Answer :
The number of molecules of
are,

The theoretical yield of
is, 8.72 grams.
Explanation :
The given balanced chemical reaction is:

First we have to calculate the moles of S.

Molar mass of S = 32 g/mole

Now we have to calculate the moles of

From the balanced chemical reaction, we conclude that:
As, 2 mole of
react with 3 mole of

So, 0.109 moles of
react with
moles of

Now we have to calculate the number of molecules of

As, 1 mole of
contains
number of
molecules.
So, 0.164 mole of
contains
number of
molecules.
Thus, the number of molecules of
are,

Now we have to calculate the moles of

From the reaction, we conclude that
As, 2 mole of
react to give 2 mole of

So, 0.109 moles of
react to give 0.109 moles of

Now we have to calculate the mass of


Molar mass of
= 80 g/mol

Thus, the theoretical yield of
is, 8.72 grams.