Adjacent antinodes of a standing wave on a string are 15.0 cm apart. A particle at...
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Adjacent antinodes of a standing wave on a string are 15.0 cm apart. A particle at an antinode oscillates in simple harmonic motion with amplitude 0.850 cm and period 0.0750 s. The string lies along the +x-axis and is fixed at x = 0. Part A How far apart are the adjacent nodes? Express your answer in centimeters. Ax = cm Part B What is the wavelength of the two traveling waves that form this pattern? Express your answer in centimeters. ΑΣφ ? cm Part C What is the amplitude of the two traveling waves that form this pattern? Express your answer in centimeters. ΑΣφ A = cm Part D What is the speed of the two traveling waves that form this pattern? Express your answer in meters per second. 圈] m/s Part E Find the maximum and minimum transverse speeds of a point at an antinode. Enter your answers in meters per second separated by a comma. Umax Umin = m/s Part F What is the shortest distance along the string between a node and an antinode? Express your answer in centimeters. ΑΣφ ? Ax = cm Adjacent antinodes of a standing wave on a string are 15.0 cm apart. A particle at an antinode oscillates in simple harmonic motion with amplitude 0.850 cm and period 0.0750 s. The string lies along the +x-axis and is fixed at x = 0. Part A How far apart are the adjacent nodes? Express your answer in centimeters. Ax = cm Part B What is the wavelength of the two traveling waves that form this pattern? Express your answer in centimeters. ΑΣφ ? cm Part C What is the amplitude of the two traveling waves that form this pattern? Express your answer in centimeters. ΑΣφ A = cm Part D What is the speed of the two traveling waves that form this pattern? Express your answer in meters per second. 圈] m/s Part E Find the maximum and minimum transverse speeds of a point at an antinode. Enter your answers in meters per second separated by a comma. Umax Umin = m/s Part F What is the shortest distance along the string between a node and an antinode? Express your answer in centimeters. ΑΣφ ? Ax = cm
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