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Set of mechanical waves in strings, springs and plates, with mechanical impulses

Function

Intended for study, physics laboratory, physics experiments on: Wave Physics. Mechanical waves on strings. Standing waves on a vibrating taut string. Applying periodic transverse disturbances to the taut string. The incident wave, the reflected wave, the resonance wave, and the fundamental vibration frequencies. The first harmonic. Transverse wave. Identifying nodes, antennities, and the wavelength. Identifying other natural frequencies, harmonics, and resonant frequencies, maintaining the length L and the tension force. Listening to the sound along the antennities and nodes of the standing wave obtained on the string. Varying the length and tension force, identifying the fundamental frequency and harmonics. Calculating the propagation speed of the incident wave and the reflected wave on a vibrating taut string. Comparing waves on vibrating taut strings of the same length, different linear densities, and under the same tension. The incident wave, the reflected wave, and the resonance wave. The first harmonic on strings with different linear densities. Calculating and comparing the propagation velocity values in vibrating taut strings with different linear densities. Waves on a vibrating taut string composed of segments of different linear densities. Taylor's expression applied to a vibrating taut string, with a tensiometer. Determining the propagation velocity of the disturbance along the string. Mechanical waves on springs. Longitudinal waves in a vibrating taut helical spring, standing waves. Observing longitudinal waves in a vibrating taut helical spring. Nodes, anterolateral waves, and wavelength. Identifying other natural frequencies and harmonics. Mechanical vibrations. Resonant figures in Chladni plates, vibration mechanics, square plate. Vibratory phenomena in metal plates. Observing and listening to sound in the anterolateral and nodal regions of a square plate oscillating under different excitation frequencies. Resonant figures in Chladni plates, vibration mechanics, circular plate. Observing and listening to the sound in the grooves and nodes of a circular plate oscillating under different excitation frequencies. Resonant figures in Chladni plates, vibration mechanics, triangular plate. Observing and listening to the sound in the grooves and nodes of a triangular plate oscillating under different excitation frequencies, etc.

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Key Experiments

  • » - 1072.032F_1
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  • » - 1072.032F_4
  • » - 1072.032F_6
  • » - 1072.090A
  • » - 1072.090A2
  • » - 1072.090A3
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