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Titlebook: Advances in Cryogenic Engineering; Proceeding of the 19 K. D. Timmerhaus Conference proceedings 1971 Springer Science+Business Media New Yo

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期刊全称Advances in Cryogenic Engineering
期刊简称Proceeding of the 19
影响因子2023K. D. Timmerhaus
视频videohttp://file.papertrans.cn/148/147433/147433.mp4
学科分类Advances in Cryogenic Engineering
图书封面Titlebook: Advances in Cryogenic Engineering; Proceeding of the 19 K. D. Timmerhaus Conference proceedings 1971 Springer Science+Business Media New Yo
影响因子1970 marked the seventh return of the Cryogenic Engineering Conference, now affiliated with the National Academy of Sciences through the Division of Engineering, National Research Council, to Boulder, Colorado. Local arrangements for this year‘s meeting have again been capably handled by the University of Colorado and the Cryogenics Division, NBS Institute for Basic Standards. The Cryogenic Engineering Conference Committee gratefully acknowledges the assistance of these two organizations, and particularly the Bureau of Continuation Education of the University of Colorado, for serving as hosts to the 1970 Cryogenic Engineering Conference. The National Academy of Sciences is a private, honorary organization of more than 700 scientists and engineers elected on the basis of outstanding con­ tributions to knowledge. Established by a Congressional Act of Incorporation signed by Abraham Lincoln on March 3, 1863, and supported by private and public funds, the Academy works to further science and its use for the general welfare by bringing together the most qualified individuals to deal with scientific and tech­ nological problems of broad significance. Under the terms of its Congressional
Pindex Conference proceedings 1971
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F. F. Roossien,G. La Rivière,E. Roos information about other soft magnetic alloys, e.g. the high Ni-Fe permalloys and Co-Fe alloys. This study has investigated the behavior of a number of commercial alloys at low temperatures in an effort to supply some of the desired information.
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K. C. Flanders,M. B. Sporn,A. B. Roberts. Room-temperature data of Phillips and Lannon [.], Brown [.], Cooper [.], and others (see Table I) indicate that both the elastic modulus and tensile strength linearly increase as the density is increased.
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