The merry-go-round rotates at a constant angular velocity of w = 2,8 rad/s. Assume that an observer standing at point A is rotating together with the merry-go-round and there is another person standing at the point B on ground next to the mery-go-round. If r= 3,3 m, determine the acceleration of point B relative to the Newtonian fixed frame. Z, Z Y, Y B x, X
The merry-go-round rotates at a constant angular velocity of w = 2,8 rad/s. Assume that an observer standing at point A is rotating together with the merry-go-round and there is another person standing at the point B on ground next to the mery-go-round. If r= 3,3 m, determine the acceleration of point B relative to the Newtonian fixed frame. Z, Z Y, Y B x, X
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![The merry-go-round rotates at a constant angular velocity of w = 2,8 rad/s. Assume that an observer standing at point A is rotating
together with the merry-go-round and there is another person standing at the point B on ground next to the merry-go-round. If r= 3,3 m,
detemine the acceleration of point B relative to the Newtonian fixed frame.
z, Z y, Y
х, X](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe1c2084c-1096-4867-ac1e-2042b089f3a7%2Fa67a24a1-d7b9-436e-b1ab-cacc4e3e732a%2Fk8selmv_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The merry-go-round rotates at a constant angular velocity of w = 2,8 rad/s. Assume that an observer standing at point A is rotating
together with the merry-go-round and there is another person standing at the point B on ground next to the merry-go-round. If r= 3,3 m,
detemine the acceleration of point B relative to the Newtonian fixed frame.
z, Z y, Y
х, X
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