b) A block of Styrofoam insulation with dimensions 0.2 m x 0.3 m x 0.008 m floats in water, and a small steel object of mass m is placed on top of the block. When m = 0.30 kg, the (Density of water = i. the density of the Styrofoam. UTthe specific gravity of Styrofoam. i. UTM & UTM" UTM 3 IITM

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Chapter14: Fluid Mechanics
Section: Chapter Questions
Problem 109AP: Bird bones have air pockets to reduce their weight—this also gives them an average density...
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A rope of mass 0.8 kg is stretched between two supports 23.0 m apart. The tension U
e specific gravity of Styrofoam. TM
b)
A block of Styrofoam insulation with dimensions 0.2 m x 0.3 m x 0.008 m floats in water,
and a small steel object of mass m is placed
UTM Ysten
(Density of water = 1000
is in equilibrium and the
on top of the block. When m =
of the Styrofoam is at the level of the water. Determine:
i.
the density of the Styrofoam.
ii.
UTM UTh
c)
i.
tass UTM
UTM ITM
another.
UTM 5 UTM & UPRE
particle of mass 400 g performs simple harmonic motion of amplitude 5.0 cm
UTM UTM 6 UTe
ii.
UTM UTA.
and period 6.0 s. When the particle is 2.0 cm from the equilibrium position,
determine the velocity and the kinetic energy of the particle.
Transcribed Image Text:A rope of mass 0.8 kg is stretched between two supports 23.0 m apart. The tension U e specific gravity of Styrofoam. TM b) A block of Styrofoam insulation with dimensions 0.2 m x 0.3 m x 0.008 m floats in water, and a small steel object of mass m is placed UTM Ysten (Density of water = 1000 is in equilibrium and the on top of the block. When m = of the Styrofoam is at the level of the water. Determine: i. the density of the Styrofoam. ii. UTM UTh c) i. tass UTM UTM ITM another. UTM 5 UTM & UPRE particle of mass 400 g performs simple harmonic motion of amplitude 5.0 cm UTM UTM 6 UTe ii. UTM UTA. and period 6.0 s. When the particle is 2.0 cm from the equilibrium position, determine the velocity and the kinetic energy of the particle.
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