acceleration a = (5) m/s² where t is in seconds, determine; A 250 mm (a)the angular velocity of pulley A, WA as a function of time (b) the magnitude and direction of acceleration components at point P when t = 1s. B
acceleration a = (5) m/s² where t is in seconds, determine; A 250 mm (a)the angular velocity of pulley A, WA as a function of time (b) the magnitude and direction of acceleration components at point P when t = 1s. B
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
Transcribed Image Text:In Figure, mass B is attached to a rope wrapped around the outer edge of pulley A. When mass B falls from rest with an
acceleration a = (54) m/s2 where t is in seconds, determine;
A
250 mm
(a)the angular velocity of pulley A, WA as a function of time
(b) the magnitude and direction of acceleration components at point P when t = 1s.
P
B
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