Independent reading in math. Does not count as credit toward a math major. Credit/no credit only. Offered: AWSpS.
Score: 4.92532 Details | Listing | Web page
Mathematical arguments and the writing of proofs in an elementary setting. Elementary set theory, elementary examples of functions and operations on functions, the principle of induction, counting, elementary number theory, elementary combinatorics, recurrence relations. Prerequisite: either 2.0 in MATH 125, MATH 145, or MATH 135.
Score: 4.92532 Details | Listing | Web page
Brief introduction to some of the fundamental ideas of elementary number theory. Prerequisite: either 2.0 in MATH 126 or 2.0 in MATH 136.
Score: 4.92532 Details | Listing | Web page
Introductory course in ordinary differential equations. Includes first- and second-order equations and Laplace transform. Prerequisite: either 2.0 in MATH 125 or 2.0 in MATH145. Offered: AWSpS.
Score: 4.92532 Details | Listing | Web page
Systems of linear equations, vector spaces, matrices, subspaces, orthogonality, least squares, eigenvalues, eigenvectors, applications. For students in engineering, mathematics, and the sciences. Credit allowed for only one of MATH 308 or MATH 318. Prerequisite: either 2.0 in MATH 126 or 2.0 in MATH 146. Offered: AWSpS.
Score: 4.92532 Details | Listing | Web page
First order systems of linear differential equations, Fourier series and partial differential equations, and the phase plane. Prerequisite: either 2.0 in MATH 307 and 2.0 in MATH 308, or 2.0 in MATH 307 and MATH 318, or 2.0 in MATH 136. Offered: AWSpS.
Score: 4.92532 Details | Listing | Web page
Introduction to the mathematical concepts, arguments, and proofs that occur in linear algebra. Vectors and matrices, systems of linear equations, determinants, subspaces, dimension, bases, linear transformations, eigenvalues and eigenvectors. Credit allowed for only one of MATH 308 or MATH 318. Prerequisite: either 2.0 in MATH 126 or 2.0 in MATH 146; 2.0 in MATH 300.
Score: 4.92532 Details | Listing | Web page
Topics include double and triple integrals, the chain rule, vector fields, line and surface integrals. Culminates in the theorems of Green and Stokes, along with the Divergence Theorem. Prerequisite: either 2.0 in MATH 126 or 2.0 in MATH 136. Offered: AWSpS.
Score: 4.92532 Details | Listing | Web page
Elementary topology, general theorems on partial differentiation, maxima and minima, differentials, Lagrange multipliers, implicit function theorem, inverse function theorem and transformations, change of variables formula. Prerequisite: either 2.0 in MATH 136, 2.0 in MATH 308, or 2.0 in MATH 318; 2.0 in MATH 324. Offered: AWSp.
Score: 4.92532 Details | Listing | Web page
Limits and continuity of functions, sequences, series tests, absolute convergence, uniform convergence. Power series, improper integrals, uniform continuity, fundamental theorems on continuous functions, theory of the Riemann integral. Prerequisite: either both 2.0 in MATH 126 and 2.0 in MATH 300, or 2.0 in MATH 136. Offered: AWSpS.
Score: 4.92532 Details | Listing | Web page
Limits and continuity of functions, sequences, series tests, absolute convergence, uniform convergence. Power series, improper integrals, uniform continuity, fundamental theorems on continuous functions, theory of the Riemann integral. Prerequisite: 2.0 in MATH 327. Offered: AWSp.
Score: 4.92532 Details | Listing | Web page
Introduction to proofs and rigor; uniform convergence, Fourier series and partial differential equations, vector calculus, complex variables. Students who complete this sequence are not required to take MATH 309, 310, 324, 326, 327, 328, and 427. Second year of an accelerated two-year sequence; prepares students for senior-level mathematics courses. Prerequisite: either 2.0 in MATH 136, or 2.0 in MATH 126 and 2.0 in MATH 307 and either 2.0 in MATH 205, 2.0 in MATH 308, or 2.0 in MATH 318.Offered: A.
Score: 4.92532 Details | Listing | Web page
Introduction to proofs and rigor; uniform convergence, Fourier series and partial differential equations, vector calculus, complex variables. Students who complete this sequence are not required to take 309, 324, 326, 327, 328, and 427. Second year of an accelerated two-year sequence; prepares students for senior-level mathematics courses. Prerequisite: 2.0 in MATH 334. Offered: AWSp.
