Task (1) You are a structural Engineer who works in Dar Al Handasah company. Your direct manager has called for a meeting and provided you with the below schematic design of a concrete beam that might be implemented at one of the sites. You were requested to calculate the following: ( make 15 KN bold) Figure 1: Concrete Beam Find the equivalent forces of the disturbed loads. Apply the moment equations in the equilibrium state to find the value of the reaction forces at points A and B. If the given beam in Figure 1 compressed to be 19.98 meter where the original tempreture was ?1=200 ?, find the temperature (T2) after the compression.
Task (1) You are a structural Engineer who works in Dar Al Handasah company. Your direct manager has called for a meeting and provided you with the below schematic design of a concrete beam that might be implemented at one of the sites. You were requested to calculate the following: ( make 15 KN bold) Figure 1: Concrete Beam Find the equivalent forces of the disturbed loads. Apply the moment equations in the equilibrium state to find the value of the reaction forces at points A and B. If the given beam in Figure 1 compressed to be 19.98 meter where the original tempreture was ?1=200 ?, find the temperature (T2) after the compression.
International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter6: Beams And Cables
Section: Chapter Questions
Problem 6.42P: For the beam AB shown in Cases 1 and 2, derive and plot expressions for the shear force and bending...
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Task (1)
You are a structural Engineer who works in Dar Al Handasah company. Your direct manager has called for a meeting and provided you with the below schematic design of a concrete beam that might be implemented at one of the sites. You were requested to calculate the following: ( make 15 KN bold)
Figure 1: Concrete Beam
- Find the equivalent forces of the disturbed loads.
- Apply the moment equations in the equilibrium state to find the value of the reaction forces at points A and B.
- If the given beam in Figure 1 compressed to be 19.98 meter where the original tempreture was ?1=200 ?, find the temperature (T2) after the compression.
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