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Course Criteria
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3.00 Credits
This course includes the following topics: limits; continuity; the definition of the derivative; differentiation; applications; anti-derivatives. Prerequisites: two years of high school algebra and trigonometry or MAT 1313 and MAT 1323. MAT 1613 and MAT 1323 may be taken during the same semester. (3,3,0)
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3.00 Credits
Coordinate systems, basic theorems of analytics, functions, limits, the derivative, the integral and the differentiation of algebraic functions, applications. (Open through invitation only.) (3,3,0)
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3.00 Credits
This course includes the following topics: the definite integral; differentiation and integration of transcendental functions; techniques of integration; applications. Prerequisite: MAT 1613. (3,3,0)
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3.00 Credits
Differentiation and integration of transcendental functions, the definite integral, methods of integration, applications. (Open through invitation only.) (3,3,0)
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3.00 Credits
Designed for elementary and special education majors, this course includes set theory, numeration systems, foundations of number theory, and properties and operations of real numbers. Corequisite: MAT 1313. (3,3,0)
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3.00 Credits
This course includes the following topics: systems of linear equations; matrices; Vector spaces; determinants; linear transformation; Eigenvalues and Eigenvectors. Prerequisite: MAT 1623 or MAT 1815. (3,3,0)
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3.00 Credits
Introduction to statistical methods of describing, summarizing, comparing, and interpreting data to include probability distributions, sampling, estimation, confidence intervals, and hypothesis testing. Prerequisite: MAT 1313. (3,3,0)
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3.00 Credits
This course includes the following topics: analytical geometry; parametric equations; polar coordinates; improper intergrals; infinite series. Prerequisite: MAT 1623. (3,3,0)
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3.00 Credits
This course includes the following topics: partial differentiation; multiple integration; vector calculus; quadric surfaces. Prerequisites: MAT 2613 or MAT 1825. (3,3,0)
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3.00 Credits
This course includes the following topics: solution of first and higher order differential equations; existence theorems; Laplace transforms; applications. Prerequisite: MAT 2623 or enrollment in MAT 2623. (3,3,0)
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