14. Determine the pressure increase (in Pascal) required to reduce the volume of water by 1.5%, if the bulk modulus of elasticity is 2.2 x 10^9 Pa. (3 decimal places in scientific notation of 10^9)
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- Fluid mechanics, I need solutions in 15 minutes please. MCQ/A block of steel (s.g. = 7.85) will "float" at a mercury - water interface as shown in the figure. What is the height that submerged in the mercury (b)? Assume that the dimensions of the base of the block are X and L. A-269.247 mm B-139.251 mm C-237.008 mm D-297.826 mm E-208.140 mm F-164.025 mm G- 114.018 mm H-192.048 mm I-251.178 mm J- 324.085 mmPROBLEM 6: A gasoline line is connected to a pressure gage through a double-U manometer, as shown. If the reading of the pressure gage is 26o kPa, determine the gage pressure of the gasoline line. Assume the density of air to be 1.225 kg/m^3. * -Oil SG = 0.79 Pgage = 260 kPa Gasoline SG = 0.70 45 cm 50 cm Pipe Air- 22 cm 10 cm - Mercury SG = 13.6 Water Your answerDetermine the volume Vand total surface area A of the solid generated by revolving the area shown through 180° about the z-axis. 42 mm 36 mm k12 mm Answers: V = i mm3 A = i mm?
- PROBLEM 6: A gasoline line is connected to a pressure gage through a double-U manometer, as shown. If the reading of the pressure gage is 260 kPa, determine the gage pressure of the gasoline line. Assume the density of air to be 1.225 kg/m^3. -Oil SG = 0.79 P gage = 260 kPa Gasoline SG = 0.70 45 cm 50 cm Pipe Air- 22 cm 10 cm Mercury SG = 13.6 WaterIn the figure shown, originally there is a H2=9 cm manometer reading and H1=15 cm. Atmospheric pressure is 101.3 kPa. what is the absolute pressure at A (kPa)? If the absolute pressure at A is doubled, what then would be the manometer reading (cm) ?. Water H1 cm H2 cm - MercuryThe pressure read on the pressure gauge of the system in the figure is 65 kpa. Considering the data shown, determine the height difference "h" on the differential pressure gauge. Aire = air Agua = water Aceite = oil Mercurio = mercury
- B 3 m Air 5m Air 5 m 3m Water Fig. 2-3 The closed tank in the figure is at 20°C. If the pressure at point A is 98 kPa abs, what gage pressure at B? SG @ 20°C = 0.9982 %3D Do not write the unit. You will only input the numerical answer in the space provided. Unit of the Correct Answer: kPa Decimal Places required in the final answer:2The system shown in the figure is used to accurately measure the pressure changes when the pressure is increased by Ap in the water pipe. When Ah = 70mm, what is the change in the pipe pressure (in Pa)? Water Pipe Glycerin, SG = 1.26 D=30 mm Ah d = 3 mmA docs.google.com/forms/d/e/1FAlpQLSetk8UE/ PROBLEM 6: A gasoline line is connected to a pressure gage through a double-U manometer, as shown. If the reading of the pressure gage is 260 kPa, determine the gage pressure of the gasoline line. Assume the density of air to be 1.225 kg/m3 * Oil SG = 0.79 P gage = 260 kPa Gasoline SG= 0.70 Pipe Air 45 cm 50 cm 22 cm 10 cm Mercury SG= 13.6 Water Your answer
- What height of mercury column is equivalent to a pressure of 74 psig? The density of mercury is 498 Ibm/ft3. a. 11.28 ft O b. 21.40 ft c. 16.77 ft O d. 10.70 ft1) If a depth of liquid of 1 m causes a pressure of 7 kPa, what is the specific gravity of the liquid? 2) Find the absolute pressure in psi at a depth of 20 ft below the surface of the water if the barometer reads 29.9 in of mercury (use SG=13.57). 3) Find the pressure at the bottom of a tank containing glycerin under pressure as shown. Use SG=1.25 50 AP Glycerin 2m Fig. 2-3 4) Calculate the weight of the piston if the gage pressure reading is 70 kPa Cage Im Fig. 2-22Question 3:- A tank with 100.58 kPa pressure is connected with manometer to measure the pressure. The specific gravity of fluid was 0.85 and the atmospheric pressure is 96 kPa find the manometer column height "h". Pam = 96 kPa P=100.58 kPa h=? SG = 0.85