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Course Criteria
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3.00 Credits
Prerequisite: MA 310(may be taken concurrently)with a grade of at least C- Techniques for the solution of first and higher order differential equations; also, as time permits, Laplace transforms and series solutions. Offered every year. 3 credits.
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3.00 Credits
Prerequisite: MA 220 or MA 240 with a grade of at least C- Topics from Euclidean and non-Euclidean geometry. Offered every year. 3 credits.
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3.00 Credits
Prerequisite: MA 220 or MA 240 with a grade of at least C- Surveys the development of algebra, arithmetic, plane geometry and trigonometry by tracing certain fundamental concepts in mathematics from Euclid to the twentieth century. Offered every year. 3 credits.
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3.00 Credits
Prerequisite: MA 220 or MA 240 with a grade of at least C- Divisibility properties of integers, prime numbers, the Euclidean algorithm, the unique factorization theorem, congruences, Diophantine equations, number theoretic functions. Offered every year. 3 credits.
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3.00 Credits
Prerequisite: MA 310 with a grade of at least C- Methods for interpreting results of experiments; distributions, probability, random variables, binomial probability, normal probability. Offered every 3 years. 3 credits.
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3.00 Credits
Prerequisite: MA 260 with a grade of at least C- Sets, mathematical systems, groups, rings, fields. Offered every year. 3 credits.
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3.00 Credits
Prerequisite: MA 240 and MA 310 with a grade of at least C- Rigorous treatment of sequences, topology of the real numbers, continuity; also, as time allows, differentiation, integration. Offered every year. 3 credits.
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3.00 Credits
Prerequisites: MA 201, ability to program in some language with a grade of at least C- Computer solutions to mathematical problems including root approximation, integration, differentiation, series, and systems of equations. Offered every 3 years. 4 credits.
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3.00 Credits
Prerequisite: MA 310 with a grade of at least C- Theory of functions of complex variables; complex numbers, functions, limits and continuity, differentiation, Cauchy-Riemann Equations, analytic functions, Laurent series, residues and poles, conformal mapping. Offered every 3 years. 3 credits.
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3.00 Credits
Prerequisite: Consent of instructor Selection of topics of mutual interest to students and faculty. Offered every 3 years. 3 credits.
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