Download Advances in Cryogenic Engineering Materials : Volume 40, by H. Kumakura, T. Hasegawa, H. Kobayashi, H. Kitaguchi, K. PDF

By H. Kumakura, T. Hasegawa, H. Kobayashi, H. Kitaguchi, K. Togano, H. Maeda (auth.), Richard P. Reed, Fred R. Fickett, Leonard T. Summers, M. Stieg (eds.)

Superconductors: High-Temperature Superconductors: houses. High-Temperature Superconductors: Processing. High-Temperature Superconductors: functions. High-Temperature Superconductors: movies and units. Cryconductors and Stabilizers. Low-Temperature Superconductors: AC Loss. Low-Temperature Superconductors: balance. Cryocooler fabrics. Cryoconductors. Low-Temperature Superconductors NbTi. Low-Temperature Superconductors: A15 Compounds. Structural fabrics: Nonmetallic Composites: homes and Radiation Resistance. Resins: homes and Radiation Resistance. Austenitic Steels: homes and Magnetic box results. Nickel-Base Alloys: houses. Aluminum Alloys: houses. certain Low-Temperature Mechanical-Property Phenomena. Coil Pack, Divertor, and Diode fabrics and Analyses. 183 articles. Index.

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Additional resources for Advances in Cryogenic Engineering Materials : Volume 40, Part A

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For measurements in the field normal to the c-axis, the dc and ac magnetic fields were applied along the long axis of the tape specimen as shown in Figure 1{a). In this case, the observed Je is some average of the component in the a-b plane and that in the c-axis. However, the dominant contribution is expected to come from the component in the a-b plane because of the large aspect ratio of the cross section. For measurements of Je in the field parallel to the c-axis, the dc and ac magnetic fields were applied normal to the cumulated chips of the specimen as shown in Figure 1{b).

Lett. 67, 648 (1991). 9. A. P. Malozemoff, W. L. Carter, J. Gannon, C. H. Joshi, P. Miles, M. Minot, D. Parker, G. N. , E. Thompson and G Yurek, Cryogenics 32,478 (1993). 31 10. A. D. Marwick, L. Civale, L. Krusin-E1baum, R. Wheeler IV, J. R. Thompson, T. K. Worthington, M. A. Kirk, Y. R. Sun, H. R. Kerchner and F. Holtzberg, Nucl. Instr. and Meth. 8, tobe published. II. D. 8ourgault, M. Hervieu, S. 8ouffard, D. Groult and 8. Raveau, Nucl. Instr. and Meth. 842, 61 (1989). 12. R. Wheeler IV, M. A.

J. Appl. Phys. 29:L1096 (1990). 5. K. Togano, H. R. Dietderich, H. Maeda, and J. Kase, p. 619 in: "Advances in Superconductivity III," Springer-Verlag, Tokyo (1990). 6. J. Shimoyama, T. Morimoto, H. Kitaguchi, H. Kumakura, K. Togano, H. Maeda, K. Nomura, and M. Seido, Jap. J. Appl. Phys. 31:Ll63 (1991). 7. K. Hamada, S. Kamada, K. Sugawara, A. Nagata, C. Takahashi, S. Oogoto, M. Komatsu, M. Nagano, and H. Takahashi, p. 639 in: "Advances in Superconductivity IV," Springer-Velag, Tokyo (1992). 8.

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