13. A thin conducting disc of mass m, thickness d and radius r (r >> d) is veleased in a uniform horizontal magnetic field of induction B. The magnetic induction vector is in the plane of the disc as shown in the figure. Denoting acceleration due to gravity by g, find expression for acceleration of the disc. Ano: ma 14. A conducting coil held coaxially near ono no

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13. A thin conducting disc of mass m, thickness d and radius r (r >> d) is
released in a uniform horizontal magnetic field of induction B. The
oleased in a uniform horizontal magnetic field of induction B. The
magnetic induction vector is in the plane of the disc as shown in the
figure. Denoting acceleration due to gravity by g, find expression for
acceleration of the disc. Ano: mg
14. A conducting coil held coaxially near ono polo
Transcribed Image Text:13. A thin conducting disc of mass m, thickness d and radius r (r >> d) is released in a uniform horizontal magnetic field of induction B. The oleased in a uniform horizontal magnetic field of induction B. The magnetic induction vector is in the plane of the disc as shown in the figure. Denoting acceleration due to gravity by g, find expression for acceleration of the disc. Ano: mg 14. A conducting coil held coaxially near ono polo
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