Q4) A particle of 1 mm in diameter and density of 2500 kg/m3 is settling in a stagnant fluid in the Stokes' flow regime. Calculate the viscosity (Pa.s) of the fluid if the fluid density is 1000 Kg/m3 and the particle falls at a terminal velocity of 2mm/s. (0.4083 pa.s)

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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Q4) A particle of 1 mm in diameter and density of 2500 kg/m3 is settling in a stagnant fluid in
the Stokes' flow regime. Calculate the viscosity (Pa.s) of the fluid if the fluid density is 1000
Kg/m3 and the particle falls at a terminal velocity of 2mm/'s.
(0.4083 pa.s)
Transcribed Image Text:Q4) A particle of 1 mm in diameter and density of 2500 kg/m3 is settling in a stagnant fluid in the Stokes' flow regime. Calculate the viscosity (Pa.s) of the fluid if the fluid density is 1000 Kg/m3 and the particle falls at a terminal velocity of 2mm/'s. (0.4083 pa.s)
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