Elementary Fourier Analysis by Phil Gustafson Ph D
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Elementary Fourier Analysis

Elementary Fourier Analysis


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About the Book

This book was written as a textbook for a one semester undergraduate mathematics course in Fourier analysis, with an emphasis on applications to basic signal processing. This course was developed by the author and first taught in 2007, using an early version of the book manuscript. The course has been taught annually since then, and both the course and book manuscript have evolved significantly over the years. The concepts in the book are illustrated with many MATLAB graphs and output, using programs written by the author for use by the students. The course has been a popular addition to a traditional undergraduate mathematics program at the author's university, using a hands-on approach in a computer classroom with MATLAB. For a wider audience, the book can be valuable for those interested in learning basics of Fourier analysis and signal processing, with or without MATLAB. The book does not explore advanced topics in signal processing and harmonic analysis, nor the application of Fourier series to the solution of separable partial differential equations - there are already many books written for these purposes. However, there are not many books that comprehensively address Fourier analysis and signal processing at the introductory level presented in this book. Prerequisite knowledge for this book is a year of single variable calculus, familiarity with vectors and matrices, and some mathematical maturity. The author has successfully used this book with students at the junior and senior level in mathematics, mathematics secondary education, computer science, statistics, physics, chemistry, geology and mass communication. Fourier analysis has something of significance to offer many areas. The content of the book is organized as follows. Chapter 1 provides an introduction to the discrete nature of digital signals. Vectors represent sampled functions, and matrices represent pixel value colorations for digital images. After working with basic characteristics of signals, the need for a more advanced theoretical understanding of signals becomes clear. Chapters 2 and 3 develop the required continuous-time theory, including orthogonal function expansions, Haar wavelet expansions, Fourier expansions, Fourier transforms and inverse Fourier transforms, time and frequency domain settings, and the Cosine Transform of Type II. Chapters 4 and 5 apply these ideas to the discrete-time setting by way of vector and matrix expansions, discrete Fourier and Cosine transforms, spectrograms and JPEG compression. Chapter 6 provides additional material on MP3 compression. The 2nd edition includes minor changes and corrections.
About the Author: Phil Gustafson, Ph.D. Mathematics, is a Professor of Mathematics at Colorado Mesa University (CMU) in Grand Junction, Colorado. He has been recognized with several campus-wide awards, including several Exemplary Faculty Awards; an Outstanding Achievement in Scholarship Award; the Dr. Martina Keck Wall of Fame Award in Academic Services; and a nomination for the CMU Distinguished Faculty Award. In the greater academic community, he is a founding member of the Business, Industry and Government Special Interest Group of the Mathematical Association of America (BIG SIGMAA), and has served as the Chair of the BIG SIGMAA and the Vice Chair of Programs for BIG SIGMAA. Dr. Gustafson is also a Project NExT Fellow (New Experiences in Teaching) and former Project NExT Mentor for the Mathematical Association of America.


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Product Details
  • ISBN-13: 9781719172080
  • Publisher: Createspace Independent Publishing Platform
  • Publisher Imprint: Createspace Independent Publishing Platform
  • Height: 254 mm
  • No of Pages: 414
  • Spine Width: 22 mm
  • Weight: 761 gr
  • ISBN-10: 1719172080
  • Publisher Date: 11 Jun 2018
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Sub Title: With Audio and Image Processing
  • Width: 178 mm


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