3. A differential manometer is attached to two tanks, as shown in figure. A) Calculate the difference in pressure of the two chamber B) Calculate the absolute pressure at A if the chamber B is open to atmosphere C) Calculate the pressure at the interface of the oil and mercury if the pressure at point A is 45 kPa Chamber A 1.1 m oil sg=0.89 0.30 m mercury Chamber B B tetrachloride sg= 1.59 0.8 m
3. A differential manometer is attached to two tanks, as shown in figure. A) Calculate the difference in pressure of the two chamber B) Calculate the absolute pressure at A if the chamber B is open to atmosphere C) Calculate the pressure at the interface of the oil and mercury if the pressure at point A is 45 kPa Chamber A 1.1 m oil sg=0.89 0.30 m mercury Chamber B B tetrachloride sg= 1.59 0.8 m
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question
![3. A differential manometer is attached to two tanks, as shown in figure.
A) Calculate the difference in pressure of the two chamber
B) Calculate the absolute pressure at A if the chamber B is open to atmosphere
C) Calculate the pressure at the interface of the oil and mercury if the pressure at point A is 45 kPa
Chamber A
1.1 m
oil
sg=0.89
0.30 m
mercury
Chamber B
B
tetrachloride
sg= 1.59
0.8 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc4ceda0a-3400-4c37-a03d-f703f0107e08%2F5ec9403b-73d2-4add-8279-fe3d09cf55d5%2F9a5j17n_processed.png&w=3840&q=75)
Transcribed Image Text:3. A differential manometer is attached to two tanks, as shown in figure.
A) Calculate the difference in pressure of the two chamber
B) Calculate the absolute pressure at A if the chamber B is open to atmosphere
C) Calculate the pressure at the interface of the oil and mercury if the pressure at point A is 45 kPa
Chamber A
1.1 m
oil
sg=0.89
0.30 m
mercury
Chamber B
B
tetrachloride
sg= 1.59
0.8 m
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