By Stuart A. Rice, Aaron R. Dinner
Detailed stories of latest and rising issues in chemical physics offered via prime experts
The Advances in Chemical Physics sequence is devoted to reviewing new and rising themes in addition to the most recent advancements in conventional components of research within the box of chemical physics. each one quantity beneficial properties distinctive complete analyses coupled with person issues of view that combine the numerous disciplines of technology which are wanted for an entire realizing of chemical physics.
Volume 153 of Advances in Chemical Physics beneficial properties six expertly written contributions:
- Recent advances of ultrafast X-ray absorption spectroscopy for molecules in solution
- Scaling standpoint on intramolecular vibrational strength stream: analogies, insights, and challenges
- Longest rest time of leisure approaches for classical and quantum Brownian movement in a possible get away expense conception approach
- Local fluctuations in answer: conception and applications
- Macroscopic results of microscopic heterogeneity
- Ab initio method for pseudospin Hamiltonians of anisotropic magnetic centers
Reviews released in Advances in Chemical Physics are usually longer than these released in journals, delivering the gap wanted for readers to completely seize the subject: the basics in addition to the newest discoveries, purposes, and rising avenues of analysis. broad cross-referencing permits readers to discover the first study reviews underlying each one topic.
Advances in Chemical Physics is perfect for introducing rookies to themes in chemical physics. additionally, the sequence presents the basis wanted for more matured researchers to boost their very own study stories and proceed to extend the bounds of our wisdom in chemical physics.
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Extra resources for Advances in Chemical Physics, Volume 153
D. C. Koningsberger and R. Prins. X-ray Absorption: Principles, Applications, Techniques of EXAFS, SEXAFS, and XANES, Wiley-Interscience, 1988. 2. J. St¨ohr, NEXAFS Spectroscopy, volume 25 of Springer Series in Surface Sciences, Springer, 1996. 3. J. J. Rehr, Rev. Mod. Phys. 72(3), 621–654 (2000). 34 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15. 16. 17. 18. 19. 20. 21. 22. 23. 24. 25. 26. 27. 28. 29. 30. 31. thomas j. penfold et al. P. Lee and G. Beni, Phys. Rev. B 15(6), 2862–2883 (1977). F. de Groot, Chem.
Dinner. © 2013 John Wiley & Sons, Inc. Published 2013 by John Wiley & Sons, Inc. 43 44 srihari keshavamurthy I. INTRODUCTION: MOTIVATION AND HISTORICAL OVERVIEW This is a study, certainly not the first one, about the phenomenon of intramolecular vibrational energy redistribution (IVR)—its mechanism and impact on the reaction rate theories. For a subject that is nearly a century old, several reviews at appropriate times have appeared in the literature [1–13]. It is not entirely surprising that experimental and theoretical attempts to understand IVR started nearly half a century ago.
Pham, W. Gawelda, Y. Zaushitsyn, M. Kaiser, D. Grolimund, S. L. Johnson, R. Abela, C. Bressler, and M. Chergui, J. Am. Chem. Soc. 129, 1530 (2007). 182. V. T. Pham, I. Tavernelli, C. J. Milne, R. M. van der Veen, P. D’Angelo, C. Bressler, and M. Chergui, Chem. Phys. 371(1–3), 24–29 (2010). 183. C. J. Wick and S. S. Xantheas, J. Phys. Chem. B 113, 4141–4146 (2009). 184. M. D. Sevilla, S. Summerfield, I. Eliezer, J. Rak, and M. C. R. Symons, J. Phys. Chem. A 101(15), 2910–2915 (1997). 185. C. G. Elles, I.
Advances in Chemical Physics, Volume 153 by Stuart A. Rice, Aaron R. Dinner