains Sec. 21 T. 22S R 12W Sheet # l of 4 . Sample Interval Thick- Rec m m G RADE S No. ~ From To . Hess Core Sn A g Composites Remarks:' 8217238 10 20 10 9.3 29 1.7 8217239 20 30 10 9.3 26 0 9 ~ . 8217240 30 40 _10 9.7 77 0 7 ~ ~ .8217241 40 50 10 9.7 165 . 0 4 -~ n , m ~° . . -v 8217242 50 60 10 9.9 21 1.4 O ~-i 8217243 60 70 10 9.8 26 1 0 cN . N 8217244 70 80 10 9.9 54 O,g 8217245 80 90 10 10.D 46 2.8 4 8217246. 90 100 10 10.0 43 3 7 , 8217247 100 1.10 10 10.0 11 . 0 7 ~ . u, 8217248 110 120 l0 9.8 13 l.8 8217249 J20 130 10 9.8 32 3.6- 8211250. 130 1.40 ' ] 0 9.7 2b 9.0 Hole No. DDH-21 Pa e 2 of , 9 Sample Lnterval Thick- Rec m m G R A D E S No. I F r om o e ss ore.. n A 9 Composites Remarks 8217251 140 150. 10 9.6 15 2.4 8217252 150 160. 10 9.6 22 1.5 821.7253 160 170 10 9.1 11 0 8 . c, 8217254 170 180 10 9.4 9 1 7 ~ . D '.8217255 180 190- 1Q 8.3 360 ].3 w m - 8217256 190 200 10 6.3 134 4.5 v ~ -+ ..8217257 200 210 10 7.0 35 1 4 w . N 8217258 210 220 10 8.6 20 1.2 ~ 8217335.. 220 230 l0 9.2 82 1.5 8217336 23Q 240 10 g.3 42 0:9 , 8217337 240. 250. ~10 9.6 27 0.8 8217338 250 260 10 9.8 54 1,g 8217339 260 270 10 10.1 25 0 5 . ro 8217341 270 280 10 -10.0 57 1 3 ~' . '' 8217342 280 290 10 9.8 11 0 5 w - . 8217340 290 300 10 9.6 175 1.l 8217343 300 310 10 9.8 430 2.5 821.7344. 310 320 10 8.1 155 3.1 Nole No. DDH-21 Page 3 of Sample Int erval. Thick- Rec. m m GRADES No. From. To Hess Core Sn Ag Composites Remark 8217345 320 330. 10 9.4 100 6.5 8217346 330 340 10 _ 9.6 200 4.9 8217347 340 350 10 9.4 800 9.0 c' 8217348 350 360 10 9.7 740 2.6 n 8217349. 360 X370 10 8.l 2000 17.0 ~ 8217350 370 380 10 7.2 28 .0 ~3S oUe ~, (oO ~t 1 6 m -v ° . 8217351 380 390 10 9.6 440 2.9 ~~ `"' 821735.2. 390 400 10 9.5 1100 0.4%I ~~ f V 11 8217353 400 410. 10 8.8 30 0.6 8217355 410 420 10 10.3 L 5 0,4 8217356 420 430 10 9.8 ll 0.5 82173.57.. 430 440 10 9.9 6 0.4 . 8217358 440 450 10 9.9 6 0.6 -o ..8.217359. 450 460 10 9.9 L_5 p 4 ~, `~ , N ,. - V 8217360 46:0 470 10 9.7 19 0 4 W . ~-.. 8217361 470 480 10 9.7 66 0.5 .A 8217362 480 490. 10 9.9 31 0.2 8217363 490 500 10 g,8 69 0.2 8217364 500 5.10 10 9.0 2.70 0.4 Hole No. DDH-21 Page 4 of Sample: Interval Thick- Rec, m PPm GRADE S- No. From To Hess Core Sn Ag Composites Remarks 8217365 510 520 10 9.0 11 0.2 8217366 520 530. 10 9.7 l8 0.2 8217367 530 540 ~ 10 9.8 12 0 2 ~ . 8217368 540 550 10 9.8 7 0 2 v . 8217369 550 560 10 10.0 22 0.4 rn ~° .821737.0 560 570. 10 10.0 l2 0 2 -o 0 . .8217371 570 580 10 10.0 17 0 3 ~ N . 8217354 580 590 10 9.9 9 0.2 X821.7372 - 590. 