We used an experimental setup like the one shown below. The length of the string between the string vibrator and the pulley is L = 2.00 m. The mass per unit length or linear density of the string is μ = 0.0005 kg/m. The string vibrator can oscillate at any frequency. The hanging mass is 511 g. Frictionless pulley String vibrator μl = dm dx The wavelength of the fifth mode (n = 5) is m. = constant The frequency of the fifth mode (n = 5) is Hz. The tension in the string is close to When the mode of vibration is increased to n = 10, the wave speed of the string will The wave speed on the string is_ m/s. N. Drag answer here Drag answer here Drag answer here Drag answer here Drag answer here Hanging mass 500 125 remain the same 0.8 100 2.0 increase
We used an experimental setup like the one shown below. The length of the string between the string vibrator and the pulley is L = 2.00 m. The mass per unit length or linear density of the string is μ = 0.0005 kg/m. The string vibrator can oscillate at any frequency. The hanging mass is 511 g. Frictionless pulley String vibrator μl = dm dx The wavelength of the fifth mode (n = 5) is m. = constant The frequency of the fifth mode (n = 5) is Hz. The tension in the string is close to When the mode of vibration is increased to n = 10, the wave speed of the string will The wave speed on the string is_ m/s. N. Drag answer here Drag answer here Drag answer here Drag answer here Drag answer here Hanging mass 500 125 remain the same 0.8 100 2.0 increase
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