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The air exerts a pressure on the all sides of the bottle.  a) The bottle is heated. What happens to the pressure inside the bottle? Explain your answer

Question

The air exerts a pressure on the all sides of the bottle.  a) The bottle is heated. What happens to the pressure inside the bottle? Explain your answer

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Solution 1

a) When the bottle is heated, the pressure inside the bottle increases.

Here's why:

  1. Heating the bottle causes the air molecules inside it to move faster.

  2. As the air molecules move faster, they collide with each other and the walls of the bottle more frequently.

  3. These increased collisions result in an increase in pressure inside the bottle.

This is based on the principles of the kinetic theory of gases, which states that the pressure exerted by a gas is directly proportional to its temperature, assuming the volume and the amount of gas are kept constant.

This problem has been solved

Solution 2

a) When the bottle is heated, the pressure inside the bottle increases.

Here's why:

  1. Heating the bottle causes the air molecules inside it to move faster.

  2. As the air molecules move faster, they collide with each other and the walls of the bottle more frequently.

  3. These increased collisions result in an increase in pressure inside the bottle.

This is based on the principles of the kinetic theory of gases, which states that the pressure exerted by a gas is directly proportional to its temperature, assuming the volume and the amount of gas are kept constant.

This problem has been solved

Solution 3

a) When the bottle is heated, the pressure inside the bottle increases.

Here's why:

  1. Heating the bottle causes the air molecules inside it to move faster.

  2. As the air molecules move faster, they collide with the walls of the bottle more frequently and with greater force.

  3. These increased collisions result in an increase in pressure inside the bottle.

This is based on the principles of the kinetic theory of gases, which states that the pressure exerted by a gas is directly proportional to its temperature, assuming the volume and the amount of gas are kept constant.

This problem has been solved

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