Ionization constants of weak acids and weak bases - class-XI
ionization constants of weak acids and weak bases
Questions
The addition of $HCl$ will not suppress the ionisation of:
- Acetic acid
- Sulphuric acid
- ${H} _{2}S$
- Benzoic acid
One litre of water contains ${ 10 }^{ -7 }$ mole of ${H}^{+}$ ions. Degree of ionisation of water is:
- $1.8\times { 10 }^{ -7 }$
- $0.8\times { 10 }^{ -9 }$
- $5. 4\times { 10 }^{ -9 }$
- $5 . 4\times { 10 }^{ -7 }$
When ${ NH } _{ 4 }Cl$ is added to ${ NH } _{ 4 }OH$ solution, the dissociation of ammonium hydroxide is reduced. It is due to:
- common ion effect
- hydrolysis
- oxidation
- reduction
The weak acid, $HA$ has a ${K} _{a}$ of $1.00\times { 10 }^{ -5 }$. If $0.1$ mol of this acid is dissolved in one litre of water, the percentage of acid dissociated at equilibrium is closet to:
- $1$%
- $99.9$%
- $0.1$%
- $99$%
If concentration of two acids are some, their relative strengths can be compared by:
- ${ \alpha } _{ 1 }/{ \alpha } _{ 2 }$
- $K _{ 1 }/K _{ 2 }$
- ${ \left[ { H }^{ + } \right] } _{ 1 }/{ \left[ { H }^{ + } \right] } _{ 2 }$
- $\sqrt { K _{ 1 }/K _{ 2 } } $
The solubility of $AgCl$ in $NaCl$ solution is less than that in pure water, because of the ________.
- solubility product of $AgCl$ is less than of $NaCl$
- common ion effect
- both $A$ and $B$
- none of these
The addition of NaCl to AgCl decreases the solubility of AgCl because ________.
- Solubility product decreases
- Solubility product remains constant.
- solution becomes unsaturated
- solution becomes super saturated.
The relative strength of two weak bases at same concentration may be given as:
- $\cfrac { { K } _{ { b } _{ 1 } } }{ { K } _{ { b } _{ 2 } } } $
- $\cfrac { { \left[ { OH }^{ - } \right] } _{ 1 } }{ { \left[ { OH }^{ - } \right] } _{ 2 } } $
- $\cfrac { { \alpha } _{ 1 } }{ { \alpha } _{ 2 } } $
- $\cfrac { \sqrt { { K } _{ { b } _{ 1 } } } }{ \sqrt { { K } _{ { b } _{ 2 } } } } $
Which of the following solutions display common ion effect?
- $HCl+NaCl$
- ${ H } _{ 2 }S + KH$
- $NaHS+HCl$
- ${ H } _{ 2 }{ SO } _{ 4 }+{ K } _{ 2 }S$
What is $[{ NH } _{ 4 }^{ + }]$ in a solution containing 0.02M ${ NH } _{ 3 }$ (${ K } _{ b }={ 1.8\times 10 }^{ -5 }$) and 0.01M KOH?
- ${ 1.8\times 10 }^{ -5 }$
- ${ 9\times 10 }^{ -6 }$
- ${ 3.6\times 10 }^{ -5 }$
- NONE OF THE ABOVE
At $100^\circ C$, value of $K _{w}$ is
- $1.0\times 10^{-14}\quad m^{2}$
- less than $1.0\times 10^{-14}\quad m^{2}$
- greater than $1.0\times 10^{-14}\quad m^{2}$
- Zero
The solubility of CaF$ _2$ (K$ _{sp} = 5.3\times 10^{-9}$) in $0.1$ M solution of NaF would be : (Assume no reaction of cation/anion) .
- $5.3 \times 10^{-10}$ M
- $5.3 \times 10^{-8}$ M
- $5.3 \times 10^{-7}$ M
- $5.3 \times 10^{-11}$ M
The percentage of pyridine $\left( {{C _5}{H _5}N} \right)$ that forms pyridinum ion $\left( {{C _5}{H _5}{N^ + }H} \right)$ in a $0.10M$ aqueous pyridine solution $\left( Given - {{K _b}, for {C _5}{H _5}N = 1.7 \times {{10}^{ - 9}}} \right)$ is
- $0.0060\% $
- $0.013\% $
- $0.77\% $
- $1.6\% $
A $40.0 ml$ solution of weak base, $BOH$ is titrated with $0.1 N - HCl$ solution. The $pH$ of the solution is found to be $10.0$ and $9.0$ after adding $5.0 ml$ and $20.0 ml$ of the acid, respectively. The dissociation constant of the base is ($log 2 = 0.3$)
- $2 \times 10^{-5}$
- $1 \times 10^{-5}$
- $4 \times 10^{-5}$
- $5 \times 10^{-5}$
If a salt of weak acid or base is added to a solution of its acid or base respectively, the:
- dissociation of acid or base is diminished
- the $pH$ of the solution in case of acid increases and in case of base decreases
- mixing of two leads for precipitation
- none of the above
What will be the effect of adding $100 ml$ of $0.001 M - HCl$ solution to $100 ml$ of a solution having $0.1 M - HA$? The acid dissociation constant of $HA$ is $10^{-5}$.
