Prerequisite: Physics 201 and 202 and Mathematics 201 and 202. Applications to the motion of rigid bodies, systems of coupled oscillators, and celestial mechanics are treated as time permits. Careful examination of the foundations and limitations of Newtonian mechanics leads to development of the Lagrangian formulation, variational principles, and Hamiltonian mechanics. Weekly laboratories include an introduction to computational physics, the Millikan oil drop experiment, measurement of the speed of light, determination of Planck’s constant, the charge-to-mass ratio of the electron, and blackbody radiation. Introduction to thermal physics, special relativity, and quantum mechanics, with applications to atomic, nuclear, condensed matter, and particle physics as time permits. Prerequisite: Physics 101 and 102 and Mathematics 111 (or equivalent) and 112. Weekly laboratories provide an introduction to basic electronics, from filters and voltage dividers to transistors and operational amplifiers. Related mathematical methods are introduced: complex numbers, ordinary differential equations, linear algebra, and Fourier analysis. Damped and driven vibrations, coupled oscillators, and waves. Labs will consist of both evening telescope observation to collect data and computer labs to analyze these data and other publicly available data sets. Topics covered will include stellar structure and energy sources, stellar evolution, binary star systems, and exoplanetary systems. This course provides an introduction to the physics and astronomy of stars and stellar systems from an observational perspective. The physics underlying each of these topics will be emphasized, and students will learn to quantitatively analyze and clearly communicate scientific information. Topics include the use of energy in daily life-transportation, heating, food, and electricity sources and storage of energy-batteries, fuels, wind, solar, and nuclear energy environmental impacts-air, water, and climate and assessment of sustainability. This course will focus on the fundamental concept of energy, and its role in human society. Prerequisite: Physics 101 and Mathematics 111 or equivalent. Calculus-based introduction to electricity and magnetism, optics, and other topics at the discretion of the instructor. Corequisite: Mathematics 111 or equivalent. Calculus-based introduction to the classical mechanics of particles and systems-kinematics, laws of motion, conservation principles, rotational dynamics, oscillators. Inquiries may also be directed to the Assistant Secretary for Civil Rights, Office for Civil Rights, US Department of Education.One-unit semester course. Inquiries may be directed to the college's Title IX Coordinator by email at by phone at 50, or on campus in Eliot 108A. The college’s Title IX policy and procedures may be found on our Title IX web page. STATEMENT OF NONDISCRIMINATION: Reed College prohibits discrimination on the basis of race, color, national origin, religion, sex, sexual orientation, gender identity, gender expression, age, marital or familial status, military status, veteran status, genetic information, physical or mental disability, pregnancy, status as a parent, family relationship, or any other category protected by law. Network and Infrastructure Administrator Faculty Marketing and Communications Manager Residence LifeĪrea Coordinator Technology Infrastructure Services Postdoctoral Researcher, Chemistry Community SafetyĬommunity Safety Officer Computing and Information ServicesĬybersecurity Analyst Dean of the Faculty OfficeĬhinese Language Scholar Development OfficeĪssociate Director of Advancement - Internal Applicants Onlyĭirector of Alumni Programs and Volunteer Management Facilities Servicesĭirector of Collection Services Public Affairs Temporary Certified Lifeguard Auxiliary Services Admission Event Coordinator Alumni Programs and Annual FundĪssistant Director, Phonathon & Student Fundraising Athletics, Fitness and Outdoors Programs
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