- Expansion coefficient α
- 0.0000121/K
- Original length L₀
- 10m
- Temperature change ΔT
- 50K
0.006000m
Open with these values0.006000m
Result: 0.006000 mLinear expansion in one line: ΔL = α × L₀ × ΔT. A 10 m steel beam warmed by 50 K grows 6 mm, and a 25 m rail cooled by 40 K shrinks 12 mm. The temperature change is a difference, so kelvin and degrees Celsius are interchangeable here; enter a negative value for cooling.
Held fixed: Expansion coefficient α 0.0000120 1/K, Original length L₀ 10.000 m.
| Temperature change ΔT (K) | Result (m) |
|---|---|
| 0.00 | 0.000000 |
| 20.00 | 0.002400 |
| 40.00 | 0.004800 |
| 50.00Your value | 0.006000 |
| 60.00 | 0.007200 |
| 80.00 | 0.009600 |
| 100.00 | 0.012000 |
0.006000m
Open with these values0.001380m
Open with these values-0.012000m
Open with these valuesΔL = α × L₀ × ΔT
| α, L₀, ΔT | Final length | Change in m |
|---|---|---|
| 0.000012, 25, -40 | 24.988 m | -0.012000 |
| 0.000012, 100, 0 | 100 m, unchanged | 0.000000 |
| 0.000023, 2, 30 | 2.00138 m | 0.001380 |
| 0.000017, 1.5, 100 | 1.50255 m | 0.002550 |
| 0.000012, 10, 50 | 10.006 m | 0.006000 |
Multiply the expansion coefficient by the original length and the temperature change: ΔL = α × L₀ × ΔT. A 10 m steel beam with α = 0.000012 per K warmed by 50 K grows 0.006 m, reaching 10.006 m.
It is how much a material stretches per unit length for each degree of temperature change, in units of 1 per kelvin. Reference tables give aluminium 23, copper 16 to 17, concrete 13 to 14 and steel about 11 to 12, all in millionths per kelvin.
Either. A change of 1 K is exactly a change of 1 °C, and the coefficient carries the same number per °C, so a 50 K rise and a 50 °C rise give the same answer.
The temperature change goes negative, so the change in length is negative and the object contracts. A 25 m steel rail cooled by 40 K shrinks about 12 mm, which is why bridges and rails are built with expansion gaps.
No, this is linear expansion along one direction. For the same material, area expands at roughly twice the linear coefficient and volume at roughly three times.
Information, not professional advice.
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