Answer:
6 atm
Explanation:
We know that some decomposition of  the solid will occur NHâSH according to the equilibria:
NHâSH(s) Â â Â NHâ (g) + HâS (g) Â Â
and at equilibrium it the partial pressures of NHâ  and  HâS has to obey:
Kp = p  NHâ x  p HâS = 12.0
( remember  NHâSH is solid and it is not in included in the expression for Kp)
we already have 4.0 atm of NHâ Â so this expression becomes:
( 4 + y ) y= 12
where y is the partial pressure of NHâ and HâS produced from the decomposition.
Solving for y:
4y + y² = 12
y² + 4y - 12 = 0
which can be factored into
( y + 6 ) ( y- 2 ) = 0 Â Â ( No need to solve the quadratic equation )
then yâ = -6 and yâ = 2
yâ = - 6 is physically imposible, therefore y = 2
Therefore the equilibrium pressure of y will be:
p NHâ = (2 + 4 ) atm  = 6 atm