Rodey Batiza
Affiliations: | University of Hawai'i at Manoa, Honolulu, HI |
Area:
Geology, Geochemistry, MineralogyGoogle:
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Publications
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Batiza R. (2010) Seamounts and Off-Ridge Volcanism Encyclopedia of Ocean Sciences. 292-304 |
Li C, Pan Y, Li A, et al. (2008) Geochemistry of the lava and its implications in Musicians Seamounts Chinese Journal of Oceanology and Limnology. 26: 459-468 |
Pan Y, Batiza R. (2003) Magmatic processes under mid-ocean ridges: A detailed mineralogic study of lavas from East Pacific Rise 9°30′N, 10°30′N, and 11°20′N Geochemistry, Geophysics, Geosystems. 4 |
Sinton J, Bergmanis E, Rubin K, et al. (2002) Volcanic eruptions on mid-ocean ridges: New evidence from the superfast spreading East Pacific Rise, 17°-19°S Journal of Geophysical Research B: Solid Earth. 107: 3-1 |
Niu Y, Regelous M, Wendt IJ, et al. (2002) Geochemistry of near-EPR seamounts: Importance of source vs. process and the origin of enriched mantle component Earth and Planetary Science Letters. 199: 327-345 |
Sours-Page R, Nielsen RL, Batiza R. (2002) Melt inclusions as indicators of parental magma diversity on the Northern East Pacific Rise Chemical Geology. 183: 237-261 |
Pan Y, Batiza R. (2002) Mid-ocean ridge magma chamber processes: Constraints from olivine zonation in lavas from the East Pacific Rise at 9°′N and 10°′N Journal of Geophysical Research: Solid Earth. 107 |
Rubin KH, Smith MC, Bergmanis EC, et al. (2001) Geochemical heterogeneity within mid-ocean ridge lava flows: Insights into eruption, emplacement and global variations in magma generation Earth and Planetary Science Letters. 188: 349-367 |
Niu Y, Bideau D, Hékinian R, et al. (2001) Mantle compositional control on the extent of mantle melting, crust production, gravity anomaly, ridge morphology, and ridge segmentation: A case study at the Mid-Atlantic Ridge 33-35°N Earth and Planetary Science Letters. 186: 383-399 |
Castillo PR, Klein E, Bender J, et al. (2000) Petrology and Sr, Nd, and Pb isotope geochemistry of mid-ocean ridge basalt glasses from the 11°45′N to 15°00′N segment of the East Pacific Rise Geochemistry, Geophysics, Geosystems. 1 |