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Differential and Complex Geometry: Origins, Abstractions and Embeddings (Hardcover, 1st ed. 2017): Raymond O. Wells, Jr Differential and Complex Geometry: Origins, Abstractions and Embeddings (Hardcover, 1st ed. 2017)
Raymond O. Wells, Jr
R4,149 Discovery Miles 41 490 Ships in 12 - 17 working days

Differential and complex geometry are two central areas of mathematics with a long and intertwined history. This book, the first to provide a unified historical perspective of both subjects, explores their origins and developments from the sixteenth to the twentieth century. Providing a detailed examination of the seminal contributions to differential and complex geometry up to the twentieth-century embedding theorems, this monograph includes valuable excerpts from the original documents, including works of Descartes, Fermat, Newton, Euler, Huygens, Gauss, Riemann, Abel, and Nash. Suitable for beginning graduate students interested in differential, algebraic or complex geometry, this book will also appeal to more experienced readers.

Differential Analysis on Complex Manifolds (Hardcover, 3rd ed. 2008): Oscar Garcia-Prada Differential Analysis on Complex Manifolds (Hardcover, 3rd ed. 2008)
Oscar Garcia-Prada; Raymond O. Wells
R1,554 Discovery Miles 15 540 Ships in 12 - 17 working days

In developing the tools necessary for the study of complex manifolds, this comprehensive, well-organized treatment presents in its opening chapters a detailed survey of recent progress in four areas: geometry (manifolds with vector bundles), algebraic topology, differential geometry, and partial differential equations. Subsequent chapters then develop such topics as Hermitian exterior algebra and the Hodge - operator, harmonic theory on compact manifolds, differential operators on a Kahler manifold, the Hodge decomposition theorem on compact Kahler manifolds, the Hodge-Riemann bilinear relations on Kahler manifolds Griffiths' period mapping, quadratic transformations, and Kodaira's vanishing and embedding theorems. The third edition of this standard reference contains a new appendix by Oscar Garcia-Prada which gives an overview of the developments in the field during the decades since the book appeared.

Differential Analysis on Complex Manifolds (Paperback, Softcover reprint of hardcover 3rd ed. 2008): Oscar Garcia-Prada Differential Analysis on Complex Manifolds (Paperback, Softcover reprint of hardcover 3rd ed. 2008)
Oscar Garcia-Prada; Raymond O. Wells
R1,595 Discovery Miles 15 950 Ships in 10 - 15 working days

A brand new appendix by Oscar Garcia-Prada graces this third edition of a classic work. In developing the tools necessary for the study of complex manifolds, this comprehensive, well-organized treatment presents in its opening chapters a detailed survey of recent progress in four areas: geometry (manifolds with vector bundles), algebraic topology, differential geometry, and partial differential equations. Wells 's superb analysis also gives details of the Hodge-Riemann bilinear relations on Kahler manifolds, Griffiths's period mapping, quadratic transformations, and Kodaira's vanishing and embedding theorems. Oscar Garcia-Prada 's appendix gives an overview of the developments in the field during the decades since the book appeared.

Twistor Geometry and Field Theory (Paperback, Revised): R.S. Ward, Raymond O. Wells, Jr Twistor Geometry and Field Theory (Paperback, Revised)
R.S. Ward, Raymond O. Wells, Jr
R2,594 Discovery Miles 25 940 Ships in 12 - 17 working days

This book deals with the twistor treatment of certain linear and non-linear partial differential equations in mathematical physics. The description in terms of twistors involves algebraic and differential geometry, and several complex variables, and results in a different kind of setting that gives a new perspective on the properties of space-time and field theories. The book is designed to be used by mathematicians and physicists and so the authors have made it reasonably self-contained. The first part contains a development of the necessary mathematical background. In the second part, Yang-Mills fields and gravitational fields (the basic fields of contemporary physics) are described at the classical level. In the final part, the mathematics and physics are married to solve a number of field-theoretical problems.

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