This problem uses Figure 1 .Consider a flat plate of thickness h submerged in a liquid of density (p). with the plate parallel to the free surface, as shown in the figure. The area of the top (and also bottom) surface of the place is A, and its distance to the free surface is s. Match the balancing pressures and forces to their correct expression. Figure 1 PrgsA Pr8(s+h)A Gauge pressure on the top of the plate pf'g*(s+h)*A Gauge pressure on the bottom of the plate pf*g*s Hydrostatic force on the top of the plate pf*g"(s+h) Hydrostatic force on the bottom of the plate pf*g*s*A > > >

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter8: Centroids And Distributed Loads
Section: Chapter Questions
Problem 8.122P: The 12-ft wide quarter-circular gate AB is hinged at A. Determine the contact force between the gate...
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This problem uses Figure 1 .Consider a flat plate of thickness h submerged in a liquid of density (p).
with the plate parallel to the free surface, as shown in the figure. The area of the top (and also bottom)
surface of the place is A, and its distance to the free surface is s. Match the balancing pressures and
forces to their correct expression.
Figure 1
PrgsA
Pr8(s+h)A
Gauge pressure on the top of the plate
pf'g*(s+h)*A
Gauge pressure on the bottom of the plate
pf*g*s
Hydrostatic force on the top of the plate
pf*g"(s+h)
Hydrostatic force on the bottom of the plate
pf'g*s*A
>
>
>
Transcribed Image Text:This problem uses Figure 1 .Consider a flat plate of thickness h submerged in a liquid of density (p). with the plate parallel to the free surface, as shown in the figure. The area of the top (and also bottom) surface of the place is A, and its distance to the free surface is s. Match the balancing pressures and forces to their correct expression. Figure 1 PrgsA Pr8(s+h)A Gauge pressure on the top of the plate pf'g*(s+h)*A Gauge pressure on the bottom of the plate pf*g*s Hydrostatic force on the top of the plate pf*g"(s+h) Hydrostatic force on the bottom of the plate pf'g*s*A > > >
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