1. Compute the pressure @ point n ( Pn ) as shown by the differential manometer in KPa if pressure @ point m ( Pm ) is equal 1027.66 mm Hg. air plpelne where: - 12 D=3.2 C- 4.0 d- 12 mercury density (16 300 kam") water pipeline

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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1. Compute the pressure @ point n ( P. ) as shown by the differential manometer in KPa
if pressure @ point m ( Pm ) is equal 1027.66 mm Hg.
air
plpeline
where:
a= 12"
b= 3.2
C-4.0
d- 12
mercury
density (16 300 kgm')
water
Pipeline
Transcribed Image Text:1. Compute the pressure @ point n ( P. ) as shown by the differential manometer in KPa if pressure @ point m ( Pm ) is equal 1027.66 mm Hg. air plpeline where: a= 12" b= 3.2 C-4.0 d- 12 mercury density (16 300 kgm') water Pipeline
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