PART A Q1. For the position shown where 0 = 30°, point A on the sliding collar has a constant velocity v = 2 m/s with corresponding lengthening of the hydraulic cylinder AC. For this same position BD is horizontal and DE is vertical. Determine the angular velocity (@DE) and acceleration (aDE) of DE at this instant. 200 mm 90 mm 200 mm
PART A Q1. For the position shown where 0 = 30°, point A on the sliding collar has a constant velocity v = 2 m/s with corresponding lengthening of the hydraulic cylinder AC. For this same position BD is horizontal and DE is vertical. Determine the angular velocity (@DE) and acceleration (aDE) of DE at this instant. 200 mm 90 mm 200 mm
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
Transcribed Image Text:PART A
Q1. For the position shown where 0 = 30°, point A on the sliding collar has a constant velocity v = 2
m/s with corresponding lengthening of the hydraulic cylinder AC. For this same position BD is
horizontal and DE is vertical. Determine the angular velocity (@DE) and acceleration (aDE) Oof DE at this
instant.
D
200 mm
90 mm
CA
200 mm
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