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Mathematical Foundations of Elasticity (Dover Civil and Mechanical Engineering) Revised ed. Edition
BDT 3362
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This advanced-level study approaches mathematical foundations of three-dimensional elasticity using modern differential geometry and functional analysis.
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| Item Weight | 1.2 lbs (540 grams) |
Who Should Buy?
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Engineering Students
Ideal for graduate engineering students seeking a solid foundation in elasticity and related mathematical concepts.
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Research Professionals
Beneficial for researchers in civil and mechanical engineering fields focusing on material behavior under stress.
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Educators
Useful for professors teaching advanced elasticity topics, providing comprehensive mathematical frameworks and examples.
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Beginners
Not suitable for beginners without prior knowledge of calculus or differential equations, as it may be overly complex.
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Casual Readers
Not aimed at casual readers seeking a general understanding of elasticity without deep mathematical rigor.
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Practitioners
May not serve professionals looking for practical applications over theoretical concepts, focusing instead on abstract mathematics.
Product Description
Mathematical Foundations of Elasticity (Dover Civil and Mechanical Engineering) Revised ed. Edition
Customer Questions & Answers
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Who is this book intended for?
Answer: It is intended for mathematicians, engineers, and physicists. -
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What prior knowledge is required to understand this book?
Answer: A solid background in advanced calculus and the basics of geometry and functional analysis is required. -
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What topics does the book cover?
Answer: The book covers kinematics and dynamics of continuous media, elastic materials, linearization, variational principles, and bifurcation theory.
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BDT 3362
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Features & Benefits
- Advanced study of mathematical foundations of elasticity.
- Utilizes modern differential geometry and functional analysis.
- Ideal for mathematicians, engineers, and physicists.
- Covers kinematics and dynamics of continuous media.
- Includes selected problems and a comprehensive bibliography.
- Prerequisites: advanced calculus and basic geometry.
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