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  1. This course is designed to serve as a first course in an undergraduate electrical engineering (EE), or electrical engineering and computer science (EECS) curriculum. The course introduces the fundamentals of the lumped circuit abstraction. Topics covered include: resistive elements and networks; independent and dependent sources; switches and MOS transistors; digital abstraction; amplifiers; energy storage elements; dynamics of first- ...more

  2. Momentum and its conservation during collisions is introduced. Kinetic energy can decrease or increase during collisions. When kinetic energy is conserved, we call it an elastic collision. The momentum vector, internal forces, external forces and the conservation of momentum are discussed. Professor Lewin does some air track experiments where the released energy is from a compressed spring; kinetic energy increases but momentum is conserve...more

  3. Larry Bawden discusses the competitive strategy in solar energy start-ups lies in bringing vertical integration to your product mix. He believes that there is a huge potential for any viable technology in the value chain. He notes that continuous improvement of technology is key to the success of a company in this field.

  4. Understanding conformational relationships makes it easy to draw idealized chair structures for cyclohexane and to visualize axial-equatorial interconversion. After quantitative consideration of the conformational energies of ethane, propane, and butane, cyclohexane is used to illustrate the utility of molecular mechanics as an alternative to quantum mechanics for estimating such energies. To give useful accuracy this empirical scheme requ...more

  5. Using the law of conservation of energy to see how potential energy is converted into kinetic energy.

  6. In this lecture, Professor Lewin displays how the conservation of mechanical energy can be used to derive the equation of motion for simple harmonic oscillators (SHO). In doing so he covers gravitational potential energy, equilibrium points where the net force is zero, parabolic potential energy, and circular potential energy.

  7. Fundamental dynamic data structures, including linear lists, queues, trees, and other linked structures; arrays strings, and hash tables. Storage management. Elementary principles of software engineering. Abstract data types. Algorithms for sorting and searching. Introduction to the Java programming language.

  8. Professor Sylvia Ceyer discusses the energy of interaction in nuclear-nuclear repulsion, electron-electron repulsion, and electron-nuclear attraction.

  9. Dell describes the PC industry today as a jump ball environment where no company can stay in a strong position for long. The development of wireless networks, miniaturization, and the influence of the internet has changed the competitive landscape of the industry, he says. One of the biggest threats is the changing computing model. To combat this threat, Dell, Inc. is focused on online servers and storage, new online devices, and anticipat...more

  10. Fundamental dynamic data structures, including linear lists, queues, trees, and other linked structures; arrays strings, and hash tables. Storage management. Elementary principles of software engineering. Abstract data types. Algorithms for sorting and searching. Introduction to the Java programming language.

  11. Fundamental dynamic data structures, including linear lists, queues, trees, and other linked structures; arrays strings, and hash tables. Storage management. Elementary principles of software engineering. Abstract data types. Algorithms for sorting and searching. Introduction to the Java programming language.