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MANIITSOQ Ni-CuNICKEL INC
 NORTH AMERICAN PROJECT
        TSX V: NAN


  THE MANIITSOQ
Ni-Cu-PGE PROJECT
    Southwest Greenland

         June, 2012
                          Slide 1
Forward-Looking Statements
 NOTE:
 Some of the statements contained herein may be forward-looking
 statements which involve known and unknown risks and uncertainties.
 Without limitation, statements regarding potential mineralization and
 resources, exploration results, and future plans and objectives of the
 Company are forward-looking statements that involve various risks. The
 following are important factors that could cause the Company’s actual
 results to differ materially from those expressed or implied by such
 forward-looking statements: changes in the world wide price of mineral
 commodities, general market conditions, risks inherent in mineral
 exploration, risks associated with development, construction and mining
 operations, the uncertainty of future profitability and the uncertainty of
 access to additional capital. There can be no assurance that forward-looking
 statements will prove to be accurate as actual results and future
 events may differ materially from those anticipated in such statements.
 North American Nickel Inc. undertakes no obligation to update such forward-
 looking statements if circumstances or management’s estimates or opinions
 should change. The reader is cautioned not to place undue reliance on
 such forward-looking statements.
                                                                                Slide 2
Capital Structure
Listing                                             NAN:TSX.V      Cash Value
Issued and Outstanding:                              76,922,693
                                     VMS Owns       (21,825,000)
                                  Sentient Owns     (20,000,000)
Warrants:
                   @ $0.10 expire Dec. 28,2012        5,837,500        $0.6M
                   @ $0.35 expire Nov. 24, 2012      11,243,950
                                    VMS Owns          5,000,025        $3.9M

                     @ $0.21 Owned by Sentient       10,000,000        $2.1M

Greenland Warrants        @ $0.50, $0.70, &          12,960,000        $9.0M
$1.00
Options                                               5,618,000        $0.8M
Fully Diluted                                       122,582,143         $22M

Cash Position                                             $3.6M
52 Week High/Low                                  $0.090 – $0.32
                                                                            Slide 3
Directors & Management
Rick Mark, M.Ed (Admin) - CEO & Chairman: Rick has over 23 years experience in the public market
place. He is also the CEO & Chair of VMS Ventures Inc. (VMS:TSX.V), and Harvest Gold Corporation
(HVG-TSX.V), a December 2005 "spin off" from VMS, and is the President and CEO of Pancontinental
Uranium Corp. (PUC-TSX.V).


Mark Fedikow, HBSc., M.Sc., Ph.D., P.Eng., P. Geo., C.P.G. - President and C.O.O., Director: Mark
has 34 years of industry and government experience as an exploration geochemist and mineral deposits
geologist. He was the Chief Geologist of the Mineral Deposits Section in Manitoba. In 2001, Mark was
the recipient of the Provincial Geologists Medal, a Canadian national award for outstanding geoscientific
achievement. He is also the Vice President of Exploration and Technical Services of VMS Ventures Inc.


John Pattison, P. Geo., B.Sc. – Chief Geologist: John has extensive experience in base metal
exploration, in particular, nickel sulphide deposits. His career extends from the nickel camps of Canada
to southern Africa. From 1983 to 2002, John worked with Falconbridge Limited and associated
companies where he was responsible for managing base metal, PGE and gold exploration projects
throughout Canada and southern Africa.


John Roozendaal – Director: John is the founding director and President of VMS Ventures Inc. He has
been involved with the minerals exploration industry for over 20 years, and was directly involved in the
VMS Ventures Reed Lake discovery in 2007, which is now Joint Ventured with HudBay Minerals Inc.




                                                                                                       Slide 4
Advisors
James M. Patterson B.A., D.I.C., Ph.D., P. Geo.: Jim has over 40 years experience in mineral
exploration in Canada, Ireland, SE Asia and South America working with major and junior exploration
companies, government and international development agencies. He was formerly with FNX Mining
Company Inc. where he was Geological Consultant (2001-2002), Vice President Exploration (2002-2005)
and VP & Executive Consultant (2005-2006).


Cashel Meagher B.Sc. P. Geo.: Cashel is currently Vice President Exploration of HudBay Minerals. He
has worked with the technical and management teams at VMS Ventures and North American Nickel
through the Reed Lake joint venture with VMS. Prior to joining HudBay, Mr. Meagher held management
positions with Vale Inco in exploration, technical services, and mine operations.

