5.8-6) A cantilever beam of length L = 2 m sup- ports a load P = 8.0 kN (see figure). The beam is made of wood with cross-sectional dimensions 120 mm X 200 mm. Calculate the shear stresses due to the load P at points located 25 mm, 50 mm, 75 mm, and 100 mm from the top surface of the beam. From these results, plot a graph showing the distribution of shear stresses from top to bottom of the beam. P = 8.0 kN 200 mm L = 2 m 120 mm PROBLEM 5.8-6

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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5.8-6) A cantilever beam of length L = 2 m sup-
ports a load P = 8.0 kN (see figure). The beam
is made of wood with cross-sectional dimensions
120 mm X 200 mm.
Calculate the shear stresses due to the load P at
points located 25 mm, 50 mm, 75 mm, and 100 mm
from the top surface of the beam. From these results,
plot a graph showing the distribution of shear stresses
from top to bottom of the beam.
P = 8.0 kN
200 mm
L = 2 m
120 mm
PROBLEM 5.8-6
Transcribed Image Text:5.8-6) A cantilever beam of length L = 2 m sup- ports a load P = 8.0 kN (see figure). The beam is made of wood with cross-sectional dimensions 120 mm X 200 mm. Calculate the shear stresses due to the load P at points located 25 mm, 50 mm, 75 mm, and 100 mm from the top surface of the beam. From these results, plot a graph showing the distribution of shear stresses from top to bottom of the beam. P = 8.0 kN 200 mm L = 2 m 120 mm PROBLEM 5.8-6
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