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Asmus Ougaard Dohn - Transient Changes in Molecular Geometries and How to Model Them - 9783319187464 - V9783319187464
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Transient Changes in Molecular Geometries and How to Model Them

€ 127.64
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Description for Transient Changes in Molecular Geometries and How to Model Them Hardback. Series: Springer Theses. Num Pages: 184 pages, 15 black & white illustrations, 69 colour illustrations, biography. BIC Classification: PNFS; PNR; PNRP. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 13. Weight in Grams: 444.

This thesis examines various aspects of excess excitation energy dissipation via dynamic changes in molecular structure, vibrational modes and solvation. The computational work is carefully described and the results are compared to experimental data obtained using femtosecond spectroscopy and x-ray scattering. The level of agreement between theory and experiment is impressive and provides both a convincing validation of the method and significant new insights into the chemical dynamics and molecular determinants of the experimental data. Hence, the method presented in the thesis has the potential to become a very important contribution to the rapidly growing field of femtosecond x-ray science, ... Read more

Light-induced chemical processes are accompanied by molecular motion of electrons and nuclei on the femtosecond time scale. Uncovering these dynamics is central to our understanding of the chemical reaction on a fundamental level.

Asmus O. Dohn has implemented a highly efficient QM/MM Direct Dynamics method for predicting the solvation dynamics of transition metal complexes in solution.

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Product Details

Format
Hardback
Publication date
2015
Publisher
Springer International Publishing AG Switzerland
Number of pages
184
Condition
New
Series
Springer Theses
Number of Pages
146
Place of Publication
Cham, Switzerland
ISBN
9783319187464
SKU
V9783319187464
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

About Asmus Ougaard Dohn
Asmus O. Dohn studied Nano science at the University of Copenhagen, where he focused on structural properties of metallic complexes in solution, analyzed through x-ray and simulation-based methods. He obtained his Masters degree in 2011 with the highest remarks and was awarded the PhD-School Pre-Doc scholarship, for students especially suited for academic careers. He has also worked for the Nano-Science ... Read more

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