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Sagot :
Sure, let's break down the problem step-by-step.
Given the expression:
[tex]\[ N_2 + 3 H_2 \][/tex]
To solve this expression, follow these steps:
1. Identify the reactants:
- [tex]\(N_2\)[/tex] represents Nitrogen gas.
- [tex]\(H_2\)[/tex] represents Hydrogen gas.
2. Determine the reaction based on the given reactants. Generally, [tex]\(N_2\)[/tex] and [tex]\(H_2\)[/tex] react to form ammonia ([tex]\(NH_3\)[/tex]) according to the balanced chemical equation:
[tex]\[ N_2 + 3H_2 \rightarrow 2NH_3 \][/tex]
So, based on the provided reactants, the reaction involves combining one molecule of nitrogen gas ([tex]\(N_2\)[/tex]) with three molecules of hydrogen gas ([tex]\(H_2\)[/tex]) to produce two molecules of ammonia ([tex]\(NH_3\)[/tex]).
Therefore, the detailed solution for this expression is:
[tex]\[ N_2 + 3H_2 \rightarrow 2NH_3 \][/tex]
This is the step-by-step solution for the question given.
Given the expression:
[tex]\[ N_2 + 3 H_2 \][/tex]
To solve this expression, follow these steps:
1. Identify the reactants:
- [tex]\(N_2\)[/tex] represents Nitrogen gas.
- [tex]\(H_2\)[/tex] represents Hydrogen gas.
2. Determine the reaction based on the given reactants. Generally, [tex]\(N_2\)[/tex] and [tex]\(H_2\)[/tex] react to form ammonia ([tex]\(NH_3\)[/tex]) according to the balanced chemical equation:
[tex]\[ N_2 + 3H_2 \rightarrow 2NH_3 \][/tex]
So, based on the provided reactants, the reaction involves combining one molecule of nitrogen gas ([tex]\(N_2\)[/tex]) with three molecules of hydrogen gas ([tex]\(H_2\)[/tex]) to produce two molecules of ammonia ([tex]\(NH_3\)[/tex]).
Therefore, the detailed solution for this expression is:
[tex]\[ N_2 + 3H_2 \rightarrow 2NH_3 \][/tex]
This is the step-by-step solution for the question given.
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