- The degree of dissociation of $HA$ will decrease but the $pH$ of solution remains unchanged.
- The degree of dissociation of $HA$ remains unchanged but the $pH$ of solution decreases.
- Neither degree of dissociation nor $pH$ of solution will change.
- The degree of dissociation as well as $pH$ of solution will decrease.
${H _3}B{O _3}$ is:
- monobasic aand weak lewis acid
- monobasic and weak bronsted acid
- monobasic and strong lewis acid
- tribasic and weak bronsted acid
The common ion effects is shown by which of the following sets of solutions:-
- $BaCl _{2}+Ba(NO _{3}) _{2}$
- $NaCl+HCl$
- $NH _{4}OH+NH _{4}Cl$
- $None$
In the dissociation of $NH _4OH$, if excess if $NH _4Cl$ is added before adding $NH _4OH$, the concentration of:
- $NH _4^+$ ions increases and $OH^-$ ions decreases
- both $NH _4^+$ ions and $OH^-$ ions increases
- $NH _4^+$ ions decreases and $OH^-$ ions increases
- both $NH _4^+$ ions and $OH^-$ ions decreases
Which of the following will supress the ionisation of acetic acid in aqueous solution?
- $NaCl$
- $HCI$
- $KCI$
- Unpredicatble
Assertion: $pH$ value of $HCN$ solution decreases when $NaCN$ is added to it
Reason: $NaCN$ provides a common ion $CN^{\circleddash}$ to $HCN$
- Both Assertion and Reason are correct and Reason is the correct explanation for Assertion
- Both Assertion and Reason are correct but Reason is not the correct explanation for Assertion
- Assertion is correct but Reason is incorrect
- Assertion is incorrect but Reason is correct
- Both Assertion and Reason are incorrect
In the third group of qualitative analysis, the precipatitating reagent is $NH _4Cl / NH _4OH$. The function of $NH _4Cl$ is to
- increase the ionisation of $NH _4OH$
- supress the ionisation of $NH _4OH$
- convert the ions of group third into their respective chlorides
- stabilise the hydroxides of group $III$ cations
In the presence of a common ion (incapable of forming complex ion), the solubility of salt _______ in solution.
- increases
- decreases
- remains the same
- cannot predict
The order of basicity of halides is:
- $\displaystyle Cl^{-}< Br^{-}< I^{-}< F^{-}$
- $\displaystyle F^{-}< I^{-}< Br^{-}< Cl^{-}$
- $\displaystyle I^{-}< Br^{-}< Cl^{-}< F^{-}$
- $\displaystyle Cl^{-}< F^{-}< I^{-}< Br^{-}$
Determine $[{OH}^{-}]$ of a $0.050\ M$ solution of ammonia to which has been added sufficient ${NH} _{4}Cl$ to make the total $[{NH} _{4}^{+}]$ equal to $0.100 M$. $[{K} _{b({NH} _{3})}=1.8\times {10}^{-5}]$
- $[{OH}^{-}]=9.0\times {10}^{-6}$
- $[{OH}^{-}]=9.0\times {10}^{-8}$
- $[{OH}^{-}]=9.0\times {10}^{-2}$
- $[{OH}^{-}]=9.0\times {10}^{-9}$
The $pH$ of a dilute solution of acetic acid was found to be $4.3$ The addition of a small crystal of sodium acetate will cause $pH$ to:
- become less than $4.3$
- become more than $4.3$
- remain equal to $4.3$
- unpredictable
Addition of $HCl$ will not suppress the ionization of:
- acetic acid
- benzoic acid
- ${H} _{2}S$
- sulphuric acid
The solubility of $Ca{ F } _{ 2 } \left( { K } _{ sp } = 3.4 \times { 10 }^{ -11 } \right)$ in $0.1 M$ solution of $NaF$ would be
- $3.4\times { 10 }^{ -12 }M$
- $3.4\times { 10 }^{ -10 }M$
- $3.4\times { 10 }^{ -9 }M$
- $3.4\times { 10 }^{ -13 }M$
- Both Assertion and Reason are true and Reason is the correct explanation of Assertion
- Both Assertion and Reason are true but Reason is not the correct explanation of Assertion
- Assertion is true but Reason is false
- Assertion is false but Reason is true
- Both Assertion and Reason are false
When solid $KCl$ is added to a saturated solution of $AgCI$ in $H _2O$
- Nothing happens
- Solubility of $AgCl$ decreases
- Solubility of $AgCl$ increases
- Solubility product of $AgCl$ increases
In a $0.1\ M$ solution of $H _{3}PO _{4}$ the ionic species present are (besides $H _{3}O^+$ and $OH^{-}$):
- ${H _{2}PO _{4}}^{-}, {HPO _{4}}^{2-}, {PO _{3}}^{3-}$
- ${H _{2}PO _{2}}^{3-}, {H _{2}PO _{4}}^{-}, {PO _{4}}^{3-}$
- ${H _{2}PO _{4}}^{-}, {HPO _{3}}^{2-}, {PO _{2}}^{3-}$
- ${PO _{3}}^{4-}, {PO _{4}}^{3-}, {HPO _{4}}^{2-}, {H _{2}PO _{4}}^{-}$
The solubility of silver chloride ___________ in the presence of sodium chloride because of __________.
