Principles of Physics 11th ISV Edition · Waves-II · Problem 13
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Walker, Halliday & Resnick — Waves-II: Problem 13
13 A sound source sends a sinusoidal sound wave of angular frequency 3000 rad/s and amplitude 10.0 nm through a tube of air. The internal radius of the tube is 2.00 cm. (a) What is the average rate at which energy (the sum of the kinetic and potential energies) is transported to the opposite end of the tube? (b) If, simultaneously, an identical wave travels along an adjacent, identical tube, what is the total average rate at which energy is transported to the opposite ends of the two tubes by the waves? If, instead, those two waves are sent along the same tube simultaneously, what is the total average rate at which they transport energy when their phase difference is (c) 0, (d) 0.40$\pi$ rad, and (e) $\pi$ rad?
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주어진 조건: 13 A, 3000 rad/s, 2.00 cm
구하는 것: (a) What is the average rate at which energy; (e) $\pi$ rad?
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Principles of Physics · 11th ISV Edition
저자: Walker, Halliday & Resnick
출판사: Wiley
단원: Waves-II