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{:("List -I Salt","List -II Kg"),((A) Ag...

`{:("List -I Salt","List -II Kg"),((A) AgCI,P.27S^(4)),((B)PbI_(2),Q.108(S)^(5)),((C )AS_(2)S_(3),R.4S^(3)),((D)Ag_(3)PO_(4),S.S^(2)):}`

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The correct Answer is:
A-S;B-R;C-Q;D-P
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{:("COLUMN-I","COLUMN-II"),("(Oxy-acid of S)","(Oxidation state of 'S'')"),((A)H_(2)SO_(3),(p)+2),((B)H_(2)S_(2)O_(6),(q)+3),((C )H_(2)S_(2)O_(3),(r )+4),((D)H_(2)S_(2)O_(4),(s) +5):}

{:("List-I" ,"List-II"),((A) "CC"I_(4),P. "Lewis acid"),((B)AICI_(3),"Q.Lewis base"),((C )NH_(3),R."Bronsted acid"),((D) HCIO_(4) ,S."Bronsted base"),(,T."Neither lewis acid nor Lewis base"):}

{:("List - I","List - II "),("(Salt)",(k_(1) = 10^(-2) k_(2) = 10^(-7))),((A) NaHSO_(3),(P)"Acidic solution "),((B) Na_(2)HPO_(3),(Q)"lkaline solution "),((C) NAH_(2)PO_(3),(R)"pH independent on concentration "),((D) Al(NO_(3))_(3),(S) "Amphoteric salt "):}

{:("List-I"," ""List-II"),(1("In" H_(3)PO_(4)"solution"),(C=[H_(3)PO_(4)])),((A)[H^(+)],P.sqrt(K_(1)C)),((B)[H_(2)PO_(4)^(-)],Q.K_(2)),((C)[HPO_(4)^(-2)],R.sqrt(K_(1)K_(2))),((D)[PO_(4)^(-3)],S.(K_(2)K_(3))/(sqrt(K_(1).C))):}

{:("List-I"," ""List-II"),((A)SiF_(4),P."Lewis acid"),((B)CO_(2),Q."Lewis base"),((C) SO_(2),R."Bronstead acid"),((D)NH_(3),S."Bronstead base"):}

{:("LIST - 1","LIST - 2"),("A) "H_(2)SO_(4),"1) "+4),("B) "H_(2)(S)_(n)O_(6),"2) "+3),("C) "H_(2)SO_(3),"3) "+2"," -2),("D) "H_(2)SO_(3),"4) "+6),(,"5) "+5","0):} The correct match is

{:("COLUMN-I","COLUMN-II"),((A)Na_(2)S_(2)O_(3),(p)NaCl),((B)Na_(2)S_(2)O_(3)+AgNO_(3),(q)Na_(3)[Ag(S_(2)O_(3))_(2)]),((C )Na_(2)S_(2)O_(3)+Cl_(2)+H_(2)O,(r )Na_(2)SO_(4)),((D)Na_(2)S_(2)O_(3)+I_(2),(s) Na_(2)S_(4)O_(6)):}

Match vitamins and their Isoelectric points {:("List - I","List - II"),("(A) Aspartic acid","(p) 9.7"),("(B) Lysine","(q) 3.0"),("(C ) Histidine","(r ) 3.2"),("(D) Glutamicacid","(s) 7.6"):}

{:("COLUMN-I","COLUMN-II"),((A)H_(2)S_(2)O_(5),(p)"Dibasic"),((B)H_(2)S_(2)O_(4),(q)S-O-S " bond"),((C )H_(2)S_(4)O_(6),(r )S-S" bond with same oxidation state of sulphur"),((D)H_(2)S_(2)O_(7),(s) S-S " bond with different oxidation state of sulphur"),(,(t)"Atleast one 'S' in +6 oxidation state"):}

{:("List - I (Vitamines)","List - II (Chemical names)"),((A) B_(1),"(p) Biotin"),((B) B_(2),"(q) Pyridoxine"),((C ) B_(6),"(r ) Thiamin"),("(D) H or vitamin B - 7","(s) Lactoflavin"):}

AAKASH SERIES-IONIC EQUILLIBRIUM-LECTURE SHEET (EXERCISE-IV) ( Straight Objective Type Questions )
  1. The molar solubility in mol. lit^(-1) of a sparingly soluble salt MX(4...

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  2. Let the solubility of an aqueous solution of Mg(OH)(2), be "X^(@) then...

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  3. The correct representation for solubility product of SnS(2) , is

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  4. Which of the following has the lowest value of K at 25^(@) C?

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  5. Which of the following is most soluble ?

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  6. pH of saturated Mg(OH)(2), solution is 12, then

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  7. Which of the following is/are true for an acid- base titration?

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  8. Let the colour of the indicator (Hin colourles) will be visible only w...

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  9. The dissociation constant of an indicator 'InH' is 10^(5. Then

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  10. A solution which remains in equilibrium with undissolved solute is sai...

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  11. A solution which remains in equilibrium with undissolved solute is sai...

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  12. A solution which remains in equilibrium with undissolved solute is sai...

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  13. Consider an ionic solid that dissolves in water according to the equat...

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  14. Consider an ionic solid that dissolves in water according to the equat...

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  15. The solubility product of SrF(2) in water is 8xx10^(-10) Calculate it...

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  16. Solubility products of ACO(3), BSO(4), and ASO(4), are 4 xx 10^(-10), ...

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  17. The K, of an indicator HIn is 9 x 10^(4), The percentage of the basic ...

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  18. Calculate the pH at which an acid indicator with K(a), = 1.0 xx 10^(-5...

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  19. K(sp) of M(OH)(x), is 27 xx 10^(-12) and its solubility in water is 10...

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  20. {:("List -I Salt","List -II Kg"),((A) AgCI,P.27S^(4)),((B)PbI(2),Q.108...

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