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Resistivity, flow-resistance, and ultrasonic-attenuation measurements were carried out on Nb-37 at. % Ti and Nb-56 at. % Ti in dc magnetic fields up to 150 kG. The transition temperatures and the dependence of the upper critical field on temperature were measured by the resistive method. The transition temperatures are: T₂=9. 20. 2^K for Nb-37 at. % Ti and T₂=9. 00. 2^K for Nb-56 at. % Ti. Flow-resistance measurements gave the following values for the Ginzburg-Landau-Abrikosov-Gor'kov upper critical field at T=0: 1117 kG for Nb-37 at. % Ti and 1889 kG for Nb-56 at. % Ti. Changes in the ultrasonic attenuation were observed near the upper critical field. The data support the view that the Pauli paramagnetism plays a role in determining the upper critical field. However, the effect of the Pauli paramagnetism is found to be smaller than predicted by Maki.
Shapira et al. (1965) studied this question.
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