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In conduction, energy is transferred between particles through direct collisions. When a particle with higher energy collides with a particle with lower energy, it transfers some of its energy to the lower-energy particle. This process continues throughout the material, allowing energy to move from hot regions to cold regions.

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Is conduction when particles pass on energy?

Yes, conduction is the transfer of heat energy through a material by particles colliding with each other. The particles transfer kinetic energy to neighboring particles as they collide, causing the heat energy to move through the material.


How does thermal energy move during conduction?

In conduction, thermal energy moves through a material by the transfer of kinetic energy between neighboring particles. When one particle gains kinetic energy by colliding with a higher energy particle, it vibrates faster and passes on the energy to adjacent particles, causing the heat to move through the material.


What is it called when energy is transferred by particles or waves?

If heat is transferred by waves, we call it radiation. If it is transferred by particles in contact it is conduction, and if the particles move to carry the heat it is convection.


In what direction does heat move in during conduction?

Heat moves from the warmer object to the cooler object during conduction, resulting in the transfer of thermal energy. This process occurs through direct contact between the objects, with the faster-moving particles transferring energy to slower-moving particles.


What material does conduction occur in?

Conduction occurs in materials that allow the flow of heat or electricity through direct contact between particles, such as metals like copper and aluminum. These materials have free electrons that can easily move and transfer energy.


Which heat is a form of energy caused by particles in an object that?

Thermal heat is the form of energy caused by particles in an object that are in motion. As particles move, they generate heat energy that can be transferred to other objects through conduction, convection, or radiation.


When heat energy is transferred by particles or waves what is it called?

If heat is transferred by waves, we call it radiation. If it is transferred by particles in contact it is conduction, and if the particles move to carry the heat it is convection.


What is heat energy called when it is transferred by particles or waves?

If heat is transferred by waves, we call it radiation. If it is transferred by particles in contact it is conduction, and if the particles move to carry the heat it is convection.


The transfer of energy as heat through a substance by direct contact?

Conduction is the transfer of heat energy through direct contact between particles in a substance. It occurs when particles collide and transfer their kinetic energy to neighboring particles, leading to an overall transfer of heat through the substance. Materials that are good conductors, such as metals, allow heat to move through them quickly.


Which energy comes from the motion of tiny particles in matter?

Thermal energy comes from the motion of tiny particles in matter. As these particles vibrate and move, they generate heat energy which can be transferred from one object to another through processes like conduction or convection.


Does the transfer of thermal energy by conduction and convection require matter?

yes both require the use of matter. conduction is basically passing heat from one particle to the next. convertion is heating a cold fluid and the hot particles move, allowing more cold particles to take their place and be heated. Hot air from a radiator raises, cold air moves in to take its place and is heated etc.


What is the process in which heat is transferred down a metal rod?

The process in which heat is transferred down a metal rod is called conduction. This occurs as the vibrating particles in the metal collide with neighboring particles, transferring heat energy along the rod. The speed of heat transfer through conduction is influenced by the material's conductivity and the temperature difference between the two ends.