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Electron transport properties of liquid metals: Pure metals

The absolute thermoelectric power of polyvalent liquid metals

Pages 617-627 | Published online: 02 Jun 2006

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Read on this site (3)

J.C. Valiant & T.E. Faber. (1974) The resistivity and thermoelectric power of liquid alloys containing tellurium. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 29:3, pages 571-583.
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Yuhachi Ninomtya, Yoshio Nakamura & Mitsuo Shimoji. (1972) Electrical properties of the molten In-Te system. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 26:4, pages 953-960.
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R. Evans. (1971) The Temperature Dependence of the Resistivity and Thermopower in Some Polyvalent Liquid Metals. Physics and Chemistry of Liquids 2:4, pages 249-262.
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Articles from other publishers (17)

I. KALDRE, Y. FAUTRELLE, J. ETAY, A. BOJAREVICS & L. BULIGINS. (2011) ABSOLUTE THERMOELECTRIC POWER OF Pb – Sn ALLOYS . Modern Physics Letters B 25:10, pages 731-738.
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S. Sharmin, G.M. Bhuiyan, M.A. Khaleque, R.I.M.A. Rashid & S.M. Mujibur Rahman. (2002) Electronic Transport Properties of Liquid Less-Simple Metals. physica status solidi (b) 232:2, pages 243-253.
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L.L Zheng & D.J LarsonJr.Jr.. (1997) Thermoelectric effects on interface demarcation and directional solidification of bismuth. Journal of Crystal Growth 180:2, pages 293-304.
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R. Harris & B. G. Mulimani. (1983) Nonlinear temperature dependence of the thermopower of amorphous metals. Physical Review B 27:2, pages 1382-1385.
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J. A. Shercliff. (2006) Thermoelectric magnetohydrodynamics. Journal of Fluid Mechanics 91:2, pages 231-251.
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A. N. Mikhailov, A. N. Dremin & V. P. Fettsov. (1977) Measurement of the temperature in the zone of the seam with the explosive welding of metals. Combustion, Explosion, and Shock Waves 12:4, pages 538-545.
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M. Matsuura & S. Takeuchi. (1976) Thermoelectric Power and Magnetic Susceptibility of Liquid Silver Alloys. Transactions of the Japan Institute of Metals 17:11, pages 707-716.
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L.F. Mondolfo. 1976. Aluminum Alloys. Aluminum Alloys 96 106 .
N. C. Halder & P. Jena. (1972) Temperature Dependence of Hard-Sphere Interference Functions. The Journal of Chemical Physics 57:5, pages 1830-1837.
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M.J. Rice. (1971) Inelastic electron scattering and the Lorentz ratios of liquid metals II. The thermoelectric power. Physics Letters A 37:5, pages 401-402.
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R. Schmutzler & F. Hensel. (2014) Direkte Bestimmung der Druckabhängigkeit der Thermospannung flüssigen Quecksilbers. Berichte der Bunsengesellschaft für physikalische Chemie 75:6, pages 503-506.
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B. I. Khrushchev & L. S. Sharipova. (1971) Total scattering cross sections of slow neutrons and the structure of liquid zinc. Journal of Structural Chemistry 12:2, pages 196-200.
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A.J. Greenfield & N. Wiser. (1970) Thermoelectric power and electrical resistivity of liquid Zn and Cd: Theory versus experiment. Physics Letters A 32:2, pages 69-70.
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D E Thornton & W H Young. (1969) Temperature dependence of the thermopowers of liquid metals. Journal of Physics C: Solid State Physics 2:6, pages 1070-1076.
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V. Crisp & N.E. Cusack. (1969) The thermoelectric power of liquid mercury at elevated temperatures and pressures. Physics Letters A 28:10, pages 712-713.
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R.G. Ross & D.A. Greenwood. (1969) Liquid metals and vapours under pressure. Progress in Materials Science 14:4, pages 175-242.
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G. Busch & H. -J. Güntherodt. (1967) Hall-Koeffizient und spezifischer elektrischer Widerstand flüssiger Metallegierungen. Physik der Kondensierten Materie 6:4, pages 325-362.
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