The average amount of energy of motion (also known as kinetic energy) in the particles of a substance (atoms and molecules) is measured by the temperature of that substance. More energy will produce a higher temperature.
Heat is a measure of the amount of energy due to the motion of the particles in a gas, liquid, or solid. Temperature is a measure of the average amount of heat energy in a given body.
When we heat a substance, the energy absorbed is converted into kinetic energy of the particles in it. The faster the particles in it vibrate, move, collide, etc. the higher the temperatureof a substance.So the expected answer is Temperature
The definition of temperature is the average kinetic energy of a molecule/solid/whatever
The average energy is increased by heating.
Temperature is a measure of the amount of heat energy an object has.As per the second law of thermodynamics, heat flows from hotter objects to colder objects. The bigger the difference in temperature, the more heat flows.
The average amount of energy of motion of each particle of a substance is called kinetic energy. It is related to the speed and mass of the particles.
The average amount of energy of motion of each particle of a substance is called kinetic energy. This energy is directly proportional to the temperature of the substance and is a measure of how fast the particles are moving.
temperature
tempature
The average amount of energy of motion of each particle of a substance is known as its temperature. This is a measure of the average kinetic energy of the particles in the substance. At higher temperatures, particles have more kinetic energy and move faster.
The average amount of motion of each particle in a substance is known as its temperature. Temperature is a measure of the average kinetic energy of the particles in a substance, where higher temperatures indicate that particles have more kinetic energy and are moving faster.
Temperature is a measure of the average kinetic energy of the particles in a substance, not on the quantity of the substance itself. This means that regardless of how much of the substance is present, the average energy per particle remains constant at a given temperature. Therefore, temperature can be the same for different amounts of a substance as long as the energy per particle is consistent.
The average amount of energy of each particle in a substance is typically described by its temperature, which reflects the kinetic energy of the particles. In general, higher temperatures correspond to higher average kinetic energy. For gases, this can be quantified using the equation ( \text{KE} = \frac{3}{2} k_B T ), where ( k_B ) is Boltzmann's constant and ( T ) is the absolute temperature in Kelvin. Therefore, the average energy increases as the temperature of the substance increases.
Temperature
temperature
Average
temperature is the average kinetic energy of a particle