- increases; common ion effect
- increases; aldol condensation
- decreases; common ion effect
- decreases; aldol condensation
How both the acids $\displaystyle HCl$ and $\displaystyle { HC } _{ 2 }{ H } _{ 3 }{ O } _{ 2 }$ are different?
- The first has less hydrogen in solution
- The second is highly ionized
- The second has more ionized hydrogen
- The first is highly ionized
What is the net effect of the common ion?
- It reduces the solubility of the solute in the solution.
- It reduces the increases of the solute in the solution.
- It causes more product to be made.
- It causes more ions to form.
- There is no net effect overall.
$Ca{SO} _{4}$ is somewhat soluble in water.
$I$. When ${H} _{2}{SO} _{4}$ is added to a solution of $Ca{SO} _{4}$, the solubility of the $Ca{SO} _{4}$ will be increased.
$II$. The addition of ${H} _{2}{SO} _{4}$ will lower the $pH$ of the solution.
- Statement $I$ is true, Statement $II$ is true
- Statement $I$ is true, Statement $II$ is false
- Statement $I$ is false, Statement $II$ is true
- Statement $I$ is false, Statement $II$ is false
What is the common ion effect?
- When the addition of an ion common to two solutes causes precipitation or reduces ionization.
- When a molecule is added to a solution and causes precipitation or reduces ionization
- When the subtraction of an ion common to two solutes causes precipitation or reduces ionization.
- The effect of adding ions to a solution.
- When any ion is added to a solution and causes precipitation or reduces ionization.
A monoprotic acid in $1.00M$ solution is $0.001$% ionised. The dissociation constant of acid is:
- ${ \alpha }^{ 2 }C+\alpha K-K=0$
- ${ \alpha }^{ 2 }C-\alpha K-K=0$
- ${ \alpha }^{ 2 }C-\alpha K+K=0$
- ${ \alpha }^{ 2 }C+\alpha K+K=0$
The ionisation constant of acetic acid is $1.8\times { 10 }^{ -5 }$.The concentration at which it will be dissociated to $2$% is:
- $1M$
- $0.045M$
- $0.018M$
- $0.45M$
Which pair will show common ion effect?
- $Ba{ Cl } _{ 2 }+Ba{ \left( { NO } _{ 3 } \right) } _{ 2 }$
- $NaCl+HCl$
- ${ NH } _{ 4 }OH+{ NH } _{ 4 }Cl$
- $AgCN+KCN$
The dissociation constants of two acids $ H{ A } _{ 1 }$ and $H{ A } _{ 2 }$ are $3.0\times { 10 }^{ -4 }$ and $1.8\times { 10 }^{ -5 }$ respectively. The relative strengths of the acids will be:
- $1:4$
- $4:1$
- $1:16$
- $16:1$
Which of the following pairs will show common ion effect?
