imagine two pure samples of gas in identical closed containers: sample a and sample b. sample a has a higher…

imagine two pure samples of gas in identical closed containers: sample a and sample b. sample a has a higher temperature than sample b. each of the statements below is true about the samples. which statements describe a property that contributes to the difference in temperature? select all that apply. each particle in sample a has more mass than each particle in sample b. the total mass of sample a is higher than the total mass of sample b. the particles in sample a have a higher average speed than the particles in sample b.

imagine two pure samples of gas in identical closed containers: sample a and sample b. sample a has a higher temperature than sample b. each of the statements below is true about the samples. which statements describe a property that contributes to the difference in temperature? select all that apply. each particle in sample a has more mass than each particle in sample b. the total mass of sample a is higher than the total mass of sample b. the particles in sample a have a higher average speed than the particles in sample b.

Answer

Brief Explanations:

Temperature in a gas is related to the average kinetic - energy of its particles. Kinetic energy is given by $KE=\frac{1}{2}mv^{2}$, where $m$ is mass and $v$ is speed. A higher - temperature gas can have particles with more mass, a greater total mass, or particles with a higher average speed, all of which contribute to higher average kinetic energy.

Answer:

Each particle in sample A has more mass than each particle in sample B. The total mass of sample A is higher than the total mass of sample B. The particles in sample A have a higher average speed than the particles in sample B.