Problem 1. Consider the T-beam as shown in the figure. a) Determine the maximum shear stress at the critical section where the internal shear force is the maximum. b) Determine the maximum shear stress at point C. Sketch the shear stress distribution along the depth of the beam. 10 kN/m A 3 m 1.5 m 150 mm C 150 mm 30 mm 30 mm B 1.5 m
Problem 1. Consider the T-beam as shown in the figure. a) Determine the maximum shear stress at the critical section where the internal shear force is the maximum. b) Determine the maximum shear stress at point C. Sketch the shear stress distribution along the depth of the beam. 10 kN/m A 3 m 1.5 m 150 mm C 150 mm 30 mm 30 mm B 1.5 m
Principles of Foundation Engineering (MindTap Course List)
8th Edition
ISBN:9781305081550
Author:Braja M. Das
Publisher:Braja M. Das
Chapter6: Vertical Stress Increase In Soil
Section: Chapter Questions
Problem 6.4P: Refer to Figure P6.4. A strip load of q = 900 lb/ft2 is applied over a width B = 36 ft. Determine...
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
Transcribed Image Text:Problem 1. Consider the T-beam as shown in the figure.
a) Determine the maximum shear stress at the critical section where the internal shear force
is the maximum.
b) Determine the maximum shear stress at point C. Sketch the shear stress distribution along
the depth of the beam.
10 kN/m
A
3 m
1.5 m
150 mm
C
150 mm
30 mm
30 mm
B
1.5 m
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