The wide flange beam is subjected to a vertical shear force of 40 kN. The cross- section of the beam is shown in the figure below. O is the centroid of the cross-section and the moment of inertia is INA = 246 x (10-6) m4. Determine the shear stress at point B (considered located in the web part). 200 mm A 40 mm B 200 mm 40 mm C D 200 mm 20 mm Flange Web

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter6: Stresses In Beams (advanced Topics)
Section: Chapter Questions
Problem 6.10.1P: Determine the shape factor f for a cross section in the shape of a double trapezoid having the...
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The wide flange beam is subjected to a
vertical shear force of 40 kN. The cross-
section of the beam is shown in the figure
below.
O is the centroid of the cross-section and
the moment of inertia is INA = 246 x (10-6)
m4.
Determine the shear stress at point B
(considered located in the web part).
200 mm
A
40 mm
B
200 mm
40 mm
C
D
200 mm
20 mm
Flange
Web
Transcribed Image Text:The wide flange beam is subjected to a vertical shear force of 40 kN. The cross- section of the beam is shown in the figure below. O is the centroid of the cross-section and the moment of inertia is INA = 246 x (10-6) m4. Determine the shear stress at point B (considered located in the web part). 200 mm A 40 mm B 200 mm 40 mm C D 200 mm 20 mm Flange Web
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