QUESTION IMAGE
Question
- magnesium metal combines with nitrogen gas
To determine the chemical reaction when magnesium metal combines with nitrogen gas, we follow these steps:
Step 1: Identify the reactants and products
- Reactants: Magnesium (Mg) and Nitrogen gas ($N_2$)
- Product: Magnesium nitride ($Mg_3N_2$)
Step 2: Write the unbalanced chemical equation
The reaction can be written as:
Step 3: Balance the chemical equation
- Balance Mg atoms: There are 3 Mg atoms in $Mg_3N_2$, so we put a coefficient of 3 in front of Mg on the left side.
- Balance N atoms: There are 2 N atoms in $N_2$ and 2 N atoms in $Mg_3N_2$ (since $Mg_3N_2$ has 2 N atoms), so the N atoms are already balanced.
The balanced chemical equation is:
Step 4: Indicate the physical states (optional but common)
Magnesium is a solid (s), nitrogen gas is a gas (g), and magnesium nitride is a solid (s). So the complete equation is:
Final Answer
The balanced chemical equation for the reaction between magnesium metal and nitrogen gas is $\boxed{3Mg(s) + N_2(g)
ightarrow Mg_3N_2(s)}$.
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To determine the chemical reaction when magnesium metal combines with nitrogen gas, we follow these steps:
Step 1: Identify the reactants and products
- Reactants: Magnesium (Mg) and Nitrogen gas ($N_2$)
- Product: Magnesium nitride ($Mg_3N_2$)
Step 2: Write the unbalanced chemical equation
The reaction can be written as:
Step 3: Balance the chemical equation
- Balance Mg atoms: There are 3 Mg atoms in $Mg_3N_2$, so we put a coefficient of 3 in front of Mg on the left side.
- Balance N atoms: There are 2 N atoms in $N_2$ and 2 N atoms in $Mg_3N_2$ (since $Mg_3N_2$ has 2 N atoms), so the N atoms are already balanced.
The balanced chemical equation is:
Step 4: Indicate the physical states (optional but common)
Magnesium is a solid (s), nitrogen gas is a gas (g), and magnesium nitride is a solid (s). So the complete equation is:
Final Answer
The balanced chemical equation for the reaction between magnesium metal and nitrogen gas is $\boxed{3Mg(s) + N_2(g)
ightarrow Mg_3N_2(s)}$.