Many things have properties that depend on their shape, such as the drag characteristics of a rigid body in a flow. This self-contained overview of differential geometry explains how to differentiate a function with respect to a 'shape variable'. This approach, useful for understanding mathematical models containing geometric PDEs, allows readers to obtain formulas for geometric quantities (such as curvature) that are clearer than those usually offered in differential geometry texts. Readers will learn how to compute geometric sensitivities by developing basic calculus on surfaces alongside calculus of variations, aided by plenty of applications and illustrations. This book, a convenient reference for various shape derivative formulas, will be valuable to anyone interested in surface geometry and shape optimization. Graduate students can use it to quickly get acquainted with shape differentiation while scientists will find the book helpful for problems where surface geometry is critical or geometry evolves in time.
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Shawn Walker is an assistant professor of mathematics at Louisiana State University (LSU), with a joint appointment in the Center for Computation and Technology (CCT). He held a postdoctoral position at the Courant Institute (New York University) and joined the LSU faculty in 2010 in the computational mathematics group. He is a member of SIAM, AMS, MRS, and APS. His research interests include PDEs for fluids and moving/free boundaries, geometric evolution problems, numerical analysis and finite element methods, mesh generation, and optimal PDE control of shape.
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Paperback. Condition: New. Many things around us have properties that depend on their shape - for example, the drag characteristics of a rigid body in a flow. This self-contained overview of differential geometry explains how to differentiate a function (in the calculus sense) with respect to a "shape variable". This approach, which is useful for understanding mathematical models containing geometric partial differential equations (PDEs), allows readers to obtain formulas for geometric quantities (such as curvature) that are clearer than those usually offered in differential geometry texts.Readers will learn how to compute sensitivities with respect to geometry by developing basic calculus tools on surfaces and combining them with the calculus of variations. Several applications that utilize shape derivatives and many illustrations that help build intuition are included. Seller Inventory # LU-9781611973952
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Condition: New. A differential geometry-based guide to understanding mathematical models which feature an underlying geometry which evolves in time. Series: Advances in Design and Control. Num Pages: 162 pages. BIC Classification: PBKJ; PBKS; PBP; UY. Category: (U) Tertiary Education (US: College). Dimension: 247 x 174. . . 2015. Paperback. . . . . Seller Inventory # V9781611973952
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Condition: New. A differential geometry-based guide to understanding mathematical models which feature an underlying geometry which evolves in time. Series: Advances in Design and Control. Num Pages: 162 pages. BIC Classification: PBKJ; PBKS; PBP; UY. Category: (U) Tertiary Education (US: College). Dimension: 247 x 174. . . 2015. Paperback. . . . . Books ship from the US and Ireland. Seller Inventory # V9781611973952