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University of Chicago

P. P. Ewald and H. Juretschke, Structure and Properties of Solid Surfaces, University of Chicago Press, Chicago, 1953. [Pg.287]

Karl F. Freed, The James Franck Institute, The University of Chicago, Chicago, Illinois, U.S.A. [Pg.761]

Figure 5.1 2 The J = 1 — 0 transition of cyanodiacetylene observed in emission in Sagittarius B2. (Reproduced, with permission, from Broton, N. W., MacLeod, J. M., Oka, T, Avery, L. W., Brooks, J. W., McGee, R. X. and Newton, L. M., Astrophys. J., 209, L143, 1976, published by the University of Chicago Press 1976 The American Astronomical Society)... Figure 5.1 2 The J = 1 — 0 transition of cyanodiacetylene observed in emission in Sagittarius B2. (Reproduced, with permission, from Broton, N. W., MacLeod, J. M., Oka, T, Avery, L. W., Brooks, J. W., McGee, R. X. and Newton, L. M., Astrophys. J., 209, L143, 1976, published by the University of Chicago Press 1976 The American Astronomical Society)...
Into the late 1940s, Nobel Laureate Robert S. Mulliken, a physical chemist at the University of Chicago, maintained a skeptical view regarding the future of applying the theories of physics to solving practical problems in chemistry (4,5). Subsequentiy, Mulliken (5) related that... [Pg.157]

Theophilus, De Divers Artibus, J. G. Hawthorne and C. S. Smith, trans.. University of Chicago Press, HI., 1963 repubhshed Dover PubHshers, New York, 1979. [Pg.430]

Experiments were conducted during the Metallurgical Project, centered at the University of Chicago, and led by Enrico Fermi. Subcritical assembhes of uranium and graphite were built to learn about neutron multiphcation. In these exponential piles the neutron number density decreased exponentially from a neutron source along the length of a column of materials. There was excellent agreement between theory and experiment. [Pg.212]

B. B. Cunningham, Plutonium Chemisty Symposium, The University of Chicago and Argoime National Laboratory, Chicago, Illinois, 1963. [Pg.205]

K. Rankama and T. G. Sahama, Geochemistry University of Chicago Press, Chicago, lU., 1950. [Pg.213]

Private communication from Professor P. E. Eaton, Department of Chemistry, University of Chicago, Chicago, III. 60637. [Pg.7]

The development of the STEM is relatively recent compared to the TEM and the SEM. Attempts were made to build a STEM instrument within 15 years after the invention of the electron microscope in 1932. However the modern STEM, which had to await the development of modern electronics and vacuum techniques, was developed by Albert Crewe and his coworkers at the University of Chicago. ... [Pg.163]

Laudan, R. (1987) From Mineralogy to Geology The Foundations of a Science, 1650-1830 (University of Chicago Press, Chicago and London). [Pg.151]

Galison, P. (1997) Image and Logic A Material Culture of Microphy.sics, Chapter 8 University of Chicago Press, Chicago. [Pg.486]

Ben May Laboratory for Cancer Research and Departments of Chemistry and Biochemistry University of Chicago Chicago, Illinois... [Pg.423]


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Chicago

Chicago, University

Metallurgical Laboratory at the University of Chicago

Stagg Field, University of Chicago

University of Chicago Press

University of Illinois at Chicago

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