Under the action of its stern and starboard bow thrusters, the cruise ship has the velocity vB = 1m/s of its mass center B and angular velocity ω = 1deg/s about a vertical axis. The velocity of B is constant, but the angular rate ω is decreasing at 0.5deg/s2 . Person A is stationary on the dock. What velocity and acceleration of A are observed by a passenger fixed to and rotating with the ship? Treat the problem as two-dimensional.
Under the action of its stern and starboard bow thrusters, the cruise ship has the velocity vB = 1m/s of its mass center B and angular velocity ω = 1deg/s about a vertical axis. The velocity of B is constant, but the angular rate ω is decreasing at 0.5deg/s2 . Person A is stationary on the dock. What velocity and acceleration of A are observed by a passenger fixed to and rotating with the ship? Treat the problem as two-dimensional.
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Under the action of its stern and starboard bow thrusters, the cruise ship
has the velocity vB = 1m/s of its mass center B and
vertical axis. The velocity of B is constant, but the angular rate ω is decreasing at 0.5deg/s2
.
Person A is stationary on the dock. What velocity and acceleration of A are observed by a
passenger fixed to and rotating with the ship? Treat the problem as two-dimensional.
![UB
15°
Ba
10°
100 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F275d192b-1acc-42ff-a625-687e59b8c7e8%2F877d6902-cb00-40f0-8442-beed61c8d2a8%2F542vwvu_processed.jpeg&w=3840&q=75)
Transcribed Image Text:UB
15°
Ba
10°
100 m
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