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vsolve this problem

Posted: Sun Jul 10, 2022 11:47 am
by answerhappygod
vsolve this problem
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Use the following filtered image to identify the elements in each deliverable. Clearly label and include a legend (if necessary, use more than one image). y Eave height 12.60m 8.75 m 7 spaces at 10.00 m 8.75 m 6 spaces at 10.17 m Ridge height 1413 m X
01.1 DELIVERABLE: Identify in GREEN the tension only vertical members of the LFRS in the positive x-direction. 01.2 DELIVERABLE: The diaphragm is a critical component of the LFRS. Identify in PURPLE/MAGENTA the tension only TRUSS diagonal members, in ORANGE the tension/compression TRUSS web members, in BLUE the tension/compression TRUSS chords in the load path for wind and seismic loads in the positive x-direction.
01.3 DELIVERABLE: Draw arrows indicating point loads transferred from the wind columns to the diaphragm for wind loads in positive x-direction. 01.4 DELIVERABLE: Draw a single arrow at the center of mass idealizing the point/direction at which seismic inertial loads in the positive x-direction are generated and draw a spider web indicating the diaphragm tying all the roof nodes together (assume perfect symmetry of loads and masses).
01.5 DELIVERABLE: Identify in YELLOW the tension only vertical members of the LFRS in the positive y-direction. 01.6 DELIVERABLE: The diaphragm is a critical component of the LFRS. Identify in PURPLE/MAGENTA the tension only TRUSS diagonal members, in BLUE the tension/compression TRUSS web members, in ORANGE the tension/compression TRUSS chords in the load path for wind and seismic loads in the positive y-direction.
01.7 DELIVERABLE: Draw arrows indicating point loads transferred from the wind columns to the diaphragm for wind loads in positive y-direction 01.8 DELIVERABLE: Draw a single arrow at the center of mass idealizing the point/direction at which seismic inertial loads in the positive y-direction are generated and draw a spider web indicating the diaphragm tying all the roof nodes together (assume perfect symmetry of loads and masses).