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GATE2015-1-19
0
votes
Which one of the following is the most conservative fatigue failure criterion?
Soderberg
Modified Goodman
ASME Elliptic
Gerber
gateme-2015-set1
applied-mechanics-and-design
mechanics-of-materials
asked
Feb 24, 2017
in
Applied Mechanics and Design
♦
Arjun
24.6k
points
recategorized
Mar 4
by
♦
Lakshman Patel RJIT
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GATE2015-1-44
A cantilever beam with flexural rigidity of $200$ $N.m^2$ is loaded as shown in the figure. The deflection (in $mm$) at the tip of the beam is _______
A cantilever beam with flexural rigidity of $200$ $N.m^2$ is loaded as shown in the figure. The deflection (in $mm$) at the tip of the beam is _______
asked
Feb 24, 2017
in
Applied Mechanics and Design
Arjun
24.6k
points
gateme-2015-set1
numerical-answers
applied-mechanics-and-design
mechanics-of-materials
deflection-of-beams
0
votes
0
answers
GATE2015-1-43
A machine element is subjected to the following bi-axial state of stress: $\sigma _x$ = $80$ $MPa$; $\sigma _y$ = 20 MPa; $\tau _{xy}$ = $40$ $MPa$. If the shear strength of the material is $100$ $MPa$, the factor of safety as per Tresca’s maximum shear stress theory is $1.0$ $2.0$ $2.5$ $3.3$
A machine element is subjected to the following bi-axial state of stress: $\sigma _x$ = $80$ $MPa$; $\sigma _y$ = 20 MPa; $\tau _{xy}$ = $40$ $MPa$. If the shear strength of the material is $100$ $MPa$, the factor of safety as per Tresca’s maximum shear stress theory is $1.0$ $2.0$ $2.5$ $3.3$
asked
Feb 24, 2017
in
Applied Mechanics and Design
Arjun
24.6k
points
gateme-2015-set1
applied-mechanics-and-design
mechanics-of-materials
shear-stress
0
votes
0
answers
GATE2015-1-20
Which one of the following types of stress-strain relationship best describes the behaviour of brittle materials, such as ceramics and thermosetting plastics, ($\sigma$ = stress and $\varepsilon$ = strain)?
Which one of the following types of stress-strain relationship best describes the behaviour of brittle materials, such as ceramics and thermosetting plastics, ($\sigma$ = stress and $\varepsilon$ = strain)?
asked
Feb 24, 2017
in
Applied Mechanics and Design
Arjun
24.6k
points
gateme-2015-set1
applied-mechanics-and-design
mechanics-of-materials
stress-strain
0
votes
0
answers
GATE2015-1-17
Consider a steel (Young’s modulus $E$ = $200 \: GPa$) column hinged on both sides. Its height is $1.0 \: m$ and cross-section is $10 \: mm \times 20$ $mm$. The lowest Euler critical buckling load (in $N$) is __________
Consider a steel (Young’s modulus $E$ = $200 \: GPa$) column hinged on both sides. Its height is $1.0 \: m$ and cross-section is $10 \: mm \times 20$ $mm$. The lowest Euler critical buckling load (in $N$) is __________
asked
Feb 24, 2017
in
Applied Mechanics and Design
Arjun
24.6k
points
gateme-2015-set1
numerical-answers
applied-mechanics-and-design
mechanics-of-materials
0
votes
0
answers
GATE2015-1-15
Consider a stepped shaft subjected to a twisting moment applied at $B$ as shown in the figure. Assume shear modulus, $G$ = $77$ $GPa$. The angle of twist at $C$ (in degrees) is __________
Consider a stepped shaft subjected to a twisting moment applied at $B$ as shown in the figure. Assume shear modulus, $G$ = $77$ $GPa$. The angle of twist at $C$ (in degrees) is __________
asked
Feb 24, 2017
in
Applied Mechanics and Design
Arjun
24.6k
points
gateme-2015-set1
numerical-answers
applied-mechanics-and-design
mechanics-of-materials
deflection-of-beams
...