An object of mass M 5.00 kg is attached to a spring with spring constant k...
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An object of mass M 5.00 kg is attached to a spring with spring constant k = 220 N/m whose unstretched length is L 0.200 m, and whose far end is fixed to a shaft that is rotating with an angular speed of w = 2.00 radians/s. Neglect gravity and assume that the mass also rotates with an angular speed of 2.00 radians/s as shown. (Figure 1)When solving this problem use an inertial coordinate system, as drawn here. (Figure 2) %3D %3D Figure < 1 of 2 <> R. Part A Given the angular speed of w = 2.00 radians/s, find the radius R(w) at which the mass rotates without moving toward or away from the origin Express your answer in meters. > View Available Hint(s) R(w) = 0.220 m %23 Previous Answers Correct AT Part B Assume that, at a certain angular speed wa. the radius R becomes twice L. Find wy Express your answer in radians per second. View Availtable Hint(s) radians/s Submit An object of mass M 5.00 kg is attached to a spring with spring constant k = 220 N/m whose unstretched length is L 0.200 m, and whose far end is fixed to a shaft that is rotating with an angular speed of w = 2.00 radians/s. Neglect gravity and assume that the mass also rotates with an angular speed of 2.00 radians/s as shown. (Figure 1)When solving this problem use an inertial coordinate system, as drawn here. (Figure 2) %3D %3D Figure < 1 of 2 <> R. Part A Given the angular speed of w = 2.00 radians/s, find the radius R(w) at which the mass rotates without moving toward or away from the origin Express your answer in meters. > View Available Hint(s) R(w) = 0.220 m %23 Previous Answers Correct AT Part B Assume that, at a certain angular speed wa. the radius R becomes twice L. Find wy Express your answer in radians per second. View Availtable Hint(s) radians/s Submit
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