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Question

Balance the equation: N2+H2NH3


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Solution

Step 1: Given equation

N2+H2NH3

Step 2: Method used for balancing the equation

Using the traditional method of balancing chemical equations. According to the method:

  • First, compare the total number of atoms of each element on the reactant side and the product side.
  • Add stoichiometric coefficients to molecules containing an element that has a different number of atoms on the reactant side and the product side.
  • The coefficient must balance the number of atoms on each side.
  • Usually, the stoichiometric coefficients for hydrogen and oxygen atoms are assigned last.
  • The number of atoms of an element in one species must be obtained by multiplying the stoichiometric coefficient by the total number of atoms of that element present in 1 molecule of the species.
  • Repeat this process till the number of all the atoms of the reacting elements are equal on both the reactant and product sides.

Step 3: Balancing the given equation

The given equation is: N2+H2NH3

Equation: N2+H2NH3

Reactant Side

Product Side

2 Nitrogen atoms1 Nitrogen atom
2 Hydrogen atoms 3 Hydrogen atoms

First, the nitrogen atoms are balanced. After balancing the equation becomes: N2+H22NH3

Finally, the hydrogen atoms are balanced. After balancing the equation becomes: N2+3H22NH3

The updated equation is: N2+3H22NH3

Equation: N2+H2NH3

Reactant Side

Product Side

2 Nitrogen atoms2 Nitrogen atom
6 Hydrogen atoms 6 Hydrogen atoms

Since the number of all the atoms of the reacting elements are equal on both the reactant and product sides are equal, the equation is balanced.

Hence the balanced equation is: N2(g)+3H2(g)2NH3(g).


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