Cylinder A moves with a constant velocity V₁ = 6 m/s up. The velocity of cylinder A relative to cylinder B, i.e., VA/B, is most nearly A. 12.0ĵ m/s B. 9.00 ĵ m/s C. 8.33 m/s D. 6.67ĵ m/s E. 4.00 ŷ m/s F. 2.75 Ĵ m/s G. 1.50 m/s H. 0.50ĵ m/s I. -0.50ĵ m/s J. -1.50 m/s y VA A B x
Cylinder A moves with a constant velocity V₁ = 6 m/s up. The velocity of cylinder A relative to cylinder B, i.e., VA/B, is most nearly A. 12.0ĵ m/s B. 9.00 ĵ m/s C. 8.33 m/s D. 6.67ĵ m/s E. 4.00 ŷ m/s F. 2.75 Ĵ m/s G. 1.50 m/s H. 0.50ĵ m/s I. -0.50ĵ m/s J. -1.50 m/s y VA A B x
Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Kreith, Frank; Manglik, Raj M.
Chapter10: Heat Exchangers
Section: Chapter Questions
Problem 10.19P
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The answer to the problem is 9.00 j m/s. Please show me how to get the final answer

Transcribed Image Text:Cylinder A moves with a constant velocity V₁ = 6 m/s up. The velocity of cylinder A
relative to cylinder B, i.e., VA/B, is most nearly
A. 12.0ĵ m/s
B. 9.00 ĵ m/s
C. 8.33 m/s
D. 6.67ĵ m/s
E. 4.00 ŷ m/s
F. 2.75 Ĵ m/s
G. 1.50 m/s
H. 0.50ĵ m/s
I. -0.50ĵ m/s
J. -1.50 m/s
y
VA
A
B
x
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