An oil drop with the diameter of 1mm, is in the contact with the air with the pressure of 80 KN/m2. i. Find the dimension of surface tension in MLT system
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- Atmospheric pressure is 1 atm. Find pressure of gas in terms of atm; If system is closed manometer, and the height of the fluid column on the gas side is 20 mm, and that on the other side is 210 mmfind the temperature, pressure, density at 40,000 ft in standard atmosphereAir at 300K has a density of 1.3 kg/m3 in a tank. Find the pressure
- Two pipes A & B carries an oil of specific gravities 0.9 & 1.2 respectively. The center of the pipe A is 35 cm above the pipe B. The height of oil in right limb is 30 cm. Also, the mercury level difference is found in right limb as 60 cm. Find the pressure difference between these two pipes in kPa. Also find the pressure equivalent in water head in mm.A 1 m x 1.5 m cylindrical tank is full of oil with SG = 0.92. Find the force acting at the bottom of the tank in dynes. Answer asap. Thanks. I will rate helpfulTwo pipes A & B carries an oil of specific gravities 0.9 & 1.2 respectively. The center of the pipe A is 60 cm above the pipe B. The height of oil in right limb is 50 cm. Also, the mercury level difference is found in right limb as 50 cm. Find the pressure difference between these two pipes in kPa. Also find the pressure equivalent in water head in mm. The difference of pressure between two pipes (PA- PB) (Unit is in kPa) = Equivalent to Water head in mm =
- Two pipes A & B carries an oil of specific gravities 0.9 & 1.2 respectively. The center of the pipe A is 50 cm above the pipe B. The height of oil in right limb is 25 cm. Also, the mercury level difference is found in right limb as 50 cm. Find the pressure difference between these two pipes in kPa. Also find the pressure equivalent in water head in mm. The difference of pressure between two pipes (PA-PB) (Unit is in kPa) = Equivalent to Water head in mm =The physical model of a pipe containing water with kinematic viscosity has been built in the scale of in a laboratory. i. Find the ratio of velocity of water in the main pipe with kinematic viscosity of to the model. ii. Discuss the difference in the velocities of the model and main pipe.Two pipes A & B carries an oil of specific gravities 0.9 & 1.2 respectively. The center of the pipe A is 55 cm above the pipe B. The height of oil in right limb is 50 cm. Also, the mercury level difference is found in right limb as 90 cm. Find the pressure difference between these two pipes in kPa. Also find the pressure equivalent in water head in mm. The difference of pressure between two pipes (PA-PB) (Unit is in kPa) = Equivalent to Water head in mm = *Make sure of the solution, I don't want a mistake
- •:) A SPHE RICAL BALLoON IS FILLED WITH HELIUM to A MAXIMUM DIAMETER OF 3¢4 AT A 6AGE PRESSURE OF 8.18 in Ha and 28 TEMPERATURE - FIND THE MASS OF THE HELIVM loNTA INED INSIDE THE BALLOON.Two pipes A & B carries an oil of specific gravities 0.9 & 1.2 respectively. The center of the pipe A is 55 cm above the pipe B. The height of oil in right limb is 50 cm. Also, the mercury level difference is found in right limb as 90 cm. Find the pressure difference between these two pipes in kPa. Also find the pressure equivalent in water head in mm. Make sure of the solution, I don't want a mistake 1) The difference of pressure between two pipes (PA-PB) (Unit is in kPa) = 2) Equivalent to Water head in mm =ii. If the surface tension of the drop be 42.27x103 N/m, find the pressure difference of the drop