Advances in Chemical Physics, Volume 161 by Stuart A. Rice, Aaron R. Dinner

By Stuart A. Rice, Aaron R. Dinner

The Advances in Chemical Physics sequence presents the chemical physics box with a discussion board for serious, authoritative reviews of advances in each quarter of the discipline.

•    This is the one sequence of volumes to be had that provides the innovative of study in chemical physics.
•    Includes contributions from specialists during this box of research.
•    Contains a consultant cross-section of analysis that questions tested pondering on chemical solutions
•    Structured with a piece of writing framework that makes the ebook a very good complement to a sophisticated graduate classification in actual chemistry or chemical physics

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J. Treacy, D. Kumar, A. Rougee, G. Zhao, P. Buseck, I. McNulty, L. Fan, C. Rau, and J. M. Gibson, J. : Condens. Matter 19, 455201 (2007). G. Baldi, M. Zanatta, E. Gilioli, V. Milman, K. Refson, B. Wehinger, B. Winkler, A. Fontana, and G. Monaco, Phys. Rev. Lett. 110, 185503 (2013). M. M. J. Treacy, J. M. Gibson, L. Fan, D. J. Paterson, and I. McNulty, Rep. Prog. Phys. 68, 2899–2944 (2005). L. Fan, D. Paterson, I. McNulty, M. M. J. Treacy, and J. M. Gibson, J. Microsc. 225, 41 (2007). M. M. J. Treacy and K.

Clark, B. J. Ackerson, and A. J. Hurd, Phys. Rev. Lett. 50, 1459 (1983). Z. Kam, Macromolecules 10, 927 (1977). A. Howie, C. A. McGill, and J. M. Rodenburg, J. Phys. 46, 59 (1985). J. M. Gibson, M. M. J. Treacy, T. Sun, and N. J. Zaluzec, Phys. Rev. Lett. 105, 125504 (2010). B. E. Warren, X-Ray Diffraction (Dover Publications, New York, 1990). A. Guinier, X-Ray Diffraction in Crystals, Imperfect Crystals, and Amorphous Bodies, (Dover Publications, New York, 1994). P. , Nat. Photonics 4, 641 (2010).

Structural Inhomogeneities in Semicrystalline Polymers In general, orientational order in the system may be defined in terms of the Fourier components In (q) [or Cn (q)] of arbitrary orders, for example, n = 2m, 30 RUSLAN P. KURTA, MASSIMO ALTARELLI, AND IVAN A. 0 C6m(arb. 0 54 56 58 60 62 64 66 68 70 72 Number of FCs, M 25 30 20 25 20 15 15 10 10 5 5 0 0 54 56 58 60 62 64 66 68 70 72 Correlation length, ξ (nm) Temperature, T (°C) (c) Temperature, T (°C) Figure 10. (a) Magnitudes of the FCs of intensity |In (q)| with n = 6, 12, .

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