a) Find the location of the shear center for a beam with the cross-section shown in Fig. 6. All dimensions are in mm. Here, ID = Last Three Digits of Student ID. Id:19.02.03.061 SC e*150 mm Fig. 6 b) The radius of a cylindrical water reservoir is 1500 mm and its wall thickness is 12 mm. If the height of water in the tank is (30+0.1*ID) m, (a) Determine the hoop and longitudinal stresses at the bottom of the cylindrical wall caused by an internal pressure exerted by water (b) Calculate the change in radius of the tank caused by pressurization. Given, E= 180 GPa, v = 0.25 and unit weight of water is 9.81 kN/m'. Here, ID = Last Three Digits of Student ID. +8 mm (300+ID) mm

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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a) Find the location of the shear center for a beam with the cross-section shown in Fig. 6. All
dimensions are in mm.
Here, ID = Last Three Digits of Student ID.
Id:19.02.03.061
SC
e*150 mm
Fig. 6
b) The radius of a cylindrical water reservoir is 1500 mm and its wall thickness is 12 mm. If
the height of water in the tank is (30+0.1*ID) m, (a) Determine the hoop and longitudinal
stresses at the bottom of the cylindrical wall caused by an internal pressure exerted by
water (b) Calculate the change in radius of the tank caused by pressurization. Given, E=
180 GPa, v = 0.25 and unit weight of water is 9.81 kN/m³.
Here, ID = Last Three Digits of Student ID.
+-8 mm
(300+ID) mm
Transcribed Image Text:a) Find the location of the shear center for a beam with the cross-section shown in Fig. 6. All dimensions are in mm. Here, ID = Last Three Digits of Student ID. Id:19.02.03.061 SC e*150 mm Fig. 6 b) The radius of a cylindrical water reservoir is 1500 mm and its wall thickness is 12 mm. If the height of water in the tank is (30+0.1*ID) m, (a) Determine the hoop and longitudinal stresses at the bottom of the cylindrical wall caused by an internal pressure exerted by water (b) Calculate the change in radius of the tank caused by pressurization. Given, E= 180 GPa, v = 0.25 and unit weight of water is 9.81 kN/m³. Here, ID = Last Three Digits of Student ID. +-8 mm (300+ID) mm
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