Respuesta :
Answer:
The pressure of the gas inside the plastic bag is 1.971 atm
Explanation:
Since temperature did not change, it means it is constant. This will then be Boyle's law. Thus
P1V1 =P2V2
Where P1 is the initial pressure = 10.2 ATM, P2 is the final pressure which is to be calculated.
V1 is the initial volume = 800.0 mL and V2 is the final volume of the gas = 4.14 L
From the formula,
P2 = P1V1/V2
= 10.2×800÷4.14
= 1.971 atm
Answer:
Pressure of gas in the plastic bag is 1.97 atm
Explanation:
It is possible to answer this question by using Boyle's law: Boyle's law describes that, for ideal gases, the pressure of the gas is inversely proportional to the volume it occupies. Is expressed as:
P1V1 = P2V2
Where:
P1 is the initial pressure of the gas (In the problem, 10.2 atm).
V1 is initial volume (800.0mL)
V2 is final volume (4.14L ≡ 4140mL)
And P2 is the final pressure.
Replacing:
10.2 atm×800.0mL = 4140mL×P2
P2 = 1.97 atm