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I applied via Approached by Company and was interviewed in Mar 2023. There were 3 interview rounds.
Rotary part trouble shootings related to Turbine .
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I was interviewed before Feb 2024.
I applied via Referral and was interviewed before Apr 2023. There were 4 interview rounds.
Darcy's law is a formula used to describe the flow of fluids through porous media.
Darcy's law states that the flow rate of a fluid through a porous medium is directly proportional to the pressure drop and the permeability of the medium, and inversely proportional to the viscosity of the fluid.
It is commonly used in hydrogeology to calculate groundwater flow.
The formula is Q = -KA(dP/dL), where Q is the flow rate, K is ...
Materials can be qualified based on their physical, mechanical, chemical, and thermal properties.
Qualify materials based on physical properties such as density, hardness, and color.
Consider mechanical properties like strength, elasticity, and toughness.
Examine chemical properties such as reactivity, corrosion resistance, and stability.
Evaluate thermal properties including conductivity, expansion coefficient, and meltin
I applied via Company Website and was interviewed in Mar 2021. There was 1 interview round.
Tube OD selection depends on factors such as fluid flow rate, pressure, and material compatibility.
Consider fluid flow rate and pressure to determine appropriate tube OD
Ensure compatibility of tube material with fluid being transported
Consult industry standards and guidelines for recommended tube OD sizes
Factor in any space constraints or installation requirements
Perform testing and analysis to verify tube OD selection
Pump selection depends on the fluid properties, flow rate, head, and system requirements.
Determine the fluid properties such as viscosity, density, and corrosiveness.
Calculate the required flow rate and head based on the system requirements.
Consider the pump type such as centrifugal, positive displacement, or axial flow.
Choose the appropriate pump size and material based on the fluid properties and system requirements.
...
Design parameters for heat exchangers include heat transfer rate, pressure drop, material selection, and flow arrangement.
Heat transfer rate: determines the efficiency of the heat exchanger
Pressure drop: affects the flow rate and energy consumption
Material selection: depends on the fluid properties and operating conditions
Flow arrangement: affects the heat transfer rate and pressure drop
I was interviewed in Aug 2024.
I was interviewed before Feb 2024.
I applied via Referral and was interviewed before Apr 2023. There were 4 interview rounds.
Darcy's law is a formula used to describe the flow of fluids through porous media.
Darcy's law states that the flow rate of a fluid through a porous medium is directly proportional to the pressure drop and the permeability of the medium, and inversely proportional to the viscosity of the fluid.
It is commonly used in hydrogeology to calculate groundwater flow.
The formula is Q = -KA(dP/dL), where Q is the flow rate, K is ...
Materials can be qualified based on their physical, mechanical, chemical, and thermal properties.
Qualify materials based on physical properties such as density, hardness, and color.
Consider mechanical properties like strength, elasticity, and toughness.
Examine chemical properties such as reactivity, corrosion resistance, and stability.
Evaluate thermal properties including conductivity, expansion coefficient, and meltin
I applied via Company Website and was interviewed in Mar 2021. There was 1 interview round.
Tube OD selection depends on factors such as fluid flow rate, pressure, and material compatibility.
Consider fluid flow rate and pressure to determine appropriate tube OD
Ensure compatibility of tube material with fluid being transported
Consult industry standards and guidelines for recommended tube OD sizes
Factor in any space constraints or installation requirements
Perform testing and analysis to verify tube OD selection
Pump selection depends on the fluid properties, flow rate, head, and system requirements.
Determine the fluid properties such as viscosity, density, and corrosiveness.
Calculate the required flow rate and head based on the system requirements.
Consider the pump type such as centrifugal, positive displacement, or axial flow.
Choose the appropriate pump size and material based on the fluid properties and system requirements.
...
Design parameters for heat exchangers include heat transfer rate, pressure drop, material selection, and flow arrangement.
Heat transfer rate: determines the efficiency of the heat exchanger
Pressure drop: affects the flow rate and energy consumption
Material selection: depends on the fluid properties and operating conditions
Flow arrangement: affects the heat transfer rate and pressure drop
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