Walter Peredery Ph.D. P.Geo.: Walter has more than 40 years experience in nickel-copper-PGE
exploration in the Sudbury Basin as well as the Thompson Nickel Belt in Manitoba. Dr. Peredery is a
recognized expert in the geology and ore deposits of the Sudbury mining camp. He is the author of the
qualifying N.I. 43-101 report for North American Nickel. Dr. Peredery’s accomplishments include co-
authoring of the impact theory of the Sudbury igneous complex which is recognized around the world as
the definitive work on the Sudbury basin.`


Mike Muzylowski: Mike Muzylowski, Callinan Mines Ltd. (CAA-TSX.V) accomplished President and
CEO, has played key roles in the discovery of 15 Canadian mines, 13 in Manitoba, during his
distinguished career as a geologist, geophysicist and senior mining executive.



                                                                                                   Slide 5
Advisors
John Rowntree, Hons B.Sc., FAusIMM, CIMM: John Rowntree has 46 years experience in the
minerals exploration industry. He has been a founding director of several public exploration companies
and has been responsible for property acquisition and for directing exploration leading to the discovery
 of economic gold, tantalum, uranium, platinum, copper/gold and TVM iron deposits in Australia and
Greenland.


John Ferguson, Ph.D., D.Sc., FAusIMM & Life Fellow Geological Soc. S. Africa: John Ferguson has
been involved in the minerals industry, academia and four geological surveys for the past 50 years. He
has conducted extensive exploration activities in several continents particularly focusing on gold, base
metals, platinum group elements, iron ores, uranium, rare earth elements & diamonds. He has held
positions as founding director of publicly listed companies, Professor/Reader at the University of the
Witwatersrand and Division Head/Acting Director at the Bureau of Mineral Resources Geology &
Geophysics, Canberra (now Geoscience Australia). Other survey appointments include working for the
Greenland Geological Survey and as a NRC Fellow at the Geological Survey of Canada. He was
responsible for the discovery of the platinum group metals resource at Munni Munni, Western Australia
as well as the discovery of kimberlites and industrial minerals in southern Africa and Greenland.


Neil Richardson, P. Geo.: Neil received his Geological Engineering Technical Diploma from Cambrian
College in Sudbury and has a long history of mineral exploration and mining experience with HudBay
Minerals and a host of junior explorers including Murgor Resources. Neil is the Chief Operating Officer
for VMS Ventures and is responsible for developing and implementing exploration programs in the Flin
Flon-Snow Lake area



                                                                                                      Slide 6
Maniitsoq Project
                 A World Class Nickel Camp?
•   Underexplored (previous hole lengths averaged < 60 m) but lots of high-
    grade historical assays (e.g. 9.85 m @ 2.67% Ni and 0.60% Cu).
•   Strong evidence of a large-scale, long lived mafic igneous event.
•   Major, deep seated structures that were active from the Archean through to
    the Mesozoic.
•   Intrusions hosting the mineralization appear to have been part of a dynamic
    magma conduit system.
•   Proof that modern helicopter geophysical technology is significantly more
    effective in this rugged terrain than techniques used in the past.
•   6 months from acquisition of land to identification of initial drill targets.
•   Only 8% of project area investigated to date.



                                                                                    Slide 7
North America / Maniitsoq
                   Maniitsoq Project
                    Camp-scale project in
                     an underexplored
                     nickel belt.
                    Adjacent to tide water
                     that is open year
                     round.
                    1,400 nautical miles
                     from Vale’s nickel
                     processing facility at
                     Long Harbour, NL.

                   Other Projects
                    Major projects
                     situated in Thompson
                     and Sudbury, the two
                     most productive
                     mining camps in the
                     world class Circum-
                     Superior Nickel Belt.

                                  Slide 8
Maniitsoq Project Location
            • Situated in a safe, stable,
              mining-friendly jurisdiction.
            • Straight forward permitting
              process.
            • No land claims issues.
            • Mine development
              activities nearby including
              road and deep water port
              construction (London
              Mining’s Isua Iron project).

                                     Slide 9
THE MANIITSOQ NICKEL BELT
- PLENTY OF ROOM FOR WORLD CLASS
            DEPOSIT(S)
                                              Belt is arcuate shaped, 75
                                               km long by 15 km wide
                                               and characterised by
                                               nickel-bearing noritic
                                               intrusions.
                                              Numerous significant
                                               nickel showings with
                                               consistently high nickel
                                               tenor.
                                   Voisey’s Bay Deposit
                                   at map scale.




