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Organic Chemistry

Theory, Reactivity and Mechanisms in Modern Synthesis

Parámetros

  • 1426 páginas
  • 50 horas de lectura

Más información sobre el libro

This textbook provides essential background, tools, and models for understanding organic synthesis and planning chemical reactions efficiently. A solid grasp of physical chemistry is crucial for successful reactions in organic chemistry, requiring chemists to be skilled in various areas. The text, authored by two recognized experts, addresses a gap in the literature on physical organic chemistry. It begins with rigorous yet accessible chapters on chemical equilibria, thermodynamics, reaction rates, mechanisms, and molecular orbital theory, establishing a strong foundation. Subsequent chapters showcase diverse reactions involving organic, organometallic, and biochemical reactants and catalysts. With over 800 questions and exercises, the text reinforces comprehension and emphasizes key learning points. A companion workbook provides complete references and answers to all questions. This resource is invaluable for students and working chemists, presenting models to assess reaction feasibility, duration, and properties. It covers reactions with significant practical applications, including C-C coupling, pericyclic, and catalytic reactions, enabling efficient planning of chemical reactions. The textbook features clear illustrations, figures, and tables, and includes a Foreword by Nobel Prize Laureate Robert H. Grubbs, making it an ideal reference for chemistry students, instructors, and professionals in organic and physical chemistr

Compra de libros

Organic Chemistry, Pierre Vogel, Kendall N. Houk, Robert H. Grubbs

Idioma
Publicado en
2019
Encuadernación
(Tapa dura),
Estado del libro
Bueno
Precio
51,99 €

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Título
Organic Chemistry
Subtítulo
Theory, Reactivity and Mechanisms in Modern Synthesis
Idioma
Inglés
Editorial
Wiley-VCH
Publicado en
2019
Formato
Tapa dura
Páginas
1426
ISBN10
3527345329
ISBN13
9783527345328
Serie
Descripción
This textbook provides essential background, tools, and models for understanding organic synthesis and planning chemical reactions efficiently. A solid grasp of physical chemistry is crucial for successful reactions in organic chemistry, requiring chemists to be skilled in various areas. The text, authored by two recognized experts, addresses a gap in the literature on physical organic chemistry. It begins with rigorous yet accessible chapters on chemical equilibria, thermodynamics, reaction rates, mechanisms, and molecular orbital theory, establishing a strong foundation. Subsequent chapters showcase diverse reactions involving organic, organometallic, and biochemical reactants and catalysts. With over 800 questions and exercises, the text reinforces comprehension and emphasizes key learning points. A companion workbook provides complete references and answers to all questions. This resource is invaluable for students and working chemists, presenting models to assess reaction feasibility, duration, and properties. It covers reactions with significant practical applications, including C-C coupling, pericyclic, and catalytic reactions, enabling efficient planning of chemical reactions. The textbook features clear illustrations, figures, and tables, and includes a Foreword by Nobel Prize Laureate Robert H. Grubbs, making it an ideal reference for chemistry students, instructors, and professionals in organic and physical chemistr