Q.33 The spherical grit particles, having a radius of 0.01 mm and specific gravity of 3.0, need to be separated in a settling chamber. It is given that g = 9.81 m/s² the density of the liquid in the settling chamber = 1000 kg/m³ the kinematic viscosity of the liquid in the settling chamber = 106 m²/s Assuming laminar conditions, the settling velocity (in mm/s, up to one decimal place) ● ● is

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Q.33
The spherical grit particles, having a radius of 0.01 mm and specific gravity of 3.0, need
to be separated in a settling chamber. It is given that
g = 9.81 m/s²
the density of the liquid in the settling chamber = 1000 kg/m³
the kinematic viscosity of the liquid in the settling chamber = 106 m²/s
Assuming laminar conditions, the settling velocity (in mm/s, up to one decimal place)
●
●
is
Transcribed Image Text:Q.33 The spherical grit particles, having a radius of 0.01 mm and specific gravity of 3.0, need to be separated in a settling chamber. It is given that g = 9.81 m/s² the density of the liquid in the settling chamber = 1000 kg/m³ the kinematic viscosity of the liquid in the settling chamber = 106 m²/s Assuming laminar conditions, the settling velocity (in mm/s, up to one decimal place) ● ● is
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