A major change in magma sources in late Mesozoic active margin of
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Last updated 06 novembro 2024
A major change in magma sources in late Mesozoic active margin of the circum‐Sea of Japan domain: Geochemical constraints from late Paleozoic to Paleogene mafic dykes in the Sergeevka belt, southern Primorye
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Provenance evolution during passive- to active-margin transition unraveled from an accretionary complex from the Bangong-Nujiang suture zone: Insights into Early Mesozoic Meso-Tethys subduction and source-area tectonics - ScienceDirect
Great Magma Eruptions Had Two Sources - Geology In
Subduction initiation triggered the Caribbean large igneous province
A major change in magma sources in late Mesozoic active margin of the circum‐Sea of Japan domain: Geochemical constraints from late Paleozoic to Paleogene mafic dykes in the Sergeevka belt, southern Primorye
Minerals, Free Full-Text
3 Magma, Melting, and Crystallization – Open Petrology
Minerals, Free Full-Text
Full article: Tectonic nature of the NE Asian continental margin during the Late Jurassic–Early Cretaceous: constraints from the geochronology and geochemistry of igneous rocks in the NE North China Craton
Late Cretaceous‐Palaeocene arc magmatism in Bumeicun, Gangdese, southern Tibet: Products of slab rollback of Neo‐Tethyan Ocean? - Liu - 2023 - Geological Journal - Wiley Online Library
Metallogenic type controlled by magma source and tectonic regime: Geochemical comparisons of Mesozoic magmatism between the Middle–Lower Yangtze River Belt and the Dabie Orogen, eastern China - ScienceDirect
A major change in magma sources in late Mesozoic active margin of the circum‐Sea of Japan domain: Geochemical constraints from late Paleozoic to Paleogene mafic dykes in the Sergeevka belt, southern Primorye
Full article: Geochronology and geochemistry of late Jurassic–Early Cretaceous volcanic rocks in the southern Great Xing'an range, NE China: constraints for late Mesozoic tectono-magmatic evolution
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