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- W346193661 abstract "The electrical resistivity, Hall effect, and transverse magnetoresistivity of 78-wt.%-Ni, 19-wt.%-Fe, 3-wt.%-Mo alloy were measured from 300ifmmode^circelsetextdegreefi{}K to above its Curie temperature in fields up to 10 kOe. The results, when analyzed in terms of the existing theories, showed that the spin-disorder scattering gives a dominant contribution to the high-temperature solute resistivity and transverse magnetoresistivity whereas the side-jump mechanism is dominant in spontaneous Hall effect at high temperatures. The ordinary Hall coefficient ${R}_{0}$ was found to pass through a sharp maximum around $0.93{T}_{c}$. The well-known two-current conduction model, though able to duplicate the qualitative features of the temperature dependence observed for the ordinary Hall coefficient below ensuremath{sim} 500ifmmode^circelsetextdegreefi{}K, was found to be incapable of explaining the strong temperature dependence of ${R}_{0}$ above ensuremath{sim} 500ifmmode^circelsetextdegreefi{}K." @default.
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- W346193661 date "1977-01-15" @default.
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- W346193661 title "Galvanomagnetic properties of a molybdenum permalloy" @default.
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- W346193661 doi "https://doi.org/10.1103/physrevb.15.755" @default.
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