A gymnast is swinging on a high bar. The distance between his waist and the bar is 1.28 m, as the drawing shows. At the top of the swing his speed is momentarily zero. Ignoring friction and treating the gymnast as if all of his mass is located at his waist, find his speed at the bottom of the swing.
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- A box of mass 4.0 kg hangs by a cable from the ceiling of an elevator. The elevator is moving up at a steady speed of 5.0 m/s for 8.0 m. Use g = 10 m/s2. Consider the system is the box and the Earth. When apply the following energy principle, considering the system is box+earth, which of the energy term is positive? Select all apply. ΔK + ΔUg + ΔUsp + ΔEth + ΔEch = WextA 20kg child is bouncing in a bounce house on his birthday. During a certain interval after the kid leaves the surface of the bounce house, his kinetic energy decreases from 440J to 210J. What vertical distance does the kid go through in the specified interval?Consider a light spring with k= 500 N/m that has been compressed 6 cm and placed horizontally on a frictionless table. The table top is located 0.75 m above the ground. A 300 g mass is placed in front of the spring and the spring is released. During the launch the mass travels a short distance along the table before flying off the edge. Using concepts of conservation of energy, determine the speed (in m/s) of the mass when it hits the ground. Enter the magnitude of the velocity below. You will turn in your written support for this question. In that written support, you must also determine the speed of the mass as it leaves the edge of the table top.
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