600 10 9.9 3600 0.5 '8217373 600 610 10 9.7- 1800 0.3 _8217374 610 620 10 9.8 855 0.2 8217375 620 630 10 9.9 38 0.2 .1a$ o1sa~. `=' J 1 8217376 630 635 5 4.9 105 0.4 s 82]7377 635 645 10 9.2 700 0.6 -o ~, '~ 8217378 645 _653.8 8.8 6.3 13 '_ 2 0 :... v N °° . G, E.O.H. ~ HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD Hole No: DDH-22 Depth of Hole: 55_ 5,4~ Coord. N. 9484 Date. Started Reason Hole Stopped 7/13/82 Date Stopped 7/20/8 Bottomed the mineralization Collar Elev. 2811 Coord. E: 9640 Project COAL Property Prospect Area Bearing Dip -90 Alaska, Quadrangle.. Talkeetna Mountains D-6 Sec. 21 T. 22S R. 12W Sheet # l of 4 Sample N Interval Thick- Rec. m m G R A D E S o. From To Hess Core Sn Ag , Composites Remarks 8217418 10 20 10.0 10.0 85 0.6 8217419 20 30 10.0 9.5 ~ ] 25 1.3 ~ 8217420 30 40 10.0 9.6 :.500. 2.0 r-~ a 8217421 40 50 10.0 9.9 26 0.6 a 8217422. 50 60 10.0 9.9 6g 1.5 m 0 ~ -,-~ 8217423 60 70 10.0 9.8 780 1.4 `"' 8217424 70 80 10..0 9.8 61 0.4 N ~' 8217425 80 90 10.0 9.7 41 0.6 8217432.' 90 100 10.0 9.9 27 0.4 -d m 8217426 100 105 5.0 4.8 70 0.4 8217427 105 115 10.0 9.7 205 0.7 ti -P 8217428 115 125 10.0 10.0 16 0.6 ..8217429 '125 135 10.0 9.9 32 1.1 i Hole No. DDH-22 Page 2 of Sample Interval Thick- Rec. m No. From To Hess Core Sn GRADES Ag Composites Remarks 8217430 135 140 5.0 4.5 13 0.4 8217431 140 151 ~ 11.0 7.3 30 0.9 8217446. 151 161 10.0 4.7 110 0.3 ~ .8217447 161 169 8.0 7.5 95 0 4 a D-~ . v .8217448 169 179 10.0 9.6 19 1.0 w 8217449 179 189 10.0 7.4 45 22 8217450 189 199 10.0 7.4 45 1.7 w ^~ 8217451 199 209 10.0.. 8.4 70 4.2 -,~ 8217452. 209 2]9 10.0 9.5 45 6.1 8217453 - 219 229 10.0.... 9.7 31 0.9 .8217454 229 239 10.0 8.5 34 l.2 821.7455 239 249 10.0 9.3 25 1,2 8217456 249 259 10.0 9.9 325 1 7 ~ `° . 8217457 259 269 10.0 9.5 1000 2 2 N 0 . $217458 269 279 10.0 9.7 18 0,7 w 8217459 279- 289 10.0 9.g 14 0,3 8217460 289 299 10.0 9.9 23 0.7 821.7461 299 309 10.0 9.9 7 0.4 8211462: 309 319 10.0 9,9 57 1,0 Hole No. DDH-22 Page 3 of ~ ..:Sample Interval. Thick= Rec. No. From To Hess Core G R A D E S m PPm Sn Ag Composites Remarks 8217463 319 329 10.0 9.9 175 0.9 8217464 329. -339 10.0 9.9 210 1,1 ~ 3 8217465 339 349 10.0 9.8 14 0.5 e ~ v -~ 8217466.:. 349 355: 6.0 6.0 17 1.3 ~ 821.7467 355 3.65 10.0 9.9 395 1.2 w 0 8217468 ~ 365 375 10.0 9.7 12 0.3 ~ ,,~ 8217469. 375 385 10.0 9.9 14 0 4 N - . .~ 8217470 385 390 5.0 5.0 19 0.2 8217471 390 400 10.0 9.2 130 1.1 8217472 400: 410 10.0 9.8 2010 1.8 8217473.. 410 420 10.0 9.8 27 0.4 8217474 42.0. 430 10.0 9.9 540.. 0.7 ' 8217475 430 440 10:0 9.9 18 0 4 . 82174.76 440 450 10.0 9.8 16 0 3 .. , N . 821747.7 450 460 10.0 98 38 0 4 , . ~ t-.. 821.7492 460 470 10.0 9.6 17 0.3 8217478 470. 480. :10.0 10,1 6 0,2 .8217479...:: 480 490 10.0 9.9 lb 0,3 8217480. 490.. 500 10.0 9.9 19 0.2 Hole No. DDH-22 Page 4 of .Sample.' Interval Thick- Rec. m m GRADES No. From. To Hess Core Sn Ag Composites Remarks 8217481 500 510 10.0 10.0 15 0.3 821J482 510 520: 10.0. 