In Fig. 14-11, a block of density p = 800 kg/m floats face down in a fluid of density P = 1200 kg/m'. The block has height H = 6.0 cm. %3D (a) By what depth h is the block submerged? (b) If the block is held fully submerged and then released, what is the magnitude of its acceleration? Floating means that the buoyant force matches the gravitational force. Figure 14-11 Block of height H floats in a fluid, to a depth of h.

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter15: Fluids
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In Fig. 14-11, a block of density p = 800 kg/m floats face
down in a fluid of density p, =
height H = 6.0 cm.
1200 kg/m. The block has
%3D
(a) By what depth h is the block submerged?
(b) If the block is held fully submerged and then released,
what is the magnitude of its acceleration?
Floating means
that the buoyant
force matches the
gravitational force.
Figure 14-11 Block of height H floats
in a fluid, to a depth of h.
Transcribed Image Text:In Fig. 14-11, a block of density p = 800 kg/m floats face down in a fluid of density p, = height H = 6.0 cm. 1200 kg/m. The block has %3D (a) By what depth h is the block submerged? (b) If the block is held fully submerged and then released, what is the magnitude of its acceleration? Floating means that the buoyant force matches the gravitational force. Figure 14-11 Block of height H floats in a fluid, to a depth of h.
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