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A small bead can slide without friction on a circular hoop that is in a vertical plane and has a radius of 0.100m. The hoop rotates at a constant rate of 4.10rev//s about a vertical diameter (the figure (Figure 1)). Figure 1 of 1 Find the angle beta at which the bead is in vertical equilibrium. (Of course, it has a radial acceleration toward the axis.) Express your answer in degrees. beta=? Part B Is it possible for the bead to "ride" at the same elevation as the center of the hoop? yes no Previous Answers Correct Part C Complete previous part(s)

A small bead can slide without friction on a circular hoop that is in a vertical plane and has a radius of $0.100m$. The hoop rotates at a constant rate of $4.10rev/s$ about a vertical diameter (the figure Part B Is it possible for the bead to "ride" at the same elevation as the center of the hoop? Figure Find the angle $?$ at which the bead is in vertical equilibrium. (Of course, it has a radial acceleration toward the axis Express your answer in degrees. Part B 1 of 1 Part C Complete previous part(s)