[LO-1] Refer to the figure shown here and consider the data shown below: Oil Upper Plate F, v Lower Plate Density of Water, pw = 998 kg/m³ Specific Gravity of oil = 0.92 Thickness of oil film, t = 12 mm Each side of the square plate = 15 cm Velocity of the upper plate with respect to the lower plate, v = 5.5 cm/s Force required to maintain the velocity of the upper plate, F = 88 Newtons Gravity Constant, g = 9.8 m/s² Note: Neglect the thickness of the plate The Density of Oil is approximately equal to kg/m³ (up to 5 significant figures) The Shear Stress developed on the Upper Plate is approximately equal to Pa (up to 6 significant figures) The Velocity Gradient for the Upper Plate is approximately equal to Sec (up to 4 significant figures) The Dynamic Viscosity of the Oil is approximately equal to Poise (up to 6 significont figures) The Kinematic Viscosity of Oil is gpproximately equal to Stokes (up to 5 significant figures)

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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[LO-1]
Refer to the figure shown here and consider the data shown below:
Oil
Upper Plate
F, v
Lower Plate
Density of Water, pw = 998 kg/m³
Specific Gravity of oil = 0.92
Thickness of oil film, t = 12 mm
Each side of the square plate = 15 cm
Velocity of the upper plate with respect to the lower plate, v = 5.5 cm/s
Force required to maintain the velocity of the upper plate, F = 88 Newtons
Gravity Constant, g = 9.8 m/s²
Note: Neglect the thickness of the plate
The Density of Oil is approximately equal to
kg/m³ (up to 5 significant figures)
The Shear Stress developed on the Upper Plate is approximately equal to
Pa (up to 6 significant figures)
The Velocity Gradient for the Upper Plate is approximately equal to
Sec (up to 4 significant figures)
The Dynamic Viscosity of the Oil is approximately equal to
Poise (up to 6 significont figures)
The Kinematic Viscosity of Oil is gpproximately equal to
Stokes (up to 5 significant figures)
Transcribed Image Text:[LO-1] Refer to the figure shown here and consider the data shown below: Oil Upper Plate F, v Lower Plate Density of Water, pw = 998 kg/m³ Specific Gravity of oil = 0.92 Thickness of oil film, t = 12 mm Each side of the square plate = 15 cm Velocity of the upper plate with respect to the lower plate, v = 5.5 cm/s Force required to maintain the velocity of the upper plate, F = 88 Newtons Gravity Constant, g = 9.8 m/s² Note: Neglect the thickness of the plate The Density of Oil is approximately equal to kg/m³ (up to 5 significant figures) The Shear Stress developed on the Upper Plate is approximately equal to Pa (up to 6 significant figures) The Velocity Gradient for the Upper Plate is approximately equal to Sec (up to 4 significant figures) The Dynamic Viscosity of the Oil is approximately equal to Poise (up to 6 significont figures) The Kinematic Viscosity of Oil is gpproximately equal to Stokes (up to 5 significant figures)
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