H_{2}SO_{4} + K_{2}SO_{3 }is a distinct reaction in which an acid is reacting with a salt. Let us see how this reaction undergoes.

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**In H _{2}SO_{4} + K_{2}SO_{3 }reaction H_{2}SO_{4} is a strong acid sánh that it can completely dissociates into the aqueous truyền thông media and it is very hygroscopic in nature sánh it does not available naturally. K_{2}SO_{3 }is an inorganic compound which is in white crystalline size, it is formed by the thermal decomposition of potassium meta bisulfite.**

In this article we will try đồ sộ explore some of the facts of this H_{2}SO_{4} + K_{2}SO_{3 }reaction lượt thích its products, intermolecular forces and type of reaction.

## What is the product of H_{2}SO_{4} and K_{2}SO_{3}

**Potassium sulphate, sulfur dioxide and water molecule are formed during the reaction of H _{2}SO_{4} + K_{2}SO_{3}**.

**K _{2}SO_{3(aq)} + H_{2}SO_{4(aq)} → K_{2}SO_{4(aq)} + H_{2}O_{(l)} + SO_{2(g)}**

## What type of reaction is H_{2}SO_{4} + K_{2}SO_{3}

**H _{2}SO_{4} + K_{2}SO_{3 }is an acid-alkali reaction also known as a neutralization reaction in which acid is reacted with a basic salt in order đồ sộ size a metal salt and water**.

## How đồ sộ balance H_{2}SO_{4} + K_{2}SO_{3}

**The balanced chemical equation for the****H**_{2}SO_{4}+ K_{2}SO_{3}reaction is;

**K _{2}SO_{3(aq)} + H_{2}SO_{4(aq)} → K_{2}SO_{4(aq)} + H_{2}O_{(l)} + SO_{2(g)}**

**In this reaction equimolar amount of H**_{2}SO_{4}+ K_{2}SO_{3 }reacted with each other sánh there is no need đồ sộ balance this equation.

## H_{2}SO_{4} + K_{2}SO_{3} titration

**We cannot perform the titration of H _{2}SO_{4} versus K_{2}SO_{3 }since K_{2}SO_{3} is a basic salt.**

## H_{2}SO_{4} + K_{2}SO_{3 }net ionic equation

**The reaction H_{2}SO_{4} + K_{2}SO_{3} gets balanced using the following steps**.

**SO3 ^{2-}_{(aq)} + 2H^{+}_{(aq)}—> SO_{2(g)} + H_{2}O_{(l)} **

**Write down the balanced chemical equation**.

**The balanced chemical equation for the reaction of H**;_{2}SO_{4}+ K_{2}SO_{3 }is

**K**_{2}SO_{3(aq)}+ H_{2}SO_{4(aq)}→ K_{2}SO_{4(aq)}+ H_{2}O_{(l)}+ SO_{2(g)}

**Split the strong electrolytes into ions**.

**In this reaction strong electrolytes are H**_{2}SO_{4}, K_{2}SO_{3 }and K_{2}SO_{4}.

**2K**^{+}_{(aq)}+ SO_{3}^{2-}_{(aq)}+ 2H^{+}_{(aq)}+ SO_{4}^{2-}_{(aq)}—-> 2k^{+}_{(aq)}+ SO4^{2-}_{(aq)}+ H_{2}O_{(l)}+ SO_{2(g)}

**Cancel the spectator ions on both sides and write down the net ionic equation**.

**After cancelling the spectator ions, the net ionic equation for the above reaction is:**

**SO**_{3}^{2-}_{(aq)}+ 2H^{+}_{(aq)}—–> SO_{2(g)}+ H_{2}O_{(l)}

## H_{2}SO_{4} + K_{2}SO_{3} conjugate pairs

**H _{2}SO_{4} + K_{2}SO_{3} reaction has the following conjugate pairs,**

._{ }H_{2}SO_{4 }and H_{2}SO_{4}^{–}are the conjugate pairs present in this reaction

**K**_{2}SO_{3}does not size any conjugate pairs because of its salt nature.

## H_{2}SO_{4} + K_{2}SO_{3} intermolecular forces

**H _{2}SO_{4} + K_{2}SO_{3} reaction has the following intermolecular forces,**

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**Hydrogen bonding, Vander Waal forces and dipole-dipole interactions are the intermolecular forces present in H**_{2}SO_{4}out of which hydrogen bonding is the strongest one.

**In K**_{2}SO_{3 }ion-ion interactions are present.

## H_{2}SO_{4} + K_{2}SO_{3 }reaction enthalpy

**Literature reviews on the enthalpy of H _{2}SO_{4} + K_{2}SO_{3 }reaction is not in existence due đồ sộ the strong oxidizing property of H_{2}SO_{4}.**

## Is H_{2}SO_{4} + K_{2}SO_{3} a buffer solution

**H _{2}SO_{4} + K_{2}SO_{3} is not a buffer solution since H_{2}SO_{4} is a strong acid and K_{2}SO_{3} is a neutral salt.**

## Is H_{2}SO_{4} + K_{2}SO_{3 }a complete reaction

**H _{2}SO_{4} + K_{2}SO_{3 }is a complete reaction because the products formed during the reaction are stable sánh they cannot react further**.

## Is H_{2}SO_{4} + K_{2}SO_{3 }an exothermic or endothermic reaction

**H _{2}SO_{4} + K_{2}SO_{3} reaction exothermic or endothermic nature are yet đồ sộ be not in evidence because of the reaction between a strong acid and a neutral salt.**

## Is H_{2}SO_{4} + K_{2}SO_{3 }a redox reaction

**H _{2}SO_{4} + K_{2}SO_{3 }is not a redox reaction since there is no electronic charge transfer takes place between the reactants**.

## Is H_{2}SO_{4} + K_{2}SO_{3 }a precipitation reaction

**H _{2}SO_{4} + K_{2}SO_{3 }is not a precipitation reaction because no precipitate formed during the**

**observation.**

## Is H_{2}SO_{4} + K_{2}SO_{3 }reversible or irreversible reaction

**H _{2}SO_{4} + K_{2}SO_{3 }is an irreversible reaction since the gas formed during the reaction cannot be retrieved and the products vì thế not undergo backward reaction under the same conditions as it requires large amount of energy.**

## Is H_{2}SO_{4} + K_{2}SO_{3 }displacement reaction

**H _{2}SO_{4} + K_{2}SO_{3 is }a double displacement reaction followed by decomposition reaction.**

**K _{2}SO_{3(aq)} + H_{2}SO_{4(aq)} → K_{2}SO_{4(aq)} + H_{2}O_{(l)} + SO_{2(g)}**

#### Conclusion

K_{2}SO_{4} which is formed during the reaction of H_{2}SO_{4} + K_{2}SO_{3} has a wide range of usage in puffing and in some fruits and vegetables. It is also used as a flash reducer. In pyrotechnics and especially in the manufacturing of glass materials.

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