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Linear rail, analog and digital multimeter, 2 photoelectric sensors

Function

Intended for experimental study, physics laboratory and carrying out physics experiments on: Kinematics. Reference frame, position, movement and trajectory. The mobile. Trajectory and displacement. The difference between displacement and distance traveled. The Cartesian reference system on the plane, Cartesian plane. Scalar quantity. Vector quantity. Uniform and rectilinear movement, MRU. Instantaneous speed and average speed. Positioning the car and the sensor for the start. Constructing table and graph. Determining speed. Determining the MRU's time equation. Checking the MRU's characteristics. Uniformly varied rectilinear movement, MRUV. Constructing table and graph. The trend line and the function that governs it. Understand the function presented by the spreadsheet. The time function of uniformly varied movement. The function that informs how S varies in relation to t in the movement, considering values provided by the spreadsheet. What informs the slope of the tangent in the graph. The coefficients of the time equation. Graph v versus t and the time equation of MRUV. The time-independent equation, Torricelli's equation for the MRUV. Dynamics. The relationship between the resulting force and the acceleration. Applying different forces and measuring distances and time intervals. Measuring distances and time intervals under the action of different forces. Constructing the S versus t graph for each of the applied forces. The trend line and the function that governs it. Understand the function presented by the spreadsheet. The time function of uniformly varied motion. The relationship between force and acceleration. Constructing the F versus a graph. Conservation of Energy. Coefficient of restitution, momentum and kinetic energy in an inelastic collision. Collecting data from the cars before and after the inelastic collision. What is meant by system. Mechanical collisions, momentum and kinetic energy. The coefficient of restitution. The momentum before and after an inelastic collision. The kinetic energy before and after the inelastic collision. Coefficient of restitution, momentum and translational kinetic energy in an elastic collision. Collecting data from cars before and after an elastic collision. Mechanical collisions, momentum and kinetic energy. Coefficient of restitution. Momentum, momentum, before and after a perfectly elastic collision. Kinetic energy before and after a perfectly elastic collision. Wave motion. Horizontal damped harmonic motion. Damped harmonic motion, damped oscillations. Measuring periods and calculating the average value. Measuring the amplitude of damped harmonic motion, MHA, etc. Note: Does not include an external memory device for USB connection, pen drive type.

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Key Experiments

  • » Reference, position, movement and trajectory. - 1032.001
  • » The rectilinear and uniform motion, MRU. - 1032.005_0EJM
  • » Uniformly varied rectilinear motion, MRUV - 1032.007_0EJM
  • » The relationship of the resultant force to the acceleration. - 1032.079_EJM
  • » Inelastic collision, coefficient of restitution, momentum and kinetic energy. - 1032.077_EJM
  • » Elastic collision, coefficient of restitution, momentum and translational kinetic energy. - 1032.078_EJM
  • » Horizontal damped harmonic motion. - 1072.008EJM
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