9.9 22 0.3 8217483 520 530 -10.0 9.8 12 0.2 e~ ~ 821748.4 530 541.6 11.6 11.1 57 0,4 v '~'' ..8217485 541.6 555.4 13.8 - 12.2 14 ~- 0.2 m 'o o 555.4 T.D.. -t w N 'v ca co ' N W N _ W 1--+ -p HOUSTON INTERNATIONAL.MINERALS CORPORATION ASSAY RECORD Hole No. DDH-23 - Depth of Hole 692 8' C d N Date Started 7/22/82 Date Stopped 8/7/8 . oor . . 9915 Rea son Hole Stopped Reached tar et de g p th -bottomed the mineralizati or Collar E ev. 2884 Coord. E. 10090 Project COAL Property Prospect Area Bearing Dip -90 Alaska , Quadrangle Talkee tna Mtns S c 21 ~ . e . T. 22S R. 12W Sheet # 1 of 5 i Sample Interval ~ Think- Rec m m GRA DE S No. From To . Hess Core Sn Ag Composites Remarks 8217535 4.1 10 5.9 5,5 70 1.2 8217536 10 20 10.0 9.8 325 ..1.0 ~ .:8217537. 20 30 1:0.0 9.9 3450. l.7 v 8217538 30 40 10.0 10.0 110 0.7 ~ 8217539 40 50 10.0 10.0 63 0 5 -nw w ~ ~~, 8217540 50 60 10.0 10.0 25 . 0.4 `'"` .8217541 ~ 60 70 10.0 10.1 20 0.3 N ~ I 8217542 70 80 10.0 10.0 28 0 3 - 8217543 80 90 10,0 9.9 36 . 2 5 N 8217544 90 100 10.0 9.8 32 . 0 2 w . f--~ 8217545 100 110 .10.0 9.9 145. 0.7, '~ 82:17546'. 110 120 10..0 9.9 45 0.5 8217547 120' 130 10..0 9.9 100 0,2 Hole No. DDH-23 Page 2 of 5 .Sample No. Interval From To Thick- Hess Rec. C m m GRADE S 8217548 130 T40 10.0 ore 9.3 Sn 45 -Ag 0.4 Composites... Remarks 82.17549 140 150 10.0 9.0 24 p,4 ....8217550 150 160 T0.0 9.8 40 1.1 c~ ~ 8217551 160 165 5.0 3.1 65 0.5 '~ a 8217552 8217553 165 75 175 8.1.6 10.0 6.6 9.2 5.6 475 2270? 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Interval Thick- Rec, m m GRADE S No- From To He s C e s or Sn Ag Composites Remarks 8217329 . 692 702 10' 9.9 365 0.8- 8217330 702 712 10 9.6 275_ 0.6 8217331 712 717 5 4.8 110 0 2 a . 8217332 717 727.. 10 8.3 5200, 3.0 c~ a° 8217333 727 737. 10 4.5 340 0 4 n 8217334 ~ 737 746.9 9.9 5.8 61 . -0 5 i° -° - ° . . v ----~ w e'" t.J~ fi b ~ ~/' ~~:~ t, "~ ~L c, .~ , sy cn IV CJ7 \. W ~--~ HOUSTON INTERNATIONAL. MINERALS .CORPORATION ASSAY RECORD Hole No. DDH-34 Date.: Started 7/10/82 Date ..Stopped 7/17/82 Depth of Hole 593.0 Coord. N. 10001 --_ Reason Hol e Sto ed Re pp ached target de pth -bottomed the mineralizati Co1Tar.Elev. 2919 Coord. E. 9940 Project COAL Property Prosp ect Area Bea ri n 9 Di - 90 ql P aska, Quadrangle Talkeetna Mtns. -6 Sec. 21 . 22S R 12W Sh t 1 f 4 . ee o Sample Interval Thick'- Rec. GR ADE S No. From T . o Hess Core Sn q 9 Composites Remarks 8217379 4.9 15 10..1 10.1 610 2.7 8217380 15 25 10 9.6 545 1,q ~ n 8217381. 25 35 10 9.2 335 1.0 a 8217382 35 45 10 9.7 125 0 2 n m •' . 8217383: 45 55 10 9.8 2500 0 4 w . --i 8217384 55 65 10 9.9 500 10,0: `'''' ...8217385 65 75 10 9.7 3500 19.0 ~ 8217386 75 85 10 9.7 2200 9.1 8217387 85 90 5 4.9 260 5 8 , 8217388 90 100 10 8.3 600 2 1 8217389 100 110 10 5.6 900 . 