Opening book details…
Can I read Nonlinear Computational Solid Mechanics on EtoBox?
Nonlinear Computational Solid Mechanics by Ghaboussi, Jamshid; Pecknold, David A.; Wu, Xiping Steven is a mathematics available to read on EtoBox.
What is Nonlinear Computational Solid Mechanics about?
<p>This book presents the fundamentals of nonlinear mechanics within a modern computational approach based mainly on finite element methods. Both material and geometric nonlinearities are treated. The topics build up from the mechanics of finite deformation of solid bodies through to nonlinear structural behaviour including buckling, bifurcation and snap-through. The principles are illustrated with a series of solved problems. This book serves as a text book for a second year graduate course and
Who reads Nonlinear Computational Solid Mechanics?
It is typically read by self-directed learners exploring a subject in depth.
Common subject areas: history, science, philosophy, social sciences.
- Author
- Ghaboussi, Jamshid; Pecknold, David A.; Wu, Xiping Steven
- Publisher
- CRC Press, Taylor & Francis Group
- Published
- 2017
- Language
- EN
- ISBN
- 9780367875244
- Category
- mathematics
- Subjects
- Science, Engineering, Mathematics
- Updated
- 2026-03-25
More by Ghaboussi, Jamshid; Pecknold, David A.; Wu, Xiping Steven
Browse all works by Ghaboussi, Jamshid; Pecknold, David A.; Wu, Xiping Steven
Similar books
- Nonlinear Continua: Fundaments for the Computational Techniques (Computational Fluid and Solid Mechanics) — Eduardo N. Dvorkin, Marcela B. Goldschmit (2005)
- Computational Continuum Mechanics — Shabana, Ahmed A., (2008)
- Nonlinear Solid Mechanics for Finite Element Analysis : Dynamics — Javier Bonet, Antonio J. Gil, Wood, Richard D., A. J. (2021)
- Nonlinear Solid Mechanics : Bifurcation Theory and Material Instability — Davide Bigoni, University of Trento (2012)
- Nonlinear Continuum Mechanics : An Engineering Approach — Carlos Agelet de Saracibar (2023)
- Computational Contact and Impact Mechanics : Fundamentals of Modeling Interfacial Phenomena in Nonlinear Finite Element Analysis — Tod A. Laursen (2010)