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Free fall set, fences, spheres, with analog and digital multimeter, photoelectric sensor

Function

Intended for experimental study, physics laboratory, and physics experiments on: Motion in one dimension. Kinematics. Free-fall motion with a test specimen at 10 equal intervals. Free-fall motion with a test specimen at 10 different intervals. Acceleration of gravity. The time function of the free-fall MRUV. Conservation of Energy. The principle of conservation of mechanical energy in a falling cylinder. The gravitational potential energy of a body is a function of its position. The kinetic energy of a body in translational motion is a quadratic function of its velocity. The principle of conservation of mechanical energy in a falling body. The principle of conservation of mechanical energy in a falling sphere. The gravitational potential energy of a body is a function of its position. The kinetic energy of a body in translational motion is a quadratic function of its velocity. The principle of conservation of mechanical energy in a falling spherical body, etc. Note: Does not include an external memory device for USB connection, such as a flash drive.

Key Experiments

  • » Free fall motion with a test specimen of 10 equal intervals. - 1032.010K1JM
  • » Free fall motion with test specimens from 10 different intervals. - 1032.010K4JM
  • » The principle of conservation of mechanical energy in a falling cylinder. - 1032.010K3JM
  • » The principle of conservation of mechanical energy in a falling sphere. - 1032.010K5JM
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