Differential and Complex Geometry: Origins, Abstractions and Embeddings

Nonfiction, Science & Nature, Mathematics, Mathematical Analysis, Geometry
Cover of the book Differential and Complex Geometry: Origins, Abstractions and Embeddings by Raymond O.  Wells, Jr., Springer International Publishing
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Author: Raymond O. Wells, Jr. ISBN: 9783319581842
Publisher: Springer International Publishing Publication: August 1, 2017
Imprint: Springer Language: English
Author: Raymond O. Wells, Jr.
ISBN: 9783319581842
Publisher: Springer International Publishing
Publication: August 1, 2017
Imprint: Springer
Language: English

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.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

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.

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