                Plan view of the Voisey’s Bay intrusion (from Eckstrand & Hulbert, 2007)
                                                                 From Eckstrand & Hulbert, 2007




                                                                               Slide 10
Regional Setting
         •   Located in the Archean Akia terrane of the
             South-West Greenland Archean complex
             (correlated with the Nain province in
             Labrador, Canada).
         •   Akia terrane consists of 80% retrogressed
             3.4 – 2.9 Ga granulite facies gneisses
             intercalated with supracrustal rocks (15%
             amphibolites of volcanic origin and 5%
             layered mafic complexes). The
Finne-
Fjeld
             supracrustal rocks occur in belts up to 6
Gneiss
             km wide folded into dome and basin
             patterns.
         •   Project is roughly centred on the Finnefjeld
             gneiss complex (2975 Ma), which has
             recently been interpreted to represent the
             centre of a giant meteorite impact site
             (Garde, 2010).



                                                Slide 11
Regional Setting
Property Geology
   GREENLAND     • Abundant Ni-Cu sulphide showings
   NORITE BELT
                   associated with noritic intrusions.
                 • Norites are concentrated in, but not
                   restricted to, a J-shaped belt 75 km
                   long by up to 15 km wide that wraps
                   around the Finnefjeld Gneiss
                   Complex.
                 • Intrusion of nickeliferous norites over
                   a period of time spanning at least
                   one complete geomagnetic reversal.




                                                  Slide 12
Regional Setting
Ni-Cu Occurrences
         • 14 significant Ni-Cu showings.
         • KØ made numerous intersections
           including:
            9.85 meters averaging 2.67% Ni and
            0.60% Cu at Imiak Hill
            12.89 meters averaging 2.24% Ni
            and 0.63% Cu at the Fossilik
            showing.
         • KØ drilled 119 holes totalling 6,287 m
           (i.e. average hole <55 m long) to test
           outcropping norites, exposed sulphide
           mineralization and shallow
           electromagnetic (EM) anomalies directly
           associated with exposed mineralization.
         • All discovered by Kyrolitselskabet
           Øresund A/S between 1962 and 1972
           through surface prospecting.

                                        Slide 13
Undeformed Norite Host
        Rocks
               •   Distinct appearance in field
                   forming rounded hills covered
                   with brownish-grey, often rusty,
                   coarse gravel.
               •   Individual bodies range in size
                   from <2x2 m to 2 x 4 km.
               •   Intrusions often crosscut
                   gneissosity (i.e. significantly
                   younger than country rock).
               •   Many intrusions appear to be
                   emplaced along 060° trending
                   structures.
               •   Bodies are often enveloped by
                   narrow mylonite zones but
                   interiors are usually massive
                   with little or no foliation.
               •   Intrusions are typically multi-
                   phase and range in composition
                   from quartz diorite, through
                   norite, to lherzolite.
                   Gabbronorite is the most
                   common phase.
               •   Insitu differentiation is
                   minimal (dynamic system).
               •   Assimilation of host gneiss is
                   common.
                                          Slide 14
Mineralization
• Sulphide
  mineralization
  consists of mono-
  clinc pyrrhotite,
  pyrite, pentlandite
  and chalcopyrite.                     Imiak Hill

• Inclusion-bearing
  sulphide is a
  common texture.       Pingo

• Disseminated and
  net textured
  sulphides also           Imiak Hill
  common.
                                              Quagssuk       5 cm

                                                         Slide 15
Nickel Tenor
                                            Ni vs. S for Maniitsoq Drill Core
• Maniitsoq sulphides
  have a relatively                       Typical 100% sulphide mixture
                                          of Po+Cp+Pn contains 35.7% S
  consistent nickel                                          Kerr, 2003
  tenor of 6 to 8% Ni
  recalculated to 100%
  sulphide.

                           Nickel wt. %
• Presence of pyrite
  means there is more                                                          DRILL CORE
  S for a given amount
  of sulphide than in
  typical magmatic
  sulphide deposits
  consisting mainly of
  pyrrhotite-pentlandite
  and chalcopyrite.                                    Sulphur wt. %
                                                                               After Shore, 2000
                                                                          (Falconbridge Limited)
                                                                                   Slide 16
Deposit Model
VERTICAL SECTION                    Deposition of Ni-Sulphides in a
                                      Magma Conduit System
                 PRESENT DAY        •   Superheated noritic magma flows
                EROSION LEVEL           through gneiss and paragneiss in an
                                        open system.
                                    •   Gneiss is assimilated by the hot
                                        magma and triggers sulphide
                                        saturation.
                                    •   Ni + Cu ± PGE sulphides are
                                        deposited in zones of lower velocity
                                        within the magmatic plumbing
                                        system.
                                    •   Continual magma flow upgrades
                                        nickel tenor of sulphide.
                                    •   Similar to Voisey’s Bay
Modified after Maier et al., 2001                                  Slide 17
Old Technology Did Not
        Work
           Cominco 1995 – 1996
           • 20,446 line-km of airborne GeoTEM EM and
             magnetic surveying.
               – Lines 200-400 m apart oriented 080° (i.e.
                 subparallel to orientation of norites resulting
                 in poor coupling).
               – Large fixed wing aircraft had difficulty hugging
                 the rugged terrain resulting in noisey data.
               – Very few anomalies associated with norites.
               – Ground follow-up prospecting, minor surface
                 geophysics (<30 line-km) but no drilling.


           Falconbridge 1993 & 2000
           • 100 line-km of UTEM over Imiak Hill and part
             of Fossilik.
               – Lines 200 to 400 m apart.
               – No conductors detected and no drilling
                 done.




                                                     Slide 18
NAN’s 2011 Work Program
• Compiled all previous work.
• Conducted 1-week field program
  to sample and confirm selected
  showings, locate key historical
  drill holes and select areas for
  helicopter TEM and magnetic
  surveying.
• Flew 2,217 line-km of SkyTEM
  helicopter-borne TEM and
  magnetic surveys over two
  blocks of ground totaling 373 km2
  (<8% of the total project area).

                                      Slide 19
Block 1 SkyTEM Results
                                         • 1995 GeoTEM
                                           survey detected
                                           only 2 significant
                                           (>2 channel) EM
                                           anomalies in this
                      B1-B Target area     block.
                                         • NAN’s 2011
                                           SkyTEM survey
                                           outlined 17
            B1-L Target area
                                           conductive target
  B1-J Target area                         zones in block 1.
                                         • 3D modeling of
                                           the SkyTEM data
                                           has identified 3
                                           high priority
                                           targets (B1-B, B1-
                                           J and B1-L).

                                                      Slide 20
3D EM Modeling Target B1-J
TARGET B1-J (IMIAK HILL): 3D VIEW LOOKING WEST
                                                 • 170 m long by 16 m wide conductor that comes to
                                                   surface and is directly coincident with the Imiak Hill
                                                   showing.
                                                 • The model shows that the mineralization strikes parallel
                                                   to most of the historical drilling and therefore has not
                                                   been properly tested.
                                                 • The model has very limited dip extent (21 m) but the
                                                   best intersection on the showing (9.85 m averaging
                  9.85m @ 2.67% Ni, 0.60% Cu       2.67% Ni and 0.60% Cu) occurs 130 m below surface
                                                   indicating that strong mineralization at surface is
                                 FO OTWALL         masking the EM response from mineralization at depth.
                                 CONTACT
                                 OF N ORITE


                                                                                        E
                                                                                   STRIK




                                                                                      9.85m @ 2.67% Ni, 0.60% Cu




                                                                                                  Slide 21
3D EM Modeling Target B1-B
                      • 700 m long, near
        Target B1-B     surface conductive
                        zone.
                      • No previous drilling.
                      • Characteristics and
                        orientation of the
     Interpreted        conductor vary
     Norite             considerably along
                        strike suggesting it is
                        not formational.
                      • Magnetic data suggests
                        that it is hosted in a
                        large (2.5 x 1.0 km)
                        norite body.



                                       Slide 22
3D EM Modeling Target B1-L
   TARGET B1-L (SPOTTY HILL): 3D VIEW LOOKING NORTH   • Modeled as a 330 x 100 m
                                                        flat-lying conductor located
                                                        160 m below surface within a
                                                        norite intrusion.
                  ~ 160 m BELOW SURFACE
                  (i.e. 100 m BENEATH
                                                      • The conductor is untested but
                  PREVIOUS DRILLING)                    past shallow drilling 100 m
                                                        above intersected weakly
        330
              m   100 m
                                                        disseminated, nickeliferous
                                                        sulphides grading up to
                                                        0.52% Ni and 0.26% Cu over
                                                        12.94 m.
                                                      • Clearly, mineralizing
                                                        processes were at work in the
                                                        intrusion as indicated by the
                                                        disseminated near-surface
                                                        mineralization and the most
                                                        logical location to look for
                                                        massive sulphides is at
                                                        depth.

