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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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61 - 80 of 2,850
13. Gene Regulation
  • MIT OpenCourseWare,
  • Educational
13. Gene Regulation

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

13. Molecular Biology IV (cont.); Gene Regulation I
  • MIT OpenCourseWare,
  • Educational
13. Molecular Biology IV (cont.); Gene Regulation I

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

13. Moving Charges in B-fields; Cyclotron; Synchrotron; ...
  • MIT OpenCourseWare,
  • Educational
13. Moving Charges in B-fields; Cyclotron; Synchrotron; Mass Spectrometer; ...

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

13. Potential Energy
  • MIT OpenCourseWare,
  • Educational
13. Potential Energy

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.

13. Potential Energy
  • MIT OpenCourseWare,
  • Educational
13. Potential Energy

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.

13. Potential Energy
  • MIT OpenCourseWare,
  • Educational
13. Potential Energy

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.

13. Potential Energy - Energy Considerations to Derive ...
  • MIT OpenCourseWare,
  • Educational
13. Potential Energy - Energy Considerations to Derive Simple Harmonic ...

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

13: Molecular Biology IV (cont.) - Gene Regulation I
  • MIT OpenCourseWare,
  • Educational
13: Molecular Biology IV (cont.) - Gene Regulation I

Topics covered: Molecular Biology IV (cont.) - Gene Regulation I Instructor: Prof. Graham Walker

13: Cosmic Structure Formation; From Inflation to Galaxies
  • MIT OpenCourseWare,
  • Educational
13: Cosmic Structure Formation; From Inflation to Galaxies

13: Cosmic Structure Formation; From Inflation to Galaxies Lecturer: Edmund Bertschinge Slides (HTML)

13: Dynamic Programming: Overlapping Subproblems, Optimal ...
  • MIT OpenCourseWare,
  • Educational
13: Dynamic Programming: Overlapping Subproblems, Optimal Substructure

Topics covered: Dynamic programming: overlapping subproblems, optimal substructure Instructor: Prof. Eric Grimson, Prof. John Guttag

13: Equation of Motion for Simple Harmonic Oscillators
  • Walter Lewin,
  • Educational
13: Equation of Motion for Simple Harmonic Oscillators

Topics covered: The conservation of mechanical energy can be used to derive the equation of motion for simple harmonic oscillators (SHO). Instructor/speaker: Prof. Walter Lewin Date recorded: October 8, 1999

13: Modeling Testing and Fractional Factorial Models
  • MIT OpenCourseWare,
  • Educational
13: Modeling Testing and Fractional Factorial Models

Topics covered: Modeling testing and fractional factorial models Instructor: Duane Boning

14. Application of Energy Conservation
  • MIT OpenCourseWare,
  • Educational
14. Application of Energy Conservation

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.

14. Application of Energy Conservation
  • MIT OpenCourseWare,
  • Educational
14. Application of Energy Conservation

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.

14. Application of Energy Conservation
  • MIT OpenCourseWare,
  • Educational
14. Application of Energy Conservation

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.

14. Application of Energy Conservation
  • MIT OpenCourseWare,
  • Educational
14. Application of Energy Conservation

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.

14. Biot-Savart Law; Gauss' Law for Magnetic Fields; ...
  • MIT OpenCourseWare,
  • Educational
14. Biot-Savart Law; Gauss' Law for Magnetic Fields; Revisit the "Leyden ...

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

14. DC Circuits
  • MIT OpenCourseWare,
  • Educational
14. DC Circuits

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

14. DC Circuits
  • MIT OpenCourseWare,
  • Educational
14. DC Circuits

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

14. Escape Velocities - Bound and Unbound Orbits - Circular ...
  • MIT OpenCourseWare,
  • Educational
14. Escape Velocities - Bound and Unbound Orbits - Circular Orbits - ...

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

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