<p><P>This self-tutorial offers a concise yet thorough grounding in the mathematics necessary for successfully applying FEMs to practical problems in science and engineering. The unique approach first summarizes and outlines the finite-element mathematics in general and then, in the second and major
Finite Element Methods for Engineering Sciences: Theoretical Approach and Problem Solving Techniques
โ Scribed by Joel Chaskalovic
- Publisher
- Springer
- Year
- 2008
- Tongue
- English
- Leaves
- 267
- Edition
- 2009
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Subjects
Intelligence & Semantics;AI & Machine Learning;Computer Science;Computers & Technology;Mechanical;Drafting & Mechanical Drawing;Fluid Dynamics;Fracture Mechanics;Hydraulics;Machinery;Robotics & Automation;Tribology;Welding;Engineering;Engineering & Transportation;Applied;Biomathematics;Differential Equations;Game Theory;Graph Theory;Linear Programming;Probability & Statistics;Statistics;Stochastic Modeling;Vector Analysis;Mathematics;Science & Math;Mechanics;Physics;Science & Math;Artificial Int
๐ SIMILAR VOLUMES
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<p><span>The monograph is devoted to the construction of the high-order finite difference and finite element methods for numerical solving multidimensional boundary-value problems (BVPs) for different partial differential equations, in particular, linear Helmholtz and wave equations, nonlinear Burge
In recent years there have been significant developments in the development of stable and accurate finite element procedures for the numerical approximation of a wide range of fluid mechanics problems. Taking an engineering rather than a mathematical bias, this valuable reference resource details th