Score: 4.92532 Details | Listing | Web page
Introduction to proofs and rigor; uniform convergence, Fourier series and partial differential equations, vector calculus, complex variables. Students who complete this sequence are not required to take 309, 324, 326, 327, 328, and 427. Second year of an accelerated two-year sequence; prepares students for senior-level mathematics courses. Prerequisite: 2.0 in MATH 335. Offered: Sp.
Score: 4.92532 Details | Listing | Web page
Map and graph coloring, spanning trees, dominating sets, cryptography, interpretation of graphs, circular motion, statistics that mislead, other topics. Focus on middle school level, with sixth or seventh grade classroom visits every week. Discussion of readings on math education reform. Prerequisite: MATH 126. Offered: A.
Score: 4.92532 Details | Listing | Web page
Map and graph coloring, spanning trees, dominating sets, cryptography, interpretation of graphs, circular motion, statistics that mislead, other topics. Focus on middle school level, with sixth or seventh grade classroom visits lasting all Tuesday morning in alternate weeks. Discussion of readings on math education reform. Prerequisite: MATH 354. Offered: W.
Score: 4.92532 Details | Listing | Web page
Introduction to methods of discrete mathematics, including topics from graph theory, network flows, and combinatorics. Emphasis on these tools to formulate models and solve problems arising in variety of applications, such as computer science, biology, and management science. Prerequisite: either 2.0 in MATH 136, 2.0 in MATH 308, or 2.0 in MATH 318.
Score: 4.92532 Details | Listing | Web page
Laboratory activities in the use of computing as tool for doing mathematics, to be taken jointly with a designated section of a 300-level mathematics course. Credit/no credit only.
Score: 4.92532 Details | Listing | Web page
Concepts of probability and statistics. Conditional probability, independence, random variables, distribution functions. Descriptive statistics, transformations, sampling errors, confidence intervals, least squares and maximum likelihood. Exploratory data analysis and interactive computing. Students may receive credit for only one of 390, STAT/ECON 481, and ECON 580. Prerequisite: either MATH 126 or MATH 136. Offered: jointly with STAT 390; AWSpS.
Score: 4.92532 Details | Listing | Web page
Sample spaces; basic axioms of probability; combinatorial probability; conditional probability and independence; binomial, Poisson, and normal distributions. Prerequisite: either 2.0 in MATH 126 or 2.0 in MATH 136; recommended: MATH 324 or MATH 327. Offered: jointly with STAT 394; AWS.
Score: 4.92532 Details | Listing | Web page
Random variables; expectation and variance; laws of large numbers; normal approximation and other limit theorems; multidimensional distributions and transformations. Prerequisite: 2.0 in STAT/MATH 394. Offered: jointly with STAT 395; WSpS.
Score: 4.92532 Details | Listing | Web page
Characteristic functions and generating functions; recurrent events and renewal theory; random walk. Prerequisite: 2.0 in MATH 395 or 2.0 in STAT 511. Offered: jointly with STAT 396; Sp.
Score: 4.92532 Details | Listing | Web page
Independent reading in math. Does not count as credit toward a math major. Credit/no credit only. Offered: AWSpS.
Score: 4.92532 Details | Listing | Web page
Elementary theory of groups: Cosets and Lagrange's theorem. Homomorphisms, normal subgroups, quotient groups, and the fundamental isomorphism theorems. Cyclic and symmetric groups. Orders and Cauchy's theorem. Direct products. Automorphisms. Prerequisite: either 2.0 in MATH 136, 2.0 in MATH 327, 2.0 in MATH 336, or 2.0 in MATH 340. Offered: AS.
Score: 4.92532 Details | Listing | Web page
Elementary theory of rings and fields: polynomial rings. Ideals, homomorphisms, quotients, and fundamental isomorophism theorems. Fields and maximal ideals. Euclidean rings. Field extensions. Algebraic extensions. Vector spaces and degrees of extensions. Adjoining roots of polynomials. Finite fields. Straight edge and compass constructions. Prerequisite: 2.0 in MATH 402. Offered: W.
Score: 4.92532 Details | Listing | Web page
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