MCQ
If doubling the concentration of a reactant $ 'A'$  increases the rate $4$ times and tripling the concentration of $'A' $ increases the rate $9$  times, the rate is proportional to
  • A
    Concentration of  $`A'$
  • Square of concentration of $ `A'$
  • C
    Under root of the concentration of $ `A'$
  • D
    Cube of concentration of $ `A'$

Answer

Correct option: B.
Square of concentration of $ `A'$
b
(b)${2^2} = 4,\,\,{3^2} = 9$

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 strongest reducing agent is
In a reversible adiabatic process $\Delta S$ is :-
Under the specified conditions, substrate $X$ undergoes substitution and  elimination reactions to give products $A - D. A$ and $B$ are stereoisomers, but  not enantiomers. $C$ and $D$ are enantiomers. $A$ is not an isomer of $C$. Which of the following could be the starting material $X$ ?

$X\xrightarrow[\Delta ]{{{H}_{2}}O}A+B+C+D$

For the reaction, $2 \mathrm{CO}+\mathrm{O}_2 \longrightarrow 2 \mathrm{CO}_2 ; \Delta \mathrm{H}=-560 \mathrm{~kJ}$. Two moles of $\mathrm{CO}$ and one mole of $\mathrm{O}_2$ are taken in a container of volume $1 \mathrm{~L}$. They completely form two moles of $\mathrm{CO}_2$, the gases deviate appreciably from ideal behaviour. If the pressure in the vessel changes from $70$ to $40 \mathrm{~atm}$, find the magnitude (absolute value) of $\Delta \mathrm{U}$ at $500 \mathrm{~K}$. $(1 \mathrm{~L} \mathrm{~atm}=0.1 \mathrm{~kJ})$
Match List - 1 with List - II:
List-I (Complexes)List-II (Types)
(a) $\left[ Co \left( NH _3\right)_5 CN \right] Cl _2$(i) ionisation isomerism
(b) $\left[ Cr \left( NH _3\right)_6\right]\left[ Co ( CN )_6\right]$(ii) coordination isomerism
(c) $\left[ Co \left( NH _3\right)_5\left( SO _4\right)\right] Br$(iii) linkage isomerism
Choose the correct answer from the options given below:
The reaction of $HCOOH$ with conc. ${H_2}S{O_4}$ gives
Given ${E^o}_{A{g^ + }/Ag} = 0.80\,V,\,\,\,{E^o}_{M{g^{2 + }}/Mg} =  - 2.37\,V,$ ${E^o}_{C{u^{2 + }}/Cu} = 0.34\,V,\,\,{E^o}_{H{g^{2 + }}/Hg}\, = 0.79\,V.$

Which of the following statements is correct ?

The reaction

$MgO(s) + C(s) \to Mg(s) + CO(g)$, for which $\Delta _r{H^o} =  + 491.1\,kJ\,mo{l^{ - 1}}$ and $\Delta _r{S^o} =  198.0\,Jk^{-1}\,mo{l^{ - 1}}$ is not feasible at $298\, K$. Temperature above which reaction will be feasible is.....$K$

Match the coordination number and type of hybridisation with distribution of hybrid orbitals in space based on valence bond theory.
Coordination number and type of hybridisationDistribution of hybrid orbitals in space
i. $4, sp ^3$A. Trigonal bipyramidal
ii. $4, dsp ^2$B. Octahedral
iii. $5, sp ^3 d$C. Tetrahedral
iv. $6, d^2 sp ^3$D. Square planar
Select the CORRECT option:
Which of the following phenols has the largest $pK_a$ value (i.e., is least acidic) ?