Physical Properties Of Crystals: Their Representation by Tensors and Matrices
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Physical Properties Of Crystals: Their Representation by Tensors and Matrices

by J. F. Nye

Science Mathematics Physics
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Physical Properties of Crystals by J. F. Nye introduces the representation of crystal behaviors using tensors and matrices. It explores how these mathematical tools elucidate properties such as elasticity and symmetry in crystalline structures, offering a clear foundation for physicists and materials scientists.

About This Book

This book delves into the physical properties of crystals, offering a systematic approach to their representation using tensors and matrices. It serves as an essential resource for understanding the mathematical structures that describe crystalline materials.

Authored by J. F. Nye, the text covers key concepts in crystal physics, emphasizing the role of symmetry and tensor analysis. Readers gain insights into how these tools model properties like elasticity, piezoelectricity, and thermal expansion in crystals.

The presentation is rigorous yet accessible, making it suitable for students and researchers in solid-state physics. Through detailed explanations and examples, it bridges theoretical mathematics with practical applications in materials science.

Overall, the book highlights the power of tensor notation in simplifying complex physical phenomena, providing a timeless reference for crystal property analysis.

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I will be using this book for: