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Advances in Physical Organic Chemistry
  • Language: en
  • Pages: 236

Advances in Physical Organic Chemistry

This is a well-established series for the publication of authoritative reviews on the methods and results of the application of quantitative physical and mathematical methods to organic chemistry. The authors are acknowledged experts in their particular fields, and the contributions give the reader an up-to-date account of different aspects of physical organic chemistry. In the pursuit of challenging problems of organic chemistry, the series encourages forward-looking reviews on a variety of topics, not all of which may as yet conform to conventional notions of the scope of the field.

Introduction to Physical Organic Chemistry
  • Language: en
  • Pages: 356

Introduction to Physical Organic Chemistry

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Physical Organic Chemistry
  • Language: en
  • Pages: 608

Physical Organic Chemistry

  • Type: Book
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  • Published: 1964
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  • Publisher: Unknown

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Modern Physical Organic Chemistry
  • Language: en
  • Pages: 1148

Modern Physical Organic Chemistry

In additionto covering thoroughly the core areas of physical organic chemistry -structure and mechanism - this book will escortthe practitioner of organic chemistry into a field that has been thoroughlyupdated.

Theoretical Aspects of Physical Organic Chemistry
  • Language: en
  • Pages: 312

Theoretical Aspects of Physical Organic Chemistry

Unifies the concepts of organic chemistry by focusing on the SN2 reaction while using contemporary language and methods. Begins by discussing potential energy surfaces and their connection to kinetics and mechanisms. Covers various analyses of SN2 reactivity using the transition-state concept. Also shows how the SCD model can be used to derive the basic concepts of physical organic chemistry.

Advances in Physical Organic Chemistry
  • Language: en
  • Pages: 425

Advances in Physical Organic Chemistry

  • Type: Book
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  • Published: 1999-05-19
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  • Publisher: Elsevier

Volume 32 is proof again of the platform provided by Advances in Physical Organic Chemistry for some of the most interesting and diverse papers being produced today. Contributions by academic and industrial chemists give the volume a perspective useful to those working in both fields.

Progress in Physical Organic Chemistry
  • Language: en
  • Pages: 358

Progress in Physical Organic Chemistry

Progress in Physical Organic Chemistry is dedicated to reviewing the latest investigations into organic chemistry that use quantitative and mathematical methods. These reviews help readers understand the importance of individual discoveries and what they mean to the field as a whole. Moreover, the authors, leading experts in their fields, offer unique and thought-provoking perspectives on the current state of the science and its future directions. With so many new findings published in a broad range of journals, Progress in Physical Organic Chemistry fills the need for a central resource that presents, analyzes, and contextualizes the major advances in the field. The articles published in Pr...

An Introduction to Physical Organic Chemistry
  • Language: en
  • Pages: 538

An Introduction to Physical Organic Chemistry

  • Type: Book
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  • Published: 1968
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  • Publisher: Unknown

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Physical Organic Chemistry
  • Language: en
  • Pages: 576

Physical Organic Chemistry

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Physical Organic Chemistry — 3
  • Language: en
  • Pages: 113

Physical Organic Chemistry — 3

  • Type: Book
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  • Published: 2017-09-29
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  • Publisher: Elsevier

9780080211978 Physical Organic Chemistry - 3 (Montpellier, 1976) is a collection of plenary lectures presented at the Third IUPAC Conference on Physical Organic Chemistry, held in Montpellier, France on September 6-10, 1976. This book is composed of nine chapters and begins with an examination of the concept of absolute equilibrium acidity scale and its application to structure-activity relationship evaluation. The succeeding chapters deal with micellar catalysis and inhibition, as well as the application of quantum chemical ab initio methods to CO, CS, and related double bonds. These topics are followed by discussions of the hydrolysis of acetals and hemiacetals; the mechanisms and catalysis in vinyl ester hydrolysis; and the acid-base catalysis of carbonyl and acyl group reactions. The final chapters explore the strain energy modeling of simple and crowded aliphatic ketones. These chapters also look into the stereochemistry of dissolving metal reduction of ketones and the hydrolysis of phosphate esters. This book will be of value to physical chemists and physical chemistry researchers and students.