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mathematics and Statistics haverford.edu/mathematics The courses in the department of Mathematics and Statistics aim to: • promote rigorous thinking in a systematic, deductive, intellectual discipline • help students identify and articulate mathematical and statistical problems that they encounter, both in formal academic work and elsewhere • foster technical competence in mathematics and statistics as an aid to the better comprehension of the physical, biological, and social sciences • guide and direct majors toward an interest in research in the mathematical and statistical sciences. CURRICULUM MAJOR Mathematics majors take a three-year core sequence of courses in calculus, linear algebra, abstract algebra, and analysis, designed to provide a foundation for further study in the major areas of modern mathematics. Students with substantial advanced placement may complete this sequence by the end of their sophomore year. Students who have completed the core sequence may take advanced courses in algebra, analysis, topology, or other special topics. We urge mathematics majors to gain facility in the use of computers, either through the introductory courses Computer Science 105, 106, applied math electives (like Math 210, 218, 222, or 397), or independent work. Mathematics courses for majors fall into six general categories: 1. Preliminary calculus: Math 105, 118 or advanced placement. Although not listed among the requirements, these are prerequisites for all subsequent courses in mathematics. 2. Muiltivariate calculus/Linear algebra: Math 215, 121 or 216. These courses benefit both majors and non-majors, but are the real “introduction” to math for most majors. 3. Core major courses: Math 317-318: Analysis Math 333-334: Algebra. These courses are the “cornerstone” of the major, introducing many important ideas in which modern mathematics is based, and also sharpening students’ skills in mathematical discourse (i.e. careful statements of definitions, theorems, proofs). 4. Intermediate electives: Math 203 (Statistical Methods), 210 (Linear Optimization), 218 (Probability), 222 (Scientific Computing), 286 (Multivariate Statistics). 5. Advanced electives: 335 (Topology), 337 (Differential Geometry), 328 (Mathematical Statistics), and other advanced topics courses varying from year to year. 6. Other courses: • Math 399/400 (Senior Seminar/Senior Research): A required yearlong course for seniors that involves both independent work with their senior thesis advisor and a group seminar offering advice, support, and practice for seniors in preparing the senior paper and oral presentation. • Math 460 (Teaching Assistantship in Mathematics): A half-credit course, in which students work closely with a single faculty member in a single course at the 100- or 200-level, offering various kinds of classroom support including problem sessions, review, tutoring, and laboratory assistance. MATHEMATICS MAJOR REQUIREMENTS 1. Math 215, and either Math 121 or Math 216 2. Math 317 and 333, and one of Math 318 or 334 3. Four additional electives in mathematics or approved related courses at the 200-level or higher. At least one of these must be at the 300-level. (Note: Math 399, Math 400, Math 460, and Math 480 do not count toward this requirement.) 4. The senior seminar, Fall and Spring. 5. A senior paper and oral presentation. 240 mathematics and statistics We strongly advise students planning graduate study in mathematics or related fields to take additional courses at the 300 level.(no paragraph) Majors may substitute equivalent courses in mathematics at Bryn Mawr College for any requirement, subject to advisor approval. FACULTY Lynne Butler Professor Trubee Davidson Visiting Instructor MINOR Gabriel Feinberg Visiting Assistant Professor Mathematics minors take the same core sequence as do the majors, though not necessarily to the same depth, followed by a selection of electives tailored to the student’s interest. Statistics minors take a separate core sequence in probability and statistics, with later flexibility in pursuing either a more applied or a more theoretical track. Amanda French Visiting Assistant Professor Curtis Greene (on leave 2015-16) Department Chair and J. McLain King Professor of Mathematics MATHEMATICS MINOR REQUIREMENTS • Math 215 (Linear Algebra) and either Math121 (Multivariable Calculus) or Math216 (Advanced Calculus). • Math 317 (Analysis I) and Math 333 (Algebra I). • Two additional electives in mathematics at the 200 level or higher. Minors may substitute equivalent courses in mathematics at Bryn Mawr College for any requirement, subject to advisor approval. David Lippel Visiting Assistant Professor and Laboratory Instructor Robert Manning William H. and Johanna A. Harris Professor of Computational Science Elizabeth Townsend Milicevic (on leave 2015-16) Assistant Professor