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Product Description This series of short texts provides accessible accounts of a range of essential topics in chemistry. Written with the needs of the student in mind, the Oxford Chemistry Primers offer just the right level of detail for undergraduate study, and will be invaluable as a source of material commonly presented in lecture courses yet not adequately covered in existing texts. All the basic principles and facts in a particular area are presented in a clear and straightforward style, to produce concise yet comprehensive accounts of topics covered in both core and specialist courses.This short text is intended for first-year undergraduates and introduces some concepts of chemical bonding in a clear, descriptive, and essentially non-mathematical fashion. The book addresses aspects of atomic orbital structure and uses this to develop a discussion of the bonding in diatomic and polyatomic molecules using Lewis dot structures, hybrid orbital, and molecular orbital methods. The prediction of molecular shape is addressed through the VSEPR method. About the Author Mark Winter is Senior Lecturer in chemistry at the University of Sheffield.
This text investigates the fundamental principles of chemical bonding, specifically targeting the conceptual needs of first-year undergraduate chemistry students. Mark J. Winter, a Senior Lecturer at the University of Sheffield, utilizes his pedagogical experience to bridge the gap between lecture course content and standard textbooks. The work provides a non-mathematical framework for understanding atomic orbital structure and molecular geometry, serving as a foundational resource for students entering core chemistry curricula.
What You Will Find
Experts and educators recognize this text as a highly accessible resource for undergraduates requiring a concise introduction to bonding theories. Readers frequently note the clarity of the prose and the effectiveness of the non-mathematical approach in simplifying complex chemical concepts.
Page Count:
90
Publication Date:
1994-01-01
Publisher:
Oxford University Press
ISBN-10:
0198556950
ISBN-13:
9780198556954
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