Exercise 8.4. The figure shows a test specimen loaded in compression by the force P = 1 kN. The cross section is rect- angular with width b = 100 mm and thickness t = 50 mm. The figure shows a section inclined by 0 = 30° relative to the cross section. At this section the stress distribution is assumed to be homogeneous. a) Determine the axial stress σ on the inclined section. P| b) Determine the shear stress 7 on the inclined section. -t- Exercise 8.5 The 0 b-

Structural Analysis
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Chapter2: Loads On Structures
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Exercise 8.4. The figure shows a test specimen loaded in
compression by the force P = 1 kN. The cross section is rect-
angular with width b = 100 mm and thickness t = 50 mm. The
figure shows a section inclined by 0 = 30° relative to the cross
section. At this section the stress distribution is assumed to
be homogeneous.
a) Determine the axial stress σ on the inclined section.
P|
b) Determine the shear stress 7 on the inclined section.
-t-
Exercise 8.5 The
0
b-
Transcribed Image Text:Exercise 8.4. The figure shows a test specimen loaded in compression by the force P = 1 kN. The cross section is rect- angular with width b = 100 mm and thickness t = 50 mm. The figure shows a section inclined by 0 = 30° relative to the cross section. At this section the stress distribution is assumed to be homogeneous. a) Determine the axial stress σ on the inclined section. P| b) Determine the shear stress 7 on the inclined section. -t- Exercise 8.5 The 0 b-
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