Li2O + H2O --> 2LiOH
the product is lithium hydroxide.
In the reaction, HBr donates a proton (H+) to H2O, making HBr the acid and H2O the base. The resulting products are Br- (conjugate base of HBr) and H3O+ (conjugate acid of H2O).
The conjugate acid of the base H2O is the hydronium ion (H3O+), which forms when H2O accepts a proton (H+).
The conjugate acid of H2O is H3O+ (hydronium ion). When an acid donates a proton, it forms its conjugate base, and when a base accepts a proton, it forms its conjugate acid.
The conjugate acid for the base OH- is H2O. This is because when OH- accepts a hydrogen ion (H+), it forms water (H2O).
OH -I assume.
In the reaction, HBr donates a proton (H+) to H2O, making HBr the acid and H2O the base. The resulting products are Br- (conjugate base of HBr) and H3O+ (conjugate acid of H2O).
The conjugate acid of the base H2O is the hydronium ion (H3O+), which forms when H2O accepts a proton (H+).
The conjugate acid of H2O is H3O+ (hydronium ion). When an acid donates a proton, it forms its conjugate base, and when a base accepts a proton, it forms its conjugate acid.
The conjugate acid for the base OH- is H2O. This is because when OH- accepts a hydrogen ion (H+), it forms water (H2O).
OH -I assume.
H2O can act as both a Brønsted-Lowry acid and base. As an acid, it can donate a proton by giving away a hydrogen ion. As a base, it can accept a proton by taking on a hydrogen ion. This makes H2O amphiprotic.
The conjugate base for H2O is the hydroxide ion, OH-. When the hydroxide ion reacts with another water molecule, a hydrogen ion may be transferred, resulting in a water molecule and a hydroxide ion. Therefore, the conjugate base of water is OH-
That depends on the reaction. If you just want the general reaction you can consider the dissociation of water: H2O ------> H+ (acid) and OH- (base) or H2O + H2O --------> H3O+ (acid) and OH- (base)
The decomposition of lithium hydroxide produces lithium oxide and water vapor. This reaction can be represented by the equation: 2LiOH -> Li2O + H2O.
The reaction between solid lithium oxide and liquid water forms aqueous lithium hydroxide. This is a chemical reaction that is exothermic and releases heat. Lithium oxide is a basic compound, while water is amphoteric, allowing it to act as an acid or base depending on the situation.
LiOH + HCl -> LiCl + H2O This is an acid base neutralization reaction producing a salt, lithium chloride (LiCl ) and water.
HCl is hydrochloric acid and NaOH is sodium hydroxide a base.