Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change Formula

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The Coefficient of Thermal Expansion is a material property that is indicative of the extent to which a material expands upon heating. Check FAQs
αthermal=σe∆T
αthermal - Coefficient of Thermal Expansion?σ - Stress due to Temperature Change?e - Elastic Modulus?∆T - Change in Temperature?

Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change Example

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Here is how the Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change equation looks like with Values.

Here is how the Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change equation looks like with Units.

Here is how the Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change equation looks like.

0.96Edit=1200Edit25Edit50Edit
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Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change Solution

Follow our step by step solution on how to calculate Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change?

FIRST Step Consider the formula
αthermal=σe∆T
Next Step Substitute values of Variables
αthermal=1200Pa25Pa50K
Next Step Prepare to Evaluate
αthermal=12002550
Next Step Evaluate
αthermal=0.961/K
LAST Step Convert to Output's Unit
αthermal=0.96°C⁻¹

Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change Formula Elements

Variables
Coefficient of Thermal Expansion
The Coefficient of Thermal Expansion is a material property that is indicative of the extent to which a material expands upon heating.
Symbol: αthermal
Measurement: Temperature Coefficient of ResistanceUnit: °C⁻¹
Note: Value should be greater than 0.
Stress due to Temperature Change
Stress due to Temperature Change is the stress developed in pipe due temporal variation in day and night .
Symbol: σ
Measurement: PressureUnit: Pa
Note: Value should be greater than 0.
Elastic Modulus
The Elastic Modulus is the ratio of Stress to Strain.
Symbol: e
Measurement: PressureUnit: Pa
Note: Value should be greater than 0.
Change in Temperature
The Change in Temperature is the difference between the initial and final temperature.
Symbol: ∆T
Measurement: Temperature DifferenceUnit: K
Note: Value should be greater than 0.

Other formulas in Thermal Expansion of Pipe category

​Go Stress due to Temperature Change
σ=αthermale∆T
​Go Modulus of Elasticity of Pipe Material given Stress due to Temperature Change
e=σαthermal∆T
​Go Temperature Change given Stress due to Temperature Change
∆T=σαthermale
​Go Movement in Length of Pipe
ΔL=Lpipee∆T

How to Evaluate Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change?

Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change evaluator uses Coefficient of Thermal Expansion = Stress due to Temperature Change/(Elastic Modulus*Change in Temperature) to evaluate the Coefficient of Thermal Expansion, The Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change is defined as a measure of how much the material expands or contracts in response to changes in temperature-induced stress. Coefficient of Thermal Expansion is denoted by αthermal symbol.

How to evaluate Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change using this online evaluator? To use this online evaluator for Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change, enter Stress due to Temperature Change (σ), Elastic Modulus (e) & Change in Temperature (∆T) and hit the calculate button.

FAQs on Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change

What is the formula to find Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change?
The formula of Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change is expressed as Coefficient of Thermal Expansion = Stress due to Temperature Change/(Elastic Modulus*Change in Temperature). Here is an example- 0.96 = 1200/(25*50).
How to calculate Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change?
With Stress due to Temperature Change (σ), Elastic Modulus (e) & Change in Temperature (∆T) we can find Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change using the formula - Coefficient of Thermal Expansion = Stress due to Temperature Change/(Elastic Modulus*Change in Temperature).
Can the Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change be negative?
No, the Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change, measured in Temperature Coefficient of Resistance cannot be negative.
Which unit is used to measure Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change?
Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change is usually measured using the Per Degree Celsius[°C⁻¹] for Temperature Coefficient of Resistance. Per Kelvin[°C⁻¹] are the few other units in which Coefficient of Thermal Expansion of Pipe Material given Stress due to Temperature Change can be measured.
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