MCQ
A reversible reaction is in equilibrium. If a factor is changed which affect it, then
  • A
    The speed of forward and backward reaction increases
  • B
    The speed of forward and backward reaction decreases
  • Only the speed of that reaction increases which nullifies the factor causing increase of speed
  • D
    No difference

Answer

Correct option: C.
Only the speed of that reaction increases which nullifies the factor causing increase of speed
c
A reversible reaction is in equilibrium. If a factor is changed which affect it, then Only the speed of that reaction increases which nullifies the factor causing increase of speed

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

The $IUPAC$ name of the compound having structure ${C_2}{H_5} - \mathop {\mathop {C - }\limits_{||\,\,\,\,} }\limits_{C{H_2}} \mathop {\mathop {CH - }\limits_{|\,\,\,\,\,\,\,\,\,} }\limits_{C{H_3}\,\,} C{H_3}$ is
Number of molecules having bond order $2$ from the following molecule is. . . . . . .  $\mathrm{C}_2, \mathrm{O}_2, \mathrm{Be}_2, \mathrm{Li}_2, \mathrm{Ne}_2, \mathrm{~N}_2, \mathrm{He}_2$
From the given data at $298\,K$ 

$\Delta H_f^o[CO_2,g] = -394 \,kJ/mol$ 

$\Delta H_f^o[H_2O,l] = -286\, kJ/mol$ 

$\Delta H_f^o [propene ,g] = 20\,kJ/mol$ 

cyclopropane $(g)$ $\to$ propene $(g)$ ; $\Delta H^o_{isomerisation} = $ $-33\,kJ/mol$.
Calculate $\Delta H^o_{combustion}$ [cyclopropane, $(g)$]

......$ kJ/mol$

How many stereoisomers does this molecule have

$CH_3CH=CHCH_2CH(Br)CH_3$

The total number of molecules with zero dipole moment among $\mathrm{CH}_4, \mathrm{BF}_3, \mathrm{H}_2 \mathrm{O}, \mathrm{HF}, \mathrm{NH}_3, \mathrm{CO}_2$ and $\mathrm{SO}_2$ is_______
Out of molar entropy $(I)$, specific volume $(II)$, heat capacity $(III),$ volume $(IV)$ extensive properties are
How many (i) $sp ^{2}$ hybridised carbon atoms and (ii) $\pi$ bonds are present in the following compound?
Isomers have essentially identical
Match List $I$ and with List $II$

List-$I$ (Molecule) List-$II$(Shape)
$A$ $\mathrm{NH}_3$ $I$ Square pyramid
$B$ $\mathrm{BrF}_5$ $II$ Tetrahedral
$C$ $\mathrm{PCl}_5$ $III$ Trigonal pyramidal
$D$ $\mathrm{CH}_4$ $IV$ Trigonal bipyramidal

Choose the correct answer from the option below :

Which is the $1^{st}$ organic compound synthesized in lab?