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동의어 포함
| 번호 | 참고문헌 | 국회도서관 소장유무 |
|---|---|---|
| 1 | Geodynamic mixing in the mesosphere boundary layer and the origin of oceanic islands ![]() |
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| 2 | Major element, REE, and Pb, Nd and Sr isotopic geochemistry of Cenozoic volcanic rocks of eastern China: implications for their origin from suboceanic-type mantle reservoirs ![]() |
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| 3 | Mineralogy and geochemistry of Devonian ultramafic minor intrusions of the southern Kola Peninsula, Russia: implications for the petrogenesis of kimberlites and melilitites ![]() |
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| 4 | Origin and geodynamic implication of the Dupal isotopic anomaly in volcanic rocks from the Philippine island arcs ![]() |
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| 5 | Geochemistry of Cenozoic basalts and mantle xenoliths in Northeast China ![]() |
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| 6 | Sr–Nd–Pb isotope and trace element systematics of mantle xenoliths from Late Cenozoic alkaline lavas, South Korea ![]() |
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| 7 | Sr, Nd, Pb and Hf isotopic compositions of late Cenozoic alkali basalts in South Korea: Evidence for mixing between the two dominant asthenospheric mantle domains beneath East Asia ![]() |
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| 8 | Cousens, B.L. and Allan, J.F., 1992, A Pb, Sr, and Nd isotopic studyof basaltic rocks from the Sea of Japan, ODP Leg 127/128. Proceedingsof the Ocean Drilling Program, Scientific Results, 127/128, Part 2, 805–817. | 미소장 |
| 9 | Subduction-modified pelagic sediments as the enriched component in back-arc basalts from the Japan Sea: Ocean Drilling Program Sites 797 and 794 ![]() |
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| 10 | Flower, M.F.J., Tamaki, K. and Nguyen, H., 1998, Mantle extrusion:A model for dispersed volcanism and DUPAL-like asthenospherein East Asia and the Western Pacific. In: Flower, M.F.J.,Chung, S.L., Lo, C.H. and Lee, T.Y. (eds.), Mantle Dynamics andPlate Interactions in East Asia. American Geophysical UnionGeodynamic series, 27, 67–87. | 미소장 |
| 11 | Magmatism during extension of the lithosphere: geochemical constraints from lavas of the Shaban Deep, northern Red Sea ![]() |
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| 12 | Hart, S.R., 1984, A large scale isotopic anomaly in the southernhemisphere. Nature, 309, 753–756. | 미소장 |
| 13 | Heterogeneous mantle domains: signatures, genesis and mixing chronologies ![]() |
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| 14 | Crustal contributions to arc magmatism in the Andes of Central Chile ![]() |
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| 15 | Hoang, N. and Uto, K., 2006, Upper mantle isotopic componentsbenenath the Ryukyu arc system: Evidence for ‘back-arc’ entrapmentof Pacific MORB mantle. Earth and Planetary Science Letters,249, 229–240. | 미소장 |
| 16 | Major, trace element, and isotopic compositions of Vietnamese basalts: Interaction of hydrous EM1-rich asthenosphere with thinned Eurasian lithosphere ![]() |
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| 17 | Chemical differentiation of the Earth: the relationship between mantle, continental crust, and oceanic crust ![]() |
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| 18 | Nb and Pb in oceanic basalts: new constraints on mantle evolution ![]() |
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| 19 | Kay, S.M., Coira, B.L., Caffe, P.J. and Chen, C.H., 2010, Regionalchemical diversity, crustal and mantle sources and evolution ofcentral Andean Puna plateau ignimbrites. Journal of Volcanologyand Geothermal Research, 198, 81–111. | 미소장 |
| 20 | Geochemical Characteristics of Clinopyroxenes in the Upper Mantle Rocks under the Baegryeong Island and the Boeun | 소장 |
| 21 | Petrology on the Late Miocene Basalts in Goseong-gun, Gangwon Province | 소장 |
| 22 | Kwon, S.-T., 1986, Pb-Sr-Nd isotope study of the 100 to 2700 Maold alkali rock-carbonatite complexes in the Canadian shield:Inferences on the geochemical and structural evolution of themantle. Ph.D. thesis, University of California Santa Barbara,Santa Barbara, 242 p. | 미소장 |
| 23 | A Chemical Classification of Volcanic Rocks Based on the Total Alkali-Silica Diagram ![]() |
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| 24 | Geochemistry and Sr-Nd isotopic composition of granites sampled from the Korea Plateau, East Sea | 소장 |
| 25 | Petrology and Geochemistry of Dokdo Volcanic Rocks, East Sea | 소장 |
| 26 | Major- and trace-element compositions of Cenozoic basalts in eastern China: Petrogenesis and mantle source ![]() |
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| 27 | Cenozoic episodic volcanism and continental rifting in northeast China and possible link to Japan Sea development as revealed from K–Ar geochronology ![]() |
