
помогите составить овр зота с водородом H2+ N2=2NH3


Ответы на вопрос

0 0 -3 +1
N2 + 3H2 = 2NH3
3| H2[0] -2e = 2H[+1] | восстановитель, окисление
1| N2[0] +6e = N[-3] | окислитель, восстановление



3H2+N2=2NH3
3| H2(0) -2ē->2H(+) востановитель окисление
1| N2(0)+6ē->2N(3-) окислитель востановление



Balanced Chemical Equation for the Reaction of Hydrogen and Nitrogen to Form Ammonia
To balance the chemical equation for the reaction of hydrogen and nitrogen to form ammonia (NH3), we start with the unbalanced equation:
H2 + N2 → NH3
To balance this equation, we need to ensure that there are equal numbers of each type of atom on both sides of the equation. The balanced equation for this reaction is:
3H2 + N2 → 2NH3
This balanced equation indicates that three molecules of hydrogen (H2) react with one molecule of nitrogen (N2) to produce two molecules of ammonia (NH3).
Explanation of the Balanced Equation
The balanced equation reflects the law of conservation of mass, which states that matter cannot be created or destroyed in a chemical reaction. By balancing the equation, we ensure that the same number of each type of atom is present on both the reactant and product sides of the equation.
Chemical Reaction Details
The reaction of hydrogen and nitrogen to form ammonia is known as the Haber process, which is a crucial industrial process for producing ammonia. This reaction is exothermic and is typically carried out at high pressure and temperature in the presence of a catalyst.
Conclusion
In summary, the balanced chemical equation for the reaction of hydrogen and nitrogen to form ammonia is:
3H2 + N2 → 2NH3
This equation represents the stoichiometry of the reaction, indicating the relative amounts of each reactant and product involved in the chemical process.


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