A spring with spring constant 11 N/m hangs from the ceiling. A ball is attached to the spring and allowed to come to rest. It is then pulled down 3.5 cm and released. The ball makes 26 oscillations in 19 seconds J What is the mass of the ball? Express your answer with the appropriate units. 771 = Part B Value = What is its maximum speed? Express your answer with the appropriate units. g Value Units
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- Part A What is the amplitude of the oscillation shown in (Figure 1)? Express your answer to two significant figures and include the appropriate units. HÅ 四? A = Value Units Submit Request Answer Figure K 1 of 1 Part B x (cm) What is the frequency of the oscillation shown in (Figure 1)? 20 Express your answer to two significant figures and include the appropriate units. 10- 图 t (s) 8. 4, 6. -10- f = Value Units -20- Submit Request Answer 2.A 75 kg mass is attached to an ideal massless spring with a spring constant of 15 N/m oscillates on a horizontal, frictionless track. A time t=0.00 s, the mass is released from rest at x=10 cm. a- Find the frequency of the oscillations. b-determin the maximum speed of the mass. At what point in the motion does the maximum speed occur? c-What is the maximum acceleration of the mass? At what point does the maximum acceleration occur? d-Determin the total energy of the oscillating system. e-Express the displacement x as a function of time1. A simple pendulum is known to have a period of oscillation T = 1.55 s. Student A uses a digital stopwatch to measure the total time for 5 oscillations and calculates an average period T = 1.25 s. Student B uses an analog wristwatch and the same procedure to calculate an average period for the 5 oscillations and finds T = 1.6 s. a) Which student made the more accurate measurement? Explain. b) Which measurement is more precise? Explain. c) What is the most likely source of error that could account for the difference in the results?
- A spring has a length of 0.270 m when a 0.300 kg mass hangs from it, and a length of 0.750 m when a 2.10 kg mass hangs from it. a. What is the force constant (in N/m) of the spring? ____ N/m b. What is the unloaded length (in m) of the spring? ____ mHow do you calculate the period of a pendulum? I was given no equations and all I have are the graphs of the different pendulums.A simple pendulum of length 2.3 m makes 4.0 complete swings in 37.0 s. Part A What is the acceleration of gravity at the location of the pendulum? Express your answer using two significant figures. Π| ΑΣΦ g= Submit Provide Feedback Request Answer ? m/s²
- question 23 in the imageA 1.30 kg mass oscillates according to the equation x = 0.500 cos 8.30t, where x is in meters and t is in seconds. Part A Part B Part C Part D Determine the kinetic energy when x = 0.240 m . HÀ Exinetic = Value Units Submit Request Answer Part E Determine the potential energy when x = 0.240 m . HA Epotential Value UnitsA student holds one end of a rope and oscillates her hand up and down 15 times in 3 seconds. What is the period of oscillation? 5 s 3 s 0.2 s 45 s
- We want to support a thin hoop by a horizontal nail and have the hoop make one complete small-angle oscillation each 2.0 s. Part A What must the hoop's radius be? Express your answer with the appropriate units. ? R = Value UnitsPlease asapA pendulum makes 21 oscillations in exactly 50 ss. Part A What is its period? B What is its frequency?