Geometries and TransformationsCambridge University Press, 2018年6月7日 Euclidean and other geometries are distinguished by the transformations that preserve their essential properties. Using linear algebra and transformation groups, this book provides a readable exposition of how these classical geometries are both differentiated and connected. Following Cayley and Klein, the book builds on projective and inversive geometry to construct 'linear' and 'circular' geometries, including classical real metric spaces like Euclidean, hyperbolic, elliptic, and spherical, as well as their unitary counterparts. The first part of the book deals with the foundations and general properties of the various kinds of geometries. The latter part studies discrete-geometric structures and their symmetries in various spaces. Written for graduate students, the book includes numerous exercises and covers both classical results and new research in the field. An understanding of analytic geometry, linear algebra, and elementary group theory is assumed. |
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第 1 到 5 筆結果,共 99 筆
第 i 頁
... geometry, linear algebra, and elementary group theory is assumed. Norman W. Johnson was Professor Emeritus of Mathematics at Wheaton College, Massachusetts. Johnson authored and coauthored numerous journal articles on geometry and ...
... geometry, linear algebra, and elementary group theory is assumed. Norman W. Johnson was Professor Emeritus of Mathematics at Wheaton College, Massachusetts. Johnson authored and coauthored numerous journal articles on geometry and ...
第 ii 頁
... geometric theories together with their full groups of transformations that preserve their essential characteristic ... geometry. His book will be an instant classic, giving an overview that will serve as an introduction to new subjects ...
... geometric theories together with their full groups of transformations that preserve their essential characteristic ... geometry. His book will be an instant classic, giving an overview that will serve as an introduction to new subjects ...
第 iv 頁
... Geometry–Textbooks. | BISAC: MATHEMATICS/Topology. Classification: LCC QA445 .J64 2017|DDC 516–dc23 LC record available at https://lccn.loc.gov/2017009670 ISBN 978-1-107-10340-5 Hardback Cambridge University Press has no responsibility ...
... Geometry–Textbooks. | BISAC: MATHEMATICS/Topology. Classification: LCC QA445 .J64 2017|DDC 516–dc23 LC record available at https://lccn.loc.gov/2017009670 ISBN 978-1-107-10340-5 Hardback Cambridge University Press has no responsibility ...
第 vii 頁
... Geometry .................. 46 2.4 Hyperbolic Geometry .......................... 50 3 Circular Geometries ............................... 57 3.1 Inversive and Spherical Geometry ................. 57 3.2 Pseudospherical Geometry ...
... Geometry .................. 46 2.4 Hyperbolic Geometry .......................... 50 3 Circular Geometries ............................... 57 3.1 Inversive and Spherical Geometry ................. 57 3.2 Pseudospherical Geometry ...
第 viii 頁
... ................. 129 5.6 Symplectic Geometry .......................... 132 6 Real Isometry Groups ............................. 138 6.1 Spherical and Elliptic Isometries .................. 138 6.2 Euclidean Transformations ...........
... ................. 129 5.6 Symplectic Geometry .......................... 132 6 Real Isometry Groups ............................. 138 6.1 Spherical and Elliptic Isometries .................. 138 6.2 Euclidean Transformations ...........
內容
1 | |
13 | |
27 | |
Circular Geometries | 57 |
Real Collineation Groups | 87 |
Equiareal Collineations | 113 |
Real Isometry Groups | 138 |
Complex Spaces | 157 |
Complex Collineation Groups | 168 |
Circularities and Concatenations | 183 |
Unitary Isometry Groups | 203 |
Finite Symmetry Groups | 223 |
Tables | 390 |
List of Symbols | 406 |
Index | 425 |
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常見字詞
affine angle associated Axiom called central circle collineation column commutator complex contains coordinates corresponding Coxeter diagrams Coxeter group defined determinant direct distance dual elements elliptic entries equal Euclidean EXERCISES expressed extended field Figure Find finite fixed follows four fractional transformations fundamental region geometry given half-turn honeycomb hyperbolic hyperplane hypersphere induces infinite integers inversive isometry isomorphic lattice length linear group mapping matrix meet multiplication n-space nonzero normal obtain operation ordinary orthogonal orthogonal matrix pairs parallel period plane points polarity positive preserves projective properties quaternionic ratios reffections regular represented respective ring rotation satisfying the relations scalar separated Show sides similarity space sphere spherical subgroup of index symbol symmetry group symplectic taking tions transformation translation triangle unique unit unitary vector vector space vertices