Answer:

Step-by-step explanation:
We have the ideal gasses equation
and the expression for the specific volume
, that is the inverse of the density, and for definition the number of moles is equal to the mass over the molar mass, that is
And we can relate the three equations as follows:

Replacing the expression for n, we have:


Replacing the expression for v, we have:

Now resolving for T, we have:

Now, we should convert all the quantities to the same units:
-Convert 500kPa to atm

-Convert 0.2
to


- Convert the molar mass M of the water from
to


Finally we can replace the values:


