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Kepezhinskas, Nikita; Kjarsgaard, Bruce A.; Sarkar, Chiranjeeb; Luo, Yan; Locock, Andrew J.; Pearson, D. Graham (2025) Petrology, geochemistry, and geochronology of the Mel Kimberlites, Nunavut, Canada and their relationship to Neoproterozoic to Cambrian magmatism in North America. Mineralogy and Petrology, 119 (4). doi:10.1007/s00710-024-00876-z

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Reference TypeJournal (article/letter/editorial)
TitlePetrology, geochemistry, and geochronology of the Mel Kimberlites, Nunavut, Canada and their relationship to Neoproterozoic to Cambrian magmatism in North America
JournalMineralogy and Petrology
AuthorsKepezhinskas, NikitaAuthor
Kjarsgaard, Bruce A.Author
Sarkar, ChiranjeebAuthor
Luo, YanAuthor
Locock, Andrew J.Author
Pearson, D. GrahamAuthor
Year2025 (December)Volume119
Issue4
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00710-024-00876-zSearch in ResearchGate
Generate Citation Formats
Mindat Ref. ID19293622Long-form Identifiermindat:1:5:19293622:8
GUID0
Full ReferenceKepezhinskas, Nikita; Kjarsgaard, Bruce A.; Sarkar, Chiranjeeb; Luo, Yan; Locock, Andrew J.; Pearson, D. Graham (2025) Petrology, geochemistry, and geochronology of the Mel Kimberlites, Nunavut, Canada and their relationship to Neoproterozoic to Cambrian magmatism in North America. Mineralogy and Petrology, 119 (4). doi:10.1007/s00710-024-00876-z
Plain TextKepezhinskas, Nikita; Kjarsgaard, Bruce A.; Sarkar, Chiranjeeb; Luo, Yan; Locock, Andrew J.; Pearson, D. Graham (2025) Petrology, geochemistry, and geochronology of the Mel Kimberlites, Nunavut, Canada and their relationship to Neoproterozoic to Cambrian magmatism in North America. Mineralogy and Petrology, 119 (4). doi:10.1007/s00710-024-00876-z
In(2025, December) Mineralogy and Petrology Vol. 119 (4). Springer Science and Business Media LLC

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Armstrong JT (1988) Quantitative analysis of silicate and oxide minerals: Comparison of Monte Carlo, ZAF and φ (ρZ) procedures. In Newbury DE (ed) Microbeam analysis. San Francisco Press, pp 239–246
Clement CR (1982) A comparative geological study of some major kimberlite pipes in the Northern Cape and Orange Free State. Dissertation, University of Cape Town
Donovan JJ, Kremser D, Fournelle JH (2012) Probe for EPMA: Acquisition, automation and analysis. Probe Software Inc, Eugene
Ernst RE, Buchan KL (2004) Igneous rock associations in Canada 3. Large Igneous Provinces (LIPs) in Canada and adjacent regions: 3 Ga to present. Geosci Canad 31(3):103–126
Gainer D, MacMorran M (2019) Mel Project Meville Peninsula, Nunavut Report on Exploration Activities (Diamond Drilling, Ground Geophysics, Heavy Mineral Sampling). Nunavut Mineral Ocurrence Database (NUMIN). Accessed 2 February 2022
Not Yet Imported: Nature Reviews Earth & Environment - journal-article : 10.1038/s43017-023-00481-2

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Giuliani A, Dalton H, Pearson DG (2024) Kimberlites: The deepest geochemical probes of Earth. In: Anbar A, Weis D (eds) Treatise on Geochemistry, 3rd edn. Elsevier, Amsterdam, pp 159–230
Hardman M (2020) Improving the use of eclogitic garnet as a diamond indicator mineral, and constraining the origin of eclogites in the subcontinental lithospheric mantle. Thesis, University of Alberta
Harrison C, St-Onge M, Petrov O, Strelnikov S, Lopatin B, Wilson F, Tella S, Paul D, Lynds T, Shokalsky S, Hults C, Bergman S, Solli A, Jepsen HF (2009) A new geological map of the Arctic: Geological Survey of Canada Open File 5816. In: Frontiers + Innovation – 2009. CSPG CSEG CWLS Convention, Calgary, pp 750–752
Kamo SL, Gower CF (1994) Note: U-Pb baddeleyite dating clarifies age of characteristic paleomagnetic remanence of Long Range dykes, southeastern Labrador. Atlantic Geol 30(3):259–262
Kienlen B, Blackmore E, Curry N, Gill G, Kolebaba M, Lyon R, Ozyer C, Pratt Z, Vanderspiegel R (2008) The Amaruk project in Canada’s new Pelly Bay diamond district. International Kimberlite Conference: Extended Abstracts 9:3
Kjarsgaard BA (2007) Kimberlite pipe models: significance for exploration. Milkereit B (Ed) In: Proceedings of exploration 07: Fifth Decennial International Conference on mineral Exploration, pp 667–677
McCandless TE, Gurney JJ (1989) Sodium in garnet and potassium in clinopyroxene: Criteria for classifying mantle eclogites. In: Ross J, Jacques AL, Ferguson J, Green DH, O’Reilly SY, Danchin RV, Janse AJA (eds) Kimberlites and Related Rocks. Their Mantle/Crust Setting, Diamonds and Diamond Exploration, vol 2. Vol 14. Blackwell Scientific, Carlton, pp 827–832
North Arrow Minerals Inc (2019) Mel project, Nunavut Canada’s newest kimberlite field. In: Annual Mineral Exploration Roundup 2019, Vancouver
Ottley CJ, Pearson DG, Irvine GJ (2003) A routine method for the dissolution of geological samples for the analysis of REE and trace elements via ICP-MS. Plasma source mass spectrometry: Appl Emerg Technol 288:221
Not Yet Imported: - journal-article : 10.1111/j.1751-908X.2007.00131.x

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Snelling AA (2014) Determination of the radioisotope decay constants and half-lives: Rubidium-87 (87Rb). Answ Res J 7:311–322
Not Yet Imported: - report : 10.4095/208175

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Not Yet Imported: - journal-article : 10.1038/s41598-021-83261-6

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