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Recent questions tagged stress-and-strain-relationship
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GATE2019 CE-1: 6
An element is subjected to biaxial normal tensile strains of $0.0030$ and $0.0020$. The normal strain in the plane of maximum shear strain is Zero $0.0010$ $0.0025$ $0.0050$
Arjun
asked
in
Solid Mechanics
Feb 14, 2019
by
Arjun
11.6k
points
gate2019-ce-1
solid-mechanics
structural-engineering
stress-and-strain-relationship
0
votes
0
answers
2
GATE2019 CE-2: 39
When a specimen of $M25$ concrete is loaded to a stress level of $12.5 \: MPa$, a strain of $500 \times 10^{-6}$ is recorded. If this load is allowed to stand for a long time, the strain increases to $1000 \times 10^{-6}$. In ... with the provisions of $IS:456-2000$, considering the long-term effects, the effective modulus of elasticity of the concrete (in $MPa$) is _________
Arjun
asked
in
Solid Mechanics
Feb 12, 2019
by
Arjun
11.6k
points
gate2019-ce-2
numerical-answers
solid-mechanics
structural-engineering
stress-and-strain-relationship
0
votes
0
answers
3
GATE2014-2-6
Group I contains representative stress-strain curves as shown in the figure, while Group II gives the list of materials. Match the stress-strain curves with the corresponding materials. ... $P-3; \: Q - 1; \: R-2$ $P-3; \: Q - 2; \: R-1$
Milicevic3306
asked
in
Solid Mechanics
Mar 26, 2018
by
Milicevic3306
11.9k
points
gate2014-ce-2
solid-mechanics
structural-engineering
stress-and-strain-relationship
0
votes
0
answers
4
GATE Civil 2013 | Question: 8
The ‘plane section remains plane’ assumption in bending theory implies strain profile is linear stress profile is linear both strain and strain profiles are linear shear deformations are neglected
Milicevic3306
asked
in
Solid Mechanics
Mar 26, 2018
by
Milicevic3306
11.9k
points
gate2013-ce
solid-mechanics
structural-engineering
bending-theory
stress-and-strain-relationship
0
votes
0
answers
5
GATE2018 CE-1: 29
A plate in equilibrium is subjected to uniform stresses along its edges with magnitude $\sigma_{xx} = 30 MPa$ and $\sigma_{yy} = 50 MPa$ as shown in the figure. The Young's modulus of the material is $2 \times 10^{11} \: N/m^2$ and the Poisson's ratio is $0.3$ ... , then the strain $\varepsilon_{zz}$ $-120 \times 10^{-6}$ $-60 \times 10^{-6}$ $0.0$ $120 \times 10^{-6}$
gatecse
asked
in
Solid Mechanics
Feb 17, 2018
by
gatecse
4.0k
points
gate2018-ce-1
solid-mechanics
structural-engineering
equilibrium
stress-and-strain-relationship
youngs-modulus
poissons-ratio
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