Answer:
- 81.5°C
Explanation:
Data obtained from the question include:
V1 (initial volume) = 3.20 L
T1 (initial temperature) = 125 °C = 125 + 273 = 398K
V2 (final volume) = 1.54 L
T2 (final temperature) =.?
At constant pressure indicates that the gas is obeying Charles' law. Using the Charles' law equation V1/T1 = V2/T2 , the final temperature of the gas can be obtained as illustrated below:
V1/T1 = V2/T2
3.2/398 = 1.54/T2
Cross multiply to express in linear form
3.2 x T2 = 398 x 1.54
Divide both side by 3.2
T2 = (398 x 1.54)/ 3.2
T2 = 191.5K
Now let us convert 191.5K to celsius temperature. This is illustrated below
°C = K - 273
°C = 191.5 - 273
°C = - 81.5°C
Therefore the gas will occupy 1.54L at a temperature of - 81.5°C