Q1] As shown in Fig. (1), a thin plate is pulled in a gap between two large fixed plates at a constant velocity of (0.16 m/sec.). If viscosity of oil 1 is three times viscosity of oil 2 and the resulting force (F) on both sides of the thin plate (due to viscous shear) is (30N), determine the viscosities of oilş. Assume linear velocity distribution.

Structural Analysis
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Chapter2: Loads On Structures
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Fluid mechanics
1 cm
oil 2
F
\Thin plate (surface
area = 1 m³)
oil 1
2 cm
Fig. (1)
1-2
Transcribed Image Text:1 cm oil 2 F \Thin plate (surface area = 1 m³) oil 1 2 cm Fig. (1) 1-2
Q1] As shown in Fig. (1), a thin plate is pulled in a gap between two large fixed plates
at a constant velocity of (0.16 m/sec.). If viscosity of oil 1 is three times viscosity of oil
2 and the resulting force (F) on both sides of the thin plate (due to viscous shear) is
(30N), determine the viscosities of oilş. Assume linear velocity distribution.
Transcribed Image Text:Q1] As shown in Fig. (1), a thin plate is pulled in a gap between two large fixed plates at a constant velocity of (0.16 m/sec.). If viscosity of oil 1 is three times viscosity of oil 2 and the resulting force (F) on both sides of the thin plate (due to viscous shear) is (30N), determine the viscosities of oilş. Assume linear velocity distribution.
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