Description

Book Synopsis
CHEMISTRY STUDENT GUIDES. GUIDED BY STUDENTS Why did the drug thalidomide cause birth defects? What is the chemical difference between sucrose and lactose in your food? Stereochemistry holds the answer and is essential to the understanding of the chemistry of life. Stereochemistry is an important concept that often causes confusion amongst students when they learn it for the first time. Unlike most other areas of chemistry, it requires the chemist to visualise molecules in 3D, which can be difficult. In this book we deal with tricky concepts like conformation and configuration, how to represent them accurately and how to use the correct terms to describe them in both organic and inorganic chemistry. We involved students in the writing process to ensure we deal with areas that you find difficult, in an understandable language. With problems designed to focus on common errors and misconceptions, real life examples, and practical hands-on exercises coupled with visualisation tips, our intention is to give you the tools to become confident in stererochemistry. Complementing mainstream organic textbooks, or self-study, this book is for anyone who has struggled with describing alkenes as E or Z, assigning R and S absolute configurations, drawing Newman projections or chair representations of cyclohexanes, axial chirality, understanding the stereochemistry of octahedral metal complexes and indeed explaining complexities observed in NMR spectra. Chemistry Student Guides are written with current students involved at every stage, guiding the books towards the most challenging aspects of the topic. Student co-authors for Introduction to Stereochemistry are Caroline Akamune, Michael Lloyd and Matthew Taylor.

Trade Review
The precise arrangement of atoms in 3-dimensional space – stereochemistry – is a fundamental, overarching concept in chemistry. It impinges on our very existence because all the molecules of life (proteins, nucleic acids, carbohydrates, lipids) possess stereochemical features. However, students often struggle to understand stereochemistry, and find the terminology confusing. This book addresses such issues head on, and teaches the core concepts of stereochemistry in a logical and extremely clear manner. It familiarises students with the language and structural basis of stereochemistry, and, importantly, gives them confidence to draw accurate representations. The involvement of student co-authors is an added bonus since it ensures that the explanation of difficult concepts is clear, and adequately addresses topics that they find more challenging. -- Professor Christopher Moody

Table of Contents
Stereochemistry; Alkenes; Stereogenic Centres, Enantiomers and Diastereoisomers; Conformation of Acyclic Compounds; Conformation of cyclic compounds; Chiral Molecules without a Stereogenic Atom; Stereochemistry of inorganic molecules

Introduction to Stereochemistry

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Order before 4pm today for delivery by Fri 2 Jan 2026.

A Paperback / softback by Andrew Clark, Russ Kitson, Nimesh Mistry

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    View other formats and editions of Introduction to Stereochemistry by Andrew Clark

    Publisher: Royal Society of Chemistry
    Publication Date: 23/10/2020
    ISBN13: 9781788013154, 978-1788013154
    ISBN10: 1788013158

    Description

    Book Synopsis
    CHEMISTRY STUDENT GUIDES. GUIDED BY STUDENTS Why did the drug thalidomide cause birth defects? What is the chemical difference between sucrose and lactose in your food? Stereochemistry holds the answer and is essential to the understanding of the chemistry of life. Stereochemistry is an important concept that often causes confusion amongst students when they learn it for the first time. Unlike most other areas of chemistry, it requires the chemist to visualise molecules in 3D, which can be difficult. In this book we deal with tricky concepts like conformation and configuration, how to represent them accurately and how to use the correct terms to describe them in both organic and inorganic chemistry. We involved students in the writing process to ensure we deal with areas that you find difficult, in an understandable language. With problems designed to focus on common errors and misconceptions, real life examples, and practical hands-on exercises coupled with visualisation tips, our intention is to give you the tools to become confident in stererochemistry. Complementing mainstream organic textbooks, or self-study, this book is for anyone who has struggled with describing alkenes as E or Z, assigning R and S absolute configurations, drawing Newman projections or chair representations of cyclohexanes, axial chirality, understanding the stereochemistry of octahedral metal complexes and indeed explaining complexities observed in NMR spectra. Chemistry Student Guides are written with current students involved at every stage, guiding the books towards the most challenging aspects of the topic. Student co-authors for Introduction to Stereochemistry are Caroline Akamune, Michael Lloyd and Matthew Taylor.

    Trade Review
    The precise arrangement of atoms in 3-dimensional space – stereochemistry – is a fundamental, overarching concept in chemistry. It impinges on our very existence because all the molecules of life (proteins, nucleic acids, carbohydrates, lipids) possess stereochemical features. However, students often struggle to understand stereochemistry, and find the terminology confusing. This book addresses such issues head on, and teaches the core concepts of stereochemistry in a logical and extremely clear manner. It familiarises students with the language and structural basis of stereochemistry, and, importantly, gives them confidence to draw accurate representations. The involvement of student co-authors is an added bonus since it ensures that the explanation of difficult concepts is clear, and adequately addresses topics that they find more challenging. -- Professor Christopher Moody

    Table of Contents
    Stereochemistry; Alkenes; Stereogenic Centres, Enantiomers and Diastereoisomers; Conformation of Acyclic Compounds; Conformation of cyclic compounds; Chiral Molecules without a Stereogenic Atom; Stereochemistry of inorganic molecules

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