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potassium hydroxide is POH and nitric acid is HNO3
Potassium hydroxide is a strong base, while dilute nitric acid is a strong acid. Potassium hydroxide is alkaline, whereas dilute nitric acid is acidic. They have different chemical properties and uses in various processes.
P2H2OC in other words 2 pottassium H2O(water) and C because oxegen and cardon becomes carbon dixcide which makes up the hydoxide part
When potassium hydroxide (KOH) reacts with nitric acid (HNO3), potassium nitrate (KNO3) and water (H2O) are formed. The overall reaction can be represented as: KOH + HNO3 → KNO3 + H2O
Potassium nitrate salt would be formed when nitric acid and potassium hydroxide are reacted together.
potassium hydroxide is POH and nitric acid is HNO3
Potassium hydroxide is a strong base, while dilute nitric acid is a strong acid. Potassium hydroxide is alkaline, whereas dilute nitric acid is acidic. They have different chemical properties and uses in various processes.
P2H2OC in other words 2 pottassium H2O(water) and C because oxegen and cardon becomes carbon dixcide which makes up the hydoxide part
When potassium hydroxide (KOH) reacts with nitric acid (HNO3), potassium nitrate (KNO3) and water (H2O) are formed. The overall reaction can be represented as: KOH + HNO3 → KNO3 + H2O
Potassium nitrate salt would be formed when nitric acid and potassium hydroxide are reacted together.
Mixing hydrochloric acid with sodium hydroxide to form salt and water. Combining sulfuric acid with calcium hydroxide to produce calcium sulfate and water. Reacting nitric acid with potassium hydroxide to yield potassium nitrate and water. Mixing acetic acid with ammonia to form ammonium acetate and water. Combining phosphoric acid with barium hydroxide to produce barium phosphate and water. Reacting citric acid with sodium bicarbonate to yield sodium citrate and water. Mixing hydrofluoric acid with sodium carbonate to form sodium fluoride and water. Combining carbonic acid with potassium hydroxide to produce potassium carbonate and water. Reacting oxalic acid with calcium hydroxide to yield calcium oxalate and water. Mixing hydrobromic acid with magnesium hydroxide to form magnesium bromide and water.
A burette is typically used to add dilute nitric acid to potassium hydroxide in a controlled and precise manner for titration experiments.
The salt produced when mixing nitric acid with calcium hydroxide is calcium nitrate. This reaction also results in the formation of water.
The reaction between potassium hydroxide and nitric acid produces potassium nitrate, which is a common form of inorganic fertilizer. Potassium nitrate provides plants with essential nutrients such as potassium and nitrogen, supporting their growth and overall health.
Potassium Nitrate+Water HNO3 (aq)+KOH (aq)-->KNO3 (aq)+H2O (l)
When nitric acid reacts with potassium hydroxide, potassium nitrate and water are formed. The balanced chemical equation for this reaction is: HNO3 + KOH → KNO3 + H2O. This is a neutralization reaction.
Magnesium nitrate (salt) and water are produced.