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Answer :
To solve this problem, we can use Boyle's Law, which states that the product of the initial volume and initial pressure of a gas is equal to the product of the final volume and final pressure of the gas, assuming temperature and amount of gas remain constant.
To solve this problem, we can use Boyle's Law, which states that the product of the initial volume and initial pressure of a gas is equal to the product of the final volume and final pressure of the gas, assuming temperature and amount of gas remain constant.
First, let's convert the initial volume of 4 ft³ to the corresponding value in m³. 1 ft³ is equal to 0.02832 m³, so 4 ft³ is equal to 0.11328 m³.
Using the given values, we can set up the equation:
(0.11328 m³)(60 psig) = V(210 psig)
Simplifying the equation, we get:
V = (0.11328 m³)(60 psig) / 210 psig
Calculating the final volume, we find:
V ≈ 0.03238 m³
Therefore, the final volume of 4 ft³ of gas that is compressed from 60°F at psig to 150° at 210 psig is approximately 0.03238 m³.
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