classical mechanics syllabus

Classical Mechanics, 9 Credits Swedish name: Klassisk mekanik A This syllabus is valid: 2011-02-14 and until further notice . Lesson 1: 1D Kinematics - Position and Velocity [1.1-1.7], Lesson 2: 1D Kinematics - Acceleration [2.1-2.5], Lesson 4: Newton's Laws of Motion [4.1-4.4], Lesson 8: Circular Motion - Position and Velocity [8.1-8.3], Lesson 9: Uniform Circular Motion [9.1-9.3], Lesson 10: Circular Motion – Acceleration [10.1-10.4], Lesson 11: Newton's 2nd Law and Circular Motion [11.1-11.3], Week 4: Drag Forces, Constraints and Continuous Systems, Lesson 12: Pulleys and Constraints [12.1-12.5], Lesson 15: Momentum and Impulse [15.1-15.5], Lesson 16: Conservation of Momentum [16.1-16.2], Lesson 17: Center of Mass and Motion [17.1-17.7], Lesson 18: Relative Velocity and Recoil [18.1-18.4], Lesson 19: Continuous Mass Transfer [19.1-19.7], Lesson 20: Kinetic Energy and Work in 1D [20.1-20.6], Lesson 21: Kinetic Energy and Work in 2D and 3D [21.1-21.6], Lesson 22: Conservative and Non-Conservative Forces [22.1-22.5], Week 8: Potential Energy and Energy Conservation, Lesson 24: Conservation of Energy [24.1-24.4], Lesson 25: Potential Energy Diagrams [25.1-25.3], Lesson 26: Types of Collision [26.1-26.3], Lesson 27: Elastic Collisions [27.1-27.6], Deep Dive: Center of Mass Reference Frame [DD.2.1-DD.2.7], Lesson 28: Motion of a Rigid Body [28.1-28.3], Lesson 31: Rotational Dynamics [31.1-31.7], Lesson 32: Angular Momentum of a Point Particle [32.1-32.4], Lesson 33: Angular Momentum of a Rigid Body [33.1-33.5], Lesson 34: Torque and Angular Impulse [34.1-34.5], Week 12: Rotations and Translation - Rolling, Lesson 35: Rolling Kinematics [35.1-35.5], Lesson 37: Rolling Kinetic Energy & Angular Momentum [37.1-37.4], "Classical Mechanics: MIT 8.01 Course Notes" (PDF - 67.9MB), Week 3: Circular Motion Momentum and Impulse, Week 4: Drag Forces, Constraints and Continuous Systems Work and Mechanical Energy, Week 5: Momentum and Impulse Collision Theory, Week 12: Rotations and Translation - Rollin. Physics I: Classical Mechanics with an Experimental Focus, Introduction to 8.01X, Measurement Standards, Estimating a second experiment questions out, Units, Dimensions, Fermi Problems, Estimating a Second Experiment Questions, Kinematics: 1D Motion, Displacement and Velocity, Low voltage power supply experiment questions out, Vectors, Newton's Laws of Motion, Force, Mass and Acceleration, Newton's Laws of Motion, Force, Mass and Acceleration (cont. Physics 300: Classical Mechanics West Chester University Fall 2018 Syllabus Updated: August 11, 2018 Instructor Prof. Ian A. Morrison Merion Science Center 132 imorrison@wcupa.edu Almost every week a problem set will be due. » Home Knowledge is your reward. Show earlier/later versions of this syllabus Hide revision history for this syllabus. ISBN: 9780201603224. This is one of over 2,200 courses on OCW. Modify, remix, and reuse (just remember to cite OCW as the source. Each lesson consists of a series of videos explaining the topic, which are meant to be viewed in sequence. Physics We don't offer credit or certification for using OCW. Knowledge is your reward. This course is a one semester survey of Classical Mechanics and … Classical Mechanics (PHYS 350) Course Syllabus Fall 2005 v4.0 1. Each student purchases (at cost) a tool kit with soldering iron, pliers, wire cutters and strippers, screw drivers, etc. Each week contains 3-4 lessons on distinct topics. Physics 8.01X and 8.02X Experiment Instructions. Freely browse and use OCW materials at your own pace. Introduction to Phys 350: The content of this classical mechanics course is perhaps the most practical and the most esoteric of subjects one encounters in undergraduate physics. These experiments were made central to the course: Note that the mechanics experiments involve electrical construction and measuring techniques, no more mysterious than a stopwatch or PC. The accompanying labs are often peripheral to the course (little credit, little involvement); and have set-piece experiments, sometimes with computers, that give students very little more feeling of how things really work than lecture demos or homework problems (valuable as these are). At MIT, starting in 1988, John King, Phylis and Philip Morrison, Tony French, and Peter Dourmashkin developed and taught two courses, Mechanics (8.01X) and Electricity & Magnetism (8.02X), in which experiments were central. ISBN: 9780892784141. There's no signup, and no start or end dates. For a 12-week course there are 8 to 10 experiments that are issued in kit form to student partnerships of two, along with instruments, all in two "Red Boxes" (small plastic toolboxes). Oscillations: small oscillations, anharmonic oscillators, perturbation theory, forced oscillators 5. Do your homework in frequent, small pieces. Young, H. D., and R. A. Freedman. Instructor: Radovan Dermisek. Specific readings for each assignment are provided in the Readings section. Send to friends and colleagues. MIT OpenCourseWare is a free & open publication of material from thousands of MIT courses, covering the entire MIT curriculum.

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