At the instant shown, collar A has a velocity of vA=10.012 ft/s ↓ and an acceleration of aA = 4 ft/s2, ↑. At the same instant, cylinder C has a constant velocity of vc = 16 ft/s, ←. (a) Determine the velocity and acceleration of B. (b) Compute for the velocity of C with respect to B, and the acceleration of C with respect to B. IMPORTANT: For this problem, please take note that there is only one reference point that we’ll be using.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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At the instant shown, collar A has a velocity of vA=10.012 ft/s ↓ and an acceleration of aA = 4 ft/s2, ↑. At the same instant, cylinder C has a constant velocity of vc = 16 ft/s, ←.

(a) Determine the velocity and acceleration of B.

(b) Compute for the velocity of C with respect to B, and the acceleration of C with respect to B.

IMPORTANT: For this problem, please take note that there is only one reference point that we’ll be using.

4 ft
VA= 10.ART ft/s,
BA= 4ft/s², 1
This would be your only reference point
A
3 ft
B
C
4 ft
Vc= 16 ft/s, ←
6 ft
Transcribed Image Text:4 ft VA= 10.ART ft/s, BA= 4ft/s², 1 This would be your only reference point A 3 ft B C 4 ft Vc= 16 ft/s, ← 6 ft
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