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Engineering Mathematics (4th Edition) written by
Anthony Croft , Loughborough University, Loughborough, United Kingdom
Robert Davison, De Montfort University, Leicester, England
Martin Hargreaves, De Montfort University, Leicester, England and
James Flint , Loughborough University, Loughborough, United Kingdom.
Popular electrical engineering maths textbook, packed full of relevant modern applications and a huge number of examples and exercises.
This book has been written to serve the mathematical needs of students engaged in a first course in engineering at degree level. It is primarily aimed at students of electronic, electrical, communications and systems engineering. Systems engineering typically encompasses areas such as manufacturing, control and production engineering. The book will also be useful for engineers who wish to engage in self-study and continuing education.
Engineers are called upon to analyse a variety of engineering systems, which can be anything from a few electronic components connected together through to a complete factory. The analysis of these systems benefits from the intelligent application of mathematics. Indeed, many cannot be analysed without the use of mathematics. Mathematics is the language of engineering. It is essential to understand how mathematics works in order to master the complex relationships present in modern engineering systems and products.
There are two main aims of the book. Firstly, we wish to provide an accessible, readable introduction to engineering mathematics at degree level. The second aim is to encourage the integration of engineering and mathematics.
The first three chapters include a review of some important functions and techniques that the reader may have met in previous courses. This material ensures that the book is self-contained and provides a convenient reference.
Traditional topics in algebra, trigonometry and calculus have been covered. Also included are chapters on set theory, sequences and series, Boolean algebra, logic, difference equations and the z transform. The importance of signal processing techniques is reflected by a thorough treatment of integral transform methods. Thus the Laplace, z and Fourier transforms have been given extensive coverage.
In the light of feedback from readers, new topics and new examples have been added in the fourth edition. Recognizing that motivation comes from seeing the applicability of mathematics we have focused mainly on the enhancement of the range of applied examples. These include topics on the discrete cosine transform, image processing, applications in music technology and communications engineering.
Title: Engineering Mathematics
Edition: 4th
Author(s): Anthony Croft, Robert Davison, Martin Hargreaves, James Flint
Publisher: Pearson Education, Canada
Series:
Year: 2012
Pages: 983
Type: PDF
Language: English
ISBN: 0273719777,9780273719779
Country: UK
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Engineering Mathematics (4th Edition) written by
Anthony Croft, Robert Davison, Martin Hargreaves, James Flint
cover the following topics.
1. Review of algebraic techniques
2. Engineering functions
3. The trigonometric functions
4. Coordinate systems
5. Discrete mathematics
6. Sequences and series
7. Vectors
8. Matrix algebra
9. Complex numbers
10. Differentiation
11. Techniques of differentiation
12. Applications of differentiation
13. Integration
14. Techniques of integration
15. Applications of integration
16. Further topics in integration
17. Numerical integration un
18. Taylor polynomialsp Taylor series and Maclaurin series
19. Ordinary differential equations I
20. Ordinary differential equations II
21. The Laplace transform
22. Difference equations and the z transform
23. Fourier series
24. The Fourier transform
25. Functions of several variables
26. Vector calculus sn
27. Line integrals and multiple integrals
28. Probability
29. Statistics and probability distributions
Appendix
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