a. Explain the law of hydrostatic pressure that most comprehensively describes the operation of a U-tube manometer. b. An inverted differential manometer, when connected to two pipes A and B, gives the readings shown in Fig. 1. Determine the pressure in pipe B in Pascals, if the pressure in tube A is 10 m of water. Oil of 0.15 m s.g. 0.8 0.5 m 0'Bm Oil s.g. 0.9 Water Fig. 1

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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а.
Explain the law of hydrostatic pressure that most comprehensively describes the
operation of a U-tube manometer.
b. An inverted differential manometer, when connected to two pipes A and B, gives the
readings shown in Fig. 1. Determine the pressure in pipe B in Pascals, if the pressure
in tube A is 10 m of water.
Oil of
0.15 m sg. 0.8
0.5 m
0'8m
Oil s.g. 0.9
Water
Fig. 1
Transcribed Image Text:а. Explain the law of hydrostatic pressure that most comprehensively describes the operation of a U-tube manometer. b. An inverted differential manometer, when connected to two pipes A and B, gives the readings shown in Fig. 1. Determine the pressure in pipe B in Pascals, if the pressure in tube A is 10 m of water. Oil of 0.15 m sg. 0.8 0.5 m 0'8m Oil s.g. 0.9 Water Fig. 1
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