Q8. A uniform rod is placed on two spinning wheels as shown in Fig. 4.6. The axes of the wheels are separated by a distance l=20 cm, the coefficient of friction between the rod and the wheels is k=0.18. Demonstrate that in this case the rod performs harmonic oscillations. Find the period of these oscillations.
Q8. A uniform rod is placed on two spinning wheels as shown in Fig. 4.6. The axes of the wheels are separated by a distance l=20 cm, the coefficient of friction between the rod and the wheels is k=0.18. Demonstrate that in this case the rod performs harmonic oscillations. Find the period of these oscillations.
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![Q8. A uniform rod is placed on two spinning wheels as shown in Fig. 4.6. The axes of the
wheels are separated by a distance l=20 cm, the coefficient of friction between the rod and the
wheels is k=0.18. Demonstrate that in this case the rod performs harmonic oscillations. Find the
period of these oscillations.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F85028e43-2603-402e-ba09-083c5d8d91c7%2F7484cfaa-c48b-484c-880a-0de80dc96168%2Feuihlxp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q8. A uniform rod is placed on two spinning wheels as shown in Fig. 4.6. The axes of the
wheels are separated by a distance l=20 cm, the coefficient of friction between the rod and the
wheels is k=0.18. Demonstrate that in this case the rod performs harmonic oscillations. Find the
period of these oscillations.
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