Advances in Chemical Physics, Volume 149 by Stuart A. Rice, Aaron R. Dinner

By Stuart A. Rice, Aaron R. Dinner

The Advances in Chemical Physics series—the leading edge of study in chemical physics

The Advances in Chemical Physics sequence presents the chemical physics box with a discussion board for severe, authoritative reviews of advances in each quarter of the self-discipline. packed with state-of-the-art examine said in a cohesive demeanour no longer came across in different places within the literature, each one quantity of the Advances in Chemical Physics sequence serves because the excellent complement to any complicated graduate category dedicated to the learn of chemical physics.

This quantity explores:

  • Quantum Dynamical Resonances in Chemical Reactions: From A + BC to Polyatomic platforms (Kopin Liu)

  • The Multiscale Coarse-Graining process (Lanyuan Lu and Gregory A. Voth)

  • Molecular Solvation Dynamics from Inelastic X-ray Scattering Measurements (R.H. Coridan and G.C.L. Wong)

  • Polymers below Confinement (M. Muthukumar)

  • Computational reports of the homes of DNA-linked Nanomaterials (One-Sun Lee and George C. Schatz)

  • Nanopores: Single-Molecule Sensors of Nucleic Acid established Complexes (Amit Meller)

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Lee and Dr. F. Dong for the F + HD reaction, to Dr. J. Zhou, Dr. J. Lin, and Mr. W. Shiu for the F + CHD3 and CH4 reactions, and to Dr. B. Zhang, Ms. S. Yan and Mr. -T. Wu for the Cl + CHD3 (v1 = 0, 1) reactions. Theoretical collaborations with Professors R. T. Skodje and D. M. Manolopoulos on the F + HD reaction are particularly stimulating and fruitful. I am also grateful to Professor Y. T. Lee for his continuing support and encouragement. This work was financially supported by National Science Council of Taiwan, Academia Sinica, and the Air Force Office of Scientific Research.

Bracewell, The Fourier Transform and its Applications, McGraw-Hill Publications, 1986. 43. 44. 45. 46. J. J. Lin, J. Zhou, W. Shiu, and K. Liu, Science, 300, 966 (2003). K. Liu, Phys. Chem. Chem. , 9, 17 (2007). D. G. Truhlar and A. Kuppermann, J. Chem. , 52, 3841 (1970). D. G. Truhlar and A. Kuppermann, J. Chem. , 56, 2232 (1972). quantum dynamical resonances in chemical reactions 45 47. R. D. -F. Wu, Chem. Phys. , 11, 557 (1971). 48. -F. Wu and R. D. Levine, Mol. , 25, 839 (1973). 49. G. C. Schatz, J.

M. Neumark, Phys. Chem. Chem. , 7, 433 (2005). P. G. Wenthold, D. A. Hrovat, W. T. Borden, and W. C. Lineberger, Science, 272, 1456 (1996). I. M. Waller, T. N. Kitsopoulos, and D. M. Neumark, J. Phys. , 94, 2240 (1990). -H. Lee and K. Liu, Modern Trend Chem. React. Dynam. Part II Adv. Series Phys. , 14, 1 (2004). 31. L. Schnieder, K. Seekamp-Rahn, E. Wrede, and K. H. Welge, J. Chem. , 107, 6175 (1997). 32. B. R. Strazisar, C. Lin, and H. F. Davis, Science, 290, 958 (2000). 33. M. Quiz, Z. Ren, L.

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