N1=1 N2=10 N3=4 = 3. A damped harmonic oscillator involves a block (m 3N₂ kg), a spring (k (10+N3) N/m), and a damping force F=- rv. Initially it oscillates with an amplitude of 0.5 m; because of the damping, the amplitude falls to three-fourths of its initial value after five complete cycles. (a) What is the value of r? (b). How much energy is lost during these five cycles? [3]

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N1=1
N2=10
N3=4
3. A damped harmonic oscillator involves a block (m 3N₂ kg), a spring (k =
(10+N3) N/m), and a damping force F=- rv. Initially it oscillates with an amplitude
of 0.5 m; because of the damping, the amplitude falls to three-fourths of its initial
value after five complete cycles. (a) What is the value of r? (b). How much energy is
lost during these five cycles? [3]
=
Transcribed Image Text:urgently! N1=1 N2=10 N3=4 3. A damped harmonic oscillator involves a block (m 3N₂ kg), a spring (k = (10+N3) N/m), and a damping force F=- rv. Initially it oscillates with an amplitude of 0.5 m; because of the damping, the amplitude falls to three-fourths of its initial value after five complete cycles. (a) What is the value of r? (b). How much energy is lost during these five cycles? [3] =
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