Determine the pressure difference between points A and B in Fig. 2-51. I Pa+ [(0.88)(9.79)](0.21) – [(13.6)(9.79)](0.09) – [(0.82)(9.79)](0.41 – 0.09) + (9.79)(0.41 – 0.15) – (0.0118)(0.10)=P. PA-Pa = 10.2 kPa Kerosene Air Fom 10 cm 21cm 9cm 15 cm Benzene Mercury Fig. 2-51 Water

Structural Analysis
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Chapter2: Loads On Structures
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1.26 Please help explain the solution and what theories used thanks!
Determine the pressure difference between points A and B in Fig. 2-51.
I Pa+ [(0.88)(9.79)](0.21) – [(13.6)(9.79)](0.09) – [(0.82)(9.79)](0.41 – 0.09)
+ (9.79)(0.41 – 0.15) – (0.0118)(0.10) = P.
PA-P= 10.2 kPa
Kerosene
Air
T.
10 cm
cm
21cm
9cm
15 cm
Benzene
Mercury
Fig. 2-51
Water
Transcribed Image Text:Determine the pressure difference between points A and B in Fig. 2-51. I Pa+ [(0.88)(9.79)](0.21) – [(13.6)(9.79)](0.09) – [(0.82)(9.79)](0.41 – 0.09) + (9.79)(0.41 – 0.15) – (0.0118)(0.10) = P. PA-P= 10.2 kPa Kerosene Air T. 10 cm cm 21cm 9cm 15 cm Benzene Mercury Fig. 2-51 Water
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