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On-Campus Summer Undergraduate Courses
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Calculus I (Physical Sciences & Engineering) - AS.110.108
Pre-College students & Undergraduate students June 30 - August 1 Homewood CampusDifferential and integral calculus. Includes analytic geometry, functions, limits, integrals and derivatives, polar coordinates, parametric equations, Taylor's theorem and applications, infinite sequences and series. Some applications to the physical sciences and engineering will be discussed, and the courses are designed to meet the needs of students in these disciplines.
Calculus III - AS.110.202
Pre-College students & Undergraduate students June 30 - August 1 Homewood CampusCalculus of Several Variables. Calculus of functions of more than one variable: partial derivatives, and applications; multiple integrals, line and surface integrals; Green's Theorem, Stokes' Theorem, and Gauss' Divergence Theorem.
Prerequisite: Grade of C- or better in AS.110.107 (Calculus II For Biological and Social Science) or AS.110.109 (Calculus II For Physical Sciences and Engineering) or AS.110.113 (Honors Single Variable Calculus) or AS.110.201 (Linear Algebra) or AS.110.212 (Honors Linear Algebra) or AS.110.302 (Differential Equations and Applications), or a 5 on the AP BC exam.
Gateway Computing: JAVA - EN.500.112
Pre-College students & Undergraduate students June 30 - August 1 Homewood CampusThis course introduces fundamental programming concepts and techniques, and is intended for all who plan to develop computational artifacts or intelligently deploy computational tools in their studies and careers. Topics covered include the design and implementation of algorithms using variables, control structures, arrays, functions, files, testing, debugging, and structured program design. Elements of object-oriented programming. algorithmic efficiency and data visualization are also introduced. Students deploy programming to develop working solutions that address problems in engineering, science and other areas of contemporary interest that vary from section to section. Course homework involves significant programming. Attendance and participation in class sessions are expected.
Prerequisite: Students may not have earned credit in the following courses: EN.500.113 (Gateway Computing: Python), EN.500.114 (Gateway Computing: Matlab), EN.500.202 (Computation and Programming for Materials Scientists and Engineers), EN.500.132 (Bootcamp: JAVA), EN.500.133 (Bootcamp: Python), or EN.500.134 (Bootcamp: Matlab).
Gateway Computing: Python - EN.500.113
Pre-College students & Undergraduate students June 30 - August 1 Homewood CampusThis course introduces fundamental programming concepts and techniques, and is intended for all who plan to develop computational artifacts or intelligently deploy computational tools in their studies and careers. Topics covered include the design and implementation of algorithms using variables, control structures, arrays, functions, files, testing, debugging, and structured program design. Elements of object-oriented programming. algorithmic efficiency and data visualization are also introduced. Students deploy programming to develop working solutions that address problems in engineering, science and other areas of contemporary interest that vary from section to section. Course homework involves significant programming. Attendance and participation in class sessions are expected.
This course is scheduled to run Monday, Wednesday, and Friday between 12 p.m. and 3 p.m.
Prerequisite: Students may not have earned credit in the following courses: EN.500.112 (Gateway Computing: JAVA), EN.500.114 (Gateway Computing: Matlab), EN.500.202 (Computation and Programming for Materials Scientists and Engineers), EN.500.132 (Bootcamp: JAVA), EN.500.132 (Bootcamp: JAVA), or EN.500.134 (Bootcamp: Matlab).
Human Origins - AS.290.101
Pre-College students & Undergraduate students May 27 - June 27 Homewood CampusThis course examines the origins of human structure, function and behavior from an evolutionary perspective. It includes study of the evolution, behavior and behavioral ecology of nonhuman primates; hominid evolution (including the paleontological and archaeological records); and the origins of human cognition, social behavior and culture.
Introduction to the Philosophy of Art: What is Art? - AS.150.143
Pre-College students & Undergraduate students May 27 - June 27 Homewood CampusThe disciplines of Aesthetics and the Philosophy of Art are concerned with philosophical questions about beauty and art, respectively. This course will explore one of the primary questions that threads through both disciplines: what is art? Is art representation? Is art expression? Is art only art in virtue of its context? Maybe art is a social and political tool? This class will begin its exploration through the historical perspectives of some of the great philosophers of the Western World, such as Plato and Hume, and work our way towards more contemporary views by philosophers such Arthur Danto and bell hooks. Beyond the chronology of art, this course will cover perspectives on “not art” art, art that (some argue) has been wrongly excluded from the dominant Western canon, such as craft and folk art.
Note: This course meets on Mondays and Fridays from 9:00 AM to 11:00 AM, and on Wednesdays from 1:00 PM to 4:00 PM.
Linear Algebra - AS.110.201
Pre-College students & Undergraduate students May 27 - June 27 Homewood CampusVector spaces, matrices, and linear transformations. Solutions of systems of linear equations. Eigenvalues, eigenvectors, and diagonalization of matrices. Applications to differential equations.
This course is scheduled to run Monday, Tuesday, Wednesday, and Thursday, between 9 a.m. and 11:30 a.m.
Prerequisite: Grade of C- or better in AS.110.107 (Calculus II For Biological and Social Science) or AS.110.109 (Calculus II For Physical Sciences and Engineering) or AS.110.113 (Honors Single Variable Calculus) or AS.110.202 (Calculus II) or AS.110.302 (Differential Equations and Applications), or a 5 on the AP BC exam.
Mathematics for Sustainability - AS.110.126
Pre-College students & Undergraduate students June 30 - August 1 Homewood CampusMathematics for Sustainability covers topics in measurement, probability, statistics, dynamics, and data analysis. In this course, students will analyze, visually represent, and interpret large, real data sets from a variety of government, corporate, and non-profit sources. Through local and global case studies, students will engage in the mathematics behind environmental sustainability issues and the debates centered on them. Topics include climate change, natural resource use, waste production, air and water pollution, water scarcity, and decreasing biodiversity. The software package R is used throughout the course.
Prerequisites: Comfort with algebraic expressions and functions. No prior experience in coding is required.
Minds and Machines - AS.140.316
Pre-College students & Undergraduate students June 30 - August 1 Homewood CampusIs the mind identical to the brain? Is the mind (or brain) a computer? Could a computer reason, have emotions, or be morally responsible? This course examines such questions philosophically and historically. Topics include the history of AI research from 1940s to present; debates in cognitive science related to AI (computationalism, connectionism, and 4E cognition); and AI ethics.
Precalculus - AS.110.105
Pre-College students & Undergraduate students June 30 - August 1 Homewood CampusThis course provides students with the background necessary for the study of calculus. It begins with a review of the coordinate plane, linear equations, and inequalities, and moves purposefully into the study of functions. Students will explore the nature of graphs and deepen their understanding of polynomial, rational, trigonometric, exponential, and logarithmic functions, and will be introduced to complex numbers, parametric equations, and the difference quotient.
Stars and the Universe: Cosmic Evolution - AS.171.118
Pre-College students & Undergraduate students June 30 - August 1 Homewood CampusThis course looks at the evolution of the universe from its origin in a cosmic explosion to emergence of life on Earth and possibly other planets throughout the universe. Topics include big-bang cosmology; origin and evolution of galaxies, stars, planets, life, and intelligence; black holes; quasars; and relativity theory. The material is largely descriptive, based on insights from physics, astronomy, geology, chemistry, biology, and anthropology.