STATISTICS MINOR REQUIREMENTS • One of the following courses: Stat 203, Econ 204, Psyc 200, Soci 215 • Stat 286 (Applied Multivariate Statistical Analysis) • Math 218 (Probability) • Math 215 (Linear Algebra) • Math 121 or Math 216 (Multivariable Calculus) • One of the following: o Stat 328 (Mathematical Statistics) o Stat 396 (Advanced Topics in Probability and Statistics) o Econ 304 (Econometrics) o Sociology 320 (Advanced Quantitative Methods for Sociologists). CONCENTRATIONS Mathematics majors can pursue four areas of concentration: • Computer Science (more theoretical) • Scientific Computing (more applied) • Mathematical Economics (for majors interested in applying their skills to economic problems) • Mathematics Education (for majors interested in teaching mathematics) Weiwen Miao Associate Professor Joshua Sabloff Professor Jeff Tecosky-Feldman Senior Lecturer COURSES MATHH103A001 Introduction to Probability and Statistics TBA Department staff Basic concepts and methods of elementary probability and quantitative reasoning, with practical applications. Topics include: sample average and standard deviation, normal curves, regression, expected value and standard error, confidence intervals and hypothesis tests.; Crosslisted in Mathematics and Statistics; Prerequisite: Not open to students who have (a) placed into MATH121 or higher, (b) taken 118 or higher, or (c) taken any other introductory statistics class at Haverford or Bryn Mawr.; Quantitative (QU); Natural Science (NA) 241 MATHH105B001 Applied Modeling with Calculus Jeff Tecosky-Feldman An introduction to aspects of calculus useful in applied work in the natural and social sciences, with a strong emphasis on developing mathematical modeling skills. Topics include differential calculus of functions of one and several variables, differential equations. Applications to biology, economics, and physics.; Quantitative (QU); Natural Science (NA) MATHH118A001 Calculus: Dynamics and Integration Jeff Tecosky-Feldman A study of the evolution of systems defined by difference and differential equations. Methods of analysis come from calculus: the limit, the derivative, and the integral from numerical, graphical, and symbolic perspectives. A fourth hour discussion session is required.; Prerequisite: MATH105 or placement.; Quantitative (QU); Natural Science (NA) MATHH121A001 Calculus III Joshua Sabloff, David A. Lippel An introduction to functions of several variables, vector geometry, partial derivatives, maxima & minima, Taylor’s Theorem, multiple integrals, line integrals, and Green’s and Stokes’ Theorem. One additional required discussion hour.; Prerequisite: MATH114 or 115 or equivalent placement.; Quantitative (QU); Natural Science (NA) MATHH121A00A Multivariable Calculus David A. Lippel An introduction to functions of several variables, vector geometry, partial derivatives, maxima & minima, Taylor’s Theorem, multiple integrals, line integrals, and Green’s and Stokes’ Theorem. Enrollment in one lab hour is required.; Prerequisites: MATH114, 115, 118 or equivalent placement. Not open to students who have previously taken multivariable calculus at the college level, either at Haverford of elsewhere, except with instructor permission.; Quantitative (QU); Natural Science (NA) MATHH199I001 First Year Seminar: Mathematics Beyond Calculus Joshua Sabloff Half-credit course designed to introduce and convey the flavor of mathematics beyond the introductory core sequence in calculus and linear algebra. A selection of topics will be covered, varying from year to year.; Prerequisites: MATH215 is a pre- or co-requisite.; Quantitative (QU); Natural Science (NA) MATHH203A001 Statistical Methods and Their Applications Weiwen Miao An introduction to statistical methods used to analyze data in the natural and social sciences. It covers descriptive statistics, the binomial and normal distributions, expected value and variance, confidence intervals and hypothesis testing, comparison of two samples, regression, and analysis of variance. A required computer lab, using R, is taught alongside this course.; Crosslisted: Mathematics and Statistics; Prerequisites: MATH118 or higher, placement into 121 or higher, or permission of the instructor. Students who have taken another introductory statistics course at Haverford or Bryn Mawr may only enroll in STAT203 with permission of the instructor.; Natural Science (NA); Quantitative (QU) MATHH205A001 Topics in Geometry Jeff Tecosky-Feldman An introduction to several areas in classical and modern geometry: analytic geometry, conic sections, Platonic solids and polyhedra, tessellations of the plane, projective, hyperbolic, and differential geometry. Students will see how symmetry groups serve as a unifying theme in geometry. This course will introduce students to the skill of writing formal mathematical proofs.; Natural Science (NA); Quantitative (QU) MATHH215A001 Linear