4 cm 12 cm 10 cm a) Calculate the gauge pressure Ap = pgh of water at the bottom surface of the cylinder. b) Calculate the force F = ApA exerted by the gauge pressure on the bottom surface of the cylinder. c) Calculate the buoyant force F₁ = PV dispg. The term V disp is called "displaced imo" and procents
4 cm 12 cm 10 cm a) Calculate the gauge pressure Ap = pgh of water at the bottom surface of the cylinder. b) Calculate the force F = ApA exerted by the gauge pressure on the bottom surface of the cylinder. c) Calculate the buoyant force F₁ = PV dispg. The term V disp is called "displaced imo" and procents
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
Transcribed Image Text:4 cm
12 cm
10 cm
a) Calculate the gauge pressure Ap =
pgh of water at the bottom surface of
the cylinder.
b) Calculate the force F = ApA
exerted by the gauge pressure on the
bottom surface of the cylinder.
c) Calculate the buoyant force F₁ =
PV dispg. The term V disp is called
"displaced volume" and represents
the portion of the volume of the
object that is underwater.
d) Compare the result of parts b and
C.
=
e) A floating object obeys Vdisp/V obj
Pobj/p. Why is this relation true?
What is the density of the object?
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