A 1.74 mol sample of Kr gas is confined in a 44.2 liter container at 36.7 °C. If the amount of gas is decreased to 0.870 mol, holding the volume and temperature constant, the pressure will decrease because: Choose all that apply. O As the number of molecule-wall collisions increases, the force per collision decreases. O with fewer molecules per unit volume, the molecules hit the walls of the container less often. O With fewer molecules in the container, the molecules have lower average speeds. O With lower average speeds, on average the molecules hit the walls of the container with less force. O None of the Above

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Chapter1: Chemical Foundations
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A 1.74 mol sample of Kr gas is confined in a 44.2 liter container at 36.7 °C.
If the amount of gas is decreased to 0.870 mol, holding the volume and temperature constant, the pressure will decrease because:
Choose all that apply.
O As the number of molecule-wall collisions increases, the force per collision decreases.
O with fewer molecules per unit volume, the molecules hit the walls of the container less often.
O with fewer molecules in the container, the molecules have lower average speeds.
O With lower average speeds, on average the molecules hit the walls of the container with less force.
O None of the Above
Transcribed Image Text:A 1.74 mol sample of Kr gas is confined in a 44.2 liter container at 36.7 °C. If the amount of gas is decreased to 0.870 mol, holding the volume and temperature constant, the pressure will decrease because: Choose all that apply. O As the number of molecule-wall collisions increases, the force per collision decreases. O with fewer molecules per unit volume, the molecules hit the walls of the container less often. O with fewer molecules in the container, the molecules have lower average speeds. O With lower average speeds, on average the molecules hit the walls of the container with less force. O None of the Above
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