Pulley, spring and deformation set
Function
Intended for experimental study, physics laboratory and carrying out physics experiments on: Matter and energy. A simple machine called a fixed pulley. A simple machine called a mobile pulley. The force applied to a spring and the elongation suffered. Constructing a table and graph. Dynamics. Dynamic determination of K of a helical spring, mass oscillator and spring. The period, frequency and amplitude of a movement of a mass oscillator and spring. How a dynamometer works, the calibration of a rubber ring and a helical spring. Difference between applied force and restoring force. Measuring weights of masses. The P versus m graph. The helical spring and Hooke's law. The helical spring and Hooke's law. The table and graph. The mathematical ratio between the applied force and the elongation. The angular coefficient of the graph and its physical interpretation. Constructing the table and graph in a spreadsheet. The function that governs the intensity of the spring's elastic force in relation to the spring's elongation. Association of helical springs in series. Determination of the elasticity constant of helical springs in series. Association of helical springs in parallel. Determination of the elasticity constant of helical springs in parallel. Conservation of Energy. Work and energy in a system of mass and helical spring. Energy exchanges that occur in an oscillating mass-spring system. Work done by a force acting on a body and causing a displacement of this body. Elastic potential energy and work done by the spring. The principle of conservation of energy and kinetic energy. Work and energy in a system of mass and oscillating helical spring, conservation of mechanical energy. Energy exchanges that occur in an oscillating mass-spring system. Work done by the elastic force. Elastic potential energy. Work done and energy in transit. Energy cannot be generated or destroyed. Kinetic energy. Conservation of mechanical energy. Wave energy. The simple pendulum. The period of oscillation of a simple pendulum. What happens to the period when the length of the pendulum is changed. The SHM in an oscillating mass and coil spring system, etc.
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Key Experiments
- » A simple machine called a fixed pulley - 0001.046A
- » A simple machine called a movable pulley. - 1032.026J_0
- » The force applied to a spring and the elongation it undergoes. - 1032.052F
- » Dynamic determination of K of a helical spring, mass oscillator and spring. - 1032.012B
- » The operation of the dynamometer, the calibration of a rubber ring and a coil spring. - 1032.022B
- » Measuring weights of different masses. - 1032.039A
- » The helical spring and Hooke's law. - 1032.052B
- » The helical spring and Hooke's law. - 1032.052B_3B
- » Association of helical springs in series. - 1032.053B_3B
- » Association of coil springs in parallel. - 1032.053C_3B
- » Work and energy in a mass and helical spring system. - 1032.056B
- » Work and energy in an oscillating system of mass and helical spring, conservation of mechanical energy. - 1032.056B_3B
- » The simple pendulum. - 1032.015A
- » The SHM in an oscillating mass and coil spring system. - 1072.008B