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Physical and Theoretical Chemistry

Concurrent with his first chemiluminescence research, Haber also advised dissertations by Fritz Schmid and Hans Lehrecke that laid the foundations for the [Pg.70]

Later decisions concerning how he pursued this line of research would earn Harteck the dubious distinction of being interned at Farm Hall in England immediately after the Second World War, in connection with his participation in the German uranium project. [Pg.73]

After Haber brought research on gold solutions at the Institute to a close, he returned to the study of combustion reactions. Inspired by a practical interest in improving existing combustion fuels and discovering new ones, his new research concentrated on the mechanism of combustion reactions rather than the light they emitted. In spite of the shift in focus, Haber and his collaborators continued to rely on many of the laboratory techniques and apparatus that had enabled the earlier Haber and Zisch research, including the use of spectroscopy to identify [Pg.73]

75 Bonlioeffere, Harteck, Wasserstoff. Bonhoeffer, Harteck, Weitere. [Pg.73]

Within a year of his arrival at Haber s institute, Polanyi also returned to publishing on kinetics, a topic that had occupied his attention intermittently but deeply since at least 1920 and that would earn him enduring scientific recog-nition. ° Over the next eight years, Polanyi and his collaborators at the Institute would advance both the experimental and the theoretical study of reaction kinetics. On the experimental side, in collaboration with Hans Beutler, and later with Stefan von Bogdandy and Hans von Hartel, Polanyi developed the highly-dilute flame techniques pioneered by Haber and Zisch into a powerful tool for [Pg.75]


Owen A. Walsh Physical and Theoretical Chemistry Laboratory, Oxford University, Oxford, England... [Pg.524]

Wyn-Jones, E. and Gonually J. (eds.), 1983. Aggregation processes in solution. In Studies in physical and theoretical chemistry, 26. Amsterdam Elsevier. [Pg.327]

Electrodes of conductive metallic oxides, in Studies in Physical and Theoretical Chemistry, S. Trasatti, ed. Elsevier Scientific Publishing Company, Amsterdam (1980), pp. 123-125. [Pg.274]

Rauh RD (1988) Cadmium Chalcogenides (CdS, CdSe, CdTe). In Finklea HO (ed) Semiconductor Electrodes (Studies in Physical and Theoretical Chemistry 55) Elsevier... [Pg.293]

G. Berthier, M. Defranceschi, J. Delhalle in Self-Consistent Field Theory and Applications. R. Carbo, M. Klobukowski Eds, Elsevier, Amsterdam 1990, "Studies in Physical and Theoretical Chemistry ", n 70, p. 387... [Pg.157]

R.Carbo and B.Calabuig, "A project for the development of a computational system, based on PC-compatible computers to be used in Quantum Chemistry teaching and research", pp. 73-90 in R.Carbo (Editor), Quantum Chemistry, Basic Aspects. Actual Trends. Studies in Physical and Theoretical Chemistry. Vol. 62, Elsevier, Amsterdam, 1989. [Pg.247]

B. Blumich, P. Blunder, K. Saito 1998, in Solid State NMR of Polymers, (vol. 84), eds. I. Ando, T. Asakura, Studies in Physical and Theoretical Chemistry, Elsevier Science, Amsterdam, (pp.) 123— 163. [Pg.589]

Department of Physical and Theoretical Chemistry TU Braunschweig, Hans-Sommer-Strafe 10 D-38106 Braunschweig, Germany... [Pg.173]

Muller A, Ratajack H, Junge W et al (1992) Studies in physical and theoretical chemistry electron and proton transfer in chemistry and biology, vol 78. Elsevier, Amsterdam, The Netherlands... [Pg.262]

Hugh Cartwright, Department of Chemistry, University of Oxford, Physical and Theoretical Chemistry Laboratory, South Parks Road, Oxford, United Kingdom 0X1 3QZ (Electronic mail hugh.cartwright chem.ox.ac.uk)... [Pg.438]

D. Shaw, Fourier Transform NMR Spectroscopy, Studies in Physical and Theoretical Chemistry, Vol. 30, 2nd ed., Elsevier, Amsterdam, 1984. [Pg.332]

W.Rettig W. Nernst Institute for Physical and Theoretical Chemistry, Humboldt University at Berlin, D-10117 Berlin, Germany. Rene Lapouyade Photophysique et Photochimie Moleculaire, URA (CNRS) No. 348, Universite de Bordeaux I, F-33405 Talence, France. [Pg.109]

Dieter Oelkrug Institute of Physical and Theoretical Chemistry, University of Tubingen, DW-7400 Tubingen, Germany. [Pg.223]

W. Rettig W. Nernst Institute for Physical and Theoretical Chemistry, Humboldt University at Berlin, D-10117 Berlin, Germany... [Pg.508]

Anderson-Kennedy, 1988] M. Anderson and J. H. Kennedy, Semiconductor Electrode, Studies in Physical and Theoretical Chemistry 55, (Edited by H. O. Finklea), p. 147, Elsever, Tokyo, (1980). [Pg.58]

S.H. Bertz, A Mathematical Model of Molecular Complexity. A Collection of Papers from a Symposium Held at the University of Georgia, Athens, Georgia, U.S.A, 18-22 April 1983 (R.B. King, Editor) in "Studies in Physical and Theoretical Chemistry",Vol 28, Elsevier Science Publishers B.V., Amsterdam,... [Pg.213]

Bertz, S. H. "A Mathematical Model of Molecular Complexity" King, R. B., Ed. STUDIES IN PHYSICAL AND THEORETICAL CHEMISTRY Vol. 28, Elsevier Science Publishers, Amsterdam, 1983 pp. 206-221. [Pg.158]

PHYSICAL AND THEORETICAL CHEMISTRY LABORATORY UNIVERSITY OF OXFORD OXFORD, UNITED KINGDOM... [Pg.347]

How to interpret MSDS information sheets. The Physical and Theoretical Chemistry Laboratory, Oxford University, Oxford, UK (http //ptcl.chem.ox.ac.uk/MSDS/interpretingmsds.html). MSDS of peracetic acid. The Physical and Theoretical Chemistry Laboratory, Oxford University, Oxford, UK (http //ptcl.chem.ox.ac.uk/MSDS/PE/peroxyacetic acid.html). [Pg.774]

Foldiak, G., Ed. Radiation Chemistry of Hydrocarbons. In Studies in Physical and Theoretical Chemistry If Elsevier Amsterdam, 1981. [Pg.398]


See other pages where Physical and Theoretical Chemistry is mentioned: [Pg.494]    [Pg.195]    [Pg.195]    [Pg.84]    [Pg.5]    [Pg.752]    [Pg.72]    [Pg.28]    [Pg.629]   


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