Question

If 0.50 mole of $$BAC{l_{\text{2}}}$$  is mixed with 0.20 mol of $$N{a_3}P{O_4},$$   the maximum number of moles of $$B{A_3}\left( {P{O_4}} \right)$$   that can be formed is

A. 0.70
B. 0.50
C. 0.20
D. 0.10  
Answer :   0.10
Solution :
TIPS/Formulae:
(i) Write balanced chemical equation for chemical change.
(ii) Find limiting reagent.
(iii) Amount of product formed will be determined by amount of limiting reagent.
The balanced equation is :
\[\underset{\begin{smallmatrix} No.\,of \\ moles: \end{smallmatrix}}{\mathop {}}\,\,\,\underset{\begin{smallmatrix} \,\,\,0.5 \\ 3\,mole \end{smallmatrix}}{\mathop{3BaC{{l}_{2}}}}\,+\underset{\begin{smallmatrix} \,\,\,0.2 \\ 2\,mole \end{smallmatrix}}{\mathop{2N{{a}_{3}}P{{O}_{4}}}}\,\to \underset{\begin{smallmatrix} \\ 1\,mole \end{smallmatrix}}{\mathop{B{{a}_{3}}\left( P{{O}_{4}} \right)}}\,+6NaCl\]
Limiting reagent is $$N{a_3}P{O_4}\left( {0.2\,mol} \right),\,BaC{l_2}$$     is in excess.
From the above equation :
$$\eqalign{ & 2.0\,{\text{moles}}\,\,{\text{of}}\,N{a_3}P{O_4}\,{\text{yields}}\,\,B{a_3}{\left( {P{O_4}} \right)_2} = 1\,{\text{mole}} \cr & \therefore {\text{0}}{\text{.2}}\,{\text{moles of}}\,N{a_3}P{O_4}\,{\text{will}}\,{\text{yields}}\,B{a_3}{\left( {P{O_4}} \right)_2} = \frac{1}{2} \times 0.2 \cr & = 0.1\,{\text{mol}}{\text{.}} \cr} $$

Releted MCQ Question on
Physical Chemistry >> Some Basic Concepts in Chemistry

Releted Question 1

$$27 g$$  of $$Al$$  will react completely with how many grams of oxygen?

A. $$8\,g$$
B. $$16\,g$$
C. $$32\,g$$
D. $$24\,g$$
Releted Question 2

A compound was found to contain nitrogen and oxygen in the ratio $$28 gm$$  and $$80 gm$$  respectively. The formula of compound is

A. $$NO$$
B. $${N_2}{O_3}$$
C. $${N_2}{O_5}$$
D. $${N_2}{O_4}$$
Releted Question 3

The largest number of molecules is in

A. $$36\,g$$  of water
B. $$28\,g$$  of carbon monoxide
C. $$46\,g$$  of ethyl alcohol
D. $$54\,g$$  of nitrogen pentoxide
Releted Question 4

The total number of electrons in one molecule of carbon dioxide is

A. 22
B. 44
C. 66
D. 88

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