38 results on '"Nozaka, Toshio"'
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2. Fe-monticellite in serpentinites from the Happo ultramafic complex
3. Biotite in olivine gabbros from Atlantis Bank: Evidence for amphibolite-facies metasomatic alteration of the lower oceanic crust
4. Superconductivity at 38 K in Iron-Based Compound with Platinum-Arsenide Layers Ca10(Pt4As8)(Fe2-xPtxAs2)5
5. Serpentinization of olivine in troctolites and olivine gabbros from the Hess Deep Rift
6. A channel sampling strategy for measurement of mineral modal and chemical composition of drill cores: application to lower oceanic crustal rocks from IODP Expedition 345 to the Hess Deep rift
7. Incompatibility between serpentinization and epidote formation in the lower oceanic crust: Evidence from the Oman Drilling Project
8. Metasomatic hydration of the Oeyama forearc peridotites: Tectonic implications
9. Hydrothermal spinel, corundum and diaspore in lower oceanic crustal troctolites from the Hess Deep Rift
10. Primitive layered gabbros from fast-spreading lower oceanic crust
11. Compositional heterogeneity of olivine in thermally metamorphosed serpentinite from Southwest Japan
12. Compositional variation of talc in metamorphosed serpentinites from Southwest Japan
13. Alteration of the Oceanic Lower Crust at a Slow-spreading Axis: Insight from Vein-related Zoned Halos in Olivine Gabbro from Atlantis Massif, Mid-Atlantic Ridge
14. Dynamic accretion beneath a slow-spreading ridge segment: IODP hole 1473A and the Atlantis Bank oceanic core complex
15. Petrology of the Hegenshan ophiolite and its implication for the tectonic evolution of northern China
16. Exploring the plutonic crust at a fast-spreading ridge:new drilling at Hess Deep
17. Dynamic accretion beneath a slow-spreading ridge segment: IODP hole 1473A and the Atlantis Bank oceanic core complex
18. 西南日本の熱変成超苦鉄質岩体中のかんらん石と輝石の組成変化に関する覚書
19. Compositional variation of olivine related to high–temperature serpentinization of peridotites: Evidence from the Oeyama ophiolite
20. Comment on “Dehydration breakdown of antigorite and the formation of B-type olivine CPO” by Nagaya et al. (2014)
21. Petrological characterization for material provenance of haniwaearthenware from mounded tombs in the Kibi region, Japan
22. Petrography of primary peridotites from the Ohsa-yama area, Okayama Prefecture
23. Drilling constraints on lithospheric accretion and evolution at Atlantis Massif, Mid-Atlantic Ridge 30°N
24. Hydration due to high-T brittle failure within in situ oceanic crust, 30°N Mid-Atlantic Ridge
25. Primitive layered gabbros from fast-spreading lower oceanic crust
26. Hydration due to high-T brittle failure within in situ oceanic crust, 30°N Mid-Atlantic Ridge
27. Petrological constraints on hydrogen production during serpentinization: a review
28. Superconductivity at 38 K in Iron-Based Compound with Platinum–Arsenide Layers Ca10(Pt4As8)(Fe2-xPtxAs2)5
29. Cleavable olivine in serpentinite mylonites from the Oeyama ophiolite
30. Formation of clay minerals and exhumation of lower-crustal rocks at Atlantis Massif, Mid-Atlantic Ridge
31. Alteration Processes and Related Minerals of the Oceanic Lower Crust and Upper Mantle
32. Reply to Comment on “Petrology of the Hegenshan ophiolite and its implication for the tectonic evolution of northern China” by M.-F. Zhou, H.-F. Zhang, P.T. Robinson and J. Malpas
33. Geochemistry of metamorphic rocks from Mizoguchi, western Tottori Prefecture, Japan and its geological significance.
34. Blueschist blocks at Mochimaru in the Tari‐Misaka ultramafic complex: Their petrologic characteristics and significance
35. Structure and development of the lower crust and upper mantle of Southwestern Japan: Evidence from petrology of deep-seated xenoliths
36. An eclogite survey mission to Shandong and Jiangsu Province, east China.
37. Kyanite-bearing anorthosite inclusions in Cenozoic alkali basalts from the central part of the Chugoku district, Southwest Japan.
38. A long section of serpentinized depleted mantle peridotite.
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