Answer:
The answer is A. 12.6 L.
We can use Charles's law to solve this problem. Charles's law states that the volume of a gas is directly proportional to its temperature, assuming that the pressure and amount of gas remain constant. In other words, if we increase the temperature of a gas, its volume will also increase.
We can write Charles's law as follows:
T
1
V
1
=
T
2
V
2
In this problem, we know that the initial volume of the gas is 10.7 L, the initial temperature is 298 K, and the final temperature is 352 K. We can plug these values into Charles's law to solve for the final volume:
298 K
10.7 L
=
352 K
V
2
V
2
=
298 K
10.7 L×352 K
=12.6 L
Therefore, the cylinder could hold 12.6 L of gas at 352 K.
Step-by-step explanation: