So far, I've differentiated the ideal gas law (PV=nRT) to get dP/dt(V)dV/dt(P) = dn/dt(RT) +dT/dt(nR)
but the next part gets me a bit baffled, if
n = 1
V=25
R=8.3415 kPal/KmoL
Temperature of the gas is increased at a rate of 3.5 K/min
How quickly will the pressure increase?
Any help is greatly appreciated!!
but the next part gets me a bit baffled, if
n = 1
V=25
R=8.3415 kPal/KmoL
Temperature of the gas is increased at a rate of 3.5 K/min
How quickly will the pressure increase?
Any help is greatly appreciated!!