Efficient Collisional Energy Transfer of Vibrationally Highly Excited C6F6 Molecules in the Ground Electronic State

Author:

Damm M.,Hippler H.,Olschewski H. A.,Troe J.,Willner J.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry

Reference4 articles.

1. and;Kable;Chem Phys,1988

2. and;Hippler;Chem Phys Chem Phys,1983

3. ILL;Morgulis;Chem Phys Phys Chem,1989

4. University of Göttingen;Luther;Bunsenges Phys Chem,1988

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