The piston shown in the figure is held in equilibrium by 210 kPa pressure of gas at flowing at III. Given the diameters for the piston as shown, with PI = 350 kPa, and PII = 130 kPa. Determine (a) the cross-section at I, II & III in m2 (b) the weight and mass of the piston in N and in kg respectively, considering that the contacting surfaces are frictionless

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Chapter1: Units, Trigonometry. And Vectors
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The piston shown in the figure is held in equilibrium by 210 kPa pressure of gas at flowing at III. Given the diameters for the piston as shown, with PI = 350 kPa, and PII = 130 kPa. Determine (a) the cross-section at I, II & III in m2 (b) the weight and mass of the piston in N and in kg respectively, considering that the contacting surfaces are frictionless.

4. The piston shown in the figure is held in equilibrium by 210 kPa pressure of gas at flowing at
III. Given the diameters for the piston as shown, with P, = 350 kPa, and P = 130 kPa.
Determine (a) the cross-section at I, Il & IIl in m?(10 pts.) (b) the weight and mass of the piston
in N and in kg respectively (20 pts.), considering that the contacting surfaces are frictionless.
D= 10 cm
D= 20 cm
II
Transcribed Image Text:4. The piston shown in the figure is held in equilibrium by 210 kPa pressure of gas at flowing at III. Given the diameters for the piston as shown, with P, = 350 kPa, and P = 130 kPa. Determine (a) the cross-section at I, Il & IIl in m?(10 pts.) (b) the weight and mass of the piston in N and in kg respectively (20 pts.), considering that the contacting surfaces are frictionless. D= 10 cm D= 20 cm II
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