The equation 8HNO3 + 2Cu2S -> 2Cu(NO3)2 + 4H2O + 4NO + 2SO2

Detailed information about the equation 8HNO3 + 2Cu2S -> 2Cu(NO3)2 + 4H2O + 4NO + 2SO2 The above equation represents the reaction process between nitric acid (HNO3) and copper sulfide (Cu2S). The result of the reaction is the production of copper(II) nitrate (Cu(NO3)2), water (H2O), nitrogen monoxide (NO), and sulfur dioxide (SO2). Reaction Conditions This … Read more

The equation 6HNO3 + 6H2S -> 6H2SO4 + 6NO + 2H2O

Detailed information about the equation 6HNO3 + 6H2S -> 6H2SO4 + 6NO + 2H2O: The above equation describes the chemical reaction process between nitric acid (HNO3) and hydrogen sulfide (H2S) to produce sulfuric acid (H2SO4), nitric monoxide (NO) and water (H2O). Reaction conditions: For the reaction to occur, conditions such as the presence of the … Read more

The equation 6HNO3 + 3Sb2S3 -> 3Sb2O5 + 6NO + 6H2O

Detailed information about the equation 6HNO3 + 3Sb2S3 -> 3Sb2O5 + 6NO + 6H2O: This equation describes a reaction between nitric acid (HNO3) and antimony (III) sulfide (Sb2S3) to form antimony pentoxide (Sb2O5), nitric oxide (NO), and water (H2O). Reaction conditions: This is a redox reaction, requiring an acidic environment to occur. Specific reaction conditions … Read more

The equation 6HNO3 + 3Sb -> 3H2O + 6NO + Sb2O3

Detailed information about the equation 6HNO3 + 3Sb -> 3H2O + 6NO + Sb2O3: The above chemical equation describes the reaction process between nitric acid (HNO3) and antimony (Sb) to form water (H2O), nitric monoxide (NO) and antimony(III) oxide (Sb2O3). According to the number of moles in the equation, 6 moles of HNO3 react with … Read more

The equation 6HNO3 + 3CuS -> 3Cu(NO3)2 + 6H2O + 3NO

Detailed information about the equation 6HNO3 + 3CuS -> 3Cu(NO3)2 + 6H2O + 3NO: This equation describes the oxidation process of copper sulfide (CuS) by nitric acid (HNO3) to form copper (II) nitrate (Cu(NO3)2), water (H2O), and nitric oxide (NO). In this process, copper sulfide is oxidized from +1 to +2, and nitrogen in nitric … Read more

The equation 6HNO3 + 3CuS -> 3Cu(NO3)2 + 3H2O + 3NO + 3SO2

Detailed information about the equation 6HNO3 + 3CuS -> 3Cu(NO3)2 + 3H2O + 3NO + 3SO2 This equation describes the reaction between Nitric acid (HNO3) and copper sulfide (CuS) to form copper (II) nitrate (Cu(NO3)2), water (H2O), nitrogen monoxide (NO) and sulfur dioxide (SO2). Reaction conditions The reaction occurs when the two reactants come into … Read more

The equation 6HNO3 + 3Cu2S -> 3Cu(NO3)2 + 3H2O + 6NO + 3SO2

Detailed Information on the Equation: The chemical equation above describes the reaction between nitric acid (HNO3) and copper sulfide (Cu2S) to form copper (II) nitrate (Cu(NO3)2), water (H2O), nitrogen oxide (NO) and sulfur dioxide (SO2). In this equation, the mole ratio between the reactants and products is represented as: 6 moles of HNO3 react with … Read more

The equation 6HNO3 + 2Fe -> 2Fe(NO3)3 + 6H2O + 2NO.

Detailed information about the chemical equation: The chemical equation above describes the reaction between nitric acid (HNO3) and iron (Fe) to produce iron(III) nitrate (Fe(NO3)3), water (H2O), and nitrogen monoxide (NO). According to the stoichiometry of the equation, 6 moles of nitric acid need to react with 2 moles of iron to produce 2 moles … Read more

The equation 6HNO3 + 2Cu2S -> 2Cu(NO3)2 + 3H2O + 4NO + 2SO2

Detailed information about the equation 6HNO3 + 2Cu2S -> 2Cu(NO3)2 + 3H2O + 4NO + 2SO2 This equation describes the reaction process between Nitric acid (HNO3) and Copper sulfide (Cu2S) to produce Copper(II) nitrate (Cu(NO3)2), water (H2O), Nitric oxide (NO), and Sulfur dioxide (SO2). Reaction conditions The reaction usually takes place in an acidic environment, … Read more

The equation 4HNO3 + C -> 2H2O + 4NO2 + CO2

Detailed information on the equation 4HNO3 + C -> 2H2O + 4NO2 + CO2: The above chemical equation shows that nitric acid (HNO3) reacts with graphite (C) to form water (H2O), nitrogen dioxide (NO2) and carbon dioxide (CO2). Reaction conditions: The reaction takes place under high temperature conditions. Reaction process: At high temperatures, nitric acid … Read more