Figure 1 m C Im B 30 mm 2 m 20 mm 30 mm The factor of safety with respect to buckling of member AB is F. S. = 2.75. (Figure 1) Assume that AB is made of steel and is pinned at its ends for z-axis buckling and fixed at its ends for y-y axis buckling. E=200 GPa, y = 380 MPa. Part A Determine the maximum allowable load P that can be applied to member BC without causing member AB to buckle. Express your answer to three significant figures and include appropriate units. for Part A for Partye do for Part redo for Part A. ree for Part A keyboard shortcuts for Part A help for Part A P = Value Submit Request Answer Units

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Figure
1 m
C
Im
B
30 mm
2 m
20 mm
30 mm
Transcribed Image Text:Figure 1 m C Im B 30 mm 2 m 20 mm 30 mm
The factor of safety with respect to buckling of member AB is F. S. = 2.75. (Figure 1) Assume that
AB is made of steel and is pinned at its ends for z-axis buckling and fixed at its ends for y-y
axis buckling. E=200 GPa, y = 380 MPa.
Part A
Determine the maximum allowable load P that can be applied to member BC without causing member AB to buckle.
Express your answer to three significant figures and include appropriate units.
for Part A for Partye do for Part redo for Part A. ree for Part A keyboard shortcuts for Part A help for Part A
P =
Value
Submit
Request Answer
Units
Transcribed Image Text:The factor of safety with respect to buckling of member AB is F. S. = 2.75. (Figure 1) Assume that AB is made of steel and is pinned at its ends for z-axis buckling and fixed at its ends for y-y axis buckling. E=200 GPa, y = 380 MPa. Part A Determine the maximum allowable load P that can be applied to member BC without causing member AB to buckle. Express your answer to three significant figures and include appropriate units. for Part A for Partye do for Part redo for Part A. ree for Part A keyboard shortcuts for Part A help for Part A P = Value Submit Request Answer Units
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