For the oscillating object in the figure, what is its maximum speed and acceleration?
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- For the oscillating object in the figure, what is its maximum speed and acceleration?
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- 25 Short Wavelengths of light have what kind of frequency? 1 Higher frequencies Lower frequencies All have the same frequencies Wavelengths have nothing to do with frequency 26 Explain how is it that you're looking backward in time, when you look at a distant galaxy through a telescope. 1A 500g mass is undergoing simple harmonic oscillation that is described by the following equation for its position x(t) from equilibrium: n rad x(t) = (0.50m) cos (6.07 rad/s)t+ 6.0A 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
- If you increase the value of the oscillating mass, does the frequency of oscillation increase of decrease? Explain.When is it possible to approximate the cylinder used in the period of oscillation as a pointparticle?A point rotates about the origin in the ?? plane at a constant radius of 0.211 m with an angular velocity of 9.01 rad/s. The projection of this point's motion on the ?- or ?-axis is simple harmonic. What is the amplitude of the projected simple harmonic motion? What is the projected motion's frequency? What is the projected motion's period?
- The block is at rest as shown. What is the peiod of the oscillation if the block is pulled down by 10 cm, in seconds? Use g = 10 m/s2. Your answer needs to have 2 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement.Does the period of oscillation depend on the hanging mass? Justify your answer.Does the period of oscillation vary with the amplitude of oscillation, if you keep the hanging mass constant? Justify your answer.The equations used to describe the physical pendulum will lead us directly to an answer. Part 3 of 3 - Analyze We are givenf = 0.685 Hz, d 0.510 m, and m = 2.10 kg. We have the following equation for the period. T = 2n V mgd This gives 4721 T2 = mgd and, solving for the moment of inertia, we have the following. T?mgd mgd %3D kg )(9.80 m/s?) m Hz kg - m2 Submit Skip (you cannot come back) Need Help? Read it O Show My Work (Optional) ?
- How will the period of an oscillating system change if its angular frequency is increased by a factor of four? A decrease by a factor of 2t/4 B decrease by 4 C increase by a factor of 2n/4 (D increase by a factor of fourBabalik pa rin. A block attached to a spring oscillates back and forth on a frictionless surface with a period of To. If the angular frequency was doubled, what would be its period of oscillation?? O To/2 O To 2To O √2To