This book is the 2nd edition of an introduction to modern computational mechanics based on the finite element method. It includes more details on the theory, more exercises, and more consistent notation; in addition, all pictures have been revised. Featuring more than 100 pages of new material, the new edition will help students succeed in mechanics courses by showing them how to apply the fundamental knowledge they gained in the first years of their engineering education to more advanced topics.

In order to deepen readers’ understanding of the equations and theories discussed, each chapter also includes supplementary problems. These problems start with fundamental knowledge questions on the theory presented in the respective chapter, followed by calculation problems. In total, over 80 such calculation problems are provided, along with brief solutions for each.

This book is especially designed to meet the needs of Australian students, reviewing the mathematicscovered in their first two years at university. The 13-week course comprises three hours of lectures and two hours of tutorials per week.

Read more

In order to deepen readers’ understanding of the equations and theories discussed, each chapter also includes supplementary problems. These problems start with fundamental knowledge questions on the theory presented in the respective chapter, followed by calculation problems.

Read more

Introduction to the Finite Element Method.- Rods and Trusses.- Euler-Bernoulli Beams and Frames.- Timoshenko Beams.- Plane Elements.- Classical Plate Elements.- Three-Dimensional Elements.- Principles of Linear Dynamics.- Integration Methods for Transient Problems.- Appendix A: Mathematics.- Appendix B: Mechanics.- Appendix C: Units and Conversion.- Appendix D: Summary of Stiffness Matrices.

Read more

This book is the 2nd edition of an introduction to modern computational mechanics based on the finite element method. It includes more details on the theory, more exercises, and more consistent notation; in addition, all pictures have been revised. Featuring more than 100 pages of new material, the new edition will help students succeed in mechanics courses by showing them how to apply the fundamental knowledge they gained in the first years of their engineering education to more advanced topics.

In order to deepen readers’ understanding of the equations and theories discussed, each chapter also includes supplementary problems. These problems start with fundamental knowledge questions on the theory presented in the respective chapter, followed by calculation problems. In total, over 80 such calculation problems are provided, along with brief solutions for each.

This book is especially designed to meet the needs of Australian students, reviewing the mathematicscovered in their first two years at university. The 13-week course comprises three hours of lectures and two hours of tutorials per week.

Read more
Provides essential guidance to ensure students’ success in mechanics courses Includes more details on the theory, more exercises, and more consistent notation Shows students how to apply their fundamental knowledge Features over 80 calculation exercises with brief solutions for each
Read more
GPSR Compliance The European Union's (EU) General Product Safety Regulation (GPSR) is a set of rules that requires consumer products to be safe and our obligations to ensure this. If you have any concerns about our products you can contact us on ProductSafety@springernature.com. In case Publisher is established outside the EU, the EU authorized representative is: Springer Nature Customer Service Center GmbH Europaplatz 3 69115 Heidelberg, Germany ProductSafety@springernature.com
Read more

Product details

ISBN
9789811512803
Published
2021-01-04
Edition
2. edition
Publisher
Springer Verlag, Singapore
Height
235 mm
Width
155 mm
Age
Upper undergraduate, P, 06
Language
Product language
Engelsk
Format
Product format
Heftet
Number of pages
606

Biographical note

Andreas Öchsner is a Full Professor of Lightweight Design and Structural Simulation at Esslingen University of Applied Sciences, Germany. After completing his Dipl.-Ing. degree in Aeronautical Engineering at the University of Stuttgart (1997), he served as a research and teaching assistant at the University of Erlangen-Nuremberg from 1997 to 2003 while pursuing his Doctor of Engineering Sciences (Dr.-Ing.) degree. From 2003 to 2006, he was an Assistant Professor at the Department of Mechanical Engineering and Head of the Cellular Metals Group affiliated with the University of Aveiro, Portugal. He spent seven years (2007–2013) as a Full Professor at the Department of Applied Mechanics, Technical University of Malaysia, where he was also Head of the Advanced Materials and Structure Lab. From 2014 to 2017 he was a Full Professor at the School of Engineering, Griffith University, Australia and Leader of the Mechanical Engineering Program (Head of Discipline and Program Director).