4- Consider the system shown in the figure. If a change of P kPa in the pressure of air causes the brine- mercury interface in the right column to drop by d mm in the brine level in the right column while the pressure in the brine pipe remains constant, determine the ratio of A₂/A₁. P (kPa) d (mm) 6 Sum of last 2 digits of 35 YorkU ID# ending with 0, 2,4,6,8 Sum of last 2 digits of 45 YorkU ID# ending with 1, 3,5,7,9 7 Area, A₁ Air Water Mercury SG= 13.56 Brine pipe SG = 1.1 Area, A₂

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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4- Consider the system shown in the figure. If a change
of P kPa in the pressure of air causes the brine-
mercury interface in the right column to drop by d mm
in the brine level in the right column while the
pressure in the brine pipe remains constant, determine
the ratio of A₂/A₁.
P (kPa) d (mm)
6
Sum of last 2 digits of 35
YorkU ID# ending with 0,
2, 4, 6, 8
Sum of last 2 digits of 45
YorkU ID# ending with 1,
3,5,7,9
7
Area, A₁.
Air
Water
Mercury
SG = 13.56
Brine
pipe
SG = 1.1
Area, A₂
Transcribed Image Text:4- Consider the system shown in the figure. If a change of P kPa in the pressure of air causes the brine- mercury interface in the right column to drop by d mm in the brine level in the right column while the pressure in the brine pipe remains constant, determine the ratio of A₂/A₁. P (kPa) d (mm) 6 Sum of last 2 digits of 35 YorkU ID# ending with 0, 2, 4, 6, 8 Sum of last 2 digits of 45 YorkU ID# ending with 1, 3,5,7,9 7 Area, A₁. Air Water Mercury SG = 13.56 Brine pipe SG = 1.1 Area, A₂
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