Difference between revisions of "MAT3613"
Jump to navigation
Jump to search
m (Fixed section and topics) |
(Changed topic links to ones with spaces) |
||
Line 7: | Line 7: | ||
* Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | * Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | ||
|| | || | ||
− | * [[ | + | * [[Order of Differential Equations]] |
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitutions]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
|| | || | ||
* Explain the basic notion of the order of a differential equation. | * Explain the basic notion of the order of a differential equation. | ||
Line 21: | Line 21: | ||
* Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | * Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | ||
|| | || | ||
− | * [[ | + | * [[Solutions of Differential Equations]] |
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
|| | || | ||
* Explain the basic notion of solutions of differential equations. | * Explain the basic notion of solutions of differential equations. | ||
Line 35: | Line 35: | ||
* Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | * Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | ||
|| | || | ||
− | * [[ | + | * [[Initial Value Problem|Initial Value Problem (IVP)]] |
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
|| | || | ||
* Explain the basic notion of the initial values problem. | * Explain the basic notion of the initial values problem. | ||
Line 49: | Line 49: | ||
* Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | * Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | ||
|| | || | ||
− | * [[ | + | * [[Cauchy Problem]] |
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
|| | || | ||
* Explain the Cauchy Problem | * Explain the Cauchy Problem | ||
Line 64: | Line 64: | ||
* Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | * Ahmad and Ambrosetti 2014, Chaps. 1, 2, 3 | ||
|| | || | ||
− | * [[ | + | * [[Separation of Variables (1st Order)]] |
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
|| | || | ||
* Determine separable differential equations of the first order. | * Determine separable differential equations of the first order. | ||
Line 79: | Line 79: | ||
* Ahmad and Ambrosetti 2014, Chaps. 1 and 3 | * Ahmad and Ambrosetti 2014, Chaps. 1 and 3 | ||
|| | || | ||
− | * [[ | + | * [[Homogeneous Differential Equations (1st Order)]] |
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
|| | || | ||
* Determine homogeneous differential equations of the first order. | * Determine homogeneous differential equations of the first order. | ||
Line 95: | Line 95: | ||
* Ahmad and Ambrosetti 2014, Chaps. 1 and 3 | * Ahmad and Ambrosetti 2014, Chaps. 1 and 3 | ||
|| | || | ||
− | * [[ | + | * [[Linear Differential Equations (1st Order)]] |
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
|| | || | ||
* Determine linear differential equations of the first order. | * Determine linear differential equations of the first order. | ||
Line 110: | Line 110: | ||
* Ahmad and Ambrosetti 2014, Chaps. 1 and 3 | * Ahmad and Ambrosetti 2014, Chaps. 1 and 3 | ||
|| | || | ||
− | * [[ | + | * [[Integrating Factor]] |
|| | || | ||
− | * [[ | + | * [[Linear Differential Equations (1st Order)]] |
|| | || | ||
* Apply integrating factor to solve linear differential equations of the first order. | * Apply integrating factor to solve linear differential equations of the first order. | ||
Line 121: | Line 121: | ||
* Ahmad and Ambrosetti 2014, Ch. 3 | * Ahmad and Ambrosetti 2014, Ch. 3 | ||
|| | || | ||
− | * [[ | + | * [[Bernoulli Equations (1st Order)]] |
|| | || | ||
− | * [[ | + | * [[Linear Differential Equations (1st Order)]] |
|| | || | ||
* Determine Bernoulli of the first order. | * Determine Bernoulli of the first order. | ||
Line 132: | Line 132: | ||
* Ahmad and Ambrosetti 2014, Ch. 3 | * Ahmad and Ambrosetti 2014, Ch. 3 | ||
|| | || | ||
− | * [[ | + | * [[Exact Differential Equations (1st Order)]] |
|| | || | ||
− | * [[ | + | * [[Integrating Factor]] for exact equations. |
− | * [[ | + | * [[Partial Derivatives]] |
|| | || | ||
* Determine Exact Differential Equations of the first order. | * Determine Exact Differential Equations of the first order. | ||
Line 148: | Line 148: | ||