6.2 ~' .A 8217390 110 120 10 8.4 2900 3.4 ,..8217391 120 130 10 8.b 265 6.3 ~~ .Hole No. DDH-34 r Page 2 of Sample Interval Think- Rec m m GRADE S No. From To Hess , C ore Sn Ag omposites Remark =8217392 C 130 140 10 3,8 100 - 2,p 8217393 140 150 10 8.9 1440 2.5 8217394 150 160 10 8.9 150 ' 39 ~~~ oti, / 5 5 1 0 4 ~ 8217395 160 170. 10 7.7 130 . , . 1.5 ~ a -~ 8217396: 170 180 10 8.7 2800 1 2 ~ ~ 8217397. 180 190 10 9 2 190 . 0 ~ . 0.8 8217398 190. 200 10 9.3 3200 0.5 `'~ 8217399 200 210 10 g,3 46 0.6 ~,~, ~ 8217400 210 220 10 9.7 24 0.9 8217401 220 230 10 9.2 36 1.0 8217402. 230 235; 5 4.8 17 1 0 ~ 8217403 235 245 10 9.5 28 . 0.4 N. 8217404 245 255 10 9.5 75 1 6 ~. w 8217405 255 265 l0 6.5 35 . 0:2 8217406 265. 270 5 2.9 ~ 5 O.q 8217407 270 280 10 . 8.5 40 0.6 $217408 280 290 10 4.4 L 5 0.3 8217409 290 300 10 8.7 g 0.5 8217410. 300 310 10 9.7 L 5 0.4 Hole No. DDH-34 . Page 3 of Sample Interval Thick- Rec. m m GRADE S No. From To Hess Core Sn qg Composites Remark 8217411 310 320 10 9.5 L 5 0.4 8217412 320 330 10 9.7 26 0,6 8217413 330 340 l0 9.7 15 ~ 0.5 n 8217414 340 350 10 9.8 18 0.5 a -+ n 8217415 350 360 10 9.3 16 0 3 7O ^' 8217416 360 370 1p 8.5 8 . 0.4 0 ~ 8217411 370 380 10 ~ 9'•7 13 0,4 `'~ ~ 8217041 380 390 10 9.6 10 0.5 ~ .82.17042. 390 400 10 8.7 g 0.7 8217043 400 410 10 7.9 - 50 0,6 .8217044 410 420 10 9.5 350 T 0 8217045 420 430 10 9.5 _ 30 . 0 7 N 8217046 430 440 10 9.4 15 . 0:5 W 8217047 440 445 5 4.2 48 0.4 .8217048 445 455 10 7.2 T120 0.8 8217049 455 465 10 7.7 25 0.5 8217433 465 470 5 d.8 18 0.7 8217434 4.7.0 480 10 9.8 74 0.5 8217435 4$0_ 490 10 9.9 24 0.3 Hole No. _DDH-34 Page 4 0 Sample No. Interval Thick- Rec. m m G R A D E S From To Hess C ore Sn Ag Composites Remar 8217436 490. 500 10 9.9 12 0.7 . 8217437 500 510 10 10.0 10 0.6 8217438 510 520. 10 9.8 L 5 0.5 ~ n .8217439 520...:.530 - 10 5 6 10 n --i , 1.4 v 82.17440 530 540 10 2.8 10 0,9 m -v .82.17441 540 550 10 6 4 6 0 ~i . 1.8 8217442 550. 560 10 1.0.1 35 3.0 c.~ '~' 8217443 560 570 10 9 8 28 ~ . 2.8 8217444 570 580 l0 ]0.0 10 - 0.3 8211445 580. 593 13 12 9 6 . 0.2 593 T.D. -o N . . . W r--~ - HOUSTON INTERNATIONAL MINERALS - CORPORATION ASSAY RECORD .Hole No. DOH-35 Depth of Hole 500 7 r Date Started 8/8/82 Date Stopped 8/1 , Coo d. N.` 9054 Reason Hole Stopped Bottomed the mineralization-crossed con tact into metasedii Col]ar Elev.. 2760 Caord. E. 9214 Project COAL Property P o r spect Area Bearing _ Dip -50 Ala ka, Quadrangle Talkeetna Mtns. D-6 _ Sec. 21 T 22S R 12hi . . Sheet # 1 of 3 Sample Interval Thick- Rec m m GRA DE S No. From To s . He s Core $n qg Composites Remark 8 217726 }.0 10 9.0 6.8 110 1.5 8217732 10 20 10.0 9.5 1000 3 3 ~ . 8217733 20 30 ..10,0 10.0 725 1.1 ~ 8217734 30 40 10.0 9.8 400 3.2 ~. ~ ' m 821.1735 _40 50 10.0 9.3 1200 2 9 0 ~ . 