Difference between revisions of "MAT1223"
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(Created page with "The textbook for this course is [https://openstax.org/details/books/calculus-volume-2 Calculus (Volume 2) by Gilbert Strang, Edwin Herman, et al.] A comprehensive list of al...") |
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* Determine the volume of a solid by integrating a cross-section (the slicing method). | * Determine the volume of a solid by integrating a cross-section (the slicing method). | ||
* Find the volume of a solid of revolution using the disk method. | * Find the volume of a solid of revolution using the disk method. | ||
− | * Find the volume of a solid of revolution with a cavity using the washer method | + | * Find the volume of a solid of revolution with a cavity using the washer method |
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* Calculate the volume of a solid of revolution by using the method of cylindrical shells. | * Calculate the volume of a solid of revolution by using the method of cylindrical shells. | ||
* Compare the different methods for calculating a volume of revolution. | * Compare the different methods for calculating a volume of revolution. | ||
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* Determine the length of a plane curve between two points. | * Determine the length of a plane curve between two points. | ||
* Find the surface area of a solid of revolution. | * Find the surface area of a solid of revolution. | ||
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* Calculate the work done in pumping a liquid from one height to another. | * Calculate the work done in pumping a liquid from one height to another. | ||
* Find the hydrostatic force against a submerged vertical plate. | * Find the hydrostatic force against a submerged vertical plate. | ||
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* Locate the center of mass of a thin plate. | * Locate the center of mass of a thin plate. | ||
* Use symmetry to help locate the centroid of a thin plate. | * Use symmetry to help locate the centroid of a thin plate. | ||
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* Use the tabular method to perform integration by parts. | * Use the tabular method to perform integration by parts. | ||
* Solve problems involving applications of integration using integration by parts. | * Solve problems involving applications of integration using integration by parts. | ||
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* Evaluate integrals involving products of sin(ax), sin(bx), cos(ax), and cos(bx). | * Evaluate integrals involving products of sin(ax), sin(bx), cos(ax), and cos(bx). | ||
* Solve problems involving applications of integration using trigonometric integrals. | * Solve problems involving applications of integration using trigonometric integrals. | ||
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* Convert the parametric equations of a curve into the form y=f(x) by eliminating the parameter. | * 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. | * Recognize the parametric equations of basic curves, such as a line and a circle. | ||
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* Determine the area of a surface obtained by rotating a parametric curve about an axis. | * Determine the area of a surface obtained by rotating a parametric curve about an axis. | ||
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Revision as of 14:24, 29 March 2023
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 |
---|---|---|---|---|
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 8 |
4.3
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Week 8 |
4.5
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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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|