2koh + h2so4 --> k2so4 + 2h2o
C_2_H_4_O_2_ (aq) + OH^-^ (aq) --> C_2_H_3_O_2_^-^ (aq) + H_2_O (l)
The word equation for the reaction between potassium chloride and water is: potassium chloride + water → potassium hydroxide + hydrochloric acid.
The ionic name for the compound KOH is potassium hydroxide.
H+(aq) + OH-(aq) --> H2O(l)
The net ionic equation for the reaction between HCHO2 (formic acid) and KOH (potassium hydroxide) is HCHO2 + OH- --> HCO2- + H2O. This equation shows the formation of formate ion and water from the reaction of formic acid with hydroxide ion in potassium hydroxide.
The eqnet ionic equation is HCN + OH- --> H2O + CN-
C_2_H_4_O_2_ (aq) + OH^-^ (aq) --> C_2_H_3_O_2_^-^ (aq) + H_2_O (l)
The word equation for the reaction between potassium chloride and water is: potassium chloride + water → potassium hydroxide + hydrochloric acid.
Answer this question… OH- + 2H+ 2H2O(l)
Water.
The ionic name for the compound KOH is potassium hydroxide.
H+(aq) + OH-(aq) --> H2O(l)
The net ionic equation for the reaction between HCHO2 (formic acid) and KOH (potassium hydroxide) is HCHO2 + OH- --> HCO2- + H2O. This equation shows the formation of formate ion and water from the reaction of formic acid with hydroxide ion in potassium hydroxide.
Potassium hydroxide has ionic bonds. It is made up of a metal (potassium) and a non-metal (hydroxide), which typically form ionic compounds due to the transfer of electrons from the metal to the non-metal.
(NH4)2SO4 +2 KOH---> 2 NH4OH+K2SO4 give me trust point? (:
CH3COOH + OH ---> CH3COO + H2O CH3COOH stays as a molecule because it is a weak acid
The complete ionic equation for the reaction between potassium hydroxide solution (KOH) and a buffer would involve the dissociation of KOH into potassium ions (K+) and hydroxide ions (OH-), and the respective ions present in the buffer solution. The specific ions present in the buffer would depend on its composition.