- Barium chloride + barium sulphate
- Silver cyanide + potassium nitrite
- Ammonium hydroxide + ammonium chloride
- Sodium chloride + hydrogen chloride
When strong base $(NaOH)$ is added to the weak acid (acetic acid, ${ CH } _{ 3 }COOH$), then dissociation of acetic acid increases; this effect is known as:
- Common ion effect
- Reverse ion effect
- Saltation effect
- Solubility effect
In the third group of qualitative analysis, the precipitating reagent is $NH {4}Cl + NH {4} OH$. The function of $NH {4}Cl$ is to____
- increase the ionization of $NH _{4} OH$
- suppress the ionization of $NH _{4} OH$
- stabilise the hydroxides of group cations
- convert the ions of group third into their respective chlorides
The solubility of ${ A } _{ 2 }{ X } _{ 5 }$ is $x\ mol\ { dm }^{ -3 }$. Its solubility product is:
- $36{ x }^{ 6 }$
- $64\times { 10 }^{ 4 }{ x }^{ 7 }$
- $126{ x }^{ 7 }$
- $1.25\times { 10 }^{ 4 }{ x }^{ 7 }$
Purification of $NaCl$ by the passage of $HCl$ through brine solution is based on which of the following?
- Distribution coefficient
- Le Chatelier’s principle
- Displacement Law
- Common ion effect
What is the $[OH^-]$ in the final solution prepared by mixing $20.0\ mL$ of $0.050\ M$ $HCl$ with $30.0; mL$ of $0.10 ;M; Ba(OH) _2$?
- $0.12\ M$
- $0.10\ M$
- $0.40\ M$
- $0.0050\ M$
8 gram of NaOH is mixed with 9.8 gram of $H _{2}SO _{4}$, the pH of the solution is:
- more than 7
- 7
- less than 7
- cant be said
The $K _{sp}$ for AgCl is $2.8\times 10^{-10}$ at a given temperature. The solubility of AgCl in 0.01 molar HCl solution at this temperature will be :
- $2.8\times 10^{-12}mol L^{-1}$
- $2.8\times 10^{-8}mol L^{-1}$
- $5.6\times 10^{-8}mol L^{-1}$
- $2.8\times 10^{-4}mol L^{-1}$
The degree of dissociation of $PCl _{5(g)}$ at 16.8 bar and $127^{0}C$ is 0.4. The value of $K _{P}$ for the reaction is:
$PCl _{5} \leftrightharpoons PCl _{3(g)} +Cl _{2(g)}$
- $3.2 bar$
- $3.2 bar^{-1}$
- $12.8\ bar$
- $ 0.4$ x $16.8\ bar$
Solubility of AgCl will be minimum in ___________.
- 0.01 M $Na _{2} SO _{4}$
- 0.01 M $Ca Cl _{2}$
- Pure water
- 0.001 M $Ag NO _{3}$
Solid $Ba{({NO} _{3})} _{2}$ is gradually dissoved in a $1\times {10}^{-4}M$ ${Na} _{2}{CO} _{3}$ solution. At what minimum conc. of ${Ba}^{-2}$ will a precipitate of $Ba{CO} _{3}$ begin to form? (${K} _{sp}$ for $Ba{CO} _{3}=5.1\times {10}^{-9}$)
- $4.1\times {10}^{-5}M$
- $8.1\times {10}^{-7}M$
- $5.1\times {10}^{-5}M$
- $8.1\times {10}^{-8}M$
The ionisation constant of an acid, $K _a$ is the measure of strength of an acid. The $K _a$ values of acetic acid, hypochlorous acid and formic acid are $1.74 \times 10^{-5}, 3.0 \times 10^{-8}$ and $1.8 \times 10^{-4}$ respectively. Which of the following orders of pH of $0.1$mol $dm^{-3}$ solutions of these acids is correct?
- Acetic acid > Hypochlorous acid > Formic acid
- Hypochlorous acid > Acetic acid > Formic acid
- Formic acid > Hypochlorous acid > Acetic acid
- Formic acid > Acetic acid > Hypochlorous acid
If $S _0, S _1, S _2$ and $S _3$ are the solubilities in water of $AgCl$, $0.01 ,M ,CaCl _2, 0.01 ,M ,NaCl$ and $0.5 ,M ,AgNO _3$ solutions, respectively, then which of the following is true?
