QUESTION 1 A Z-section beam of 2 m long and is supported as a cantilever with a 1 kN load at the free end. The direction of the 1 kN load relative to the beam section is at an angle 0 = 30° as shown in Figure 1. Determine the maximum tensile and compressive stresses on the section, and the orientation of the neutral axis. 60 10 -10 100 1 kN 10 60 (All dimensions in mm) y Figure 1
QUESTION 1 A Z-section beam of 2 m long and is supported as a cantilever with a 1 kN load at the free end. The direction of the 1 kN load relative to the beam section is at an angle 0 = 30° as shown in Figure 1. Determine the maximum tensile and compressive stresses on the section, and the orientation of the neutral axis. 60 10 -10 100 1 kN 10 60 (All dimensions in mm) y Figure 1
Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter5: Stresses In Beams (basic Topics)
Section: Chapter Questions
Problem 5.12.18P: A short column with a wide-flange shape is subjected to a compressive load that produces a resultant...
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![QUESTION 1
A Z-section beam of 2 m long and is supported as a cantilever with a 1 kN
load at the free end. The direction of the 1 kN load relative to the beam section
is at an angle 0 = 30° as shown in Figure 1. Determine the maximum tensile
and compressive stresses on the section, and the orientation of the neutral
axis.
60
10
10
100
1 kN
10
60
(All dimensions in mm)
y
Figure 1](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4ef1eeef-5275-4cee-9b8b-a8bea1e65c36%2F75402c65-7cce-49a0-824d-87353826442d%2Ft88q6jm_processed.jpeg&w=3840&q=75)
Transcribed Image Text:QUESTION 1
A Z-section beam of 2 m long and is supported as a cantilever with a 1 kN
load at the free end. The direction of the 1 kN load relative to the beam section
is at an angle 0 = 30° as shown in Figure 1. Determine the maximum tensile
and compressive stresses on the section, and the orientation of the neutral
axis.
60
10
10
100
1 kN
10
60
(All dimensions in mm)
y
Figure 1
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