A bead of mass m is free to move around the frictionless wire hoop with radius R which is spinning at a fixed rate about its vertical axis. If the bead maintains the same position with respect to the hoop, at a constant angle with respect to the vertical, as shown in the figure, while it is making a uniform circular motion as the hoop spins Э (c) gR cot sin (d) gRcot cos (e) gRtan cos 0 3. What is the speed squared: v2 of the bead? (a) gRtan sin (b) gR cos sin
A bead of mass m is free to move around the frictionless wire hoop with radius R which is spinning at a fixed rate about its vertical axis. If the bead maintains the same position with respect to the hoop, at a constant angle with respect to the vertical, as shown in the figure, while it is making a uniform circular motion as the hoop spins Э (c) gR cot sin (d) gRcot cos (e) gRtan cos 0 3. What is the speed squared: v2 of the bead? (a) gRtan sin (b) gR cos sin
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
Transcribed Image Text:A bead of mass m is free to move around the frictionless wire hoop with radius R
which is spinning at a fixed rate about its vertical axis. If the bead maintains the same
position with respect to the hoop, at a constant angle with respect to the vertical,
as shown in the figure, while it is making a uniform circular motion as the hoop spins
8. What is the speed squared: v² of the bead?
(a) gRtan sin (b) gRcos sin (c) gR cot 0 sin (d) gRcot cos (e) gRtan0 cos
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