Water with density Pwater = 1000 kg/m³, is transported in 30° circular pipe, inclined at an angle of 30°, relative to the horizontal plane. The readings of the connected liquid manometer, as shown on the figure, is h = 12 cm. The manometric fluid used is a mercury with density Pmercury = 13600 kg/m³. The temperature of both fluids is equal and is t = 20 °C. Find the pressure difference Ap = p1 – P2 in the both cross- 2m sections 1 and 2.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Water with density Pwater = 1000 kg/m³, is transported in
30° circular pipe, inclined at an angle of 30°, relative to the
horizontal plane. The readings of the connected liquid
manometer, as shown on the figure, is h = 12 cm. The
manometric fluid used is a mercury with density Pmercury = 13600
kg/m³. The temperature of both fluids is equal and is t = 20 °C.
Find the pressure difference Ap = p, – p, in the both cross-
h
sections 1 and 2.
****
Transcribed Image Text:Water with density Pwater = 1000 kg/m³, is transported in 30° circular pipe, inclined at an angle of 30°, relative to the horizontal plane. The readings of the connected liquid manometer, as shown on the figure, is h = 12 cm. The manometric fluid used is a mercury with density Pmercury = 13600 kg/m³. The temperature of both fluids is equal and is t = 20 °C. Find the pressure difference Ap = p, – p, in the both cross- h sections 1 and 2. ****
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