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I applied via Referral and was interviewed before Oct 2021. There was 1 interview round.
Stress is the force per unit area, Poisson's ratio is the ratio of lateral to axial strain, and endurance limit is the maximum stress a material can withstand without breaking after a certain number of cycles.
Stress is the measure of the internal forces acting within a material, which can cause deformation or failure.
Poisson's ratio is a measure of a material's ability to deform in response to an applied force, and is ...
Stiffness varies with material, geometry, and loading conditions.
Stiffness is the ability of a material to resist deformation under load.
Materials with higher Young's modulus have higher stiffness.
Stiffness also depends on the geometry of the structure.
For example, a thicker beam will be stiffer than a thinner beam.
Loading conditions such as the magnitude and direction of the load also affect stiffness.
For instance, a ...
Deflection of a material/component can be determined by analyzing its stress and strain under a load.
Calculate the stress and strain of the material/component
Use the material's Young's modulus to determine its stiffness
Apply the load and calculate the resulting deflection using the stiffness and stress/strain
Consider any external factors that may affect the deflection, such as temperature or moisture
Use simulation soft...
Young's modulus of steel is around 200 GPa.
Young's modulus is a measure of the stiffness of a material.
It is defined as the ratio of stress to strain within the elastic limit.
Steel has a high Young's modulus, making it a strong and rigid material.
The value of Young's modulus for steel can vary depending on the specific type and grade of steel.
For example, the Young's modulus of mild steel is around 200 GPa, while for h
The material with lower Young's modulus will deflect more.
Young's modulus determines the stiffness of a material.
The material with lower Young's modulus will have more deflection under the same force.
For example, rubber has a lower Young's modulus than steel and will deflect more under the same force.
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Mechanical Engineering offers a diverse range of opportunities to apply scientific principles to solve real-world problems.
Mechanical Engineering provides a strong foundation in math, physics, and materials science.
It offers a wide range of career opportunities in various industries such as automotive, aerospace, and manufacturing.
Mechanical Engineers design and develop machines, tools, and systems that improve our dai...
I am interested in this profile because of my passion for finance and my experience in the banking industry.
I have a degree in finance and have worked in the banking industry for 5 years.
I am passionate about helping clients achieve their financial goals.
I have experience in managing portfolios and analyzing financial data.
I am excited about the opportunity to work with a team of professionals in the banking industry.
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