Water flows steadily through the funnel shown in the figure below. Throughout most of the funnel the flow is approximately radial (along rays from O) with a velocity of V = c/r² where r is the radial coordinate and c is a constant. If the velocity is 0.2 m/s when r = 0.3 m determine (a) the acceleration magnitude at point A, (b) the acceleration magnitude at point B.

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Water flows steadily through the funnel shown in the figure below. Throughout most of the funnel the flow is approximately radial
(along rays from O) with a velocity of V = c/r² wherer is the radial coordinate and c is a constant. If the velocity is 0.2 m/s when r = 0.3 m
determine
(a) the acceleration magnitude at point A,
(b) the acceleration magnitude at point B.
(a) GA=
(b) ав=
i
i
m/s²
m/s²
-0.16m-
0.3m
0.6m
Transcribed Image Text:Water flows steadily through the funnel shown in the figure below. Throughout most of the funnel the flow is approximately radial (along rays from O) with a velocity of V = c/r² wherer is the radial coordinate and c is a constant. If the velocity is 0.2 m/s when r = 0.3 m determine (a) the acceleration magnitude at point A, (b) the acceleration magnitude at point B. (a) GA= (b) ав= i i m/s² m/s² -0.16m- 0.3m 0.6m
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