Answer:
The rate of change of T with respect to time is 0.40 K/min
Step-by-step explanation:
The gas law equation is:
![PV = nRT](https://img.qammunity.org/2022/formulas/physics/college/8heukljg9pdqt9rwmubfmw7lgjxwygglen.png)
We can find the rate of change of T with respect to time by solving the above equation for T and derivating with respect to time:
![(dT)/(dt) = (d)/(dt)((PV)/(nR))](https://img.qammunity.org/2022/formulas/chemistry/college/9x8op2ygffhgpq7kb04ehoclkdgkqtz7v2.png)
![(dT)/(dt) = (1)/(nR)(V(dP)/(dt) + P(dV)/(dt))](https://img.qammunity.org/2022/formulas/chemistry/college/4wgpn5zwmxobkns04jeahmdn73gfgoastr.png)
Where:
n: is the number of moles = 10 mol
R: is the gas constant = 0.0821
V: is the volume = 13 L
P: is the pressure = 8.0 atm
dP/dt: is the variation of the pressure with respect to time = 0.13 atm/min
dV/dt: is the variation of the volume with respect to time = -0.17 L/min
Hence, the rate of change of T is:
Therefore, the rate of change of T with respect to time is 0.40 K/min
I hope it helps you!