- $S _0 > S _2 > S _1 > S _3$
- $S _0 = S _2 = S _1 > S _3$
- $S _3 > S _1 > S _2 > S _0$
- none of these
The $[H^+]$ of a resulting solution that is $0.01\space M$ acetic acid $(K _a = 1.8\times10^{-5})$ and $0.01\space M$ in benzoic acid $(K _a = 6.3\times10^{-5})$:
- $9\times10^{-4}$
- $81\times10^{-4}$
- $9\times10^{-5}$
- $2.8\times10^{-3}$
$Ag _3 PO _4$ would be least soluble at 25$^o$C in
- 0.1 M $AgNO _3$
- 0.1 M $HNO _3$
- pure water
- 0.1 M $Na _3PO _4$
- solubility in (a), (b), (c) or (d) is not different
The solubility of $AgI$ in $NaI$ solution is less than that in pure water because
- $AgI$ forms complex with $NaI$
- Of common ion effect
- Solubility product of $AgI$ is less than that of $NaI$
- The temperature of the solution decreases
Simultaneous solubility of $AgCNS\ (a)$ and $AgBr\ (b)$ in a solution of water will be
- $a=4.08\times {10}^{-7}mol$ ${litre}^{-1}$; $b=8.16\times {10}^{-7}$ $mol$ ${litre}^{-1}$
- $a=4.08\times {10}^{-7}mol$ ${litre}^{-1}$; $b=4.08\times {10}^{-7}$ $mol$ ${litre}^{-1}$
- $a=8.16\times {10}^{-7}mol$ ${litre}^{-1}$; $b=4.08\times {10}^{-7}$ $mol$ ${litre}^{-1}$
- None of these
Addition of ${NH} _{4}Cl$ does not effect the $pH$ of solution of ${NH} _{4}OH$.
- True
- False
- Ambigous
- None
State whether the given statement is true or false.
- True
- False
Assertion: AgCl will not dissolve in a concentrated solution.
Reason: The chloride ions from NaCl suppress the solubility of AgCl.
- Both Assertion and Reason are true and Reason is the correct explanation of Assertion
- Both Assertion and Reason are true but Reason is not the correct explanation of Assertion
- Assertion is true but Reason is false
- Assertion is false but Reason is true
- Both Assertion and Reason are false
Assertion:
Solubility of $AgCl$ in water decreases if $NaCl$ is added to it.
Reason:
$NaCl$ is soluble freely in water but $AgCl$ is sparingly soluble.
- Both Assertion and Reason are correct and Reason is the correct explanation of Assertion
- Both Assertion and Reason are correct but Reason is not the correct explanation of Assertion
- Assertion is correct but Reason is not correct
- Assertion is not correct but Reason is correct
- Both Assertion and Reason are not correct
(A) pH of $10^{-7}$ M NaOH solution exists between 7 to 7.3 at $25^o C$.
(R) Due to common ion effect ionization of water is suppressed.
- Both (R) and (A) are true and reason is the correct explanation of assertion
- Both (R) and (A) are true but reason is not correct explanation of assertion
- Assertion (A) is true but reason (R) is false
- Assertion (A) and reason (R) both are false
- Assertion (A) is false but reason (R) is true
By adding which of the following in 1 L 0.1 M solution of HA, $(Ka=10^{-5})$, the degree of dissociation of HA decreases appreciably?
- ${10^{-3} M \: HCl, 1\; L}$
- ${0.5 M \: HX (Ka=2\times 10^{-6}), 1 \: L}$
- ${0.1 M \: HNO _{3}, 1\: L}$
- All of these
$\displaystyle { BaCl } _{ 2 }$ dissociates in water to give one $\displaystyle { Ba }^{ 2+ }$ ion and two $\displaystyle { Cl }^{ - }$ ions. If concentrated $\displaystyle HCl$ is added to this solution :
- $\displaystyle \left[ { Ba }^{ 2+ } \right] $ increases
- $\displaystyle \left[ { Ba }^{ 2+ } \right] $ remains constant
- $\displaystyle \left[ { OH }^{ - } \right] $ increases
- The number of moles of undissociated $\displaystyle { BaCl } _{ 2 }$ increases
- $\displaystyle \left[ { H }^{ + } \right] $ decreases
Which of the following has maximum $pK _a$ :-
- $CH _2FCOOH$
- $CH _3ClCOOH$
- $CH _3COOH$
- $HCOOH$
Basic strength of $NH _{4}OH$ in presence of $NH _{4}CI$
- Increase
- Remains unchanged
- Decreases
- Some times increases or sometimes decrease
A solution contains both $Mg^{2+}$(aq) and $Sr^{2+}$(aq) at the same concentration.
The solution is divided into two equal portions. Aqueous sodium hydroxide is added dropwise to one portion. Dilute sulfuric acid is added dropwise to the other portion.
Which row is correct?
| precipitate seen first when NaOH(aq) is added | precipitate seen first when $H _2SO _4$(aq) is added | |
|---|---|---|
| A | magnesium hydroxide | magnesium sulfate |
| B | magnesium hydroxide | strontium sulfate |
| C | strontium hydroxide | magnesium sulfate |
| D | strontium hydroxide | strontium sulfate |
- A
- B
- C
- D