1. A type of cuckoo clock keeps time by having a mass bouncing on a spring, usually something cute like a cherub in a chair. What force constant, 'k', is needed to produce a period of 0.75 s for a 0.0165 kg mass? k= N m
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Q: One kind of cuckoo clock keeps time by using a mass bouncing on a spring, usually something cute…
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A: The mass m=300 g=0.3 kg The initial height of the mass h=78.0 cm=0.78 m The compression in the…
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A: Given :- K= 40 N/m mass = 2 Kg
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Q: 8. A grandfather clock uses a pendulum that is 74.0 cm long. It is accidentally broken, and when…
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Q: When a spring is relaxed, it has a length Lo= 18.0 cm. a. (FRC.4) If 1.8 N force is required to…
A: Given:- a) it has a length Lo= 18.0 cm = 0.18 m The force on the spring F = 1.8 N The force is…
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A: heregiven that,m=160 gl total=10 cmg=9.8 ms2
Q: A type of cuckoo clock keeps time by having a mass bouncing on a spring, usually a cherub in a…
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Q: You want to use a pendulum clock on the moon (gm= 1.625m/s2) a) What length should the pendulum…
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Q: A type of cuckoo clock keeps time by having a mass bouncing on a spring, usually something cute like…
A: Given data: Period (T) = 0.380 s Mass (m) = 0.0140 kg Required: Force constant (k)
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Q: . A type of cuckoo clock keeps time by having a mass bouncing on a spring, usually something cute…
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Q: A mass of 0.34 kg is attached to a spring and is set into vibration with a period of 0.13 S. What is…
A: mass m = 0.34 kg time period T = 0.13 s let K denote the time constant
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Q: 9. An object of mass 0.50 kg is attached to a spring, with spring constant 11.0 N/m. If the object…
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Q: A 170 g mass attached to a horizontal spring oscillates at a frequency of 4.60 Hz. At t = 0 s, the…
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Q: 2. A frictionless pendulum clock on the surface of the earth has a period of 1.00 s. On a distant…
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Q: A 1.00 kg mass is attached to a massless spring. After a mass, M, is attached to the spring and it…
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- 8. An object of mass 0.54 kg is attached to a horizontal spring, with spring constant 40.0 4.10 cm from the equilibrium position and released, what is its maximum speed? m/s ssf60 stele 50 ssf6”. SI If the object is stretched ssf60 ssf.com $ 09588 0933.A spring with a spring constant of 96.5 N/m has a mass of 6.50 kg attached, on a frictionless horizontal surface. The mass is initially pushed as to compress the spring by 45.0 cm, and then released. a) What is the period of the oscillation? b) What is the fastest speed achieved? c) What is the greatest value of acceleration achieved?| www mOne kind of cuckoo clock keeps time by using a mass bouncing on a spring, usually something cute like a cherub in a chair. What is the spring constant, in newtons per meter, needed to produce a period of 0.325 s for a 0.011-kg mass on the spring?
- 1. A 30 g mass is used to make a pendulum for a clock such that the period is to be 1.00 s.(a) How long must the pendulum be?(b)Would the clock keep accurate time on the Moon? If not, would it run fast or slow?24. A mass-spring system is set up so that the mass oscillates in the horizontal. The mass is 0.88_kg, and the spring has constant 45_N/m. The mass is pulled back so that the spring stretches 0.72 m, and then the mass is released. Find the speed of the mass when it is located at 0.31 m. (Assume there is no friction between the mass and the tabletop.)3. A 0.26 kg mass is attached to a light spring with a force constant of 25.9 N/m and set into oscillation on a horizontal frictionless surface. If the spring is stretched 5.0 cm and released from rest, determine the maximum speed of the oscillating mass. Ans:0.499
- 16. A 3.2 kg mass is attached to a hanging spring with a spring constant of 25 N/m. The mass is displaced from its equilibrium position by 5 cm and system is observed to have oscillating behavior. What is the period of the oscillating spring-mass system?3. A certain mass is supported by a spring such that it is at rest 1 m above the ground. The mass is pulled up 0.5 m and released at t= 0, creating a periodic up and down motion called simple harmonic motion. It takes 1.8 seconds for the mass to return to its original position each time. a) Draw a graph to show the height of the mass above the ground as a function of time for the first 5.4 seconds. b) Write an equation as a cosine function in the form h = ascos +c for your graph in part (a). c) Use your equation to determine all the time(s) in the first 5 seconds where the height of the mass above the ground is 0.5 m. Full algebraic solution.