                                                                          Slide 23
Plans for 2012 & Beyond
            2012
            • Ground truth all 25 conductive target zones
              identified by SkyTEM with emphasis on 3
              highest priority zones (B1-B, B1-J and B1-L).
            • Minimum 2,000 m of drilling to the three
              highest priority targets.
            • 3,000 line-km of helicopter TEM over
              prospective norites in southern part of the
              norite belt.
            • Prospecting outside of main norite belt looking
              for new showings and norites.
            • Estimated cost $3.0 million


            2013
            • Minimum 6,000 m of follow-up drilling on
              targets derived from 2012 work
            • 3,000 line-km of helicopter TEM
            • Estimated cost $ 7.5 million.



                                                    Slide 24
Investor Risk Mitigation
   100% ownership; Camp-sized land package (Sudbury)
   Public Co management/financing experience
   Technical team is deep
   Secure political jurisdiction
   Regional setting; year round exploration
   Historic exploration data is remarkable ($10M plus)
   Geology
       Abundance of Ni-Cu occurrences at surface & in drilling
       Undeformed norite host rocks
       Mineralization: inclusion-bearing sulphides
       Nickel Tenor – consistent and economic grade
 New technologies in “old” camp work
    – 25 EM targets in 8% of land package
                                                                  Slide 25

