A::V Gmail> A docs.google.com Q 2: For the figure ,point A is (30 cm) below the surface of liquid , What is the pressure. 17.658 kpa 17.658 kpa (vacume) 176.58 kpa Option 4 J.sm Y.d=1.25
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Q: 3. A spaceship lands on a planet where the atmosphere is completely made of water (p = 1000 -g). The…
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Q: specific weight
A: Given- Specific gravity of fluid= 13.37 To calculate- Specific weight in lbf/ft33
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Q: The system in Fig. P2.41 is at 20°C. Compute the pres- sure at point A in lbf/ft? absolute.
A: Given data Pa = 14.7 lbd/in2. = 101352.9 pa 6 in = 0.1524 m 5 in = 0.127 m 10 in = 0.254 m
Q: Q4: Centrifugal fan Q₁ 1.8 m3/s and Pa 1.2 kg/m² and P, 740 pa and N₁ 1100 r.p.m find. 1-W₁1 10.7 2-…
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Q: 26, In fig. below, fluid A is water (p 62.1 lhm/ft³) while fluid B is oil (S.G. 0.80), g= 32.2 fps?…
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Q: The tank contains water and immiscible bil with S=0.70. What is h in cm? h 6 cm 12 cm Oil Water
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Q: Required information As measured by NASA's Viking landers, the atmosphere of Mars, where g= 3.71…
A: Given, g=3.71 m/s2 Pa = 700 Pa C = 1.3 x 10-5 m-1 To=250 kPa=1 PaR=189
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Q: The system in Fig. is at 20 ° C. Compute the pressureat point A in lbf/ft 2 absolute.
A: Given: The atmospheric temperature is Pa=14.7 lbf/in2. The specific gravity of the oil is SG=0.85…
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Q: 101.3 kpa expands constant temperature from 0.l m' to 10 ft', what is the final pressure in bar
A: GIVEN: 101.3 kpa expands constant temperature from 0.l m' to 10 ft', what is the final pressure in…
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- Here are these questions if I could get help with themIf a spherical storage tank holds 40,000 gallons (120,000 liters) of water,what diameter must it have?If a cylindrical storage tank has a 40-foot (12 m) diameter circular 05::=how high must it be to hold 1 million gallons (3 million liters)?If water is moving at a rate of 3.2 ft3/sec (90,000 cc/sec), how manygallons (liters) per minute is this?If the specific gravity of gold is 19.0. what is the weight of a cubic inch(cubic centimeter) of gold? A cubic foot (cubic meter)?ll SMART 2:18 PM O a 82% K All iCloud **Instruction: Use Given-Required-Solution in answering problems. Provide necessary diagrams for each. Answers should be rounded off to four decimal places and enclosed in a box.** 1.) Show that 1kg-m weights, 1kg-f on earth. 2.) A column arranged vertically holds a composite fluid of 46 cm of mercury (SG = 13.5), 66 cm of water (density = 1000 kg/m^3), and 81 cm of oil (SG =0.8), with its top end exposed to the atmosphere. Calculate the pressure at the bottom of the column. Knowing that fluids with higher densities sit below fluids with lower densities, illustrate the vertical column (no need to be up to scale).In Figure below all fluids are at 20 deg.C. Determine pressure at point B, if pressure at point A is 150 kPa and weight of air is neglected. Use the table below for the densities at 20 deg.C. Liquid p. kg/m Kerosene - Ammonia 608 Benzene 881 Air Carbon tetrachloride 1590 Benzene Ethanol 789 Ethylene glycol Freon 12 B 1117 40 cm 9 cm 1327 20 cm Gasoline 680 14 cm Glycerin Kerosene 1260 t8 cm 804 Mercury- Water Mercury Methanol 13,550 791 SAE 10W oil 870 SAE 10W30 oil 876 SAE 30W oil 891 SAE 50W oil 902 Water 998 Seawater (30%e) 1025
- In the piezometers of the figure shown, liquid stands 1.37 m above point M. What is the pressure at M in kPa if the liquid is (a) water, (b) oil (sp gr 0.90), (c) mercury, and (d) molasses (spgr 1.5). B MATHalino.com TICAL Reimagine Education. www.disi.edu.phH.w 3: / carbon dioxide (CO2) has mass (4.2kg) pressure (12 bar) and of If (R temperature (92 0.189 kJ/kg. K)? °C).Calculate the volume %3D5) Consider 4 immiscible liquids in an open tank (open to atmosphere) as shown below. Find the gauge pressures at 1, 2, 3 and 4. SG is specific gravity. Oil (SG: 0.78) 1. Water (SG: 1) Glycerin (SG: 1.26) Mercury (SG: 13.6) 70 26°C AQI 29 OMEN 35cm 65cm 20 cm 40cm
- The figure belows shows a closed tank holding air and oil to which is connected a U-tube mercury manometer and a pressure gage, with L1 = 3 ft, L2 = 0.5 ft, and L3 = 1.75 ft. The densities of the oil and mercury are 55 and 845, respectively, each in Ib/ft?. Let g = 32.2 ft/s?. Pressure gage Air Oil (p = 55 Ivit) Pam Mercury (p= 845 Ih/n') g= 322 fus? Determine the reading of the pressure gage, in Ibf/in.? (gage). Pgage = i Ibf/in.2Q5: The compart ments (B) 4 CC) in figure below are closed & filled with air. When the gauges (A) (D) read as indicated, when should be the value of Cx) for gaugeCE)? (Mercury in each U-tube gauge) 2.07 bar C B. 254 Air Air E.Air tank filled with air (air gas constant 287 J/kg.K, density of 1.2 kg/m), the air temperature is 20 C Find the force F (N). The oll specific gravity S- 0.8. Neglect the weights of the piston. 10-cm diameter Vertical 2m Oil air -2.2 m
- P1.) A closed cylindrical tank 1.5 m in diameter and 4 m long is completely filled with gasoline (sp.gr. = 0.82) and accelerated horizontally at 3 m/s². Find the total force acting at the rear wall and at the front wall of the tank. Find also the accelerating force on the fluid mass. Answer: 10.66 kN and F = 17.36 kN Subject: Fluid Mechanic Lesson: Relative Equilibrium of Liquids Fundamentals of Fluid FlowA water storage tank contalns Liquid and Vapor in equilibruim at lloE. The distance from bottonm of the tank to the Liquid level is 8 m. What is the absolute pressure at the bottom of the tank. [218 kpa]For the curved surface AB shown in the figure below, if the specific gravity of the fluid, S = 3.6, L = 2.5 m, and water density = 1000 kg/m, find: a. The magnitude of the vertical component of hydrostatic force acting on the surface (N). b. The magnitude of the horizontal component of hydrostatic force acting on the surface (N). %3D %3D Surface is 2L long (normal to page) Liquid