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The processes in a single living cell are akin to that of a city teeming with molecular inhabitants that move, communicate, cooperate, and compete. In this Very Short Introduction, Philip Ball explores the role of the molecule in and around us - how, for example, a single fertilized egg can grow into a multi-celled Mozart, what makes spider's silk insoluble in the morning dew, and how this molecular dynamism is being captured in the laboratory, promising to reinvent chemistry as the central creative science of the century. ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
This book investigates the fundamental role of molecules in biological and physical processes, questioning how molecular interactions dictate the complexity of life and material properties. Philip Ball, a science writer with extensive experience in chemistry and physics, utilizes current research to argue that chemistry is evolving into a creative, design-oriented science. He frames the molecular world as a dynamic, interconnected system that governs everything from cellular development to the physical characteristics of natural materials.
What You Will Find
Scope Limits
Experts and readers frequently note the accessibility of the prose, which distills complex chemical concepts into a format suitable for non-specialists. The text is widely regarded as a concise, high-level overview that effectively bridges the gap between basic chemical theory and modern scientific application.
Page Count:
192
Publication Date:
2003-01-01
Publisher:
OUP Oxford
ISBN-10:
019157841X
ISBN-13:
9780191578410
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