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Nan june 2012

  • 1. MANIITSOQ Ni-CuNICKEL INC NORTH AMERICAN PROJECT TSX V: NAN THE MANIITSOQ Ni-Cu-PGE PROJECT Southwest Greenland June, 2012 Slide 1
  • 2. Forward-Looking Statements NOTE: Some of the statements contained herein may be forward-looking statements which involve known and unknown risks and uncertainties. Without limitation, statements regarding potential mineralization and resources, exploration results, and future plans and objectives of the Company are forward-looking statements that involve various risks. The following are important factors that could cause the Company’s actual results to differ materially from those expressed or implied by such forward-looking statements: changes in the world wide price of mineral commodities, general market conditions, risks inherent in mineral exploration, risks associated with development, construction and mining operations, the uncertainty of future profitability and the uncertainty of access to additional capital. There can be no assurance that forward-looking statements will prove to be accurate as actual results and future events may differ materially from those anticipated in such statements. North American Nickel Inc. undertakes no obligation to update such forward- looking statements if circumstances or management’s estimates or opinions should change. The reader is cautioned not to place undue reliance on such forward-looking statements. Slide 2
  • 3. Capital Structure Listing NAN:TSX.V Cash Value Issued and Outstanding: 76,922,693 VMS Owns (21,825,000) Sentient Owns (20,000,000) Warrants: @ $0.10 expire Dec. 28,2012 5,837,500 $0.6M @ $0.35 expire Nov. 24, 2012 11,243,950 VMS Owns 5,000,025 $3.9M @ $0.21 Owned by Sentient 10,000,000 $2.1M Greenland Warrants @ $0.50, $0.70, & 12,960,000 $9.0M $1.00 Options 5,618,000 $0.8M Fully Diluted 122,582,143 $22M Cash Position $3.6M 52 Week High/Low $0.090 – $0.32 Slide 3
  • 4. Directors & Management Rick Mark, M.Ed (Admin) - CEO & Chairman: Rick has over 23 years experience in the public market place. He is also the CEO & Chair of VMS Ventures Inc. (VMS:TSX.V), and Harvest Gold Corporation (HVG-TSX.V), a December 2005 "spin off" from VMS, and is the President and CEO of Pancontinental Uranium Corp. (PUC-TSX.V). Mark Fedikow, HBSc., M.Sc., Ph.D., P.Eng., P. Geo., C.P.G. - President and C.O.O., Director: Mark has 34 years of industry and government experience as an exploration geochemist and mineral deposits geologist. He was the Chief Geologist of the Mineral Deposits Section in Manitoba. In 2001, Mark was the recipient of the Provincial Geologists Medal, a Canadian national award for outstanding geoscientific achievement. He is also the Vice President of Exploration and Technical Services of VMS Ventures Inc. John Pattison, P. Geo., B.Sc. – Chief Geologist: John has extensive experience in base metal exploration, in particular, nickel sulphide deposits. His career extends from the nickel camps of Canada to southern Africa. From 1983 to 2002, John worked with Falconbridge Limited and associated companies where he was responsible for managing base metal, PGE and gold exploration projects throughout Canada and southern Africa. John Roozendaal – Director: John is the founding director and President of VMS Ventures Inc. He has been involved with the minerals exploration industry for over 20 years, and was directly involved in the VMS Ventures Reed Lake discovery in 2007, which is now Joint Ventured with HudBay Minerals Inc. Slide 4
  • 5. Advisors James M. Patterson B.A., D.I.C., Ph.D., P. Geo.: Jim has over 40 years experience in mineral exploration in Canada, Ireland, SE Asia and South America working with major and junior exploration companies, government and international development agencies. He was formerly with FNX Mining Company Inc. where he was Geological Consultant (2001-2002), Vice President Exploration (2002-2005) and VP & Executive Consultant (2005-2006). Cashel Meagher B.Sc. P. Geo.: Cashel is currently Vice President Exploration of HudBay Minerals. He has worked with the technical and management teams at VMS Ventures and North American Nickel through the Reed Lake joint venture with VMS. Prior to joining HudBay, Mr. Meagher held management positions with Vale Inco in exploration, technical services, and mine operations. Walter Peredery Ph.D. P.Geo.: Walter has more than 40 years experience in nickel-copper-PGE exploration in the Sudbury Basin as well as the Thompson Nickel Belt in Manitoba. Dr. Peredery is a recognized expert in the geology and ore deposits of the Sudbury mining camp. He is the author of the qualifying N.I. 43-101 report for North American Nickel. Dr. Peredery’s accomplishments include co- authoring of the impact theory of the Sudbury igneous complex which is recognized around the world as the definitive work on the Sudbury basin.` Mike Muzylowski: Mike Muzylowski, Callinan Mines Ltd. (CAA-TSX.V) accomplished President and CEO, has played key roles in the discovery of 15 Canadian mines, 13 in Manitoba, during his distinguished career as a geologist, geophysicist and senior mining executive. Slide 5
