A rod of length L having uniform cross-sectional area A is subjected to a tensile force P as shown in the figure below. If the Young's modulus of the material varies linearly from E, to E, along the length of the rod, the normal stress developed at the section S-S is E₁₁ P - L/2- L -S -S E2 P
A rod of length L having uniform cross-sectional area A is subjected to a tensile force P as shown in the figure below. If the Young's modulus of the material varies linearly from E, to E, along the length of the rod, the normal stress developed at the section S-S is E₁₁ P - L/2- L -S -S E2 P
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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
Transcribed Image Text:A rod of length L having uniform cross-sectional
area A is subjected to a tensile force P as shown
in the figure below. If the Young's modulus of the
material varies linearly from E₁ to E, along the
length of the rod, the normal stress developed at
the section S-S is
P-
S
E₁
I
L/2-
S
- L-
E₂
-P
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