Magma processes and genesis of the Cretaceous Kawara granodiorite Ushikiri-yama body (Ushikiri-yama granodiorite), North Kyushu, SW Japan
Author:
Affiliation:
1. Graduate school of Sciences and Technology for Innovation, Yamaguchi University
2. Department of Earth Science, Shimane University
Publisher
The Geological Society of Japan
Subject
General Earth and Planetary Sciences,General Engineering,General Environmental Science
Link
https://www.jstage.jst.go.jp/article/geosoc/125/3/125_2018.0055/_pdf
Reference50 articles.
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3. Brandon, A. D., Creaser, R. A. and Chacko, T., 1996, Constraints on rates of granitic magma transport from epidote dissolution kinetics. Science, 271, 1845–1848.
4. Dodson, M. H. and McClelland-Brown, E., 1985, Isotopic and paleomagnetic evidence for rates of cooling, uplift and erosion. In Snelling, N. L., ed., The Chronology of the Geological Record. Geol. Soc. London, Mem., 10, 315–325.
5. Eshima, K., Owada, M. and Imaoka, T., 2017, Magma process of the Ushikiri-yama granodiorite, north Kyushu, SW Japan: Implications for formation of middle crust. Japan Geosci. Union-Am. Geophys. Union Joint Meet. 2017, Abstr., SCG73-P10.
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2. Magma evolution and growth process of the Ushikiri-yama granodiorite body a member of the Cretaceous Northern Kyushu batholith, SW Japan: Implication for the crustal forming and growth of the initial Cretaceous plutonic activity in northern Kyushu along the East Asian active continental margin;Lithos;2023-10
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4. Anatomy of Shaku–dake high–Mg diorite, southwest Japan: Lithofacies variations and growth process of high–Mg diorite stock;Journal of Mineralogical and Petrological Sciences;2021
5. Genesis of the low-Sr Granitoid from the Cretaceous Granitic rocks in Northern Kyushu;The Journal of the Geological Society of Japan;2020-12-15
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