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| 28 | Liu, M., Cui, X. and Liu, F., 2004, Cenozoic rifting and volcanism ineastern China: a mantle dynamic link to the Indo-Asian collision?Tectonophysics, 393, 29–42. | 미소장 |
| 29 | Mahoney, J.J., Natland, J.H., White, W.M., Poreda, R., Bloomer,S.H., Fisher, R.L. and Baxter, A.N., 1989, Isotopic and geochemicalprovinces of the western Indian Ocean spreading. Journal ofGeophysical Research Letters, 94, 4033–4052. | 미소장 |
| 30 | Petrology and petrogenesis of the Cenozoic alkali volcanic rocks in the middle part of Korean Peninsula (Ⅰ): petrography, mineral chemistry and whole rock major element chemistry ![]() |
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| 31 | Sr-Nd-Pb Isotopic Compositions of Lavas from Cheju Island, Korea | 소장 |
| 32 | Sr, Nd and Pb Isotopic Systematics of the Cenozoic Basalts of the Korean Peninsula and Their Implications for the Permo-Triassic Continental Collision Boundary ![]() |
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| 33 | Regelous, M., Niu, Y., Wendt J.I., Batiza, R., Greig, A. and Collerson,K.D., 1999, Variations in the geochemistry of magmatismon the East Pacific Rise at 10º300N since 800 ka. Earth and PlanetaryScience Letters, 168, 45–63. | 미소장 |
| 34 | Recycled ocean crust and sediment in Indian Ocean MORB ![]() |
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| 35 | Phlogopite in the generation of olivine-melilitites from Namaqualand, South Africa and implications for element fractionation processes in the upper mantle ![]() |
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| 36 | Petrological study on upper mantle xenoliths from Asan and Pyeongtaek area | 소장 |
| 37 | Song, Y.S., Park, K.H. and Park, M.Y., 1999, Major, rare earth andtrace element geochemistry of volcanic rocks from UlleungIsland. Journal of Petrological Society of Korea, 8, 57–70. (inKorean) | 미소장 |
| 38 | Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes ![]() |
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| 39 | Tamaki, K., Suyehiro, K., Allan, J., Ingle, J.C., Jr. and Pisciotto,K.A., 1992, Tectonic synthesis and implications of Japan SeaODP drilling. Proceedings of the Ocean Drilling Program, ScientificResults, 127/128, Part 2, 1333–1348. | 미소장 |
| 40 | On the mechanics of the collision between India and Asia ![]() |
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| 41 | DUPAL anomaly in the Sea of Japan: Pb, Nd, and Sr isotopic variations at the eastern Eurasian continental margin ![]() |
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| 42 | Sr, Nd, and Pb isotopes of ultramafic xenoliths in volcanic rocks of Eastern China: enriched components EMI and EMII in subcontinental lithosphere ![]() |
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| 43 | Taylor, S.R. and McLennan, S.M., 1985, The Continental Crust: ItsComposition and Evolution. Blackwell, Oxford, 312 p. | 미소장 |
| 44 | Todt, W., Cliff, R.A, Hanser, A. and Hofmann, A.W., 1996, Evaluationof a 202Pb-205Pb double spike for high precision lead isotopeanalyses. In: Basu, A. and Hart, S. (eds.), Earth processes: readingthe isotopic code. Geophysical Monograph 95, AmericanGeophysical Union, 95, 429–437. | 미소장 |
| 45 | Sr, Nd, and Pb isotopic compositions of Hainan basalts (south China): Implications for a subcontinental lithosphere Dupal source ![]() |
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| 46 | Magmatism in the South China Basin: 1. Isotopic and trace-element evidence for an endogenous Dupal mantle component ![]() |
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| 47 | Cenozoic lithospheric extension induced magmatism in Southwest Japan ![]() |
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| 48 | Submarine Basalts From the Red Sea: New Pb, Sr, and Nd Isotopic Data ![]() |
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| 49 | Cenozoic alkali basalts from Jingpohu, NE China: The role of lithosphere–asthenosphere interaction ![]() |
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| 50 | EM1 signature from within the post-Archaean subcontinental lithospheric mantle: Isotopic evidence from the potassic volcanic rocks in NE China. ![]() |
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| 51 | Zhang, M., Suddaby, P., Thompson, R.N., Thirlwall, M.F. and Menzies,M.A., 1995, Potassic volcanic rocks in NE China: geochemicalconstraints on mantle source and magma genesis. Journal ofPetrology, 36, 1275–1303. | 미소장 |
| 52 | Petrochemical study of the Jingpohu Holocene alkali basaltic rocks, northeastern China. ![]() |
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| 53 | Chemical Geodynamics ![]() |
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| 54 | Major, trace element, and Nd, Sr and Pb isotope studies of Cenozoic basalts in SE China: mantle sources, regional variations, and tectonic significance ![]() |
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