The chemical formula "n o2 no2" seems to have a small formatting issue, but it likely refers to nitrogen (N) and oxygen (O) compounds. The products indicated by this formula could include nitrogen dioxide (NO2), which is formed when nitrogen reacts with oxygen. If the context involves a reaction, such as the combustion of nitrogen in oxygen, the primary product would be nitrogen dioxide.
The product of the reaction between nitrogen (N) and oxygen (O2) is nitrogen dioxide (NO2). In this reaction, one nitrogen atom reacts with one molecule of oxygen to form one molecule of nitrogen dioxide. The balanced chemical equation for this reaction is: N + O2 → 2NO2.
O2 is the chemical formula for the diatomic molecule of oxygen.
The reactions are:N2 + O2 = 2 NO2 NO + O2 = 2 NO2
o2 is a symbol. A formula is something like O2 + H2 -> H20
The chemical formula for oxygen is O2, which represents a molecule composed of two oxygen atoms bonded together. Oxygen is a diatomic gas that is essential for respiration in most living organisms and plays a crucial role in various chemical reactions.
The product in this chemical reaction is nitrogen dioxide (NO2). It is formed by the combination of nitrogen (N) and oxygen (O2) in the presence of a spark or high temperature.
The product of N plus O2 to form NO2 is a chemical reaction where nitrogen and oxygen gas combine to form nitrogen dioxide gas. This reaction occurs when nitrogen and oxygen molecules react under specific conditions to produce the NO2 molecule.
This compound is the magnesium oxide, MgO.
ClO2 is the chemical formula of chlorine dioxide.
The chemical formula for the oxygen in the air is O2, where the 2 should be a subscript.
Formula: O2-
Formula: O2-
Formula: O2-
O2 is the chemical formula for the diatomic molecule of oxygen.
To determine the mass of NO2 formed when NO reacts with O2, we need to write and balance the chemical equation for the reaction. The balanced equation is 2NO + O2 -> 2NO2. From the equation, we see that 2 moles of NO will react with 1 mole of O2 to produce 2 moles of NO2. Next, we need to calculate the number of moles of O2 present in 384g using its molar mass. Finally, we can use the mole ratio from the balanced equation to find the mass of NO2 formed.
Formula: O2
The chemical formula for oxygen is O2 and for individual oxygen atom its symbol is O. Gases such as oxygen exist as diatomic molecules.