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Heat is a form of energy, you are adding energy to the system, this causes the particles to vibrate faster.
When heat is added to matter, it increases the energy of the particles within the matter. This increased energy causes the particles to vibrate and move around more rapidly, resulting in an overall increase in the temperature of the material.
When thermal energy increases and particles spread out, it causes an expansion in volume of the substance. This is because the increased thermal energy leads to more kinetic energy in the particles, causing them to move faster and spread out further from each other.
Temperature causes movement by increasing the kinetic energy of particles in a substance. As temperature rises, particles move faster and with more energy, leading to an increase in overall movement within the substance. Conversely, a decrease in temperature results in a decrease in particle movement.
When you heat a balloon, the gas particles inside it will move faster. This happens because the heat energy is transferred to the gas particles, causing them to gain kinetic energy and move around more rapidly.
Heat causes the particles in matter to gain kinetic energy, leading them to move faster and further apart from one another. This can result in expansion of the substance, changes in phase (such as melting or boiling), or other physical alterations.
Temperature is a measure of the average kinetic energy of the particles in a substance, while thermal energy is the total kinetic energy of all the particles in a substance. They are related in that an increase in temperature usually results in an increase in thermal energy, as more particles are moving faster.
Temperature can be used as an indication of the energy that particles in a substance have. When the temperature is higher, particles have more energy and "bounce" around harder and in a bigger space. When the temperature is lower, the opposite happens.
When particles in an object vibrate, they oscillate around their equilibrium position. This vibration can cause the particles to collide with each other, transferring energy in the form of heat. The intensity of the vibration determines the temperature and state of the object (solid, liquid, gas).
When heat is added to a substance, the molecules and atoms vibrate faster. As atoms vibrate faster, the space between atoms increases. The motion and spacing of the particles determines the state of matter of the substance. The end result of increased molecular motion is that the object expands and takes up more space.
When the temperature falls, the particles in a substance slow down and lose energy. This can cause the substance to contract or solidify, depending on the type of material and how much the temperature decreases.
The presence of electrons that are free to move within a substance (like metals), ions in an electrolyte fluid, or both in a plasma.Any situation where charged particles can move throughout a material, creating an electric current.Source(s):Med student