Title
Applied Differential Geometry,New
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This is a selfcontained introductory textbook on the calculus of differential forms and modern differential geometry. The intended audience is physicists, so the author emphasises applications and geometrical reasoning in order to give results and concepts a precise but intuitive meaning without getting bogged down in analysis. The large number of diagrams helps elucidate the fundamental ideas. Mathematical topics covered include differentiable manifolds, differential forms and twisted forms, the Hodge star operator, exterior differential systems and symplectic geometry. All of the mathematics is motivated and illustrated by useful physical examples.
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- Q: What is the main focus of 'Applied Differential Geometry'? A: The book primarily focuses on the calculus of differential forms and modern differential geometry, emphasizing applications and geometrical reasoning for physicists.
- Q: Who is the author of 'Applied Differential Geometry'? A: The author of 'Applied Differential Geometry' is Burke.
- Q: What topics are covered in this textbook? A: The textbook covers a range of topics including differentiable manifolds, differential forms, twisted forms, the Hodge star operator, exterior differential systems, and symplectic geometry.
- Q: What is the condition of the book? A: The book is listed as a 'New' item, indicating it is in pristine condition.
- Q: How many pages does 'Applied Differential Geometry' have? A: The book contains 436 pages.
- Q: What is the binding type of this book? A: The book is available in paperback binding.
- Q: When was 'Applied Differential Geometry' published? A: The book was published on January 12, 2008.
- Q: Is this book suitable for beginners in differential geometry? A: Yes, it is a self-contained introductory textbook designed for those new to the subject.
- Q: Are there visual aids included in the book? A: Yes, the book includes a large number of diagrams to help elucidate fundamental ideas.
- Q: What audience is 'Applied Differential Geometry' intended for? A: The intended audience is primarily physicists, but it is also suitable for anyone interested in the applications of differential geometry.