Physics
Instant, private, and free
Thermal Conductivity Calculator.
Calculate steady one-dimensional slab conductivity using Fourier conduction.
Set your values
Results update as you type.
Results update automatically as you type.
Use Cases
Material Selection for Insulation
Engineers can estimate the thermal conductivity of a material sample by measuring heat flow and temperature difference, helping choose appropriate insulation.
Example: Test a 0.05 m thick panel with 10 W heat flow across 1 m² and 20 K difference.
Educational Demonstrations
Students can verify Fourier's law and understand how thickness, area, and temperature gradient affect conduction.
Example: Compare conductivity of different materials by varying inputs.
Frequently Asked Questions
- How is thermal conductivity calculated in this calculator?
- This calculator uses Fourier's law for steady one-dimensional conduction: k = (Q * L) / (A * ΔT), where Q is the heat transfer rate in watts, L is the slab thickness in meters, A is the conduction area in square meters, and ΔT is the temperature difference in kelvin.
- What units are used for the inputs?
- The inputs are: heat transfer rate in watts (W), slab thickness in meters (m), conduction area in square meters (m²), and temperature difference in kelvin (K). The result is thermal conductivity in watts per meter-kelvin (W/(m·K)).
- Can this calculator be used for non-steady or multi-dimensional heat transfer?
- No, this calculator is specifically for steady one-dimensional slab conduction. It assumes constant properties and uniform temperature difference across the slab. For transient or multi-dimensional cases, more advanced methods are required.
Tips & Common Mistakes
Tips
- Ensure all inputs are in the correct units: watts, meters, square meters, and kelvin.
- For accurate results, measure the temperature difference across the slab, not the absolute temperatures.
- Use consistent temperature units; kelvin and Celsius differences are equivalent, but the calculator expects kelvin.
- Double-check that the heat transfer rate is steady and one-dimensional for the formula to apply.
Common Mistakes to Avoid
- Using Celsius instead of kelvin for temperature difference – the calculator expects kelvin, though the numeric difference is the same.
- Confusing area with thickness – area is the cross-sectional area perpendicular to heat flow, not the slab's surface area.
- Forgetting to convert units (e.g., using cm for thickness instead of meters) leads to incorrect results.
Last updated: August 13, 2026