The space between two square flat parallel plates is filled with oil. Each side of the plate is 0.8 m. The specific weight of the oil is 9620 N/m3. The thickness of the oil film is 14.9 mm and requires a force of 175 N. The liquid having the kinematic viscosity of 15 stokes. Determine (i) the shear stress (ii) the density of oil (ii) the dynamic viscosity in poise and (iv) the moving velocity of the upper plate.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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The space between two square flat parallel
plates is filled with oil. Each side of the plate
is 0.8 m. The specific weight of the oil is
9620 N/m³. The thickness of the oil film is
14.9 mm and requires a force of 175 N. The
liquid having the kinematic viscosity of 15
stokes.
Determine (i) the shear stress (ii) the density
of oil (iii) the dynamic viscosity in poise and
(iv) the moving velocity of the upper plate.
(i).Shear stress in N/m2
(ii). The density of oil in kg/m3
(iii).The dynamic viscosity in poise
(iv). The moving velocity of the upper plate in
m/s.
Transcribed Image Text:The space between two square flat parallel plates is filled with oil. Each side of the plate is 0.8 m. The specific weight of the oil is 9620 N/m³. The thickness of the oil film is 14.9 mm and requires a force of 175 N. The liquid having the kinematic viscosity of 15 stokes. Determine (i) the shear stress (ii) the density of oil (iii) the dynamic viscosity in poise and (iv) the moving velocity of the upper plate. (i).Shear stress in N/m2 (ii). The density of oil in kg/m3 (iii).The dynamic viscosity in poise (iv). The moving velocity of the upper plate in m/s.
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