Chemical Equilibrium MCQ Questions & Answers in Physical Chemistry | Chemistry

Learn Chemical Equilibrium MCQ questions & answers in Physical Chemistry are available for students perparing for IIT-JEE, NEET, Engineering and Medical Enternace exam.

111. The equilibrium between water and its vapour, in an open vessel

A can be achieved
B depends upon pressure
C cannot be achieved
D depends upon temperature
Answer :   cannot be achieved

112. If $$\alpha $$ is the fraction of $$HI$$ dissociated at equilibrium in the reaction, $$2HI\left( g \right) \rightleftharpoons {H_2}\left( g \right) + {I_2}\left( g \right)$$     starting with the $$2$$ $$moles$$  of $$HI,$$ then the total number of $$moles$$  of reactants and products at equilibrium are

A $$2 + 2\alpha $$
B $$2$$
C $$1 + \alpha $$
D $$2 - \alpha $$
Answer :   $$2$$

113. The increase of pressure on ice $$ \rightleftharpoons $$  water system at constant temperature will lead to

A a decrease in the entropy of the system
B an increase in the Gibb’s energy of the system
C no effect on the equilibrium
D a shift of the equilibrium in the forward direction
Answer :   a shift of the equilibrium in the forward direction

114. The value of $$\Delta H$$  for the reaction, $${X_2}\left( g \right) + 4{Y_2}\left( g \right) \rightleftharpoons 2\,X{Y_4}\left( g \right)$$       is less than zero. Formation of $$X{Y_4}\left( g \right)$$  will be favoured at

A low pressure and low temperature
B high temperature and low pressure
C high pressure and low temperature
D high temperature and high pressure
Answer :   high pressure and low temperature

115. In the relation, $${K_p} = {K_c}{\left( {RT} \right)^{\Delta n}}$$    the value of $${\Delta n}$$  is

A number of moles of gaseous reactants - number of moles of gaseous products in a balanced equation
B number of moles of gaseous products - number of moles of gaseous reactants in a balanced equation
C number of moles of gaseous products × number of moles of gaseous reactants in a balanced equation
D number of moles of gaseous reactants + number of moles of gaseous products in balanced equation
Answer :   number of moles of gaseous products - number of moles of gaseous reactants in a balanced equation

116. Predict the direction of the reaction from the comparison of $${Q_c}$$  and $${K_c}.$$  Mark the incorrect statement.

A If $${Q_c} < {K_c},$$  net reaction goes from left to right.
B If $${Q_c} = {K_c},$$  reaction goes from right to left.
C If $${Q_c} > {K_c},$$  net reaction goes from right to left.
D If $${Q_c} = {K_c},$$  reactants and products are at equilibrium.
Answer :   If $${Q_c} = {K_c},$$  reaction goes from right to left.

117. The reaction $$2S{O_{2\left( g \right)}} + {O_{2\left( g \right)}} \rightleftharpoons 2S{O_{3\left( g \right)}} + {\text{Heat,}}$$       will be favoured by

A high temperature and low pressure
B low temperature and high pressure
C high temperature and high pressure
D low temperature and low pressure
Answer :   low temperature and high pressure

118. An amount of solid $$N{H_4}HS$$  is placed in a flask already containing ammonia gas at a certain temperature and 0.50 atm pressure. Ammonium hydrogen sulphide decomposes to yield $$N{H_3}$$  and $${H_2}S$$  gases in the flask. When the decomposition reaction reaches equilibrium, the total pressure in the flask rises to 0.84 atm? The equilibrium constant for $$N{H_4}HS$$   decomposition at this temperature is

A 0.11
B 0.17
C 0.18
D 0.30
Answer :   0.11

119. The partial pressure of $$C{H_3}OH\left( g \right),CO\left( g \right)$$     and $${H_2}\left( g \right)$$  in equilibrium mixture for the reaction, $$CO\left( g \right) + 2{H_2}\left( g \right) \rightleftharpoons C{H_3}OH\left( g \right)$$       are $$2.0,1.0$$   and $$0.1\,atm$$   respectively at $${427^ \circ }C.$$  The value of $${K_p}$$ for the decomposition of $$C{H_3}OH$$  to $$CO$$  and $${H_2}$$  is

A $${10^2}atm$$
B $$2 \times {10^2}at{m^{ - 1}}$$
C $$50\,at{m^2}$$
D $$5 \times {10^{ - 3}}at{m^2}$$
Answer :   $$5 \times {10^{ - 3}}at{m^2}$$

120. In which of the following equilibrium $${K_c}$$ and $${K_p}$$ are not equal?

A $$2NO\left( g \right) \rightleftharpoons {N_2}\left( g \right) + {O_2}\left( g \right)$$
B $$S{O_2}\left( g \right) + N{O_2}\left( g \right) \rightleftharpoons S{O_3}\left( g \right) + NO\left( g \right)$$
C $${H_2}\left( g \right) + {I_2}\left( g \right) \rightleftharpoons 2HI\left( g \right)$$
D $$2C\left( s \right) + {O_2}\left( g \right) \rightleftharpoons 2\,C{O_2}\left( g \right)$$
Answer :   $$2C\left( s \right) + {O_2}\left( g \right) \rightleftharpoons 2\,C{O_2}\left( g \right)$$