17-11. The A-36 steel angle has a cross-sectional area of A = 1550 mm and a radius of gyration about the x axis of r, = 31.5 mm and about the y axis of r, = 21.975 mm. The smallest radius of gyration occurs about the z axis and is r; = 16.1 mm. If the angle is to be used as a pin-connected 3-m-long column, determine the largest axial load that can be applied through its centroid C without causing it to buckle.

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter8: Centroids And Distributed Loads
Section: Chapter Questions
Problem 8.75P
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17-11. The A-36 steel angle has a cross-sectional area of
A = 1550 mm and a radius of gyration about the x axis of
r, = 31.5 mm and about the y axis of r, = 21.975 mm. The
smallest radius of gyration occurs about the z axis and is
r; = 16.1 mm. If the angle is to be used as a pin-connected
3-m-long column, determine the largest axial load that can
be applied through its centroid C without causing it to buckle.
Transcribed Image Text:17-11. The A-36 steel angle has a cross-sectional area of A = 1550 mm and a radius of gyration about the x axis of r, = 31.5 mm and about the y axis of r, = 21.975 mm. The smallest radius of gyration occurs about the z axis and is r; = 16.1 mm. If the angle is to be used as a pin-connected 3-m-long column, determine the largest axial load that can be applied through its centroid C without causing it to buckle.
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