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
− | * [[ | + | * [[Partial Derivatives]] |
* First-order differential equations: | * First-order differential equations: | ||
− | :- [[ | + | :- [[Separation of Variables (1st Order)]] |
− | :- [[ | + | :- [[Homogeneous Differential Equations (1st Order)]] |
− | :- [[ | + | :- [[Linear Differential Equations (1st Order)]] |
− | :- [[ | + | :- [[Bernoulli Equations (1st Order)]] |
− | :- [[ | + | :- [[Exact Differential Equations (1st Order)]] |
|| | || | ||
* Determine the type of different classes of differential equations of the first order: separable, linear, homogeneous, Bernoulli, exact. | * Determine the type of different classes of differential equations of the first order: separable, linear, homogeneous, Bernoulli, exact. | ||
Line 167: | Line 167: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Linear Independence of Functions]]. |
|| | || | ||
− | * [[ | + | * [[Linear Independence of Vectors]]. |
|| | || | ||
* Understanding of Linear Independence of Functions. | * Understanding of Linear Independence of Functions. | ||
Line 177: | Line 177: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Linear Dependence of Functions]]. |
|| | || | ||
− | * [[ | + | * [[Linear Dependence of Vectors]]. |
|| | || | ||
* Understanding of Linear Dependence of Functions. | * Understanding of Linear Dependence of Functions. | ||
Line 187: | Line 187: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Wronskian]] |
|| | || | ||
− | * [[ | + | * [[Linear Independence of Functions]]. |
− | * [[ | + | * [[Linear Dependence of Functions]]. |
− | * [[ | + | * [[Determinant]]. |
|| | || | ||
* Showing linear independence of two functions using the Wronskian. | * Showing linear independence of two functions using the Wronskian. | ||
Line 200: | Line 200: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Reduction of the Order]] |
|| | || | ||
− | * [[ | + | * [[Wronskian]]. |
− | * [[ | + | * [[Quadratic Equations]]. |
− | * [[ | + | * [[Linear Differential Equations (1st Order)]]. |
− | * [[ | + | * [[Systems of Linear Equations]]. |
|| | || | ||
* Apply of the reduction of the order technique for second-order ODEs with a given solution. | * Apply of the reduction of the order technique for second-order ODEs with a given solution. | ||
Line 213: | Line 213: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Linear Homogeneous Equations]] |
|| | || | ||
− | * [[ | + | * [[Wronskian]]. |
− | * [[ | + | * [[Quadratic Equations]]. |
− | * [[ | + | * [[Linear Differential Equations (1st Order)]]. |
− | * [[ | + | * [[Systems of Linear Equations]]. |
|| | || | ||
* Determine homogeneous classes of differential equations of the second and higher order. | * Determine homogeneous classes of differential equations of the second and higher order. | ||
Line 227: | Line 227: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Abel’s Theorem]] |
|| | || | ||
− | * [[ | + | * [[Wronskian]]. |
− | * [[ | + | * [[Quadratic Equations]]. |
− | * [[ | + | * [[Linear Differential Equations (1st Order)]]. |
− | * [[ | + | * [[Systems of Linear Equations]]. |
|| | || | ||
* Determine Wronskian for a second-order ODE with 2 given solutions. | * Determine Wronskian for a second-order ODE with 2 given solutions. | ||
Line 240: | Line 240: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Fundamental Solutions]] |
|| | || | ||
− | * [[ | + | * [[Wronskian]]. |
− | * [[ | + | * [[Quadratic Equations]]. |
− | * [[ | + | * [[Linear Differential Equations (1st Order)]]. |
− | * [[ | + | * [[Systems of Linear Equations]]. |
|| | || | ||
* Determine fundamental solutions. | * Determine fundamental solutions. | ||
Line 253: | Line 253: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Linear Non-homogeneous Equations]] |
|| | || | ||
− | * [[ | + | * [[Wronskian]]. |
− | * [[ | + | * [[Quadratic Equations]]. |
− | * [[ | + | * [[Linear Differential Equations (1st Order)]]. |
− | * [[ | + | * [[Systems of Linear Equations]]. |
|| | || | ||
* Determine non-homogeneous classes of differential equations of the second and higher order. | * Determine non-homogeneous classes of differential equations of the second and higher order. | ||
Line 267: | Line 267: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Variation of Parameters (2nd Order)]] |
