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Principles of Physics 11th ISV Edition · Potential Energy and Conservation of Energy · Problem 6
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Walker, Halliday & Resnick — Potential Energy and Conservation of Energy: Problem 6

6 In Fig. 8-22, a small block of mass m = 0.032 kg can slide along the frictionless loop-the-loop, with loop radius R = 10 cm. The block is released from rest at point P, at height h = 5.0R above the bottom of the loop. How much work does the gravitational force do on the block as the block travels from point P to (a) point Q and (b) the top of the loop? If the gravitational potential energy of the block–Earth system is taken to be zero at the bottom of the loop, what is that potential energy when the block is (c) at point P, (d) at point Q, and (e) at the top of the loop? (f) If, instead of merely being released, the block is given some initial speed downward along the track, do the answers to (a) through (e) increase, decrease, or remain the same?

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주어진 조건: 6 In, 22, a, 0.032 kg, 10 cm

구하는 것: (a) point Q and; (b) the top of the loop? If the gravitational potential energy o; (c) at point P

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Principles of Physics · 11th ISV Edition
저자: Walker, Halliday & Resnick
출판사: Wiley
단원: Potential Energy and Conservation of Energy