Difference between revisions of "MAT1224"
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− | * [[Antiderivatives | + | * [[Differentiation Rules]] <!-- 1214-3.3 --> |
− | * [[The | + | * [[Antiderivatives]] <!-- 1214-4.10 --> |
+ | * [[The Fundamental Theorem of Calculus]] <!-- 1214-5.3 --> | ||
* [[Power Series and Functions]] <!-- 1224-6.1 --> | * [[Power Series and Functions]] <!-- 1224-6.1 --> | ||
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+ | * Combine power series by addition or subtraction. | ||
+ | * Multiply two power series together. | ||
* Differentiate and integrate power series term-by-term. | * Differentiate and integrate power series term-by-term. | ||
− | * | + | * Use differentiation and integration of power series to represent certain functions as power series. |
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− | * [[The Derivative | + | * [[The Derivative as a Function|Higher-Order Derivatives]] <!-- 1214-3.2 --> |
* [[Power Series and Functions]] <!-- 1224-6.1 --> | * [[Power Series and Functions]] <!-- 1224-6.1 --> | ||
* [[Properties of Power Series]] <!-- 1224-6.2 --> | * [[Properties of Power Series]] <!-- 1224-6.2 --> | ||
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− | * Find | + | * Find a Taylor or Maclaurin series representation of a function. |
− | * Find the radius of convergence of a Taylor Series. | + | * Find the radius of convergence of a Taylor Series or Maclaurin series. |
− | * | + | * Finding a Taylor polynomial of a given order for a function. |
− | + | * Use Taylor's Theorem to estimate the remainder for a Taylor series approximation of a given function. | |
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− | * | + | * Plot a curve described by parametric equations. |
+ | * Convert the parametric equations of a curve into the form y=f(x) by eliminating the parameter. | ||
+ | * Recognize the parametric equations of basic curves, such as a line and a circle. | ||
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− | * Find the slope of the tangent line to a parametric curve at a point | + | * Find the slope of the tangent line to a parametric curve at a point. |
− | * | + | * Use the second derivative to determine the concavity of a parametric curve at a point. |
− | * Determine the area bounded by a parametric curve | + | * Determine the area bounded by a parametric curve. |
− | * Determine the arc length of a parametric curve | + | * Determine the arc length of a parametric curve. |
− | * | + | * Determine the area of a surface obtained by rotating a parametric curve about an axis. |
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Revision as of 06:57, 18 November 2020
The textbook for this course is Calculus (Volume 2) by Gilbert Strang, Edwin Herman, et al.
A comprehensive list of all undergraduate math courses at UTSA can be found here.
The Wikipedia summary of calculus and its history.
Topics List
Date | Sections | Topics | Prerequisite Skills | Student Learning Outcomes | |
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Week 1 |
1.3
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Week 1 |
1.5
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Week 2 |
2.1
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Week 2 |
2.2
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Week 3 |
2.3
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Week 3 |
2.4
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Week 4 |
2.5
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Week 4 |
2.6
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Week 5 |
3.1
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Week 5 |
3.2
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Week 6 |
3.3
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Week 6 |
3.4
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Week 7 |
3.7
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Week 7 |
4.3
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Week 8 |
2.8
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Week 8 |
4.4
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Week 9 |
5.1
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Week 10 |
5.2
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Week 10 |
5.3
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Week 11 |
5.4
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Week 11 |
5.5
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Week 12 |
5.6
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Week 12 |
6.1
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Week 13 |
6.2
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Week 14 |
6.3
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Week 15 |
7.1
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Week 15 |
7.2
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