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The kinetic molecular theory relates macroscopic properties such as pressure, volume, and temperature to the microscopic motions of gas particles. Consider the following statements: A. The particles in a gas experience repulsive forces that push them away from each other. B. The average kinetic energy of a gas is proportional to the temperature of the gas in kelvin. C. The pressure exerted by a sas is the result of collisions between the gas particles and the walls of the container. Which statements are true according to the kinetic molecular theory? Choose 1 answer: A B only B Aand B C Aand C D Band C

Problemas

The kinetic molecular theory relates macroscopic properties such as
pressure, volume, and temperature to the microscopic motions of gas
particles.
Consider the following statements:
A. The particles in a gas experience repulsive forces that push them
away from each other.
B. The average kinetic energy of a gas is proportional to the
temperature of the gas in kelvin.
C. The pressure exerted by a sas is the result of collisions between
the gas particles and the walls of the container.
Which statements are true according to the kinetic molecular theory?
Choose 1 answer:
A B only
B Aand B
C Aand C
D Band C

The kinetic molecular theory relates macroscopic properties such as pressure, volume, and temperature to the microscopic motions of gas particles. Consider the following statements: A. The particles in a gas experience repulsive forces that push them away from each other. B. The average kinetic energy of a gas is proportional to the temperature of the gas in kelvin. C. The pressure exerted by a sas is the result of collisions between the gas particles and the walls of the container. Which statements are true according to the kinetic molecular theory? Choose 1 answer: A B only B Aand B C Aand C D Band C

Solución

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Deborahélite · Tutor durante 8 años
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D Band C<br /><br />According to the kinetic molecular theory, the average kinetic energy of a gas is proportional to the temperature of the gas in kelvin (statement B), and the pressure exerted by a gas is the result of collisions between the gas particles and the walls of the container (statement C). Statement A is incorrect because gas particles are assumed to have negligible forces of attraction or repulsion between them.
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