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Books on the topic 'Linear solvation energy relationship'

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1

Makitra, R. G. Linear energy relationships to chemical kinetics. Nova Science Publishers, 2009.

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2

Institut khimicheskoĭ fiziki (Akademii͡a nauk SSSR). Otdelenie (Chernogolovka, Russia), ред. Nelineĭnye korreli͡at͡sii v kinetike radikalʹnykh reakt͡siĭ. OIKhF AN SSSR, 1990.

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3

Hao, Jianbin. Kinetic study and linear free energy relationship analysis of some metal carbonyl complexes. National Library of Canada = Bibliothèque nationale du Canada, 1997.

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4

Makitra, R. G. Liquid phase correlation analysis in the chemistry of solutions. Nova Science Publishers, 2007.

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5

(Editor), C. Chipot, and Andrew Pohorille (Editor), eds. Free Energy Calculations (Springer Series in Chemical Physics). Springer, 2007.

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6

Lin, Kaijun. Application of linear free energy relationship in marine chemistry and analysis of the wintertime carbonate data in the northern North Atlantic Ocean. 1986.

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7

Lmto Method Muffintin Orbitals And Electronic Structure. Springer, 2012.

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8

Cho, Minhaeng. Two-Dimensional Optical Spectroscopy. Taylor & Francis Group, 2009.

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9

Cho, Minhaeng. Two-Dimensional Optical Spectroscopy. Taylor & Francis Group, 2009.

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10

Cho, Minhaeng. Two-Dimensional Optical Spectroscopy. Taylor & Francis Group, 2020.

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11

Noda, Isao, and Yukihiro Ozaki. Two-Dimensional Correlation Spectroscopy: Applications in Vibrational and Optical Spectroscopy. Wiley & Sons, Incorporated, John, 2008.

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12

Noda, Isia, Isao Noda, and Yukihiro Ozaki. Two-Dimensional Correlation Spectroscopy. Wiley & Sons, Incorporated, John, 2005.

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13

Noda, Isao, and Yukihiro Ozaki. Two-Dimensional Correlation Spectroscopy: Applications in Vibrational and Optical Spectroscopy. Wiley & Sons, Incorporated, John, 2005.

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14

Noda, Isao. Two-Dimensional Correlation Spectroscopy: Applications in Vibrational and Optical Spectroscopy. Not Avail, 2005.

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15

Dreysse, Hugues. Electronic Structure and Physical Properties of Solids: The Uses Of The Lmto Method. Springer, 2010.

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16

Dreysse, Hugues. Electronic Structure and Physical Properties of Solids: The Uses of the LMTO Method. Springer London, Limited, 2008.

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17

Two-dimensional optical spectroscopy. Taylor & Francis, 2009.

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18

Dunitz, Jack D., and Hans-Beat Bürgi. Structure Correlation. Wiley & Sons, Incorporated, John, 2008.

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19

Dunitz, Jack D., and Hans-Beat Bürgi. Structure Correlation. Wiley & Sons, Limited, John, 2008.

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20

Nitzan, Abraham. Chemical Dynamics in Condensed Phases. Oxford University PressOxford, 2024. http://dx.doi.org/10.1093/9780191947971.001.0001.

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Abstract This second edition builds on the first, providing a uniform approach to diverse problems encountered in the study of dynamical processes in condensed-phase molecular systems. It focuses on three themes: coverage of needed background material, in-depth introduction of methodologies, and analysis of several key applications to processes of importance in physical, chemical and biological phenomena in complex systems. Chapter 1 starts with a general review of basic mathematical and physical methods. It is followed by a few introductory chapters on quantum dynamics (Chapter 2), radiation–
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21

Murtagh, Fionn. Correspondence Analysis and Data Coding with Java and R (Chapman & Hall Computer Science and Data Analysis). Chapman & Hall/CRC, 2005.

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22

Nitzan, Abraham. Chemical Dynamics in Condensed Phases. Oxford University Press, 2006. http://dx.doi.org/10.1093/oso/9780198529798.001.0001.

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This text provides a uniform and consistent approach to diversified problems encountered in the study of dynamical processes in condensed phase molecular systems. Given the broad interdisciplinary aspect of this subject, the book focuses on three themes: coverage of needed background material, in-depth introduction of methodologies, and analysis of several key applications. The uniform approach and common language used in all discussions help to develop general understanding and insight on condensed phases chemical dynamics. The applications discussed are among the most fundamental processes t
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23

Vigdor, Steven E. Expansion Everlasting. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198814825.003.0005.

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Chapter 5 presents experiments illuminating the cosmological evolution of the universe and its energy budget, accounting for its longevity. The observations establishing the Hubble’s Law linear relationship between intergalactic distances and recession speeds, and their interpretation in terms of the expansion of cosmic space, are reviewed. The evidence for big bang cosmology from nucleosynthesis and the cosmic microwave background (CMB) is presented. The measurements that establish the ongoing acceleration of the cosmic expansion are reviewed: distant supernova recession speeds, tiny CMB anis
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24

Bažant, Zdenek P., Jia-Liang Le, and Marco Salviato. Quasibrittle Fracture Mechanics and Size Effect. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780192846242.001.0001.

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Many modern engineering structures are composed of brittle heterogenous (a.k.a. quasibrittle) materials. These materials include concrete (an archetype), composites, tough ceramics, rocks, cold asphalt mixtures, and many brittle materials at the microscale. Understanding the failure behavior of these materials is of paramount importance for improving the resilience and sustainability of various engineering structures including civil infrastructure, aircraft, ships, military armors, and microelectronic devices. This book provides a comprehensive treatment of quasibrittle fracture mechanics. It
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