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
− | * [[ | + | * [[Quadratic Equations]]. |
− | * [[ | + | * [[Systems of Linear Equations]]. |
|| | || | ||
* Apply of the variation of parameters technique for second-order ODEs. | * Apply of the variation of parameters technique for second-order ODEs. | ||
Line 286: | Line 286: | ||
|| | || | ||
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
− | * [[ | + | * [[Quadratic Equations]]. |
− | * [[ | + | * [[Systems of Linear Equations]]. |
|| | || | ||
* Apply variation of parameters technique for second-order ODEs. | * Apply variation of parameters technique for second-order ODEs. | ||
Line 299: | Line 299: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Method of Undetermined Coefficients (2nd Order)]] |
|| | || | ||
− | * [[ | + | * [[Quadratic Equations]]. |
− | * [[ | + | * [[Systems of Linear Equations]]. |
|| | || | ||
* Apply method of undetermined coefficients technique for second-order ODEs. | * Apply method of undetermined coefficients technique for second-order ODEs. | ||
Line 310: | Line 310: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Non-linear 2nd Order ODEs]] |
|| | || | ||
− | * [[ | + | * [[Algebraic Equations]] |
− | * [[ | + | * [[Reduction of the Order]] |
* Integration techniques | * Integration techniques | ||
− | :- [[ | + | :- [[Direct Integration]] |
− | :- [[ | + | :- [[Integration by Substitution]] |
− | :- [[ | + | :- [[Integration by Parts]] |
− | :- [[ | + | :- [[Integration of Rational Functions]] |
|| | || | ||
* Methods for nonlinear second-order ODEs. | * Methods for nonlinear second-order ODEs. | ||
Line 327: | Line 327: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Variation of Parameters (Higher Order)]] |
|| | || | ||
− | * [[ | + | * [[Variation of Parameters (2nd Order)]] |
|| | || | ||
* Apply variation of parameters technique for higher-order ODEs | * Apply variation of parameters technique for higher-order ODEs | ||
Line 337: | Line 337: | ||
* Ahmad and Ambrosetti 2014, Ch. 5 | * Ahmad and Ambrosetti 2014, Ch. 5 | ||
|| | || | ||
− | * [[ | + | * [[Method of Undetermined Coefficients (Higher Order)]] |
|| | || | ||
− | + | * [[Method of Undetermined Coefficients (2nd Order)]] | |
− | * [[ | ||
|| | || | ||
* Apply method of undetermined coefficients technique for higher-order ODEs | * Apply method of undetermined coefficients technique for higher-order ODEs | ||
Line 348: | Line 347: | ||
* Ahmad and Ambrosetti 2014, Ch. 6 | * Ahmad and Ambrosetti 2014, Ch. 6 | ||
|| | || | ||
− | * [[ | + | * [[Linear Differential Equations (Higher Order)]] |
|| | || | ||
− | * [[ | + | * [[Linear Differential Equations (1st Order)]] |
− | * [[ | + | * [[Variation of Parameters (Higher Order)]]. |
− | * [[ | + | * [[Method of Undetermined Coefficients (Higher Order)]]. |
|| | || | ||
* Methods for linear higher-order ODEs | * Methods for linear higher-order ODEs | ||
Line 362: | Line 361: | ||
* Overview of the solutions methods for second and higher order differential equations. | * Overview of the solutions methods for second and higher order differential equations. | ||
|| | || | ||
− | * [[ | + | * [[Algebraic Equations]] |
* Direct methods for second and higher-order ODEs: | * Direct methods for second and higher-order ODEs: | ||
− | :- [[ | + | :- [[Variation of Parameters (Higher Order)]] |
− | :- [[ | + | :- [[Method of Undetermined Coefficients (Higher Order)]] |
|| | || | ||
* Evaluate the exact solutions of important classes of differential equations such as second order differential equations as well as some higher order differential equations. | * Evaluate the exact solutions of important classes of differential equations such as second order differential equations as well as some higher order differential equations. | ||
Line 373: | Line 372: | ||
* Ahmad and Ambrosetti 2014, Chaps. 10 | * Ahmad and Ambrosetti 2014, Chaps. 10 | ||
|| | || | ||
− | * [[ | + | * [[Power Series Solutions]] |
|| | || | ||
− | * [[ | + | * [[Power Series Inducution]] |
|| | || | ||
Apply power series method to evaluate solutions of first-order and second-order ODEs. | Apply power series method to evaluate solutions of first-order and second-order ODEs. | ||
Line 383: | Line 382: | ||
