Yes, sodium hydroxide (NaOH) is a stronger base than water. Sodium hydroxide is a strong base that completely dissociates into ions in solution, while water acts as a weak base as it can donate a proton to form hydroxide ions, but not as effectively as sodium hydroxide.
Sodium hydroxide is a stronger base than potassium hydroxide. This is because sodium hydroxide has a higher dissociation constant and a higher solubility than potassium hydroxide, making it more effective at accepting protons.
Sodium hydroxide is a stronger base than ammonium hydroxide. Sodium hydroxide dissociates more readily in water to produce hydroxide ions, resulting in a higher pH compared to ammonium hydroxide.
Sodium hydroxide is a stronger base compared to ammonia. This is because sodium hydroxide has a higher dissociation constant (pKa) and is more effective at donating hydroxide ions in solution, resulting in a higher pH compared to ammonia.
Sodium hydroxide is stronger than ammonia because it is a strong base, dissociating completely in water to release hydroxide ions. On the other hand, ammonia is a weak base and only partially dissociates in water. This results in sodium hydroxide having a higher concentration of hydroxide ions, making it more reactive and stronger than ammonia.
Hydrochloric Acid would be the stronger acid, as Sodium Hydroxide is an alkali.
Sodium hydroxide is a stronger base than potassium hydroxide. This is because sodium hydroxide has a higher dissociation constant and a higher solubility than potassium hydroxide, making it more effective at accepting protons.
Sodium hydroxide is a stronger base than ammonium hydroxide. Sodium hydroxide dissociates more readily in water to produce hydroxide ions, resulting in a higher pH compared to ammonium hydroxide.
Sodium hydroxide is a stronger base compared to ammonia. This is because sodium hydroxide has a higher dissociation constant (pKa) and is more effective at donating hydroxide ions in solution, resulting in a higher pH compared to ammonia.
Sodium hydroxide is stronger than ammonia because it is a strong base, dissociating completely in water to release hydroxide ions. On the other hand, ammonia is a weak base and only partially dissociates in water. This results in sodium hydroxide having a higher concentration of hydroxide ions, making it more reactive and stronger than ammonia.
Hydrochloric Acid would be the stronger acid, as Sodium Hydroxide is an alkali.
Hydrochloric acid is stronger than sodium hydroxide. Hydrochloric acid is a strong acid that completely dissociates in water to release hydrogen ions, while sodium hydroxide is a strong base that dissociates to release hydroxide ions. In a neutralization reaction between the two, the acid would donate a proton to the base to form water and a salt.
NaOH is a strong base. It dissociates in water to produce hydroxide ions, making the solution basic.
The pH for the reaction of sodium oxide and water is higher than that of calcium oxide and water because sodium hydroxide (the product of sodium oxide and water) is a stronger base than calcium hydroxide (the product of calcium oxide and water). Sodium hydroxide dissociates more in water, releasing more hydroxide ions, thereby increasing the pH of the solution.
A base. In solution sodium hydroxide breaks down to, Na(+) and OH(-) the OH(-) can accept a proton and thus fulfills the definition of a base
No. Sodium hydroxide releases hydroxide ions, which actually take protons out of the solution. This qualifies sodium hydroxide as a base.
Sodium hydroxide is a base.
The easiest way of remembering whether something is a base is by remembering: "A base is a metal oxide, metal hydroxide, or ammonia." Sodium Hydroxide comes under the metal hydroxide category, so yes, it is a base.