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  1. William Andrew Goddard III (born March 29, 1937) is the Charles and Mary Ferkel Professor of Chemistry and Applied Physics, and director of the Materials and Process Simulation Center at the California Institute of Technology.

  2. Professor Goddard's research focuses on: Developing new methods for theory including: quantum mechanics for the electronic wavefunctions of large molecules and crystals, including the many-body effects needed to describe reactions.[1-3] force fields to describe the dynamics of atomic motions[4,5]

  3. 6067. 2001. Starburst dendrimers: molecular‐level control of size, shape, surface chemistry, topology, and flexibility from atoms to macroscopic matter. DA Tomalia, AM Naylor, WA Goddard III. Angewandte Chemie International Edition in English 29 (2), 138-175. , 1990.

  4. Research Overview. Goddard has been a pioneer in developing methods for quantum mechanics (QM), force fields (FF), reactive dynamics (ReaxFF RD), electron dynamics (eFF), molecular dynamics (MD), and Monte Carlo (MC) predictions on chemical, catalytic, and biochemical materials systems.

  5. William Andrew Goddard III. Goddard joined the chemistry faculty in November 1964, where he is now Charles and Mary Ferkel Professor of Chemistry, Materials Science, and Applied Physics and Director of the Materials and Process Simulation Center (MSC). View CV. The goal of the Goddard and MSC research has been and continues to be.

  6. Prof. William A. Goddard, III. Charles and Mary Ferkel Professor of Chemistry, Materials Science, and Applied Physics Director, Materials and Process Simulation Center. B.S. - University of California, Los Angeles, 1960. Ph.D. - California Institute of Technology, 1965.

  7. William Andrew Goddard III. (* 29. März 1937 in El Centro (Kalifornien)) ist ein US-amerikanischer theoretischer Chemiker . Goddard studierte Ingenieurwesen an der University of California, Los Angeles, mit dem Bachelor-Abschluss 1960 und wurde 1965 am Caltech bei Pol E. Duwez in mit der Arbeit An improved many-electron theory for ...