A trapezoidal plate with heighth and bases a and 2a is submerged vertically in water as shown. Express the hydrostatic force against one side of the plate as an integral and evaluate it. (Use delta for o, the weight density constant.) dx A cube with 35-cm-long sides is sitting on the bottom of an aquarium in which the water is one meter deep. (Round your answers to the nearest whole number. Use 9.8 m/s2 for the acceleration due to gravity. Recall that the weight density of water is 1000 kg/m3.) (a) Estimate the hydrostatic force on the top of the cube. N (b) Estimate the hydrostatic force on one of the sides of the cube. N

Calculus: Early Transcendentals
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Chapter1: Functions And Models
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A trapezoidal plate with heighth and bases a and 2a is submerged vertically in water as shown. Express the hydrostatic force against one side of the plate as an integral and evaluate it. (Use delta for o, the
weight density constant.)
dx
Transcribed Image Text:A trapezoidal plate with heighth and bases a and 2a is submerged vertically in water as shown. Express the hydrostatic force against one side of the plate as an integral and evaluate it. (Use delta for o, the weight density constant.) dx
A cube with 35-cm-long sides is sitting on the bottom of an aquarium in which the water is one meter deep. (Round your answers to the nearest whole number. Use 9.8 m/s2 for the acceleration due to gravity.
Recall that the weight density of water is 1000 kg/m3.)
(a) Estimate the hydrostatic force on the top of the cube.
N
(b) Estimate the hydrostatic force on one of the sides of the cube.
N
Transcribed Image Text:A cube with 35-cm-long sides is sitting on the bottom of an aquarium in which the water is one meter deep. (Round your answers to the nearest whole number. Use 9.8 m/s2 for the acceleration due to gravity. Recall that the weight density of water is 1000 kg/m3.) (a) Estimate the hydrostatic force on the top of the cube. N (b) Estimate the hydrostatic force on one of the sides of the cube. N
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