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Course Criteria
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1.00 Credits
Independent research under the supervision of a faculty advisor and present their results as a seminar. Must complete both for required 2 credits. Prerequisite: Graduate standing Offered: Other
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3.00 Credits
Review of simple linear regression analysis, theory of least squares, multiple regression models in matrix terms, multivariate analysis, and theory of the general linear model. Prerequisite: MATH 3370 or its equivalent Offered: Other
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3.00 Credits
Introduction to logic, review of set operations, relations and functions, proof techniques. Prerequisite: Graduate standing Offered: Other
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3.00 Credits
An axiomatic and set-theoretic treatment of geometry and coordinate geometry. Prerequisite: MATH 2414 or its equivalent Offered: Other
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3.00 Credits
Systems of linear differential equations, autonomous systems, stability, sensitivity, existence and uniqueness theorems, Fourier series, boundary value problems, derivation of selected numerical methods such as the Runge-Kutta and multi-step methods, phase plan analysis and crucial points, Lotka-Volterra and pendulum applications, contraction mapping theorem. Prerequisites: Graduate standing and MATH 3301 and 3381 or consent of instructor Offered: Other
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3.00 Credits
Study of linear topological spaces, convexity, Hilbert spaces, Banach spaces, applications. Prerequisite: Graduate standing and Mathematics 3380 Offered: Other
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3.00 Credits
Statistical theories pertinent to solution of reliability problems, failure distributions and failure theory including failure rate and mean time to failure, time-dependent failure models, reliability of systems, and the analysis of failure data including reliability estimation and testing. Prerequisite: MATH 3370 or its equivalent Offered: Other
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3.00 Credits
Study of the role of problem solving techniques in solution and posing of problems and the role of technology in problem solving, mathematical modeling. Prerequisite: MATH 2414 or its equivalent Offered: Other
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3.00 Credits
Vectors, matrices, determinants and their applications, introduction to groups and rings. Prerequisite: MATH 2414 or its equivalent Offered: Other
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3.00 Credits
Systems of linear differential equations, autonomous systems, stability, sensitivity, existence and uniqueness theorems, Fourier series, boundary value problems, derivation of selected numerical methods such as Runge-Kutta and multi-steps methods. Prerequisites: MATH 3301, 3381 or permission of instructor Offered: Other
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