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The Conductive Heat Transfer Calculator will calculate the:

- Heat transferred during conduction

**Conductive Heat Transfer Calculation Restrictions:** Medium is assumed as uniform and its thickness is considered as constant.

The heat transferred during conduction is J |

Heat energy transferred during conduction calculations |
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Q = K × A × t × (T_{2} - T_{1})/dQ = × × × ( - )/dQ = × × × /dQ = /dQ = |

Conductive Heat Transfer Calculator Input Values |

Area of the solid object (A) = m^{2} |

Thickness of solid object (d) = m |

Initial temperature of object (T_{1}) = K |

Final temperature of object (T_{2}) = K |

Coefficient of thermal conduction (K) = W/m∙K |

Flowing time of heat energy through object (t) = s |

Please note that the formula for each calculation along with detailed calculations are available below. As you enter the specific factors of each conductive heat transfer calculation, the Conductive Heat Transfer Calculator will automatically calculate the results and update the Physics formula elements with each element of the conductive heat transfer calculation. You can then email or print this conductive heat transfer calculation as required for later use.

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Q = *K × A × t × (T*_{2} - T_{1})*/**d*

The heat energy transferred during conduction formula is obtain by rearranging the formula of heat transfer rate during conduction

The following Physics tutorials are provided within the Thermodynamics section of our Free Physics Tutorials. Each Thermodynamics tutorial includes detailed Thermodynamics formula and example of how to calculate and resolve specific Thermodynamics questions and problems. At the end of each Thermodynamics tutorial you will find Thermodynamics revision questions with a hidden answer that reveals when clicked. This allows you to learn about Thermodynamics and test your knowledge of Physics by answering the test questions on Thermodynamics.

- 13.1 - Temperature. The Zeroth Law of Thermodynamics
- 13.2 - Thermal Expansion
- 13.3 - Absorption of Heat
- 13.4 - Calorimetry (Heat Transfer)
- 13.5 - The First Law of Thermodynamics
- 13.6 - The Kinetic Theory of Gases. Ideal Gases
- 13.7 - Pressure, Temperature and RMS Speed
- 13.8 - Molar Specific Heats and Degrees of Freedom
- 13.9 - Gas Laws
- 13.10 - Entropy and the Second Law of Thermodynamics

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