821.7736 50 60 T0.0 9.8 1500 2 7 c~ . N 8217737 60 70 10.0 1p,0 95 0.6 ~' 8217738 70 80 10.0 9.7 565 2.2 8217739 80 90 10.0 9.8 665 5.0 w 8217740 90 95 5.0 4.9 1850 10.0 0 w ..8217741 95 100 5.0 5.0 1550 3.8 82177:42 100 110 10.0 9:8 785 2.3, Hole No. DDH-35 Page 2 of Sample Interval Thick- Rec. m m u~.,,~~, No. From To Hess Core Sn Ag Composites Remark 8217743 110 120 10.0 9.9 2400 12.0 82 17744. 2 1 0 125 5_0 5 0 10 7..0 ~ 8217.74.5 1.25 135 10.0 9.7 505 3 7 ~ . v 8217746 135 140 5.0 4.6 315 4.2 ~' 8217747 140 145 5:0 4.8 452 7 4 m _ o . .8217748 - 145 155 10.0 10.0 860 3,9 _ w 8217794 155 165 10.0 10.0 875 5 0 N . ~ 8217795 165 175 10.0 9.9 455 2.8 8217796 175 185 10.0 9.8 500. 2.7 .8217797 185 195 10.0. 9.7 815 5.3 8217798 195 205 10.0 9.9 1.760 5.3 8217799 205 215 10.0 9,9 955 5.1 8211800 2i5 225 10.0 9.8 340 . 3.3 . .. ~ 8217801 2.25 235 10.0 9.7 270 2.2 8217812 235. 245 10..0 9.8 400 3 7 _; w 0 . u, 8.217813 245 255 10.0 10.3 685 5 .l 1' :8217814 255 265 10.0. 10.D 240 2.5 82.17815 265 270 5.A' 48 48 1,4 8217816 270 280 10.0 9.5 260 2.8 r __ _____._ _..-. - Hole No. DDH-35 _ Sample Interval Thick- Rec. m m No. Fr om To Hess.. Core Sn A 9 COmpoSl teS RPmarirc 821781.7 280 285 5.0 4.6 140 '2.6 - -- 8217818 285 295. 10.0 9.2 440 2.1 ....8217819 295 305 10.0 9 8 570 ~ . q.6 n 8217820 305 315 10.0 9.7 185 1.9 --~ 8217821 315 325 10.0 9.6 135 1 1 ~ ~ ~ 8217822 325 335 10.0 10.0 700 . 2.2 0 ~ 8217823 335 345 1p,0 9 7 330 `~' . 1.5 ~ 8217824 345 355 10.0 9.7 175 0,g ~ 8217825. 355 365 10.0 7.5 275. 1.1 821782b 365 375 10.0 6.4 23 0.5 .8217827. 375 385. 10.0 g,,p 20 0.8 Last sample DDH-35 -remainder of hole in argillite. -v W 0 N W p..-a .p Page 3 of GRADES HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY. RECORD Hole No. DDH-36 Depth of Hole 762 8 Date Started 8/12/82 Date Stopped 8/19/8 , Coord. N. 9732 Rea on Hole Stopped Bottomed the mineralizati on - C ollar Elev 2 871 crossed fault z one. in to ar i l 4 _ Coord, E. 979 4 Project Coal Pro ert Pros ec P Y t Ar bearing N15E Dip -50 .Alaska, Qua drangle Talkeetna Mts . Sec. 21 T 225 R 12W . . . Sheet # 1 of 5 Sample Inte rval Thick - Rec.' GR ADE S No. From To Hess Core Sn Ag Composites Remarks " 8217828 3 10 7.0 ~.3 50 2.7 8217829 10 20 10.0 7.8 86 3.4 ~ ~ 8217830 20 30 10.0. 10.0 215 3.4 °y 8217831 30 35 5.0 4.8 32 0 2- ~ .8217832 35 45 10.0 9,g 530 . 7 g m , -° ° ~ 8217833 45 55 10.0 10.0 750 , 3.0 ~ ~ 8217834 55 65 I0.0 9.8 340 3,1 ^' -.' ...8217835 65 75 10.0 9.3 1610 1.8 , X8211836 75 85 10.0 9.8 85 1 2 8217837 85 90 5.0 4.8 310 . 6 3 w 821 7838 90 100 10.0 9.7 1810 . 11 0 w ~ ~~ ~ ~.1 ~ w I1 ~ o~ 8217839 100 105 5 0 4 8 . . .- c . . 1600 3.7 8217840 105 - 115 10.0 9.6 910 4.4 Hole No. QDN-36 Page 2 of Sample Interval Thick- Rec. m GRADES m No. From To Hess Core Sn Ag Composites Remarks 8217841 115. 125 10.0 9.9 1500 11.0 8217842 125 135 10.0 9.7 1940 13.0 ~a .8217843 135 145 10.0 9.2 395 4 5 n . .82.17844- 145 .155 10.0 7.6 460.: .. 