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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Thermopower and resistivity of binary metallic glasses

Baibich, Mario Norberto January 1982 (has links)
La resistivité et le pouvoir thermoélectrique de deux séries d'alliages amorphes ont éte mesurés entre 4 et 300K. Létude a porté sur le MgZn et le CuZr, et dans les deux la plus vaste gamme de concentrations disponible pour ces materiaux amorphes. / The resistivity and thermopower of two series of amorphous alloys have been measured between 4 and 300K. The alloys studied are MgZn and CuZr, both in the largest concentration range available as amorphous materials.
2

Thermopower and resistivity of binary metallic glasses

Baibich, Mario Norberto January 1982 (has links)
La resistivité et le pouvoir thermoélectrique de deux séries d'alliages amorphes ont éte mesurés entre 4 et 300K. Létude a porté sur le MgZn et le CuZr, et dans les deux la plus vaste gamme de concentrations disponible pour ces materiaux amorphes. / The resistivity and thermopower of two series of amorphous alloys have been measured between 4 and 300K. The alloys studied are MgZn and CuZr, both in the largest concentration range available as amorphous materials.
3

Thermopower and resistivity of binary metallic glasses

Baibich, Mario Norberto January 1982 (has links)
La resistivité et le pouvoir thermoélectrique de deux séries d'alliages amorphes ont éte mesurés entre 4 et 300K. Létude a porté sur le MgZn et le CuZr, et dans les deux la plus vaste gamme de concentrations disponible pour ces materiaux amorphes. / The resistivity and thermopower of two series of amorphous alloys have been measured between 4 and 300K. The alloys studied are MgZn and CuZr, both in the largest concentration range available as amorphous materials.

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