Solution: i) Air Pressure at B (in Pa) = ii) Pressure above X- X in the right tube (in Pa) iii) Pressure of Mercury above X-X in the left tube (in Pa) = iv) Absolute Pressure at A (in Pa) =

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A differential manometer is connected at
the two points A and B as shown. At B air
pressure is 9.827 N/cm2 (abs), find the
absolute pressure at A using the following
data.
- Specific Gravity of oil as 0.81; - Distance, C =
22 cm; - Distance, D = 106 mm; Distance, E =
0.98 m.
AIR
WATER
:A
E
OIL
I MERCURY
Sp. gr. = 13.6
rururun
Transcribed Image Text:A differential manometer is connected at the two points A and B as shown. At B air pressure is 9.827 N/cm2 (abs), find the absolute pressure at A using the following data. - Specific Gravity of oil as 0.81; - Distance, C = 22 cm; - Distance, D = 106 mm; Distance, E = 0.98 m. AIR WATER :A E OIL I MERCURY Sp. gr. = 13.6 rururun
Solution:
i) Air Pressure at B (in Pa) =
ii) Pressure above X - X in the right tube (in Pa)
iii) Pressure of Mercury above X-X in the left
tube (in Pa) =
iv) Absolute Pressure at A (in Pa) =
Transcribed Image Text:Solution: i) Air Pressure at B (in Pa) = ii) Pressure above X - X in the right tube (in Pa) iii) Pressure of Mercury above X-X in the left tube (in Pa) = iv) Absolute Pressure at A (in Pa) =
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