Chemistry MCQs for NEET — Practice Questions with Answers

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A solution is called saturated if:

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Explanation

(c) For a saturated solution product of ionic concentrations Ksp.

For reaction, PCl3(g) + Cl2(g)           PCl5(g),

the value of Kc at 250°C is 26. The value of Kp at this temperature will be :

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Explanation

(a) KP = KC(RT)n;

     KP = 26 × (0.821 × 523)-1 = 0.605

The concentration of [H+] and concentration of [OH-] of a 0.1M aqueous solution of 2% ionised weak monobasic acid is                                                                    

[ionic product of water = 1x 10-14]

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Explanation

(c) [H+] in monobasic acid = molarity x degree of ionisation

                                        =0.1x 2/100 = 2x10-3

       ionisation constant of water

          Kw  = [H+][OH-]

           [OH-] = Kw/[H+] = (1x10-14)/(2x10-3) = 5x10-12

The relation for calculating pH of a weak base is:

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Explanation

(a) For weak base, [OH-] = Kbc;

                    ...        [H+] = Kw/Kbc ;

             ...  pKw -1/2 pKb + 1/2 logc

Eight mole of a gas AB3 attain equilibrium in a closed container of volume 1 dm3 as,

2 AB3  A2(g) + 3B2(g). If at equilibrium 2 mole of A2 are present then, equilibrium constant is:

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Explanation

 (d)                      2 AB3  A2(g) + 3B2(g)

t=0                       8           0             0

At equilibrium     (8-a)         a/2         3a/2

             Thus, Kc = [A2][B2]3/[AB3]2 ; Also, a/2 = 2   ... a=4

              ... [AB3] = 4/1 ; [A2] = 2/1 ; [B2] = 6/1

                      Thus, Kc = (2 x 63)/42 = 27 mol2L-2

Which is Lewis base?

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Explanation

(d) N of NH3 possesses lone pair of electron available for donation.

What is the correct relationship between the pH of isomolar solutions of sodium oxide(pH1), sodium sulphide (pH2), sodium selenide (pH3) and sodium telluride (pH4) ?

[2005]


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Explanation

(d) The corrrect order of pH of isomolar solution of sodium oxide(pH1), sodium sulphide(pH2), sodium selenide (pH3) and sodium telluride (pH4) is pH1 > pH2 > pH3 > pH4 because in aqueous solution, they are hydrolysed  as follows.

Na2O + 2H2O        2NaOH + H2O

                               base

Na2S + 2H2O              2NaOH    +    H2S

                             strong base      weak acid

Na2Se + 2H2O            2NaOH   +   H2Se

                             strong base      weak acid

Na2Te + 2H2O            2NaOH   +   H2Te

                             strong base      weak acid

order of acidic strength H2Te > H2Se > H2S > H2O 

Hence their aqueous solutions have the following order of basic character due to neutralisation of NaOH with H2O, H2S, H2Se > H2Te. 

Na2O > Na2S > Na2Se > Na2Te 

(pH of basic solution is higher than acidic or least basic solution)

For a reversible reaction, if the concentrations of the reactants are doubled, the equilibrium constant will be                                                                                         [2000]

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Explanation

(d) Consider a hypothetical change, 

                   A + B C + D

                         Keq =[C][D]/[A][B]

For the above reaction if the concentration of reactants are doubled then the rate of forward reaction increases for a short time but after sometime equilibrium will be established. So, concentration has no effect on the equilibrium constant. It remains unchanged after increasing the concentration of reactants.

A buffer solution is prepared in which the concentration of NH3 is 0.3 M and the concentration of NH4+ is 0.20 M. If the equilibrium constant, Kb for NH3 equals 1.8x10-5, what is the pH of this solution?  (log 2.7 = 0.43)                                                                                     

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Explanation

(a) pOH = pKb + log[salt][base]

           = -log Kb + log[salt][base]

           = -log 1.8 x 10-5 + log (0.20/0.30)

           = 5-0.25+(-0.176)

           =4.75-0.176=4.57

      ...     pH =14-4.57

Which of these is least likely to act as a Lewis base?             

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Explanation

(c) Electron rich species are called Lewis base. Among the given, BF3 is an electron deficient species, so have a capacity of electron accepting instead of donating. That's why it is least likely to act as a Lewis base. It is a Lewis acid.

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