Rotation dynamics device, centripetal force, conical pendulum, analog and digital multimeter, photoelectric sensor
Function
Intended for experimental study, physics laboratory and carrying out physics experiments on: Motion in two dimensions. Dynamics. Intended for experimental study, physics laboratory and carrying out physics experiments on: Motion in two dimensions. Dynamics. Centripetal force as a function of the mass of the body. Measuring the centripetal force acting on different masses in MCU of radius R. The relationship of the centripetal force with the mass in uniform circumferential motion, for a given value of the radius. Centripetal force as a function of the radius of the trajectory. Adjusting the centripetal forces with the radii of the trajectory that the body of fixed mass will describe. The relationship of the centripetal force with the radius of the circumferential trajectory, described by the body in MCU. Centripetal force as a function of frequency. Applying different intensities of centripetal forces on a mobile in MCU, keeping the mass and radius constant. Measurement of the period and determination of the frequency of the mobile in MCU. The relationship of the centripetal force with the frequency. A little more about the relationship between centripetal force and frequency. Centripetal force as a function of angular velocity, sensor. Applying centripetal forces of different intensities, measuring the period and determining the angular velocity of a mobile in MCU, keeping the mass and radius of the trajectory constant. The direct dependence of centripetal force on the square of the angular velocity. Centripetal force as a function of mass, tangential velocity and radius in an MCU, with sensor. Centripetal acceleration. Measuring centripetal force. The period and frequency of the mobile. The relationship of centripetal force with mass, tangential velocity and radius of uniform circumferential motion. Conservation of Energy. Conservation of angular momentum in hanging masses that rotate at the same frequency. Newton's laws of motion on each of the masses. Wave. The conical pendulum, critical rotation period. Measuring the critical rotation period and comparing it with its calculated value, etc. Note: Does not include a pen drive.
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Key Experiments
- » Centripetal force as a function of the radius of the trajectory. - 1032.060A_5
- » Centripetal force as a function of body mass. - 1032.060A_4
- » Centripetal force as a function of frequency. - 1032.060C3JM
- » Centripetal force as a function of angular velocity, sensor. - 1032.060C2JM
- » Centripetal force as a function of mass, tangential velocity and radius in an MCU, with sensor. - 1032.060C1JM
- » Conservation of angular momentum, with sensor and multimeter. - 1032.060C6JM
- » Frequency, period and critical angular velocity of conical pendulum with sensor. - 1032.060C7JM