Difference between revisions of "MAT1193"
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== Calculus for the Biosciences == | == Calculus for the Biosciences == | ||
− | MAT 1193 | + | [https://catalog.utsa.edu/search/?P=MAT%201193 MAT 1193 Calculus for the Biosciences]. (3-0) 3 Credit Hours. (TCCN = MATH 2313) |
Prerequisite: [[MAT1093|MAT 1093]] or an equivalent course or satisfactory performance on a placement examination. An introduction to calculus is presented using discrete-time dynamical systems and differential equations to model fundamental processes important in biological and biomedical applications. Specific topics to be covered are limits, continuity, differentiation, antiderivatives, definite and indefinite integrals, the fundamental theorem of calculus, differential equations, and the phase-plane. (Formerly MAT 1194. Credit can be earned for only one of the following: MAT 1193, MAT 1194, or MAT 1214.) May apply toward the Core Curriculum requirement in Mathematics. Generally offered: Fall, Spring, Summer. Course Fees: DL01 $72; LRC1 $12; LRS1 $45; STSI $21. | Prerequisite: [[MAT1093|MAT 1093]] or an equivalent course or satisfactory performance on a placement examination. An introduction to calculus is presented using discrete-time dynamical systems and differential equations to model fundamental processes important in biological and biomedical applications. Specific topics to be covered are limits, continuity, differentiation, antiderivatives, definite and indefinite integrals, the fundamental theorem of calculus, differential equations, and the phase-plane. (Formerly MAT 1194. Credit can be earned for only one of the following: MAT 1193, MAT 1194, or MAT 1214.) May apply toward the Core Curriculum requirement in Mathematics. Generally offered: Fall, Spring, Summer. Course Fees: DL01 $72; LRC1 $12; LRS1 $45; STSI $21. |
Revision as of 15:20, 21 July 2020
Calculus for the Biosciences
MAT 1193 Calculus for the Biosciences. (3-0) 3 Credit Hours. (TCCN = MATH 2313)
Prerequisite: MAT 1093 or an equivalent course or satisfactory performance on a placement examination. An introduction to calculus is presented using discrete-time dynamical systems and differential equations to model fundamental processes important in biological and biomedical applications. Specific topics to be covered are limits, continuity, differentiation, antiderivatives, definite and indefinite integrals, the fundamental theorem of calculus, differential equations, and the phase-plane. (Formerly MAT 1194. Credit can be earned for only one of the following: MAT 1193, MAT 1194, or MAT 1214.) May apply toward the Core Curriculum requirement in Mathematics. Generally offered: Fall, Spring, Summer. Course Fees: DL01 $72; LRC1 $12; LRS1 $45; STSI $21.
Date | Section | Topic | Pre-requisite | Student Learning Outcome |
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Week 1 | Example | Review of functions and change |
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Week 2 | Example | Instantaneous Rate of Change |
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Week 3 | Example | Limits | Example |
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Week 4 | Example | Derivative Formulas (Derivatives for powers and polynomials) |
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Week 4 | Example | Derivative Formulas (Derivatives for trigonometric functions) |
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Week 6 | Example | Applications |
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Week 7 | Example | Accumulated Change & the Definite Integral |
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Week 8 | Example | Antiderivatives | Basics in graphing |
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Week 9 | Example | Definite Integral and the Fundamental Theorem of Calculus | Average formula |
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Week 10 | Example | Integration Applications | Example | Solve various biology applications using the fundamental theorem of calculus |
Week 10 | Example | Substitution Method | Example | Applying integration by substitution formulas |
Week 11 | Example | Integration by Parts and further applications | Example |
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Week 12 | Example | Differential Equations (Mathematical Modeling) | Word problem setup and understanding of mathematical models |
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Week 13 | Example | Graphs of differential equations and separation of variables for solving differential equations | Graphing and factoring |
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Week 14 | Example | Exponential growth and decay & surge function | Exponential functions |
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