Algebra TBA Department staff An introduction to linear algebra: vector spaces, linear transformations and matrices, determinants, quadratic forms and eigenvalue problems. Applications to differential equations and linear models are discussed.; Prerequisites: MATH115 or 121 or equivalent placement, or 114 with consent of the instructor.; Quantitative (QU) MATHH216B001 Advanced Calculus Jeff Tecosky-Feldman Calculus of several variables: continuous and differentiable functions on Euclidean spaces, extreme value problems, inverse and implicit function theorems, multiple integration, Green’s 242 mathematics and statistics and Stokes’ Theorems.; Prerequisite: MATH215.; Natural Science (NA) MATHH218A001 Probability Lynne Butler An introduction to probability theory. Topics include: sample spaces, combinatorics, conditional probability, independence, discrete and continuous random variables, functions of random variables, expected value and variance, the moment generating function, and some basic limit theorems.; Prerequisites: MATH216 or 121 or consent of the instructor.; Quantitative (QU); Natural Science (NA) MATHH286A001 Applied Multivariate Statistical Analysis Weiwen Miao An introduction to multivariate statistical analysis. The course includes methods for choosing, fitting, and evaluating multiple regression models and analysis of variance models. A required computer lab, using R, is taught alongside this course.; Prerequisites: Mathematics 215 and one of the following: ECON204, MATH203, PSYC200 or SOCL215.; Quantitative (QU); Natural Science (NA) MATHH317A001 Analysis I Robert Manning A rigorous development of topics in calculus, including detailed treatment of the axioms of the real number line, cardinality, topology of normed spaces, compactness, and various notions of convergence. This course also serves as a thorough introduction to clear, correct writing of mathematical proofs.; Prerequisites: MATH215 and either 121 or 216 or consent of the instructor.; Natural Science (NA) MATHH318B001 Analysis II Robert Manning A continuation of mathematics 317, focusing particularly on sequences and series of functions with applications (e.g., Fourier series, existence and uniqueness of solutions to differential equations). Other advanced topics (such as measure theory, the Lebesgue integral, calculus of variations, Fourier transforms, approximation theorems or fixed point theorems) are included according to instructor and student interest.; Natural Science (NA) MATHH328B001 Mathematical Statistics Weiwen Miao An introduction to mathematical theory of statistics. Topics include: Estimation, Hypothesis Testing, one-sample inference, two-sample inference, and regression. Additional topics may include: goodness-of-fit tests and analysis of variance.; Natural Science (NA); Quantitative (QU) MATHH333A001 Algebra I Gabriel Feinberg A rigorous treatment of fundamental algebraic structures. Topics include: axioms for integers, modular arithmetic, polynomials, rings, fields, and introduction to groups.; Prerequisite: Mathematics 215 and either 121 or 216, or consent of the instructor. Corequisite of MATH299 for students who have not had 216 or math at the 300 level.; Natural Science (NA) MATHH334B001 Algebra II Lynne Butler A continuation of MATH333a. Topics include: Sylow’s theorems for groups, finite abelian groups, finite fields, Galois theory, modules, and advanced linear algebra.; Natural Science (NA) MATHH335A001 Topology Joshua Sabloff Generalizes topological concepts from Euclidean spaces to arbitrary topological spaces, and introduces elements of algebraic topology. Concepts covered include continuity, connectedness, and compactness. The course culminates in an exploration of the fundamental group and covering spaces.; Prerequisites: MATH317 and 333, or consent of the instructor.; Natural Science (NA) MATHH337B001 Differential Geometry Joshua Sabloff A study of the differential geometry of curves and surfaces. Concepts covered include both the local theory (including metrics, curvature, and geodesics) and the global theory, culminating in the Gauss-Bonnet theorem.; Natural Science (NA) MATHH392A001 Adv Topics Analysis & Geometry TBA Department staff Natural Science (NA) 243 MATHH392B001 Advanced Topics in Analysis and Geometry: Complex Analysis Robert Manning Past topics include “Complex analysis”; Prerequisite: MATH317 or consent of the instructor.; Natural Science (NA) MATHH396B001 Advanced Topics in Probability and Statistics Lynne Butler Crosslisted: Mathematics, Statistics; Prerequisite: MATH218 or consent of the instructor.; Natural Science (NA) MATHH397A001 Advanced Topics in Applied Mathematics Robert Manning Past topics include “Dynamical systems and chaos”, “Partial Differential Equations”; Prerequisite: MATH317 or consent of the instructor.; Natural Science (NA) MATHH400F001 Senior Research Lynne Butler Quantitative (QU) 244