Yes, ferrous oxide (FeO) can react with sodium hypochlorite (NaClO), which is a strong oxidizing agent commonly found in household bleach. The reaction would likely result in the formation of iron chloride (FeCl2) and other byproducts.
When sodium reacts with oxygen, it forms sodium oxide (Na2O).
It reacts with oxygen in air to form sodium oxide (Na2O) and some sodium peroxide (Na2O2) and reacts with nitrogen to form some sodium nitride (Na3N).
Sodium oxide is a basic oxide. It reacts with water to form sodium hydroxide, which is a strong base.
Zinc oxide is an example of an oxide that reacts with both hydrochloric acid and sodium hydroxide. When zinc oxide reacts with hydrochloric acid, it forms zinc chloride and water. When zinc oxide reacts with sodium hydroxide, it forms sodium zincate and water.
NaOH is formed then. NaOH is a strong base.
When sodium reacts with oxygen, it forms sodium oxide (Na2O).
It reacts with oxygen in air to form sodium oxide (Na2O) and some sodium peroxide (Na2O2) and reacts with nitrogen to form some sodium nitride (Na3N).
Sodium oxide is a basic oxide. It reacts with water to form sodium hydroxide, which is a strong base.
Zinc oxide is an example of an oxide that reacts with both hydrochloric acid and sodium hydroxide. When zinc oxide reacts with hydrochloric acid, it forms zinc chloride and water. When zinc oxide reacts with sodium hydroxide, it forms sodium zincate and water.
The reaction between sodium hypochlorite and copper results in the formation of copper(II) oxide and sodium chloride. This is an oxidation-reduction reaction where the sodium hypochlorite oxidizes the copper metal to form copper oxide and is itself reduced to sodium chloride.
Sodium oxide reacts with water to produce sodium hydroxide. The chemical reaction can be represented as: Na2O + H2O → 2NaOH.
NaOH is formed then. NaOH is a strong base.
When sodium oxide is added to water, it reacts to form sodium hydroxide as a product. This is because sodium oxide is a basic oxide that reacts with water to produce a strong base, sodium hydroxide, along with the release of heat. This reaction is exothermic and can be used in industries for the production of sodium hydroxide.
When lead oxide reacts with sodium hydroxide, the following reaction occurs: PbO (lead oxide) + 2 NaOH (sodium hydroxide) -> Na2PbO2 (sodium plumbite) + H2O (water) This reaction forms sodium plumbite and water as products.
Sodium oxide reacts with water to produce only one product: sodium hydroxide. The equation for the reaction is Na2O + H2O -> 2 NaOH.
Reaction as follows:Na2O + H2SO4 --> Na2SO4 + 2H2OSodium sulfate is formed by this.
When sodium reacts with oxygen, it forms sodium oxide. The appearance changes because sodium oxide is a different compound with different properties compared to pure sodium. The increase in mass is due to the combination of the sodium atoms with oxygen atoms to form sodium oxide molecules.