* Ahmad and Ambrosetti 2014, Chaps. 10 | * Ahmad and Ambrosetti 2014, Chaps. 10 | ||
|| | || | ||
− | * [[ | + | * [[Power Series Solutions]] (continued) |
|| | || | ||
− | * [[ | + | * [[Power Series Induction]] |
|| | || | ||
Apply power series method to evaluate solutions of first-order and second-order ODEs. | Apply power series method to evaluate solutions of first-order and second-order ODEs. | ||
Line 393: | Line 392: | ||
* Ahmad and Ambrosetti 2014, Ch. 11 | * Ahmad and Ambrosetti 2014, Ch. 11 | ||
|| | || | ||
− | * [[ | + | * [[Laplace Transform]] |
|| | || | ||
− | * [[ | + | * [[Functions]] of Single Variable. |
− | * [[ | + | * [[Continuity]] of functions of single variables. |
− | * [[ | + | * [[Derivatives]] of functions of single variables. |
− | * [[ | + | * [[Improper Integrals]] of functions of single variables with infinite limits. |
|| | || | ||
* Definition and main properties of the L-transform. | * Definition and main properties of the L-transform. | ||
Line 406: | Line 405: | ||
* Ahmad and Ambrosetti 2014, Ch. 11 | * Ahmad and Ambrosetti 2014, Ch. 11 | ||
|| | || | ||
− | * [[ | + | * [[Inverse Laplace Transform]] |
|| | || | ||
− | * [[ | + | * [[Laplace Transform]] |
− | * [[ | + | * [[Complex Derivatives]] |
|| | || | ||
* Apply the theorem(s) for inverse L-transform. | * Apply the theorem(s) for inverse L-transform. | ||
Line 417: | Line 416: | ||
* Ahmad and Ambrosetti 2014, Ch. 11 | * Ahmad and Ambrosetti 2014, Ch. 11 | ||
|| | || | ||
− | * [[ | + | * [[Laplace Transform to ODEs]] |
|| | || | ||
− | * [[ | + | * [[Linear Equations]] |
− | * [[ | + | * [[Laplace Transform]] |
− | * [[ | + | * [[Inverse Laplace Transform]] |
|| | || | ||
* Apply the Laplace transform as solution technique. | * Apply the Laplace transform as solution technique. | ||
Line 429: | Line 428: | ||
* Ahmad and Ambrosetti 2014, Ch. 11 | * Ahmad and Ambrosetti 2014, Ch. 11 | ||
|| | || | ||
− | * [[ | + | * [[Laplace Transform to Systems of ODEs]] |
|| | || | ||
− | * [[ | + | * [[Systems of Linear Equations]]. |
− | * [[ | + | * [[Laplace Transform]]. |
− | * [[ | + | * [[Inverse Laplace Transform]]. |
|| | || | ||
* Apply the Laplace transform as solution technique. | * Apply the Laplace transform as solution technique. | ||
Line 443: | Line 442: | ||
* Overview of the solutions methods discussed. | * Overview of the solutions methods discussed. | ||
|| | || | ||
− | * [[ | + | * [[Separation of Variables (1st Order)]] |
− | * [[ | + | * [[Homogeneous Differential Equations (1st Order)]] |
− | * [[ | + | * [[Linear Differential Equations (1st Order)]] |
− | * [[ | + | * [[Integrating Factor]] |
− | * [[ | + | * [[Bernoulli Equations (1st Order)]] |
− | * [[ | + | * [[Exact Differential Equations (1st Order)]] |
− | * [[ | + | * [[Reduction of the Order]] |
− | * [[ | + | * [[Method of Undetermined Coefficients (2nd Order)]] |
− | * [[ | + | * [[Non-linear 2nd Order ODEs]] |
− | * [[ | + | * [[Variation of Parameters (Higher Order)]] |
− | * [[ | + | * [[Method of Undetermined Coefficients (Higher Order)]] |
− | * [[ | + | * [[Linear Differential Equations (Higher Order)]] |
− | * [[ | + | * [[Power Series Solutions]] |
− | * [[ | + | * [[Laplace Transform to ODEs]] |
− | * [[ | + | * [[Laplace Transform to Systems of ODEs]] |
|| | || | ||
* Apply all solutions methods discussed. | * Apply all solutions methods discussed. | ||
|} | |} |
Revision as of 11:30, 7 July 2020
Topics List
Date | Sections | Topics | Prerequisite Skills | Student Learning Outcomes |
---|---|---|---|---|
Week I |
|
|
| |
Week I |
|
|
| |
Week I |
|
|
| |
Week I |
|
|
| |
Week I |
|
|
| |
Week II |
|
|
| |
Week II |
|
|
| |
Week II |
|
| ||
Week III |
|
| ||
Week III |
|
|
| |
Week IV |
|
|
|
|
Week V |
|
| ||
Week V |
|
| ||
Week V |
|
| ||
Week VI |
|
| ||
Week VI |
|
| ||
Week VI |
|
| ||
Week VI |
|
| ||
Week VI |
|
| ||
Week VI |
|
|
| |
Week VII |
|
|
|
|
Week VII |
|
| ||
Week VIII |
|
|
| |
Week VIII |
|
| ||
Week VIII |
|
| ||
Week IX |
|
| ||
Week X |
|
|
|
|
Week X |
|
Apply power series method to evaluate solutions of first-order and second-order ODEs. | ||
Week XI |
|
|
Apply power series method to evaluate solutions of first-order and second-order ODEs. | |
Week XII |
|
|
| |
Week XIII |
|
| ||
Week XIV |
|
| ||
Week XIV |
|
| ||
Week XV |
|
|
|
|