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MIT OpenCourseWare

Channel | updated April 22, 2013

MIT OpenCourseWare (OCW) is a web-based publication of virtually all MIT course content. OCW is open and available to the world and is a permanent MIT activity. The material available reflects almost all the undergraduate and graduate subjects taught at MIT. Visit OCW

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41 - 60 of 2,850
11: Testing and Debugging
  • MIT OpenCourseWare,
  • Educational
11: Testing and Debugging

Topics covered: Testing and debugging Instructor: Prof. Eric Grimson, Prof. John Guttag

11: Work, Energy, and Universal Gravitation
  • Walter Lewin,
  • Educational
11: Work, Energy, and Universal Gravitation

Topics covered: The concepts introduced are: work, conservative forces, potential energy, kinetic energy, mechanical energy, and Newton's law of universal gravitation. Instructor/speaker: Prof. Walter Lewin Date recorded: October 4, 1999

12. Current, Current Density, Resistance, and Ohm's Law
  • MIT OpenCourseWare,
  • Educational
12. Current, Current Density, Resistance, and Ohm's Law

This section contains readings from the course notes, lecture video excerpts, lecture slides, self-assessment questions with solutions, and problem solving video.

12. Current, Current Density, Resistance, and Ohm's Law
  • MIT OpenCourseWare,
  • Educational
12. Current, Current Density, Resistance, and Ohm's Law

This section contains readings from the course notes, lecture video excerpts, lecture slides, self-assessment questions with solutions, and problem solving video.

12. Intermolecular Forces
  • MIT OpenCourseWare,
  • Educational
12. Intermolecular Forces

This page contains materials for the session on intermolecular forces. It features a 1-hour lecture video, and also presents the prerequisites, learning objectives, reading assignment, lecture slides, homework with solutions, and resources for further study.

12. Molecular Biology 3
  • MIT OpenCourseWare,
  • Educational
12. Molecular Biology 3

MIT 7.012 Introduction to Biology, Fall 2004View the complete materials: http://ocw.mit.edu/high-school/biology/Instructor: Eric LanderLicense: Creative Commons BY-NC-SAMore information at http://ocw.mit.edu/termsMore courses at http://ocw.mit.edu

12. Molecular Biology IV
  • MIT OpenCourseWare,
  • Educational
12. Molecular Biology IV

MIT 7.014 Introductory Biology, Spring 2005View the complete materials: http://ocw.mit.edu/high-school/biology/Instructor: Graham WalkerLicense: Creative Commons BY-NC-SAMore information at http://ocw.mit.edu/termsMore courses at http://ocw.mit.edu

12. Non-Conservative Forces - Resistive Forces - Air Drag - ...
  • MIT OpenCourseWare,
  • Educational
12. Non-Conservative Forces - Resistive Forces - Air Drag - Terminal ...

MIT 8.01 Physics I: Classical Mechanics, Fall 1999View the complete materials: http://ocw.mit.edu/high-school/physics/Instructor: Walter LewinLicense: Creative Commons BY-NC-SAMore information at http://ocw.mit.edu/termsMore courses at http://ocw.mit.edu

12. Review Exam 1 (Secret Top!)
  • MIT OpenCourseWare,
  • Educational
12. Review Exam 1 (Secret Top!)

MIT 8.02 Electricity and Magnetism, Spring 2002View the complete materials: http://ocw.mit.edu/high-school/physics/Instructor: Walter LewinLicense: Creative Commons BY-NC-SAMore information at http://ocw.mit.edu/termsMore courses at http://ocw.mit.edu

12. Work and the Dot Product
  • MIT OpenCourseWare,
  • Educational
12. Work and the Dot Product

This section contains readings from the course notes, an optional textbook reading, lecture video excerpts, class slides with checkpoint questions, self-assessment questions, problem solving video, and related resources. Solutions for checkpoint and self-assessment questions are also included.

12. Work and the Dot Product
  • MIT OpenCourseWare,
  • Educational
12. Work and the Dot Product

This section contains readings from the course notes, an optional textbook reading, lecture video excerpts, class slides with checkpoint questions, self-assessment questions, problem solving video, and related resources. Solutions for checkpoint and self-assessment questions are also included.

12. Work and the Dot Product
  • MIT OpenCourseWare,
  • Educational
12. Work and the Dot Product

This section contains readings from the course notes, an optional textbook reading, lecture video excerpts, class slides with checkpoint questions, self-assessment questions, problem solving video, and related resources. Solutions for checkpoint and self-assessment questions are also included.

12. Work and the Dot Product
  • MIT OpenCourseWare,
  • Educational
12. Work and the Dot Product

This section contains readings from the course notes, an optional textbook reading, lecture video excerpts, class slides with checkpoint questions, self-assessment questions, problem solving video, and related resources. Solutions for checkpoint and self-assessment questions are also included.

12. Work and the Dot Product
  • MIT OpenCourseWare,
  • Educational
12. Work and the Dot Product

This section contains readings from the course notes, an optional textbook reading, lecture video excerpts, class slides with checkpoint questions, self-assessment questions, problem solving video, and related resources. Solutions for checkpoint and self-assessment questions are also included.

12: Debugging, Knapsack Problem, Introduction to Dynamic ...
  • MIT OpenCourseWare,
  • Educational
12: Debugging, Knapsack Problem, Introduction to Dynamic Programming

Topics covered: More about debugging, knapsack problem, introduction to dynamic programming Instructor: Prof. Eric Grimson, Prof. John Guttag

12: Full Factorial Models
  • MIT OpenCourseWare,
  • Educational
12: Full Factorial Models

Topics covered: Full factorial models Instructor: Duane Boning

12: Molecular Biology IV
  • MIT OpenCourseWare,
  • Educational
12: Molecular Biology IV

Topics covered: Molecular Biology IV Instructor: Prof. Graham Walker

12: Resistive Forces
  • Walter Lewin,
  • Educational
12: Resistive Forces

Topics covered: This lecture covers resistive forces such as air drag. It includes the viscous (linear in velocity) and pressure (quadratic in velocity) terms. Quantitative demonstrations with balloons and with ball bearings dropped in syrup are shown. Instructor/speaker: Prof. Walter Lewin ...

13. Band Theory of Solids
  • MIT OpenCourseWare,
  • Educational
13. Band Theory of Solids

This page contains materials for the session on the band theory of solids. It features a 1-hour lecture video, and also presents the prerequisites, learning objectives, reading assignment, lecture slides, homework with solutions, and resources for further study.

13. Batteries and Circuit Elements
  • MIT OpenCourseWare,
  • Educational
13. Batteries and Circuit Elements

This section contains readings from the course notes, lecture video excerpts, lecture slides, self-assessment questions with solutions, and problem solving video.

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