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Notes on Diffy Qs Differential Equations for Engineers Jirí Lebl

By: Lebl, Jirí [author]Contributor(s): Open Textbook Library [distributor]Material type: TextTextSeries: Open textbook libraryDistributor: Open Textbook Library Publisher: Jirí Lebl Description: 1 online resourceISBN: 9781505698190Subject(s): Mathematics -- Textbooks | Engineering -- TextbooksLOC classification: QA1TA145QA37.3Online resources: Access online version
Contents:
First order ODEs -- Higher order linear ODEs -- Systems of ODEs -- Fourier series and PDEs -- Eigenvalue problems -- The Laplace transform -- Power series methods -- Nonlinear systems
Subject: A one semester first course on differential equations, aimed at engineering students. Prerequisite for the course is the basic calculus sequence. This free online book (e-book in webspeak) should be usable as a stand-alone textbook or as a companion to a course using another book such as Edwards and Penney, Differential Equations and Boundary Value Problems: Computing and Modeling or Boyce and DiPrima, Elementary Differential Equations and Boundary Value Problems (section correspondence to these two is given). I developed and used these notes to teach Math 286/285 at the University of Illinois at Urbana-Champaign Sample Dirichlet problem solution (one is a 4-day-a-week, the other a 3-day-a-week semester-long course). I have also taught Math 20D at University of California, San Diego with these notes (a 3-day-a-week quarter-long course). There is enough material to run a 2-quarter course, and even perhaps a two semester course depending on lecturer speed.
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First order ODEs -- Higher order linear ODEs -- Systems of ODEs -- Fourier series and PDEs -- Eigenvalue problems -- The Laplace transform -- Power series methods -- Nonlinear systems

A one semester first course on differential equations, aimed at engineering students. Prerequisite for the course is the basic calculus sequence. This free online book (e-book in webspeak) should be usable as a stand-alone textbook or as a companion to a course using another book such as Edwards and Penney, Differential Equations and Boundary Value Problems: Computing and Modeling or Boyce and DiPrima, Elementary Differential Equations and Boundary Value Problems (section correspondence to these two is given). I developed and used these notes to teach Math 286/285 at the University of Illinois at Urbana-Champaign Sample Dirichlet problem solution (one is a 4-day-a-week, the other a 3-day-a-week semester-long course). I have also taught Math 20D at University of California, San Diego with these notes (a 3-day-a-week quarter-long course). There is enough material to run a 2-quarter course, and even perhaps a two semester course depending on lecturer speed.

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