3.6 ~ 8217845 155 165 10.0 8.0 140 2.0 m 0 ~ 8217846 165 170 5.0 4.8 125. 2.6 8217847 170 180 10.0 10.0. 1510 14.0 N ~''' 8217848 180 190 10.0 10.0 5590 2.5 .82.17849 190 200 10.0 9.8 1910 11.0 8217850 200 210 10.0 8.1 46 1.3 8217851 210 220 10.0 8.2 425 1 4 . 8217852 220 225 5.0 4.5 810 1 4 o $217853` 225 235 20.0 8.1 2370 . i1 0 `~ .8217854 235 245 10.0 10.0 2090 . 15.0 ~~ 8217855 245 255 10.0 7.0 680 3.3 ___m, 8217856. 255 265 10.0 9.6 11b0 5.5 `8217857 265 2.75 ~ 10.0 9.7 3590 6.5 ~ • 1~ pcT J~ ~+r~,: `':~ ~-~" `~~82I7858 275 285 10.0 9.7 297G ,, 13.0 Hole No. DDH-36 GRADES Page 3 of ..~..,r,~ No ~n~ervai Thick- Rec. m m . From - To s Hes Core Sn Ag Composites Remarks X 8217859 `~ 285 295 10.0. 10.0 ZOlO 12.0 ,,,', 8217860 295 304 9.0 8.9 2410 14 0 _ . ~ ~ 8217861 304 314 10.0 9.7 4160 ~ 15 0 ~ ~ _ :-....a 8217862- - 314 323 .0 .0 620 . 0 :~ 18 o a 8217863 323. 331 8.0 8.0 110 . 1 4 ~ . 0 8217864 33I 337 6.0 6.0 210 0,6 -7°i 8217865. 337. . 344. 7.0 7.0 285 3.0 w N 8217866 344. 354 10.0 10.0 840 1.2 -., 8217867 354 364 10.0 10.0 3780. 20.0 , 82.17868 365 369 5.0 5.0 7.150 26.0 8217869 369 374 5.0 4.9 3740 2 2 . 8217810 ' 374 384 10.0_ 9.8 2440• 19.0 fD w 8217811 384 394 :10.0 9.9 710 1.5 0 w .8217872 394 404 10.0: 9.8 215 2.5 ~.-~ 8217873 404 414 10.0 9:8 100 1.0 8217874' 414 424 10.0 9.9 325 2.4 8.217875. 424 434 10.0 9.7 220 0.8 , 82.17876 434 439 -5.0 4.9 595 3.2 Nole No. DDH-36 Page 4 of 5 Sample. Interval Thick- Rec m m G R A'D E S No. From To . Hess Core Sn A9 Composites Remarks 8217877 439 . 449 10.0 9.9 31 2.2 8217878 449 459 10.0 8.9 56 0 6 ~ . 8217879 459 469 10.0 10.0 175 0 5 ~ ~ 8217880 469 479 10.0 10.0 475 . 1 8 n 8217881 479. 489. 10.0 10.0 270 . 1 2 ~ ~ ~ 8217882. 489 499 10.0 10 0 67 . 0 8 w . . . . U- 8217883 499 509 10.0 9.9 200 0.8 N 8217884 509. ~ 519. 10.0: 9.4 20 0.5 _- ..: 8217885'` 519 525 6.0 6.0 2590 17.0 ~`82I~7886~ 525 535 10.0 9.6 680 4.3 \`~, 8217887- 535 542 7.0 6.9 2110 9 4 ,`~ -v , ~ i ~ 8217888 •~ 542 552 10.0' 9.7 2510 11.0 fD 8211889: _: 52 62 0.0 ,8 0740 .5 w °, 8217890.: 562 572 10.0 9.3 960 1.0 W ~ $21"789L~ 572 582 10. 0 8.3 105 0.6 .<" ~ ~ 1<< ~ Y ~ ~ 821`7892:. 582 592 . 10 0 9 2 ~ . ~. n ~ ~ .~.~ . a , P ~ : . . 2250 1.6 8217893'-". 592 602 10..0 8.2 1700 3.6 821:7894-, 602. 612 10.0 8:2 2510 .8.3 Hole No. DDH-36 ~_ .Sample No. ~u~ 821`7895~~ $1.896. ~2~1=7897 :..~ .8217898. 8217899 8217900 8217901 3217902 ??17903 X17904 217905 X17906 '17901 1.7908 '17909. 17910 From 12 620 625. 635 645 655 665_ 615 685 695 705. 