Open Question
A slingshot will shoot a 10-g pebble 22.0 m straight up. (b) With the same potential energy stored in the rubber band, how high can the slingshot shoot a 25-g pebble? (c) What physical effects did you ignore in solving this problem?
(a) Suppose we have three masses, m₁ , m₂ and m₃,that initially are extremely (≈ infinitely) far apart from each other. The work needed to bring them to the positions shown in Fig. 8–50 is
W = - G ((m₁m₂/ r₁₂) + (m₁m₃/r₁₃) + (m₂m₃/r₂₃)) .
(c) Is W equal to the binding energy of the system—that is, is W equal to the energy required to separate the components by an infinite distance? Explain.
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