Ammonia is not amphoteric.It is a weak base.
No, in order for a substance to be considered amphoteric it must be able to act as an acid and a base. Sodium sulfite will only act as a base, and thus it is not amphoteric.
No, according to the Brønsted-Lowry concept, an amphoteric substance can act as both an acid and a base. Ammonia (NH3) is a weak base, as it can accept a proton (H+) to form its conjugate acid NH4+. It does not have the ability to donate a proton, so it is not considered amphoteric according to the Brønsted-Lowry concept.
Yes, ammonia (NH3) is amphoteric, meaning it can act as both an acid and a base depending on the reactant it is combined with. It can donate a proton (H+) to act as a base or accept a proton to act as an acid.
NH3 is called an amphoteric compound because it can act as either a base or an acid.
Ammonia is a compound composed of nitrogen and hydrogen atoms.
No, in order for a substance to be considered amphoteric it must be able to act as an acid and a base. Sodium sulfite will only act as a base, and thus it is not amphoteric.
Ciprofloxacin is a weakly basic compound.
An amphoteric compound can act as both an acid and a base, meaning it can donate or accept protons depending on the reaction conditions. This allows it to exhibit a wide range of chemical behaviors and reactions.
No, according to the Brønsted-Lowry concept, an amphoteric substance can act as both an acid and a base. Ammonia (NH3) is a weak base, as it can accept a proton (H+) to form its conjugate acid NH4+. It does not have the ability to donate a proton, so it is not considered amphoteric according to the Brønsted-Lowry concept.
Yes, ammonia (NH3) is amphoteric, meaning it can act as both an acid and a base depending on the reactant it is combined with. It can donate a proton (H+) to act as a base or accept a proton to act as an acid.
NH3 is called an amphoteric compound because it can act as either a base or an acid.
Ammonia is a compound composed of nitrogen and hydrogen atoms.
Ammonia is amphoteric because it can act as both a Brønsted-Lowry acid and base. In an acid-base reaction, ammonia can donate a proton (H+) to act as an acid: NH3 + H2O ⇌ NH4+ + OH- And it can also accept a proton to act as a base: NH3 + H+ ⇌ NH4+
Ammonia is amphoteric because it can act as both an acid and a base. In acidic solutions, ammonia can accept a proton (H+) to form the ammonium ion (NH4+), acting as a base. In basic solutions, ammonia can donate a lone pair of electrons to react with water, forming hydroxide ions (OH-) and acting as an acid.
Ammonia is a gas.It is a compound.
Am amphoteric substance can react as a base but also as an acid.
The compound of ammonia is NH3. Its scientific name is ammonia, while its common name is also ammonia.