Solve the following problem of a steel tensile plate with a concentrated load applied at the top, as shown below. Determine at what depth the effect of the load dies out. Plot stress oy versus distance from the load. At distances of 1 in., 2 in., 4 in., 6 in., 10 in., 15 in., 20 in., and 30 in. from the load, list oy versus these distances. Let the width of the plate be b = 4 in., thickness of the plate be t = 0.25 in., and length be in. Look up the concept of St. Venant's principle to see how it explains the stress behavior in this problem.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Solve the following problem of a steel tensile plate with a concentrated load applied at
the top, as shown below. Determine at what depth the effect of the load dies out. Plot
stress oy versus distance from the load. At distances of 1 in., 2 in., 4 in., 6 in., 10 in., 15
in., 20 in., and 30 in. from the load, list oy versus these distances. Let the width of the
plate be b = 4 in., thickness of the plate be t = 0.25 in., and length be in. Look up the
concept of St. Venant's principle to see how it explains the stress behavior in this
problem.
L
P = 1000 lb
NUMI - E
бу
bt
Oy bt
6
Gy
=
=
P
bt
Transcribed Image Text:Solve the following problem of a steel tensile plate with a concentrated load applied at the top, as shown below. Determine at what depth the effect of the load dies out. Plot stress oy versus distance from the load. At distances of 1 in., 2 in., 4 in., 6 in., 10 in., 15 in., 20 in., and 30 in. from the load, list oy versus these distances. Let the width of the plate be b = 4 in., thickness of the plate be t = 0.25 in., and length be in. Look up the concept of St. Venant's principle to see how it explains the stress behavior in this problem. L P = 1000 lb NUMI - E бу bt Oy bt 6 Gy = = P bt
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