A first course in the finite element method

Gain a clear understanding of the basics of the finite element method (FEM) with this simple, direct, contemporary approach in Logan's A first course in the finite element method, Enhanced 6th Edition, SI Version. This unique presentation is written so you can easily comprehend content without...

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Bibliographic Details
Main Author: Logan, Daryl L. (Author)
Format: Book
Language:English
Published: Boston, MA Cengage 2023
Edition:Enhanced sixth edition, SI version
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245 1 2 |a A first course in the finite element method  |c Daryl L. Logan 
250 |a Enhanced sixth edition, SI version 
264 1 |a Boston, MA  |b Cengage  |c 2023 
264 4 |c © 2023 
300 |a xx, 953 pages, [16] pages of plates  |b illustrations  |c 24 cm 
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504 |a Includes bibliographical references and index 
505 0 |a 1. Introduction -- 2. Introduction to the stiffness (Displacement) method -- 3. Development of truss equations -- 4. Development of beam equations -- 5. Frame and grid equations -- 6. Development of the plane stress and plane strain stiffness equations -- 7. Practical considerations in modeling; Interpreting results; and Examples of plane stress/strain analysis -- 8. Development of the linear-strain triangle equations -- 9. Axisymmetric elements -- 10. Isoparametric formulation -- 11. Three-dimensional stress analysis -- 12. Plate bending element -- 13. Heat transfer and mass transport -- 14. Fluid flow in porous media and through hydraulic networks; and electrical networks and electrostatics -- 15. Thermal stress -- 16. Structural dynamics and time-dependent heat transfer. 
520 |a Gain a clear understanding of the basics of the finite element method (FEM) with this simple, direct, contemporary approach in Logan's A first course in the finite element method, Enhanced 6th Edition, SI Version. This unique presentation is written so you can easily comprehend content without the usual prerequisites, such as structural analysis. This book is ideal, whether you are a civil or mechanical engineering student primarily interested in stress analysis and heat transfer, or you need a foundation for applying FEM as a tool in solving practical physical problems. New and expanded real-world examples and problems demonstrate FEM applications in a variety of engineering and mathematical physics-related fields. Each chapter uses a consistent structure with step-by-step, worked-out examples, ideal for undergraduate or graduate-level study. A new WebAssign digital platform provides additional online resources to clarify concepts and assist you in completing assignments. 
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