20 ft 2 k/ft 团 15 ft- E B D 15 ft -30 ft- 5 ft C FO 5 ft
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10: The bridge frame consists of three segments which can be considered pinned at A, D, and E, rocker supported at C and F, and roller supported at B. Complete fbd.
1. Find the reaction at B.
2. Find the reaction at D and the reaction at E
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- The pressure of water flowing through a pipe is measured by the arrangement shown in figure. For the values given, calculate the pressure in the pipe.Two cylinders are connected by a piston. Cylinder A is used as a hydraulic lift and pumped up to 500 kPa. The piston mass is 25 kg and there is standard gravity. What is the gas pressure in cylinder B? = [PB = 6.00 MPa]The pressure of water flowing through a pipe is measured by the arrangement shown below. For the values given, calculate the pressure in the pipe. Po=30 kPa Air Pipe Waler 15°C Water hy = 50 cm 15°C L=6 cm h = 8 cm 4=6 cm Ciage fluid SG = 24
- The pressure difference between an oil pipe and water pipe is measured by a double-fluid manometer, as shown in Figure 2. For the given fluid heights and specific gravities, calculate the pressure difference AP = PB-PA. Water SG = 1.0 Mercury SG= 13.5 60 cm 20 cm Figure 2 Glycerin SG = 1.26 10 cm 15 cm Oil SG=0.884. If the Pressure at A- 135 kPa, what is the length L? Pw 1000 ka/m. Percury 13545 kg/m 32 cm 35 18 cm 15 cm Datan Mercury WaterQuestion 2 A gasoline line is connected to a pressure gage through a double U-manometer, as shown in fig below. If the pressure gage is 370 kPa, determine the gage pressure of the gasoline. Oil SG 0.79 Pse=370 kPa Enge Gasoline SG=0.70 45 cm 50 cm Pipe Air 22 cm 10 cm Mercury SG= 13.6 Water FIGURE P1-112 Add a caption... > Gideon Yalley
- a piece if metal weighs 350 N in air nad 240 N in water. What is the specific gravity of the metal1. Consider the following diagram. The fluid flowing in the pipe is oil (SG = 0.830). The fluid in the manometer is water (SG = 1.00). Water, pw = 1000 kg/m³ 7 cm Oil, p = 830 kg/m³ a. Determine P₂ - P₁ in kPa. b. Determine the direction of flow. (Left to right, or right to left). Explain why this is the case. c. The height of oil between the manometer and the pipe is unknown. Explain how you can still solve the problem without knowing this height. Would this height ever matter? Hint: consider practical issues of design. Could the height be 0 cm? Could it be 1000 cm?Convert 22C to Fahrenheit.