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Explain the concept of specific heat capacity and why it varies among different materials.

Question

Explain the concept of specific heat capacity and why it varies among different materials.

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Solution

Specific heat capacity is a property of a substance that determines the amount of heat energy required to change its temperature by a certain amount. It is usually denoted by the symbol 'c' and is measured in joules per gram per degree Celsius (J/g°C) or joules per kilogram per kelvin (J/kg.K).

Here are the steps to understand the concept:

  1. Heat Energy: When we heat a substance, we are essentially providing it with energy. This energy is absorbed by the molecules of the substance, causing them to move faster and thus increasing the temperature of the substance.

  2. Temperature Change: The amount of heat energy required to cause a certain temperature change in a substance is not the same for all substances. For example, it takes more heat energy to increase the temperature of water by 1°C than it does to increase the temperature of iron by the same amount. This is because water has a higher specific heat capacity than iron.

  3. Specific Heat Capacity: The specific heat capacity of a substance is the amount of heat energy required to raise the temperature of one gram (or one kilogram) of the substance by one degree Celsius (or one kelvin). The higher the specific heat capacity of a substance, the more heat energy it requires to change its temperature.

  4. Variation Among Different Materials: The specific heat capacity varies among different materials due to differences in their molecular structure and bonding. Substances with more complex molecular structures or stronger bonds tend to have higher specific heat capacities because they require more energy to increase the movement of their molecules.

In summary, specific heat capacity is a measure of how much heat energy a substance requires to change its temperature. It varies among different materials due to differences in their molecular structure and bonding.

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