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- W2024473311 abstract "The room-temperature Hall effect has been determined in polycrystalline hexagonal close-packed cadmium-mercury alloys in the composition range 0 to 14 at%Hg. The extended cadmium-rich solid solution is of particular interest because the axial ratio increases with increasing mercury concentration to very high values in excess of 1.90, while the nominal electron-to-atom ratio remains constant. Within this composition range, the mean Hall effect, which is positive (hole-like), increases by approximately 30%; and although the Hall effect is known to be anisotropic in hexagonal close-packed metals, texture measurements indicate that no part of the increase can be attributed to changing contributions of the two components. A qualitative analysis suggests that both components must increase across the phase field.In polykristallinen hexagonal dicht gepackten Kadmium-Quecksilber-Legierungen im Zusammensetzungsbereich 0 bis 14 At%Hg wurde der Halleffekt bei Zimmertemperatur untersucht. Die kadmiumreichen Mischkristalle sind von besonderem Interesse, weil das Achsenverhaltnis mit steigender Quecksilberkonzentration zu sehr hohen Werten bis uber 1,90 ansteigt, wahrend das nominelle Elektron-Atom-Verhaltnis konstant bleibt. Innerhalb des Zusammensetzungsbereichs nimmt der mittlere Halleffekt, der positiv (locherartig) ist, um 30% o zu. und obwohl bekannt ist, das der Halleffekt in hexagonal dicht gepackten Metallen anisotrop ist. zeigen Texturmessungen, das kein Teil des Anstieges der Anderung der Beitrage der beiden Komponenten zugeordnet werden kann. Eine qualitative Analyse ergibt. das beide Komponenten jenseits des Phasenfeldes ansteigen mussen." @default.
- W2024473311 created "2016-06-24" @default.
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- W2024473311 date "1972-09-16" @default.
- W2024473311 modified "2023-09-27" @default.
- W2024473311 title "Hall effect in cadmium–mercury alloys" @default.
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- W2024473311 doi "https://doi.org/10.1002/pssa.2210130105" @default.
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