  • 6. Advisors John Rowntree, Hons B.Sc., FAusIMM, CIMM: John Rowntree has 46 years experience in the minerals exploration industry. He has been a founding director of several public exploration companies and has been responsible for property acquisition and for directing exploration leading to the discovery of economic gold, tantalum, uranium, platinum, copper/gold and TVM iron deposits in Australia and Greenland. John Ferguson, Ph.D., D.Sc., FAusIMM & Life Fellow Geological Soc. S. Africa: John Ferguson has been involved in the minerals industry, academia and four geological surveys for the past 50 years. He has conducted extensive exploration activities in several continents particularly focusing on gold, base metals, platinum group elements, iron ores, uranium, rare earth elements & diamonds. He has held positions as founding director of publicly listed companies, Professor/Reader at the University of the Witwatersrand and Division Head/Acting Director at the Bureau of Mineral Resources Geology & Geophysics, Canberra (now Geoscience Australia). Other survey appointments include working for the Greenland Geological Survey and as a NRC Fellow at the Geological Survey of Canada. He was responsible for the discovery of the platinum group metals resource at Munni Munni, Western Australia as well as the discovery of kimberlites and industrial minerals in southern Africa and Greenland. Neil Richardson, P. Geo.: Neil received his Geological Engineering Technical Diploma from Cambrian College in Sudbury and has a long history of mineral exploration and mining experience with HudBay Minerals and a host of junior explorers including Murgor Resources. Neil is the Chief Operating Officer for VMS Ventures and is responsible for developing and implementing exploration programs in the Flin Flon-Snow Lake area Slide 6
  • 7. Maniitsoq Project A World Class Nickel Camp? • Underexplored (previous hole lengths averaged < 60 m) but lots of high- grade historical assays (e.g. 9.85 m @ 2.67% Ni and 0.60% Cu). • Strong evidence of a large-scale, long lived mafic igneous event. • Major, deep seated structures that were active from the Archean through to the Mesozoic. • Intrusions hosting the mineralization appear to have been part of a dynamic magma conduit system. • Proof that modern helicopter geophysical technology is significantly more effective in this rugged terrain than techniques used in the past. • 6 months from acquisition of land to identification of initial drill targets. • Only 8% of project area investigated to date. Slide 7
  • 8. North America / Maniitsoq Maniitsoq Project  Camp-scale project in an underexplored nickel belt.  Adjacent to tide water that is open year round.  1,400 nautical miles from Vale’s nickel processing facility at Long Harbour, NL. Other Projects  Major projects situated in Thompson and Sudbury, the two most productive mining camps in the world class Circum- Superior Nickel Belt. Slide 8
  • 9. Maniitsoq Project Location • Situated in a safe, stable, mining-friendly jurisdiction. • Straight forward permitting process. • No land claims issues. • Mine development activities nearby including road and deep water port construction (London Mining’s Isua Iron project). Slide 9
  • 10. THE MANIITSOQ NICKEL BELT - PLENTY OF ROOM FOR WORLD CLASS DEPOSIT(S) Belt is arcuate shaped, 75 km long by 15 km wide and characterised by nickel-bearing noritic intrusions. Numerous significant nickel showings with consistently high nickel tenor. Voisey’s Bay Deposit at map scale. Plan view of the Voisey’s Bay intrusion (from Eckstrand & Hulbert, 2007) From Eckstrand & Hulbert, 2007 Slide 10
  • 11. Regional Setting • Located in the Archean Akia terrane of the South-West Greenland Archean complex (correlated with the Nain province in Labrador, Canada). • Akia terrane consists of 80% retrogressed 3.4 – 2.9 Ga granulite facies gneisses intercalated with supracrustal rocks (15% amphibolites of volcanic origin and 5% layered mafic complexes). The Finne- Fjeld supracrustal rocks occur in belts up to 6 Gneiss km wide folded into dome and basin patterns. • Project is roughly centred on the Finnefjeld gneiss complex (2975 Ma), which has recently been interpreted to represent the centre of a giant meteorite impact site (Garde, 2010). Slide 11
  • 12. Regional Setting Property Geology GREENLAND • Abundant Ni-Cu sulphide showings NORITE BELT associated with noritic intrusions. • Norites are concentrated in, but not restricted to, a J-shaped belt 75 km long by up to 15 km wide that wraps around the Finnefjeld Gneiss Complex. • Intrusion of nickeliferous norites over a period of time spanning at least one complete geomagnetic reversal. Slide 12
  • 13. Regional Setting Ni-Cu Occurrences • 14 significant Ni-Cu showings. • KØ made numerous intersections including: 9.85 meters averaging 2.67% Ni and 0.60% Cu at Imiak Hill 12.89 meters averaging 2.24% Ni and 0.63% Cu at the Fossilik showing. • KØ drilled 119 holes totalling 6,287 m (i.e. average hole <55 m long) to test outcropping norites, exposed sulphide mineralization and shallow electromagnetic (EM) anomalies directly associated with exposed mineralization. • All discovered by Kyrolitselskabet Øresund A/S between 1962 and 1972 through surface prospecting. Slide 13
  • 14. Undeformed Norite Host Rocks • Distinct appearance in field forming rounded hills covered with brownish-grey, often rusty, coarse gravel. • Individual bodies range in size from <2x2 m to 2 x 4 km. • Intrusions often crosscut gneissosity (i.e. significantly younger than country rock). • Many intrusions appear to be emplaced along 060° trending structures. • Bodies are often enveloped by narrow mylonite zones but interiors are usually massive with little or no foliation. • Intrusions are typically multi- phase and range in composition from quartz diorite, through norite, to lherzolite. Gabbronorite is the most common phase. • Insitu differentiation is minimal (dynamic system). • Assimilation of host gneiss is common. Slide 14
