A new analytical protocol for high precision U–Th–Pb chemical dating of xenotime from the TTG gneisses of the Bundelkhand Craton, central India, using CAMECA SXFive Electron Probe Micro Analyzer
Author:
Funder
Science and Engineering Research Board
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
https://link.springer.com/content/pdf/10.1007/s12040-020-01482-1.pdf
Reference43 articles.
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3. Basu A K 1986 Geology of parts of the Brundelkhand granite massif central India; Rec. Geol. Surv. India 117(2) 61124.
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5. Chatterjee N, Mazumdar A C, Bhattacharya A and Saikia R R 2007 Mesoproterozoic granulites of the Shillong–Meghalaya Plateau: Evidence of westward continuation of the Prydz Bay Pan-African suture into northeastern India; Precamb. Res. 152(1–2) 1–26.
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1. Formation of manganoan ilmenite in Archean tonalite-trondhjemite-granodiorite (TTG) gneisses inferred from re-equilibration of biotite and Fe-Ti oxide assemblage: a case study from the Aravalli Craton, northwest India;Neues Jahrbuch für Mineralogie - Abhandlungen;2023-06-27
2. The evolution of the fracture systems under progressive sinistral shear in the Bundelkhand Craton, Central India: A review and new insights;Earth-Science Reviews;2022-12
3. Magma mixing dynamics in a vertically zoned granitic magma chamber inferred from feldspar disequilibrium assemblage and biotite composition: a case study from the Mikir Massif, eastern India;Acta Geochimica;2022-04-06
4. Significance of viscous coalescence in migmatites of the Assam-Meghalaya Gneissic Complex, eastern India;The Canadian Mineralogist;2022-02-25
5. Bulk rock and mineral chemistry of meta-sediments from Mahakoshal Supracrustal Belt, Central Indian Tectonic Zone: constraints on weathering, provenance, paleoclimate and metamorphism;Journal of Sedimentary Environments;2021-08-26
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