Answer:
The volume of the gas will be 78.31 L at 1.7 °C.
Step-by-step explanation:
We can find the temperature of the gas by the ideal gas law equation:
![PV = nRT](https://img.qammunity.org/2022/formulas/physics/college/8heukljg9pdqt9rwmubfmw7lgjxwygglen.png)
Where:
n: is the number of moles
V: is the volume
T: is the temperature
R: is the gas constant = 0.082 L*atm/(K*mol)
From the initial we can find the number of moles:
![n = (P_(1)V_(1))/(RT_(1)) = (1 atm*62.65 L)/((0.082 L*atm/K*mol)*(0 + 273)K) = 2.80 moles](https://img.qammunity.org/2022/formulas/chemistry/high-school/hb6tq1ao5qz8q63j3mxea2tsoce0x8vdjh.png)
Now, we can find the temperature with the final conditions:
![T_(2) = (P_(2)V_(2))/(nR) = (612.0 mmHg*(1 atm)/(760 mmHg)*78.31 L)/(2.80 moles*0.082 L*atm/(K*mol)) = 274.7 K](https://img.qammunity.org/2022/formulas/chemistry/high-school/hblkwk7re8r0b03dh723j9017mxj4gwhps.png)
The temperature in Celsius is:
![T_(2) = 274.7 - 273 = 1.7 ^(\circ) C](https://img.qammunity.org/2022/formulas/chemistry/high-school/thek9nl0o5n8504zir4qh60vk7indx2ppa.png)
Therefore, the volume of the gas will be 78.31 L at 1.7 °C.
I hope it helps you!