  • 15. Mineralization • Sulphide mineralization consists of mono- clinc pyrrhotite, pyrite, pentlandite and chalcopyrite. Imiak Hill • Inclusion-bearing sulphide is a common texture. Pingo • Disseminated and net textured sulphides also Imiak Hill common. Quagssuk 5 cm Slide 15
  • 16. Nickel Tenor Ni vs. S for Maniitsoq Drill Core • Maniitsoq sulphides have a relatively Typical 100% sulphide mixture of Po+Cp+Pn contains 35.7% S consistent nickel Kerr, 2003 tenor of 6 to 8% Ni recalculated to 100% sulphide. Nickel wt. % • Presence of pyrite means there is more DRILL CORE S for a given amount of sulphide than in typical magmatic sulphide deposits consisting mainly of pyrrhotite-pentlandite and chalcopyrite. Sulphur wt. % After Shore, 2000 (Falconbridge Limited) Slide 16
  • 17. Deposit Model VERTICAL SECTION Deposition of Ni-Sulphides in a Magma Conduit System PRESENT DAY • Superheated noritic magma flows EROSION LEVEL through gneiss and paragneiss in an open system. • Gneiss is assimilated by the hot magma and triggers sulphide saturation. • Ni + Cu ± PGE sulphides are deposited in zones of lower velocity within the magmatic plumbing system. • Continual magma flow upgrades nickel tenor of sulphide. • Similar to Voisey’s Bay Modified after Maier et al., 2001 Slide 17
  • 18. Old Technology Did Not Work Cominco 1995 – 1996 • 20,446 line-km of airborne GeoTEM EM and magnetic surveying. – Lines 200-400 m apart oriented 080° (i.e. subparallel to orientation of norites resulting in poor coupling). – Large fixed wing aircraft had difficulty hugging the rugged terrain resulting in noisey data. – Very few anomalies associated with norites. – Ground follow-up prospecting, minor surface geophysics (<30 line-km) but no drilling. Falconbridge 1993 & 2000 • 100 line-km of UTEM over Imiak Hill and part of Fossilik. – Lines 200 to 400 m apart. – No conductors detected and no drilling done. Slide 18
  • 19. NAN’s 2011 Work Program • Compiled all previous work. • Conducted 1-week field program to sample and confirm selected showings, locate key historical drill holes and select areas for helicopter TEM and magnetic surveying. • Flew 2,217 line-km of SkyTEM helicopter-borne TEM and magnetic surveys over two blocks of ground totaling 373 km2 (<8% of the total project area). Slide 19
  • 20. Block 1 SkyTEM Results • 1995 GeoTEM survey detected only 2 significant (>2 channel) EM anomalies in this B1-B Target area block. • NAN’s 2011 SkyTEM survey outlined 17 B1-L Target area conductive target B1-J Target area zones in block 1. • 3D modeling of the SkyTEM data has identified 3 high priority targets (B1-B, B1- J and B1-L). Slide 20
  • 21. 3D EM Modeling Target B1-J TARGET B1-J (IMIAK HILL): 3D VIEW LOOKING WEST • 170 m long by 16 m wide conductor that comes to surface and is directly coincident with the Imiak Hill showing. • The model shows that the mineralization strikes parallel to most of the historical drilling and therefore has not been properly tested. • The model has very limited dip extent (21 m) but the best intersection on the showing (9.85 m averaging 9.85m @ 2.67% Ni, 0.60% Cu 2.67% Ni and 0.60% Cu) occurs 130 m below surface indicating that strong mineralization at surface is FO OTWALL masking the EM response from mineralization at depth. CONTACT OF N ORITE E STRIK 9.85m @ 2.67% Ni, 0.60% Cu Slide 21
  • 22. 3D EM Modeling Target B1-B • 700 m long, near Target B1-B surface conductive zone. • No previous drilling. • Characteristics and orientation of the Interpreted conductor vary Norite considerably along strike suggesting it is not formational. • Magnetic data suggests that it is hosted in a large (2.5 x 1.0 km) norite body. Slide 22
  • 23. 3D EM Modeling Target B1-L TARGET B1-L (SPOTTY HILL): 3D VIEW LOOKING NORTH • Modeled as a 330 x 100 m flat-lying conductor located 160 m below surface within a norite intrusion. ~ 160 m BELOW SURFACE (i.e. 100 m BENEATH • The conductor is untested but PREVIOUS DRILLING) past shallow drilling 100 m above intersected weakly 330 m 100 m disseminated, nickeliferous sulphides grading up to 0.52% Ni and 0.26% Cu over 12.94 m. • Clearly, mineralizing processes were at work in the intrusion as indicated by the disseminated near-surface mineralization and the most logical location to look for massive sulphides is at depth. Slide 23
  • 24. Plans for 2012 & Beyond 2012 • Ground truth all 25 conductive target zones identified by SkyTEM with emphasis on 3 highest priority zones (B1-B, B1-J and B1-L). • Minimum 2,000 m of drilling to the three highest priority targets. • 3,000 line-km of helicopter TEM over prospective norites in southern part of the norite belt. • Prospecting outside of main norite belt looking for new showings and norites. • Estimated cost $3.0 million 2013 • Minimum 6,000 m of follow-up drilling on targets derived from 2012 work • 3,000 line-km of helicopter TEM • Estimated cost $ 7.5 million. Slide 24
  • 25. Investor Risk Mitigation  100% ownership; Camp-sized land package (Sudbury)  Public Co management/financing experience  Technical team is deep  Secure political jurisdiction  Regional setting; year round exploration  Historic exploration data is remarkable ($10M plus)  Geology  Abundance of Ni-Cu occurrences at surface & in drilling  Undeformed norite host rocks  Mineralization: inclusion-bearing sulphides  Nickel Tenor – consistent and economic grade  New technologies in “old” camp work – 25 EM targets in 8% of land package Slide 25

Editor's Notes

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