+5
The reaction between copper and nitric acid is an oxidation-reduction reaction where copper is oxidized to copper(II) ions and nitric acid is reduced to nitrogen oxides such as nitrogen dioxide.
Nitric acid is typically produced by the oxidation of ammonia with air in the presence of a catalyst at high temperatures. This process creates nitrogen dioxide, which is then dissolved in water to form nitric acid. Additionally, nitric acid can also be produced by the reaction of nitrogen oxides with water.
Yes, nitrogen is used in making nitric acid, HNO3.
Nitrous acid (HNO2) contains a nitrogen atom with an oxidation state of +3, while nitric acid (HNO3) contains a nitrogen atom with an oxidation state of +5. Nitrous acid is a weaker acid and is unstable, while nitric acid is a stronger acid and is stable.
H2NO3hydrogennitrogenoxygenCombine nitrogen and oxygen at high temperature and pressure (as in internal combustion engine) to make nitrogen dioxide (NO2). Dissolve nitrogen dioxide in water to get nitric acid.
The reaction between copper and nitric acid is an oxidation-reduction reaction where copper is oxidized to copper(II) ions and nitric acid is reduced to nitrogen oxides such as nitrogen dioxide.
Nitric acid is typically produced by the oxidation of ammonia with air in the presence of a catalyst at high temperatures. This process creates nitrogen dioxide, which is then dissolved in water to form nitric acid. Additionally, nitric acid can also be produced by the reaction of nitrogen oxides with water.
Yes, nitrogen is used in making nitric acid, HNO3.
Nitrous acid (HNO2) contains a nitrogen atom with an oxidation state of +3, while nitric acid (HNO3) contains a nitrogen atom with an oxidation state of +5. Nitrous acid is a weaker acid and is unstable, while nitric acid is a stronger acid and is stable.
H2NO3hydrogennitrogenoxygenCombine nitrogen and oxygen at high temperature and pressure (as in internal combustion engine) to make nitrogen dioxide (NO2). Dissolve nitrogen dioxide in water to get nitric acid.
the oxidation number of nitrogen is 5
Carbon does not react with hot nitric acid due to its inert nature. The oxidation state of carbon in hydrocarbons is generally lower than its highest oxidation state (+4), which is needed for reaction with nitric acid. Thus, carbon remains unreactive towards hot nitric acid.
The oxidation state of nitrogen (N) in nitric acid (HNO3) is +5. This is because hydrogen has an oxidation state of +1 in compounds, and oxygen usually has an oxidation state of -2. Since there are three oxygen atoms with a total oxidation state of -6 and one hydrogen atom with an oxidation state of +1, the nitrogen atom must have an oxidation state of +5 to balance out the charges and make the molecule neutral.
Nitric acid contains hydrogen, nitrogen, and oxygen. It has the formula HNO3.
No. Its' formula is HNO3. It has nitrogen, hydrogen and oxygen in it.
Lead nitrate is not used in preparing nitric acid because it is not a source of nitric acid; it is a salt of lead. Nitric acid is typically produced by the oxidation of ammonia using a catalyst, or by the reaction of nitrogen dioxide with water. Lead nitrate is toxic and can be hazardous to handle, so it is not used in the production of nitric acid.
Nitric acid is not actually only one element! It is a compound of three elements in order to give this acid. The elements are: Nitrogen, Hydrogen and Oxygen. Hence, Nitrogen Hydroxide: Nitric Acid!