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(d) When the volume of gas in the syringe increased, the pressure on the inside walls of the syringe decreased. Explain why. __ beautiful

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(d) When the volume of gas in the syringe increased, the pressure on the inside walls of the
syringe decreased.
Explain why.
__
beautiful

(d) When the volume of gas in the syringe increased, the pressure on the inside walls of the syringe decreased. Explain why. __ beautiful

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AliceElite · Tutor for 8 years

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According to Boyle's law, given a constant temperature and mass, when the volume of a gas increases its pressure decrease. The increase in volume provides the gas particles more space, causing them to collide with the interior walls of the syringe less frequently than before. This reduction in collisions consequently leads to a decrease in pressure.

Explain

## Step 1:<br />This problem relates to Boyle's Law in the field of physics. Boyle's Law, under conditions of constant temperature and mass, demonstrates a definite correlation between the volume and pressure of a gas. Per Boyle's Law, the volume of a gas is inversely proportional to its pressure.<br /><br />### The formula for Boyle's law is symbolized as \( P_1 \times V_1 = P_2 \times V_2 \)<br />This equation is a demonstration of the inverse relationship between pressure and volume assuming the amount and the temperature are kept constant.<br /><br />## Step 2:<br />Following Boyle's Law, when the volume of gas inside the syringe increases, it means that the gas particles are spread over a larger area inside the syringe.<br /><br />## Step3:<br />As a result, the gas particles strike the inside walls of the syringe less frequently which leads to a decrease in what we experience as gas pressure because pressure is rooted from frequency of bombardment of particles against the wall.
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