3- Pin A, which is attached to link AB, is constrained to move in the circular slot CD. Knowing that at t = 0 the pin starts from rest and moves so that its speed increases at a constant rate of 20 mm/s², determine the magnitude of its total acceleration when (a) t = 0, (b) t = 2 s. %3D S0 mm
3- Pin A, which is attached to link AB, is constrained to move in the circular slot CD. Knowing that at t = 0 the pin starts from rest and moves so that its speed increases at a constant rate of 20 mm/s², determine the magnitude of its total acceleration when (a) t = 0, (b) t = 2 s. %3D S0 mm
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![3- Pin A, which is attached to link AB, is constrained to move in the circular slot CD.
Knowing that at t = 0 the pin starts from rest and moves so that its speed increases at a
constant rate of 20 mm/s², determine the magnitude of its total acceleration when (a)
t = 0, (b) t = 2 s.
90 mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0c13b770-fc38-4fa6-8c85-61e463120ef5%2F42897c54-649e-40ed-9e2b-1f506fc85f84%2Fyd5wctd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3- Pin A, which is attached to link AB, is constrained to move in the circular slot CD.
Knowing that at t = 0 the pin starts from rest and moves so that its speed increases at a
constant rate of 20 mm/s², determine the magnitude of its total acceleration when (a)
t = 0, (b) t = 2 s.
90 mm
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