This is a neutralization reaction:
NaOH + HNO3 = NaNO3 + H2O
Zinc nitrate. Zn(NO3)2 *6H2O MW 297.47 density = 2.065 g/ml Melting point 36.4º C
Sodium hydroxide (NaOH) is a base, so when it reacts with sulfuric acid (H2SO4), what we'll see is what is called an acid-base reaction. When an acid reacts with a base, the products are a salt and water. In this case, the product will be sodium sulfate (a salt) and water. The balanced equation is written in this way: 2NaOH + H2SO4 => Na2SO4 + 2H2O
Nitric acid can be prepared in the lab by the reaction of sodium nitrate with sulfuric acid. This reaction produces nitric acid, water, and sodium sulfate. The nitric acid can then be purified through distillation.
Nitrate salts are formed when nitric acid reacts with a base or a metal. Examples include sodium nitrate (NaNO3) and potassium nitrate (KNO3).
When urea reacts with nitric acid, it forms a compound called urea nitrate along with water. This reaction is exothermic and can be violent if not controlled. Urea nitrate is a highly explosive compound and is often used in the production of explosives.
Zinc nitrate. Zn(NO3)2 *6H2O MW 297.47 density = 2.065 g/ml Melting point 36.4º C
Sodium hydroxide (NaOH) is a base, so when it reacts with sulfuric acid (H2SO4), what we'll see is what is called an acid-base reaction. When an acid reacts with a base, the products are a salt and water. In this case, the product will be sodium sulfate (a salt) and water. The balanced equation is written in this way: 2NaOH + H2SO4 => Na2SO4 + 2H2O
Nitric acid can be prepared in the lab by the reaction of sodium nitrate with sulfuric acid. This reaction produces nitric acid, water, and sodium sulfate. The nitric acid can then be purified through distillation.
A nitrate is a chemical compound conating the NO3- ion. A nitrate is fOrmed when nItric acid reacts with a base. An example is potassium nitrate KNO3 which can be made by reacting potassium hydroxide, KOH with HNO3. KNO3 used to be called saltpetre
Nitrate salts are formed when nitric acid reacts with a base or a metal. Examples include sodium nitrate (NaNO3) and potassium nitrate (KNO3).
When urea reacts with nitric acid, it forms a compound called urea nitrate along with water. This reaction is exothermic and can be violent if not controlled. Urea nitrate is a highly explosive compound and is often used in the production of explosives.
A single replacement (H+ for Zn), an oxidative acid reaction on reactive metal (Zn --> Zn2+ + 2e-).
When sodium hydroxide (a strong base) and nitric acid (a strong acid) are mixed together, they undergo a neutralization reaction. This reaction is highly exothermic, meaning it releases energy in the form of heat. Consequently, the heat produced causes the solution to become warmer.
A Nitrate salt depending on what was used to neutralise the acid. E.g. If you used copper to neutralise the nitric acid then copper nitrate would be produced.
The salt made from nitric acid is called nitrate. Nitrate salts are compounds composed of nitrate anions (NO3-) and a cation, typically a metal ion such as sodium (Na+), potassium (K+), or calcium (Ca2+). These salts are commonly used in fertilizers, explosives, and food preservation due to their solubility in water and versatility in chemical reactions.
When sodium hydroxide and ammonium nitrate react together under a flame, they undergo a chemical reaction that produces ammonia gas, water, and sodium nitrate. This reaction is exothermic and can release heat and gas, leading to a visible reaction. Additionally, caution should be taken as the reaction can produce toxic fumes and should be conducted in a well-ventilated area.
The reaction between an acid and hydroxide is called neutralization reaction.