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Mathematics: Theory & Applications: Riemannian Geometry

Parameter

  • 300 Seiten
  • 11 Lesestunden

Mehr zum Buch

Riemannian Geometry is an expanded edition of a highly acclaimed and successful textbook (originally published in Portuguese) for first-year graduate students in mathematics and physics. The author's treatment goes very directly to the basic language of Riemannian geometry and immediately presents some of its most fundamental theorems. It is elementary, assuming only a modest background from readers, making it suitable for a wide variety of students and course structures. Its selection of topics has been deemed "superb" by teachers who have used the text. A significant feature of the book is its powerful and revealing structure, beginning simply with the definition of a differentiable manifold and ending with one of the most important results in Riemannian geometry, a proof of the Sphere Theorem. The text abounds with basic definitions and theorems, examples, applications, and numerous exercises to test the student's understanding and extend knowledge and insight into the subject. Instructors and students alike will find the work to be a significant contribution to this highly applicable and stimulating subject.

Buchkauf

Mathematics: Theory & Applications: Riemannian Geometry, Manfredo Perdigão Do Carmo

Sprache
Erscheinungsdatum
1992
Einband
(Hardcover),
Buchzustand
Gebraucht - Gut
Preis
21,99 €inkl. MwSt.

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Titel
Mathematics: Theory & Applications: Riemannian Geometry
Sprache
Englisch
Verlag
Springer
Erscheinungsdatum
1992
Einband
Hardcover
Seitenzahl
300
ISBN10
0817634908
ISBN13
9780817634902
Reihe
Beschreibung
Riemannian Geometry is an expanded edition of a highly acclaimed and successful textbook (originally published in Portuguese) for first-year graduate students in mathematics and physics. The author's treatment goes very directly to the basic language of Riemannian geometry and immediately presents some of its most fundamental theorems. It is elementary, assuming only a modest background from readers, making it suitable for a wide variety of students and course structures. Its selection of topics has been deemed "superb" by teachers who have used the text. A significant feature of the book is its powerful and revealing structure, beginning simply with the definition of a differentiable manifold and ending with one of the most important results in Riemannian geometry, a proof of the Sphere Theorem. The text abounds with basic definitions and theorems, examples, applications, and numerous exercises to test the student's understanding and extend knowledge and insight into the subject. Instructors and students alike will find the work to be a significant contribution to this highly applicable and stimulating subject.