tables:
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Table 2. Trace element compositions of the Horoman samples of Sanjeewa P. K. Malaviarachchi (2008) Highly unradiogenic lead isotope ratios from the Horoman peridotite in Japan, Nature Geoscience, 1, 859 - 863.
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Table 3. Pb isotopic composition of the Horoman samples of Sanjeewa P. K. Malaviarachchi (2008) Highly unradiogenic lead isotope ratios from the Horoman peridotite in Japan, Nature Geoscience, 1, 859 - 863.
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Table 4. Nd and Hf isotopic compositions of the Horoman samples of Sanjeewa P. K. Malaviarachchi (2008) Highly unradiogenic lead isotope ratios from the Horoman peridotite in Japan, Nature Geoscience, 1, 859 - 863.
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Table 1. Major element compositions of the Horoman peridotites of Sanjeewa P. K. Malaviarachchi (2008) Highly unradiogenic lead isotope ratios from the Horoman peridotite in Japan, Nature Geoscience, 1, 859 - 863.
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Table 1. Mineral modal compositions of the Horoman samples of Malaviarachchi, S. P. K. (2010) Melt-peridotite reactions and fluid metasomatism in the upper mantle, revealed from the geochemistry of peridotite and gabbro from the Horoman peridotite massif, Japan, Journal of Petrology, 51, 1417-1445.
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Table S2. Elemental and isotope abundances of the Horoman peridotites of Lalindra V. Ranaweera (2018) Circa 1 Ga sub-seafloor hydrothermal alteration imprinted on the Horoman peridotite massif, Scientific Reports, 8.
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Table S3. Oxygen and lithium isotope abundances of the Horoman gabbros and Hidaka metasediments of Lalindra V. Ranaweera (2018) Circa 1 Ga sub-seafloor hydrothermal alteration imprinted on the Horoman peridotite massif, Scientific Reports, 8.
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Table S4. Results of synthetic experiments in a forsterite-water system of Lalindra V. Ranaweera (2018) Circa 1 Ga sub-seafloor hydrothermal alteration imprinted on the Horoman peridotite massif, Scientific Reports, 8.
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