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Shear force diagram shows the variation of shear force along the length of a beam, while bending moment diagram shows the variation of bending moment.
Shear force diagram is a graph that shows the variation of shear force along the length of a beam.
Bending moment diagram is a graph that shows the variation of bending moment along the length of a beam.
Shear force is the force that acts parallel to the cross-section of th...
The beam bending equation relates the bending moment, beam material properties, and beam geometry to the beam deflection.
The beam bending equation is typically expressed as: M = E * I * d^2y/dx^2, where M is the bending moment, E is the modulus of elasticity, I is the moment of inertia, y is the deflection, and x is the position along the beam.
The equation can be used to calculate the deflection of a beam under a given...
Finite element method is a numerical technique used to find approximate solutions to boundary value problems.
Finite element method divides a complex problem into smaller, simpler parts called finite elements.
Each finite element has a set of equations that approximate the behavior of the original problem.
By solving these equations for all elements and combining the results, an approximate solution to the overall problem...
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Mesh convergence is the process of refining a mesh in numerical simulations until the solution becomes independent of the mesh size.
Mesh convergence is achieved by successively refining the mesh and analyzing the solution's behavior.
It ensures that the numerical solution is not significantly affected by the mesh size or density.
Convergence is typically assessed by comparing the results obtained with different mesh size...
Factor of safety is a design parameter that accounts for uncertainties in material properties and loading conditions.
Factor of safety is the ratio of the maximum stress a material can withstand to the maximum stress it is subjected to in a given application.
It ensures that the structure or component will not fail under normal operating conditions.
Higher factor of safety values indicate a more conservative design approa...
Tolerance refers to the allowable variation in dimensions or properties of a part or product.
Tolerance is important in engineering to ensure proper fit and function of components.
It is typically specified as a range of acceptable values, such as +/- 0.1mm.
Tolerance can be applied to dimensions, material properties, surface finish, etc.
For example, a hole may have a tolerance of +/- 0.05mm to allow for proper alignment
posted on 18 May 2024
I applied via Approached by Company and was interviewed in Jan 2023. There were 3 interview rounds.
posted on 29 Mar 2023
I applied via campus placement at Vellore Institute of Technology (VIT) and was interviewed before Mar 2022. There were 3 interview rounds.
I applied via Walk-in and was interviewed in Jan 2020. There were 5 interview rounds.
I applied via campus placement at Indian Institute of Technology (IIT), Kanpur and was interviewed in May 2024. There were 2 interview rounds.
1 hr and various apti topics
Gas turbine engines work by compressing air, mixing it with fuel, igniting the mixture, and using the hot exhaust gases to spin a turbine.
Air is drawn into the engine and compressed by a compressor
Fuel is injected and mixed with the compressed air
The mixture is ignited, causing a rapid expansion of gases
The hot exhaust gases are used to spin a turbine, which drives the compressor and generates thrust
Examples: Jet engin
posted on 19 Oct 2023
I applied via Company Website and was interviewed in Sep 2023. There was 1 interview round.
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