if its ice it will turn into a liquid.
inc temp, increases the ave. KE of the particles.
The average kinetic energy of colliding particles can be increased by increasing temperature.
Cooler particles have less kinetic energy.
Increasing temperature causes particles to gain energy and move faster, increasing their kinetic energy. On the other hand, decreasing temperature decreases the energy of particles, causing them to move slower. This relationship is governed by the kinetic theory of matter, stating that temperature is directly related to the average kinetic energy of particles.
The average kinetic energy of the particles falls.
Temperature directly affects the kinetic energy of particles. As temperature increases, the particles gain more energy and move faster, increasing their kinetic energy. Conversely, as temperature decreases, the particles lose energy and move slower, decreasing their kinetic energy.
Temperature and mass of the particles affect the kinetic energy of particles. As temperature increases, the particles move faster, increasing their kinetic energy. Similarly, particles with higher mass have greater kinetic energy compared to particles with lower mass at the same temperature.
inc temp, increases the ave. KE of the particles.
It's more like temperature increases with increasing kinetic energy. In science, temperature is a measure of the average kinetic energy of a system. As a substance is heated it's particles move faster, increasing their kinetic energy, and this causes a rise in temperature.
The average kinetic energy of colliding particles can be increased by increasing temperature.
Thermal energy is the internal energy of a system due to the random motion of its particles. When a substance absorbs thermal energy, its particles move faster, increasing their kinetic energy. The increase in kinetic energy translates into an increase in the average speed of particles, leading to a rise in temperature.
Electrical energy is related to the kinetic and potential energy of particles in a system through the movement and interactions of charged particles. When electrical energy is applied to a system, it can cause the particles to move, increasing their kinetic energy. Additionally, the electric field created by the electrical energy can store potential energy within the system's particles.
The temperature of a substance is related to the average kinetic energy of its particles. As temperature increases, the particles move faster, increasing their kinetic energy. This increased kinetic energy results in higher temperatures.
The kinetic energy of a substance is the average kinetic energy of its particles.
Increasing the temperature of the soup will increase the kinetic energy of the particles in the soup. This is because higher temperature means the particles move faster, resulting in an increase in kinetic energy.
Thermal energy is the energy associated with the movement of particles in a substance. When a substance gains thermal energy, its particles move faster, increasing their kinetic energy. This leads to an overall increase in the substance's temperature.
yes because the kinetic energy made in particle