ordinary differential equations

University of Cincinnati

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Chapter 1 Section 1 - Chapter 2 Section 1 Chapter 1 Section 1 - Chapter 2 Section 1
  • Chapter 1 Section 1 - Chapter 2 Section 1

  • Textbook notes • 24 pages • 2020
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  • Differential Form Interval of Definition Solution Curves Explicit and Implicit Solutions Families of Solutions nth - Order Families Singular Solutions Piecewise Function System of Differential Equations Elementary Functions Initial Value Problems Geometric Interpretations Interval or Definition of Solution Second Order Initial Value Problem Existence and Uniqueness of Ordinary Differential Equation Construction of a Mathematical Model for a System Dynamical Systems Derivatives of Ordinary Differ...
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Chapter 2 Section 2 - Chapter 2 Section 5 Chapter 2 Section 2 - Chapter 2 Section 5
  • Chapter 2 Section 2 - Chapter 2 Section 5

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  • Separable Equations Solution by Integration Method of Solution for Separable Equations Losing a Solution Trivial Solutions Integral Defined Function Linear First Order Differential Equation Procedure to Solve Linear First Order Differential Equations Piecewise Linear Differential Equation Error Function Exact Equations Method of Solution for Exact Equations Exact Differential Equations Implicit Solution Integrating Factors Homogeneous Solution
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Chapter 3 Section 1 - Chapter 3 Section 3 Chapter 3 Section 1 - Chapter 3 Section 3
  • Chapter 3 Section 1 - Chapter 3 Section 3

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  • Growth and Decay Models Carbon Dating Bacterial Growth Half Life Equation Newton's Law of Heating and Cooling Mixtures First Order Differential Equation Population Dynamics Logistic Equation Chemical Reaction Linear or Non Linear Systems Radioactive Series Predator Prey Model
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Chapter 4 Section 1 Chapter 4 Section 1
  • Chapter 4 Section 1

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  • Initial Value Problem Existence of Unique Solution Requirements of a Unique Solution Homogeneous Equation Differential Operator Superposition Principle Superposition Homogeneous Differential Equations Linear Dependance Linear Independence Linear Dependent Set of Functions Criterion for Linear Independent Solutions Wronskian Function Existence of Fundamental Set General Solution Homogeneous Equation Non-homogeneous Equations and General Solution
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Chapter 4 Section 2 - Chapter 4 Section 4 Chapter 4 Section 2 - Chapter 4 Section 4
  • Chapter 4 Section 2 - Chapter 4 Section 4

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  • Reduction of Order Linear First Order Solution Methods to First-Order Differential Equations Auxiliary Equations 3 cases to m-substitution Distinct Real Roots Repeated Real Roots Conjugate Complex Roots Euler's Formula Imaginary and Real Root Equations General Solution to Higher Order Differential Equations Synthetic Division Solving non-homogeneous Linear Differential Equations Method of Undetermined Coefficients General Solution using Undetermined Coefficients Particular Solution Using Undete...
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Chapter 4 Section 6 - Chapter 4 Section 8 Chapter 4 Section 6 - Chapter 4 Section 8
  • Chapter 4 Section 6 - Chapter 4 Section 8

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  • Method of Undetermined Coefficients Variation of Parameters Linear Second Order Differential Equations General Solution Using Variation of Parameters Constants of Integration Cauchy Euler Equations Method of Solution Cauchy Euler Equation Distinct Real Roots Repeated Real Roots Conjugate Complex Roots Non-Homogeneous Equations Green's Function Linear Independence Leibnez Formula Boundary Value Problems
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Chapter 5 Section 1 - Chapter 5 Section 3 Chapter 5 Section 1 - Chapter 5 Section 3
  • Chapter 5 Section 1 - Chapter 5 Section 3

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  • Hooke's Law Free Undamped Motion Equation of Motion Double Spring System Free Damped Motion and Separate Cases Differential Equation of Driven Motion with Resistance Transient and Steady State Terms Pure Resonance LRC Series Circuit Linearization
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Chapter 6 Section 1 - Chapter 6 Section 3 Chapter 6 Section 1 - Chapter 6 Section 3
  • Chapter 6 Section 1 - Chapter 6 Section 3

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  • Ratio Testing Differential Equations Identity Property Polynomial Coefficients Existence of Power Series Solution Minimum Radius of Convergence Finding Power Series Solution Solution Curves Regular and Irregular Singular Points Method of Fronbenius Two Series Solution One Series Solution and Separate Cases
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Chapter 7 Section 1 - Chapter 7 Section 3 Chapter 7 Section 1 - Chapter 7 Section 3
  • Chapter 7 Section 1 - Chapter 7 Section 3

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  • Laplace Transformation Sufficient Conditions for Existence of Laplace Transformation Inverse Laplace Transformation Termwise Division Solving Linear Ordinary Differential Equations Solving an Initial Value Problem using Laplace Transformation Second Translation Theorem
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