33. A pipe with constant cross-sectional area S is bent into a U-shape. One side of the pipe is open whereas the other one is closed by a cap T (as in the figure). The pipe is filled with water (density p) that reaches heights H ed h in the two arms. The force that the water exerts on T is equal to: T H A. pg(H-h), downwards B. pgh, upwards C. pgHS, upwards D. pg(H+h), downwards E. pg(H-h)S, upwards S T

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F4
%
5
T
33. A pipe with constant cross-sectional area S is bent into a
U-shape. One side of the pipe is open whereas the other
one is closed by a cap T (as in the figure). The pipe is filled
with water (density p) that reaches heights H ed h in the two
arms. The force that the water exerts on T is equal to:
I
F5
&
6
A. pg(H-h), downwards
B. pgh, upwards
C. pgHS, upwards
D. pg(H+ h), downwards
E. pg(H-h)S, upwards
Y
MacBook Air
C
F6
7
U
k
F7
88
DII
F8
S
)
9
T
F9
0
=
7
F10
P
?
I
4,
F11
D. B.
Transcribed Image Text:F4 % 5 T 33. A pipe with constant cross-sectional area S is bent into a U-shape. One side of the pipe is open whereas the other one is closed by a cap T (as in the figure). The pipe is filled with water (density p) that reaches heights H ed h in the two arms. The force that the water exerts on T is equal to: I F5 & 6 A. pg(H-h), downwards B. pgh, upwards C. pgHS, upwards D. pg(H+ h), downwards E. pg(H-h)S, upwards Y MacBook Air C F6 7 U k F7 88 DII F8 S ) 9 T F9 0 = 7 F10 P ? I 4, F11 D. B.
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