Yes, water can react as an acid or a base - amphoteric.
This reaction is called neutralization; the products are a salt and water.
This substance is a base.
No, MgO is not a base. It is a basic oxide because it reacts with water to form a basic solution, but it is not a base itself.
when a base is mixed with an acidic solution why does neutralization occurs?
It is a chemical property. When a substance reacts with a base to form water, it undergoes a chemical change, illustrating its chemical reactivity.
Yes, water can react as an acid or a base - amphoteric.
false
Ammonia dissolved in water is a weak base. It can accept protons (H+) to form ammonium ions (NH4+).
Water (H2O) is always produced when an Arrhenius acid reacts with an Arrhenius base in an aqueous solution. This reaction forms a salt and water as the products.
salt. Answer is true
Calcium oxide reacts with water to produce calcium hydroxide, which is a strong base. This reaction is exothermic and forms a white, powdery substance.
Sodium oxide reacts with water to form sodium hydroxide, which is a strong base.
When a base reacts with water, it produces hydroxide ions (OH-) and the conjugate acid of the base. This reaction is known as hydrolysis.
When a substance reacts with an acid, it can undergo processes such as neutralization, where the acid and base react to form salt and water. Other reactions can include the release of gases, such as carbon dioxide when an acid reacts with a carbonate compound. The specific reaction will depend on the type of acid and substance involved.
the reaction which takes place when an acid reacts with a base is called neutralization reaction. For instance,if HCl reacts with NaOH, the products are NaCl and water. Neutralizing an acid with a base would always give salt and water as the only products.
When a base reacts with carbonates, it forms water, carbon dioxide gas, and a salt. The base reacts with the carbonate ion to release carbon dioxide gas, while the remaining products form water and a salt through a neutralization reaction.