Thermal Strain given Thermal Stress Formula

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Thermal Strain given Thermal Stress is the deformation or strain that a material undergoes when subjected to a change in temperature, considering thermal stress. Check FAQs
εs=σthE
εs - Thermal Strain given Thermal Stress?σth - Thermal Stress?E - Young's Modulus Bar?

Thermal Strain given Thermal Stress Example

With values
With units
Only example

Here is how the Thermal Strain given Thermal Stress equation looks like with Values.

Here is how the Thermal Strain given Thermal Stress equation looks like with Units.

Here is how the Thermal Strain given Thermal Stress equation looks like.

0.4348Edit=0.01Edit0.023Edit
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Thermal Strain given Thermal Stress Solution

Follow our step by step solution on how to calculate Thermal Strain given Thermal Stress?

FIRST Step Consider the formula
εs=σthE
Next Step Substitute values of Variables
εs=0.01MPa0.023MPa
Next Step Convert Units
εs=10000Pa23000Pa
Next Step Prepare to Evaluate
εs=1000023000
Next Step Evaluate
εs=0.434782608695652
LAST Step Rounding Answer
εs=0.4348

Thermal Strain given Thermal Stress Formula Elements

Variables
Thermal Strain given Thermal Stress
Thermal Strain given Thermal Stress is the deformation or strain that a material undergoes when subjected to a change in temperature, considering thermal stress.
Symbol: εs
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Thermal Stress
Thermal Stress is mechanical stress created by any change in the temperature of a material. These lead to fracturing or plastic deformation depending on the other variables of heating.
Symbol: σth
Measurement: PressureUnit: MPa
Note: Value can be positive or negative.
Young's Modulus Bar
Young's Modulus Bar is a measure of the stiffness of a material. It quantifies the relationship between stress and strain in a material under tension or compression.
Symbol: E
Measurement: PressureUnit: MPa
Note: Value should be greater than 0.

Other formulas in Thermal Stress category

​Go Thermal Strain
ε=ΔLl0
​Go Thermal Strain given Coefficient of Linear Expansion
εc=αLΔTrise
​Go Thermal Stress given Coefficient of Linear Expansion
σc=αLΔTriseE
​Go Thermal Stress given Thermal Strain
σs=εE

How to Evaluate Thermal Strain given Thermal Stress?

Thermal Strain given Thermal Stress evaluator uses Thermal Strain given Thermal Stress = Thermal Stress/Young's Modulus Bar to evaluate the Thermal Strain given Thermal Stress, The Thermal Strain given Thermal Stress formula is defined as the measure of the deformation or strain that a material undergoes when subjected to a change in temperature, considering thermal stress. Thermal Strain given Thermal Stress is denoted by εs symbol.

How to evaluate Thermal Strain given Thermal Stress using this online evaluator? To use this online evaluator for Thermal Strain given Thermal Stress, enter Thermal Stress th) & Young's Modulus Bar (E) and hit the calculate button.

FAQs on Thermal Strain given Thermal Stress

What is the formula to find Thermal Strain given Thermal Stress?
The formula of Thermal Strain given Thermal Stress is expressed as Thermal Strain given Thermal Stress = Thermal Stress/Young's Modulus Bar. Here is an example- 0.434783 = 10000/23000.
How to calculate Thermal Strain given Thermal Stress?
With Thermal Stress th) & Young's Modulus Bar (E) we can find Thermal Strain given Thermal Stress using the formula - Thermal Strain given Thermal Stress = Thermal Stress/Young's Modulus Bar.
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