Elements Of Electromagnetics
7th Edition
ISBN: 9780190698614
Author: Sadiku, Matthew N. O.
Publisher: Oxford University Press
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- Water is flowing in a metal pipe. The pipe OD (outside diameter) is 61 cm. The pipe length is 120 m. The pipe wall thickness is 0.9 cm. The empty weight of the metal pipe is 2500 N/m. In kN, what is the total weight (pipe plus water)?arrow_forwardAn open tank contains water up to a depth of 1.2m from the bottom and above it mercury for a depth of 0.7m and above it an oil of specific gravity 0.8 for a depth of 1.1m. Assume the atmospheric pressure is 1 bar. Find the gauge pressure and absolute pressure i) at the bottom of the container, ii) at the interface of water and mercury and iii) at the interface of an oil and mercury.arrow_forwardQ5) The total pressure in a gas pipeline is to be maintained at three times atmospheric pressure. Figure 3 shows the cross-sectional area of the pipeline that is connected to a manometer filled with mercury. An inspector measures a difference of 1.25 m between the two columns of mercury. Is the gas pressure being maintained at the desired value? The density of mercury is 13600 kg/m³. open to the atmosphere B A a - gas of density P. at pressure P fluid of density P,arrow_forward
- a bubble from the bottom of the river is 2 cubic feet diameter while it rises at the surface of the water from a depth of 20 feet, what is the volume/size of the bubble when it reaches the surface of the water? this is the complete question given.arrow_forward86 N/cm"] 11. A single column vertical manometer (ie., micrometer) is connected to a pipe containing oil of sp. gr. 0.9. The area of the reservoir is 80 times the area of the manometer tube. The reservoir contains mercury of sp. gr. 13.6. The level of mercury in the reservoir is at a height of 30 cm below the centre of the pipe and difference of mercury levels in the reservoir and right linb is 50 cm. Find the pressure in the pipe. (Ans. 6.474 N/em) 12. A pipe contains an oil of sp. gr. 0.8. A differential manometer connected at the two points A and B of the pipe shows a difference in mercury level as 20 cm. Find the difference of pressure at the two paints. [Ans. 25113.6 N/m³) 13. A U-tube differential manometer connects two pressure pipes A and B. Pipe A contains carbon tetrachlo- ride having a specific gravity 1.594 under a pressure of 11.772 N/cm and pipe B contains oil of sp. gr. 0.8 under a pressure of 11.772 N/cm. The pipe A lies 2.5 m above pipe B. Find the difference of…arrow_forwardThe pressure of water in a pipeline was measured by means of a simple manometer containing mercury. The mercury level in the open tube is 175 mm higher than that of the left tube. The height of water in the left tube is 37mm. Determine the static pressure in the pipe in a).kN/m². b) Head of water in meters, The static pressure in the pipe in kN/m2 Head of water in meters =arrow_forward
- 1. Two pipes A & B caries an oil of specific gravities 0.9 & 1.2 respectively. The center of the pipe A is 75 cm above the pipe B. The height of oil in right limb is 35 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. The difference of pressure between two pipes (PA-Pa) (Unit is in kPa) = B. Equivalent to Water head in mm =arrow_forwardQ1: From Figure 1, the tube and the tank are open to the atmosphere. If L is 2.13 m, what is the angle of tilt 0 of the tube? Oil 50 cm Figure 1 SG = 0.8 Water 50 cm SG = 1.0arrow_forward1. The system as shown in Fig.1. The gauge pressure at the bottom of the tank is 242 kPa. what is the specific gravity of fluid X? Water 2 m Fluid X 3 m Mercury 0.5 m Fig.1arrow_forward
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