# What is the Difference between Heat and Temperature

We can tell about the use of heat and temperature in our daily life. Â Many of us know that the difference between heat and temperature can be seen in any metallic matter. Do you know what is the difference between Heat and Temperature? Heat is one kind of energy that is performed in the form of waves. Temperature is the thermal state of the object which controls its flow from one object to another.

Differences between heat and temperature can be seen in little but these differences are notable. In this article, we will discuss the difference between temperature and heat.

## In case of the difference between heat and temperatureÂ  Â  Â  Â  Â  Â  Â  Â  Â  Â  Â  Â  Â  Â  Â  Â

In the case of heat, we can say that it is the total energy of the molecular motion of a substance. The heat is usually based on particle motion and particle. And the temperature does not depend entirely on the size and particulate matter. For example, the temperature of a large water pot is more than the temperature of a small cup. And comparatively, it gets more heat because more water is produced due to excessive heat energy.

The temperature is related to the energy discovered by any of a substance. And the SI Unit of temperature is degrees, Kelvin. Temperature is related to the energy of the molecules of a substance. So easily the dynamics of any substance molecules are doubled.

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### Heat VS Temperature of Comparison Chart

 Quantity Used to Compare Heat Temperature Definition The heat is the total energy of the molecular motion of an object. Temperature is the thermal measurement of the object. Unit Joules, Calories Fahrenheit, Celsius, Kelvin SI Unit Joules Kelvin Symbol Q T Ability to do Work Yes No Atom By atomic power, the number of atoms is measured Determine its direction in which the heat of matter flows at any level.

### Definition of Heat and Temperature

One substance molecules need two things to heat. It is heat and temperature. There is a close look of heat and temperature that gives the heat energy of a substance.

The motion of the object’s molecules requires the growth of the temperature to increase strength. The heat generates additional power to the molecules. He increases the temperature to rotate the molecules at an extra speed. To supply heat, the molecules run fast. We know the condition of the substance is variable.

The heat needed to change any substance from one condition to another. On the other hand, there is no change in temperature for the change in the condition of matter.

For example, we can say if we have a cup of water. And if the water heater is 90 o C and the water temperature will increase to 100 o C. So we can say that when a hot object turns into a cooler than the temperature decreases.

To transmit heat among the molecules of matter, there is no direct contact with each other movement.

Combines all the corresponding kinetic energy in temperature and converts particles into energy. Heat usually heats up any substance and changes the condition of matter. And the temperature is known to heat or cool an object. It can be contained in various scales, which are Celsius, Kelvin, and Fahrenheit.

### Relationship between heat and temperature

1. The heat is the form of the energy of the interior of a substance. Temperature is a quantity that determines which direction the heat energy will flow in.
2. Heat SI unit is joule and temperature SI unit is Kelvin.
3. Temperatures can vary from temperature to two in the same amount, and the heat energy of the two bodies can not be different at the same temperature.
4. The total amount of heat energy is equal to the sum of the heat energy of each substance. Temperatures can not generally be related to two substances.

#### Perfecting

Then it can be said that heat and temperature are both the heat energy of a substance. The heat generally heats up any substance and the temperature measures the heat of that substance. The heat depends on the molecule of a substance, but the temperature does not depend on the molecules of matter.

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