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Course Criteria
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3.00 Credits
The number system, limits, sequences, partial different- iation with applications, maxima and minima of functions of several variables. Theory of definite integrals, multiple integrals, line and surface integrals, improper integrals, infinite series.
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3.00 Credits
The number system, limits, sequences, partial different- iation with applications, maxima and minima of functions of several variables. Theory of definite integrals, multiple integrals, line and surface integrals, improper integrals, infinite series.
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3.00 Credits
First course in topology. Basics of point-set topology: metric and topological spaces, continuity, connectedness, compactness, products, quotients. Surfaces and simplicial complexes, Euler characteristics.
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3.00 Credits
First course in algebraic topology. Homotopy, fundamental group, simplicial homology.
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3.00 Credits
This course is designed to introduce students in mathematical sciences to the theorems, techniques, and applications of graph theory and combinatorics.
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3.00 Credits
Direct an iterative methods for numerical solution of linear systems of equations. Eigenvalues and eigenvectors. rror Analysis and norms. Related topics.
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3.00 Credits
The theory and technique of numerical computation involving the difference calculus, the summation calculus, inter- polation methods, solution of systems of equations, and methods of solution of ordinary differential equations.
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3.00 Credits
Probability spaces, conditional probability, and applications. Random variables, distributions, expectation, and moments.
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3.00 Credits
Statistical inference: estimation of parameters, tests of hypotheses. Regression, analysis of variance.
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3.00 Credits
Finite geometrics, basic background material for the modern development of Euclidean Geometry, other geometries.
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