Structure Data of Free Polyatomic Molecules (PDF)
This handbook presents structural data on free polyatomic molecules. Since the structure of molecules defines the chemical, physical and biological properties of matter, this information is crucial for understanding, explaining and predicting...
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This handbook presents structural data on free polyatomic molecules. Since the structure of molecules defines the chemical, physical and biological properties of matter, this information is crucial for understanding, explaining and predicting chemical reactions and biochemical processes, developing new drugs and materials as well as studying interstellar media.
Covering the structural data published between 2009 and 2017, this book supplements the previous Landolt-Börnstein volumes "Structure Data of Free Polyatomic Molecules" (eds. K. Kuchitsu, N. Vogt, M. Tanimoto), which included data from the literature published up to 2008. It systematizes and describes peculiarities of molecular structures for about 1000 compounds studied mainly by gas-phase electron diffraction and rotational spectroscopy. All structures are given in three-dimensional representations.
Jürgen Vogt studied Chemistry at the Justus Liebig University in Giessen, and received his Dipl.-Chem. degree in 1978. He was awarded a Dr. rer. nat. degree in 1983 with the dissertation "High-resolution spectroscopy of instable molecules in the spectral range from the microwaves to the infrared". In 1986 he worked as a scientific expert in the governmental air-pollution commission "Reinhaltung der Luft" at the association of German engineers (Verein Deutscher Ingenieure, VDI) in Düsseldorf. In 1987 he became a section leader at the University of Ulm, Section for Spectra and Structure
- Autoren: Natalja Vogt , Jürgen Vogt
- 2020, 1st ed. 2019, 926 Seiten, Englisch
- Verlag: Springer-Verlag GmbH
- ISBN-10: 3030294307
- ISBN-13: 9783030294304
- Erscheinungsdatum: 02.01.2020
Abhängig von Bildschirmgröße und eingestellter Schriftgröße kann die Seitenzahl auf Ihrem Lesegerät variieren.
- Dateiformat: PDF
- Größe: 40 MB
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