An aluminium rod is fixed at its base and free at the top as shown in Figure 1. If the imposed eccentric load is P = 200 kN, determine the greatest allowable length, L, of the rod so it does not buckle or yield. The elastic modulus of the material is 72 GPa and the yield stress is 410 MPa. 5 mm 200 mm Figure P L 1 (not to scale)
An aluminium rod is fixed at its base and free at the top as shown in Figure 1. If the imposed eccentric load is P = 200 kN, determine the greatest allowable length, L, of the rod so it does not buckle or yield. The elastic modulus of the material is 72 GPa and the yield stress is 410 MPa. 5 mm 200 mm Figure P L 1 (not to scale)
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Transcribed Image Text:An aluminium rod is fixed at its base and free at the top as shown in
Figure 1. If the imposed eccentric load is P = 200 kN, determine the
greatest allowable length, L, of the rod so it does not buckle or yield. The
elastic modulus of the material is 72 GPa and the yield stress is 410
MPa.
5 mm
200 mm
Figure
P
L
1 (not to scale)
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