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Identify the redox reactions out of the following reactions and identify the oxidising and reducing agents in them. 4NHX3(g)+3OX2(g)⟶2NX2(g)+6HX2O(g)

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प्रश्न

Identify the redox reactions out of the following reactions and identify the oxidising and reducing agents in them.

\[\ce{4NH3 (g) + 3O2 (g) -> 2N2 (g) + 6H2O (g)}\]

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उत्तर

\[\ce{\overset{-3}{4N}\overset{+1}{H3} (g) + 3\overset{0}{O2} (g) -> 2\overset{0}{N}2 (g) + 6\overset{+1}{H2}\overset{-2}{O} (g)}\]

Here. O.N. of N increases from -3 (in \[\ce{NH3}\]) to 0 in \[\ce{(N2)}\] and therefore, \[\ce{NH3}\] acts as a reducing agent. O.N. of \[\ce{O}\] decreases from 0 (in \[\ce{O2}\]) to –2 (in \[\ce{H, O}\]), and therefore, \[\ce{O2}\] acts as an oxidizing agent.

Thus, reaction is a redox reaction.

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अध्याय 8: Redox Reactions - Multiple Choice Questions (Type - I) [पृष्ठ १०८]

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एनसीईआरटी एक्झांप्लर Chemistry Exemplar [English] Class 11
अध्याय 8 Redox Reactions
Multiple Choice Questions (Type - I) | Q 25.(v) | पृष्ठ १०८

संबंधित प्रश्न

Consider the reaction:

\[\ce{O3(g) + H2O2(l) → H2O(l) + 2O2(g)}\]

Why it is more appropriate to write these reaction as:

\[\ce{O3(g) + H2O2 (l) → H2O(l) + O2(g) + O2(g)}\]

Also, suggest a technique to investigate the path of the redox reactions.


The compound AgF2 is an unstable compound. However, if formed, the compound acts as a very strong oxidizing agent. Why?


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Balance the following redox reactions by ion-electron method:

  1. \[\ce{MnO-_4 (aq) + I– (aq) → MnO2 (s) + I2(s) (in basic medium)}\]
  2. \[\ce{MnO-_4 (aq) + SO2 (g) → Mn^{2+} (aq) + HSO-_4  (aq) (in acidic solution)}\]
  3. \[\ce{H2O2 (aq) + Fe^{2+} (aq) → Fe^{3+} (aq) + H2O (l) (in acidic solution)}\]
  4. \[\ce{Cr_2O^{2-}_7 + SO2(g) → Cr^{3+} (aq) + SO^{2-}_4 (aq) (in acidic solution)}\]

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\[\ce{N2H4(l) + ClO^-_3 (aq) → NO(g) + Cl–(g)}\]


Choose the correct option.

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\[\ce{Sn^{2⊕} + 2Fe^{3⊕}->Sn^{4⊕} + 2Fe^{2⊕}}\]


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\[\ce{Cr2O^2-_{7(aq)} + SO^2-_{3(aq)}->Cr^3+_{ (aq)} + SO^2-_{4(aq)}(acidic)}\]


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\[\ce{6 CO2(g) + 6H2O(l) → C6 H12O6(aq) + 6O2(g)}\]

Why it is more appropriate to write these reaction as:

\[\ce{6CO2(g) + 12H2O(l) → C6 H12O6(aq) + 6H2O(l) + 6O2(g)}\]

Also, suggest a technique to investigate the path of the redox reactions.


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\[\ce{I2 + NO^{-}3 -> NO2 + IO^{-}3}\]


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\[\ce{I2 + S2O^{2-}3 -> I- + S4O^{2-}6}\]


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\[\ce{MnO2 + C2O^{2-}4 -> Mn^{2+} + CO2}\]


Identify the redox reactions out of the following reactions and identify the oxidising and reducing agents in them.

\[\ce{3HCl (aq) + HNO3 (aq) -> Cl2 (g) + NOCl (g) + 2H2O (l)}\]


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\[\ce{PCl3 (l) + 3H2O (l) -> 3HCl (aq) + H3PO3 (aq)}\]


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\[\ce{Cr2O^{2-}7 + H^{+} + I- -> Cr^{3+} + I2 + H2O}\]


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\[\ce{Re2O7 + CO -> Re2(CO)10 + CO2}\]

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On balancing the given redox reaction,

\[\ce{aCr2O7^2- + Bso3^2- (aq) + CH+ (aq) -> 2aCr^3+ (aq) + bSO4^2- (aq) + c(H2O(1)/2}\]

the coefficients a, b and c are found to be, respectively:


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