In the menu bar at the bottom of the PhET – Masses and Springs: Basics Links to an external site. simulation, select "Lab." Again, briefly familiarize yourself with the simulation by adjusting the settings and using the tools, such as the stopwatch and moveable line. Then, adjust the simulation's settings as follows. Ensure the Gravity option is set to "Earth" in the dropdown menu. Set the speed in the lower right corner to "Slow." Adjust the block's mass to 200 g. Set the String Strength 1 to "Large" (the furthest tick to the right). Hang the 200-g block from the spring. Pull the mass to the bottom of the simulation so it's resting on top of the black menu bar, as shown below. Release the block to set it in motion. Use the tools to determine which of the following statements are true about the block's motion. Select all statements that are true.多项选择题
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A mass oscillates on the end of a spring. The motion of the mass is described by the equation: . Where is the frequency of the oscillations, is the spring constant of the spring and is the mass hanging on the spring. The period of the spring is measured for a number of different masses. The period is related to the frequency of oscillations through the relationship: . A student is trying to determine the spring constant, , of the spring. In order to do this they plan to plot a graph. Which of the following statements about this graph are correct?
A 0.50 kg mass is attached to a spring of spring constant 20 N/m along a horizontal, frictionless surface. The object oscillates in simple harmonic motion and has a speed of 1.5 m/s at the equilibrium position. At what location are the kinetic energy and the potential energy the same?
A 0.30 kg mass is suspended on a spring. In equilibrium the mass stretches the spring 2.0 cm downward. The mass is then pulled an additional distance of 1.0 cm down and released from rest. Calculate the period of oscillation.
A 4.0 kg object is attached to a spring of spring constant 10 N/m. The object is displaced by 5.0 cm from the equilibrium position and let go. What is the period of vibration?
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