An excursion through discrete differential geometry : AMS Short Course, Discrete Differential Geometry, January 8-9, 2018, San Diego, California
معرفی کتاب «An excursion through discrete differential geometry : AMS Short Course, Discrete Differential Geometry, January 8-9, 2018, San Diego, California» نوشتهٔ Jiawei Han، Jian Pei، Micheline Kamber و Keenan Crane; American Mathematical Society. Short Course, Discrete Differential Geometry، منتشرشده توسط نشر AMS در سال 2020. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.
Discrete Differential Geometry (DDG) is an emerging discipline at the boundary between mathematics and computer science. It aims to translate concepts from classical differential geometry into a language that is purely finite and discrete, and can hence be used by algorithms to reason about geometric data. In contrast to standard numerical approximation, the central philosophy of DDG is to faithfully and exactly preserve key invariants of geometric objects at the discrete level. This process of translation from smooth to discrete helps to both illuminate the fundamental meaning behind geometric ideas and provide useful algorithmic guarantees. This volume is based on lectures delivered at the 2018 AMS Short Course ``Discrete Differential Geometry,'' held January 8-9, 2018, in San Diego, California. The papers in this volume illustrate the principles of DDG via several recent topics: discrete nets, discrete differential operators, discrete mappings, discrete conformal geometry, and discrete optimal transport. "Discrete Differential Geometry (DDG) is an emerging discipline at the boundary between mathematics and computer science. It aims to translate concepts from classical differential geometry into a language that is purely finite and discrete, and can hence be used by algorithms to reason about geometric data. In contrast to standard numerical approximation, the central philosophy of DDG is to faithfully and exactly preserve key invariants of geometric objects at the discrete level. This process of translation from smooth to discrete helps to both illuminate the fundamental meaning behind geometric ideas and provide useful algorithmic guarantees"--Back cover Contents 6 Preface 8 Discrete Laplace operators • Max Wardetzky 12 Discrete parametric surfaces • Johannes Wallner 30 Discrete mappings • Yaron Lipman 52 Conformal geometry of simplicial surfaces • Keenan Crane 70 Optimal transport on discrete domains • Justin Solomon 114
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