Robert Sanderson Mulliken

Affiliations: 
Theoretical chemistry, chemical bonding University of Chicago, Chicago, IL 
Website:
http://nobelprize.org/nobel_prizes/chemistry/laureates/1966/mulliken.html
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"Robert Mulliken"
Bio:

(1896 - 1986)
http://www.nasonline.org/member-directory/deceased-members/52287.html
https://www.gf.org/fellows/all-fellows/robert-s-mulliken/
https://history.aip.org/phn/11606026.html
https://www.aip.org/history-programs/niels-bohr-library/oral-histories/4788
https://doi.org/10.1021/ja01455a017
https://doi.org/10.1021/ja01461a008

The Nobel Prize in Chemistry 1966 was awarded to Robert S. Mulliken "for his fundamental work concerning chemical bonds and the electronic structure of molecules by the molecular orbital method".

Mean distance: 7.06
 
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Cross-listing: Chemistry Tree

Parents

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James Flack Norris research assistant 1916-1917 MIT (Chemistry Tree)
 (The reaction between alcohols and aqueous solutions of hydrochloric and hydrobromic acids)
James Bryant Conant research assistant 1917-1918 American University (Chemistry Tree)
 (Studied poison gases under Conant's direction)
Richard C. Tolman research assistant 1918-1919 American University
 (Relation between Intensity of Tyndall Beam and Size of Particles)
William Draper Harkins grad student 1921 Chicago
 (The separation of isotopes. Theory of resolution of isotopic mixtures by diffusion and similar processes. Experimental separation of mercury by evaporation in a vacuum)
Frederick Albert Saunders post-doc Harvard

Children

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Leona Marshall Libby grad student 1943 Chicago
Clemens C.J. Roothaan grad student 1950 Chicago
Roberto Moccia post-doc Chicago (Chemistry Tree)
Joel Tellinghuisen post-doc Chicago (Chemistry Tree)
Walter Friedrich Karl Weizel post-doc 1930 Chicago
Weldon Grant Brown post-doc 1931-1932 Chicago (Chemistry Tree)
Wave Henry Shaffer post-doc 1939-1940 Chicago
Carol Jane Anger Rieke post-doc 1941 Chicago (Astronomy Tree)
Anthony Leonid Turkevich post-doc 1940-1942 Chicago (Chemistry Tree)
Putcha Venkateswarlu post-doc 1947-1948 Chicago
Hugh Christopher Longuet-Higgins post-doc 1948-1949 Chicago (Chemistry Tree)
Harrison Shull post-doc 1948-1949 Chicago (Chemistry Tree)
Michael Kasha post-doc 1949-1950 Chicago (Chemistry Tree)
Robert G. Parr post-doc 1950-1950 Chicago (Chemistry Tree)
Per-Olov Löwdin post-doc 1951-1951 Chicago
Harden M. McConnell post-doc 1950-1952 Chicago (Chemistry Tree)
Klaus Rüdenberg post-doc 1950-1955 Chicago (Chemistry Tree)
Leslie E. Orgel post-doc 1955-1955 Chicago (Chemistry Tree)
John N. Murrell post-doc 1956-1957 Chicago (Chemistry Tree)
Jim W. Richardson post-doc 1956-1957 Chicago (Chemistry Tree)
Enrico Clementi post-doc 1960 Chicago (Chemistry Tree)
Stanisław Wojciech Mrozowski research scientist 1940-1944 Chicago
Saburo Nagakura research scientist 1955-1957 Chicago (Chemistry Tree)
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Publications

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Mulliken RS, Fano U, Bernath PF, et al. (2014) Molecular structure and spectra Access Science
Mulliken RS. (2010) Molecular complexes and their spectra. VI. Some problems and new developments Recueil Des Travaux Chimiques Des Pays-Bas. 75: 845-852
Mulliken RS. (2009) The ground state of BeH International Journal of Quantum Chemistry. 5: 95-101
Mulliken RS. (2009) The lowest excited states of BH International Journal of Quantum Chemistry. 5: 83-94
Mulliken RS. (2009) Introduction of the honorary president of the symposium International Journal of Quantum Chemistry. 3: 3-3
Ermler WC, Clark JP, Mulliken RS. (1987) Abinitio calculations of potential energy curves and transition moments of 1Σ+g and 1Σ+u states of N2 Journal of Chemical Physics. 86: 370-375
Ermler WC, Clark JP, Mulliken RS. (1987) Ab initio calculations of potential energy curves and transition moments of 1Σg + and 1Σ u + states of N2 The Journal of Chemical Physics. 86: 370-375
Mulliken RS. (1985) Charge-Transfer Spectra Molecular Crystals and Liquid Crystals. 126: 1-7
Mulliken RS. (1983) Some experiences of a scientist Chemical and Engineering News. 61: 33
Ermler WC, McLean AD, Mulliken RS. (1982) Ab initio study of valence state potential energy curves of N2 Journal of Physical Chemistry. 86: 1305-1314
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