715 -725 735 745 755 Interval. To 20 625 635 645 655 665 675 685 695- 705 715 725 735 745 755 762.8 Thick- Hess .0 5.0 10.0 10.0 10.0 10.0 10.0 10.0 10:0 10.0 10..0 10.0 10.0 10.0 10.0 7.8 Rec. Core .6 3.9 9.2 8.5 9.0 8.5 9.6 9.2 9.7 9.5 92 9.6 9.3 9.8 9.6 6.8 m Sn 290 5650 2680 960 270 790 1300 31 320 .970 335 89 260 1300 100 86 GRADE S m Ag Composites .0 - 35,p 20.0 4.2 ~ 1,1 3.8 - 1.4 0,5 1.8 ~,g 1.4 0,4 6,2 0.8 0.5 1,p Page 5 of 5 emarks ~ ~ ~' 0 n m-, w '~ ~ `'~ ^' ~ a ~ w ~ w ~ i 762`.8 TD HOUSTON. INTERNATIONAL MINERALS CORPORATION ASSAY RECORD Hole No. DDH-37 Date Started 8/16/82 Date Stopped 8/18/t Depth of Hole 194.3 Coord. N. 9200 Reason Hole Stopped Lost in badly broken granite porphyry Collar Elev. 2750 Coord. E. 9454 Project COAL Property Prospect Area Bearing N15E Dip '-50 Alaska, Quadrangle Talkeetna Mtns. Sec. 21 T. 22S R. 12W Sheet # 1 of 2 Sample Interval Thick- Rec. No. From To Hess Core GRADES Sn Ag Composites Remarks 8217911 4 14 10.0 8.2 94 1.5 .8217912 - 14 24 10.0 7.8 110 2.0 8217.913 24 34 10,0 9.6 290 1.7 8217914 34 44 10.0 9.6 180 0.8 82179.15: 44 54 10.0 9.7 2190 1.7 8217916 54 64 10.0 9.6 135 0.6 8217917 64 74 ~ 10.0 10.0 225 0.6 82.17918 74 $4 10.0 9.3 185 1.6 8217919 84 94 10.0 10.0 89 1.0 8217920 I 94 104 10.0 9.8 210 1.4 8217921 _ 104 114 10,0 9,g' 1680 3.0 .8217.922 114 124 10.0 9.5 600 2.6 8217923 124 134 10.0 9.6 1100 25 n v n rn -v O c.,,, W 0 W .--. -,~ Hole No. ODH-37 .Page 2 0 Sa m le P nt er val _ h ' c k R c m G R A .DES m No. From T o ess . Core n q 9 Composites Remar 8217924 134 144 10.0 9.4 1730 5.2 82J7925 144 154 10.0 7.5 295 3.6- '8217926 154 164 10.0 2.8 190 2.4 ~ ~ n 8217927 ....1.64. 174 10.0 6.1 270 1.0 n --~ 8217928 174 184. 10.0 4.6 70 1 6 ~ m - 8217929.. 184 194.3 10.3 .8 35 . 1.8 ~ 0 ~ T.D. 194.3 t.,.: -., -~ w ca w 0 w ~I ~, - .~ I /leC. p,,,, ppw~ .«.~... ~ .,~. g,zi7~YU fog- t~/ 8,5_ Ss3d /~ / 6MC DATA REPORT 3 ~ ~ ro, / / 05` ~, y . HOUSTON INTERNATIONA L M I N ER A L S CORPORATION Hole No. ASSAY RECOR0 DDH-39 Depth of Hole 645.4 Date Started 8/19/82 --______ Coord. N. 9_ g~_ Date Stopped 9/2/8 Collar Elev. 2856 Reason Hole Sto ed Coord. E. 9403 PP Bottomed the mineralizatio ~_ Project COAL Bearing N-~_ dip -50 Property Pros ect Area Alaska, Quadrangle Talkeena Mtns. - Seca _ T, 22S R. 12W Sheet # 1 of 4 Sample -- --,- No. Interval Thick- Rec. m m GRADE S From To Hess Core Sn A9 8217930 6 Composites Remarks 12 6.0 4.7 ...8217931 320 2.6 12 21 9.0 8.0 96 1.5 ~ ~ 8217932 21 ~ ~ 31 10.0 ~ ~ 7.2 260 i.8 w ~ 8217933. 31 41 ~ a )O.O 9.3 8217934 120 0.6 w ~ 41 51 10.0 7.8 250 ~,g ~ o 821.7935 51 61 10.0 7.2 220 2.0 I' 8217936 cA 61 71 10.0 4.6 '~ 8217937. 16.30. 16.0 ~, 71 81 10.0 9.8` 690 g,0 8217938 81 91 10.0 9.7- 1300 5.0 4217939 91 ]01 10.0 9.3 150 1 .3217940 •2 101 ~~~ in n ~ _ Hole No. DDH=39 Page 2 of 4 Sample.. Interval Thick- Rec. m m GRADE S No. From To Hess Core Sn Ag Composites Remark. 8217943 131 140. _9.0 9.1 75 1.6 .8217944.. 140 150 10.0 10.1 105 1.4 c~ n 8217945 150 160 10.0 10.2 180 1 7 ° . . y 8217946 160 170 10.0 10.0 140 2.3 v 82]7947 170 180 10.0.: 9.6 605 4 2 rn 0 . ~ $217948 180 190 10.0. 