Determine the force in each member of the  truss, and state if the member is in tension or compression. Express your answer to three significant figures and include the appropriate units. Assume positive scalars for members in tension and negative scalars for members in compression.    In (Figure 1), P = 1400 lb.  a) Force HG  b) Force HE   c) Force DE

Elements Of Electromagnetics
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Determine the force in each member of the  truss, and state if the member is in tension or compression.
Express your answer to three significant figures and include the appropriate units. Assume positive scalars for members in tension and negative scalars for members in compression. 
 
In (Figure 1), P = 1400 lb. 
a) Force HG 
b) Force HE  
c) Force DE
The image depicts a truss structure labeled with points K, J, I, H, G, F, E, D, C, B, A. The structure is supported by two points, A and F. 

- The vertical distance from point A to K at the left edge is 4 feet.
- Points B, C, D, and E are positioned below the horizontal line, each separated by 3 feet horizontally.
- There are forces, denoted by "P," acting downward at points B, C, D, E, and F.

The truss features a series of triangular components, providing stability and distributing load. This structure is commonly used in bridges and roofs due to its efficient load-bearing characteristics. Each segment between points vertically and horizontally combines to reinforce the integrity of the truss under the applied loads.
Transcribed Image Text:The image depicts a truss structure labeled with points K, J, I, H, G, F, E, D, C, B, A. The structure is supported by two points, A and F. - The vertical distance from point A to K at the left edge is 4 feet. - Points B, C, D, and E are positioned below the horizontal line, each separated by 3 feet horizontally. - There are forces, denoted by "P," acting downward at points B, C, D, E, and F. The truss features a series of triangular components, providing stability and distributing load. This structure is commonly used in bridges and roofs due to its efficient load-bearing characteristics. Each segment between points vertically and horizontally combines to reinforce the integrity of the truss under the applied loads.
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