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Increase in temperature cause the particles to move faster, which in turn would increase the number of collisions. If the volume did not change and the temperature increased, the pressure would also increase.

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How does temperature affects movement of particles?

Increasing the temperature particles move faster.


What particle property changes with change in temperature?

Temperature affects the average kinetic energy of particles. As temperature increases, particles have higher kinetic energy, which can impact their speed, collisions, and interactions with other particles.


How does temperature affect the speed of movement of particles?

Temperature affects the speed of movement of particles by increasing their kinetic energy. As temperature rises, particles move faster and collide more frequently, leading to an increase in their overall speed.


Explain how a change in temperature affects the pressure inside a container?

On an atomic scale, atoms are constantly vibrating. This vibration along with the electronic orbitals of the atom limit the minimum distance between two atoms. With increase in temperature the amplitude of this vibration increases. This leads to an increase in the minimum distance. This increase in the minimum distance manifests itself as an increase in the volume at a macroscopic scale.


How does temperature affect the kinetic energy of particles?

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.


How increasing the concentration of Potassium iodide and Sulfuric acid affects the speed of reaction?

Increasing the concentration of Potassium iodide and Sulfuric acid typically increases the rate of reaction. This is because higher concentrations provide more reactant particles, leading to more frequent collisions and a higher likelihood of successful collisions, which speeds up the reaction.


Temperature change affects the rate of a chemical reaction by changing the of the colliding particle.?

Temperature change affects the rate of a chemical reaction by altering the kinetic energy of the colliding particles. As temperature increases, particles move faster, leading to more frequent and energetic collisions, which enhances the likelihood of overcoming the activation energy barrier. Conversely, lower temperatures slow down particle movement, resulting in fewer collisions and a reduced reaction rate. Thus, temperature is a critical factor in determining how quickly a reaction proceeds.


How do the factors of temperature and surface area affect the rate of chemical reactions?

Temperature affects the rate of chemical reactions by increasing the speed at which molecules move and collide, leading to more successful collisions. A larger surface area allows for more contact between reactant molecules, increasing the chance of collision and reaction. Both factors can increase reaction rates by promoting collisions between reactant molecules.


Do the number of particles in an object affects it's thermal energy but not it's temputure?

The number of particles in an object does affect its thermal energy, as more particles mean more energy. However, the temperature of an object is a measure of the average kinetic energy of its particles, so increasing the number of particles may not necessarily change the temperature of the object.


Why does temperature affect the rate sodium thiosulphate and hydrocholric acid react?

Temperature affects the rate of reaction between sodium thiosulfate and hydrochloric acid by increasing the kinetic energy of the particles involved. This leads to more frequent and energetic collisions between the reactant molecules, increasing the likelihood of successful collisions and hence speeding up the reaction rate. Additionally, higher temperatures can also alter the activation energy required for the reaction to occur, further influencing the reaction rate.


How does the relationship between kinetic energy and temperature affect the behavior of particles in a system?

The relationship between kinetic energy and temperature affects the behavior of particles in a system by influencing their movement and speed. As temperature increases, particles gain more kinetic energy, causing them to move faster and collide more frequently. This increased movement and collisions can lead to changes in the physical state of the system, such as melting or boiling.


How temperatures affects the rate of dissolving?

Increasing the temperature of a solvent speeds up the movement of its particles. This increase cause more solvent particles to bump into the solute. As a result, solute particles break loose and dissolve faster.Temperature often affects solubility rates. Endothermic stuff tends to go faster in warm, and exothermic stuff tends to go faster in cool.