9.8 47 2.0 cN 8217949 190 200 10.0. 9,9 87 1.2 N ~+ 8217950 200 209 9.0 9.l 74 1.2 8217951 209 220 1.1.0. 11.0 1000 12.0 8217952 220 230. 10.0 10.0 7340 5.4 8217453 230 240 10.0 10.0 380 4,3 821.7954 240 250 10..0 10.1 260 7,6 -o 8217955 250- 260 10..0 10:1 1800 2.6 8217956 260 270 _10.0 10.0 855 6 7 . -A :8117957 270 280 T0.0 9.6 375 2.6 8117958 280 290 :1p,0 9.3 1.530 4.8 8211959 290 300 10.0 9.9 415 6.6 8217960 300 310 10.0 8.9 1820 9.6 Hole No. ODti-39 Page 3 of 4 Sample Interval Thick- Rec. m m GRADE S No. From To Hess Core.. Sn Ag Composites Remark 8217961 310 320 10.0 9.9 550 6.2 8217962. 320 330 10.0 9.9 3650 19.0 n ~ 8217963 330 340 10.0 10.0. 500 7 4 v -~-~ . a 8217964 340 350 10.9 9.9 1890 5.8 0 8217965 350 359 9.0 9.5 890 1.9 -~~ 8217966 ~ 359 369 10,0 9 9 115 1.4 w ~ N . 8217967 369 379 10.0 10.0 850 8.6 .8217968 379 389 10.0 10.0 .520 4.8 8217969 389 401 12.0. 12.1 1600 16.0 82.17970 401 408 7.0 6.9 3180 3.1 821:7971 408 415 7;0 6.9 145 1 4 . ~, .82.17972 415 422 7.0 6.9 3030 31.0 8217973 422 -432 10.0 10.0 1810 9.8 W N 8217974 432 442 .10.0 10.0 485 5.3 ~--, 8217975 442 452 10.0. 10.0 270 2.2 8217976 452- 462 10.0 9.9 1530 5.0 .8217977 462 467. • 5.0 4.8 72 0.6 8217978 467 477 10.0 9.g 40 1.8 Hole No. DDH-39 Page. 4 of 4 Sample Interval Thick- Rec. m No. From To Hess. Core Sn GRADES A9 Composites Remarks 8217979 477 487 10.0 10.0 53 0.2 8217980 487 497 10.0 9.9 69 0 7 ~' . v 8217981 497 507 10.0 10.1 87 0.2 8217982. 507 517 10.0 9.8 63 0.2 w -° 0 82.17983.` 517 527 .10,0 9.7, 40 0.2 ~ w 82}7984 527 537 10.0 9.9 49 0.6 `~' 8217985 537 547 10.0 8.5 120 0.6 " 8217986 547 554 7.0 7.2 82 0.2 8217987 554. 565 11.0 8.4 330 l.7 8217988 580 590 10.0.. 4.8 33 0.3 8217989 590 600 10.0 8.2 T630 T.3 0 8217990 600 610 10.0 9.0 1130 5.6 w w 8217991 610 620 10.0 8.0 42 0.4 8217992 620. 630 10.0 7.0 57 0.4 ~ 8217993 630 635 5.0 1.7 295 18.0 it 8217994 635 645.4 10.4 7.1 8 -0.2 i 645.5 T. D, HOUSTON INTERNATIONAL MINERALS CORPORATION ASSAY RECORD Hole No. DDH-41 Date Started 9/5/82 Date Stopped 9/6/8 Depth of Hole 215.1': Coord. N. 12254. Reason Hole Stopped Reached target depth Collar Elev. 2695 Coo rd. E. 11729 Project COAL Property NE Area Bearing N35E Dip -50 Alaska, Quadrangle Talkeetna Mtns."D-6 Sec. 21 T. 22S R. 12W Sheet # ] of 1 Sample Interval Thick- Rec. m m G RADES No. From To Hess Core Sn Ag Composites Remarks 75 85 10.D 6.4 260 1.4 85 95 10..0 7.4 29 2.0 ~ n 95 1:05 10.0 7.0 44 2.0 n 105 125 20.0 9.7 350 1.9 --a v ~ m -v 125 135 10.0 9.6 280 1.1 135 145 10.0 9.9 355 0.7 `"' -v 145 155 10.0 10.2 385 0.6 11 155 165.. 10.0 10.1 200 0.6 165 175 10,0 10.0 165 0.9 175 185 10.0 10.2 125 0.8 -o 185 195 10.0 10.1 320 0.7 .~ 195 205 10.0 9.8 245 l 2 . 205 215.1 10.1 10.2 105 1.2 215.1 T.D,