NaCl------------>Na+ + Cl-
The equation for the dissociation of water is: H2O ↔ H+ + OH-
The dissociation equation for zinc fluoride (ZnF2) in water is: ZnF2 (s) → Zn2+ (aq) + 2F- (aq)
The answer is Be(OH)2
The chemical reaction is:3 KSCN + Fe(NO3)3 = Fe (SCN)3 + 3 KNO3The ferric thyocyanate is not soluble in water.
The equation is: H2O------>H+ + OH-
The balanced chemical equation for the dissociation of nitric acid (HNO3) in water is: HNO3(aq) -> H+(aq) + NO3-(aq)
The equation for the dissociation of water is: H2O ↔ H+ + OH-
The balanced equation for the dissociation of water is: 2H2O (liquid) ⇌ 2H+ (aqueous) + O2- (aqueous)
Water , This is a poorly written chemical equation for the formation/dissociation of water. H^(+) + OH^(-) H2O(l)
The chemical equation for the split of water molecules into ions is: 2H2O -> 2H+ + 2OH-. This represents the dissociation of water molecules into hydronium (H+) and hydroxide (OH-) ions as a result of autoionization.
Americium dioxide (AmO2) is not soluble in water and don't react with water.
The dissociation equation for zinc fluoride (ZnF2) in water is: ZnF2 (s) → Zn2+ (aq) + 2F- (aq)
When dissolved in water, potassium hydroxide dissociates into potassium ions (K⁺) and hydroxide ions (OH⁻). This dissociation process is represented by the chemical equation: 2KOH → 2K⁺ + 2OH⁻.
Hydrogen peroxide undergoes dissociation to form water and oxygen gas. This reaction is catalyzed by enzymes such as catalase in living organisms. The balanced chemical equation for the dissociation of hydrogen peroxide is 2H2O2 → 2H2O + O2.
The chemical formula for potassium iodide is KI. When dissolved in water, it dissociates into potassium ions (K+) and iodide ions (I-). The equation for this dissociation is written as: KI → K+ + I-.
The dissociation equation for CaCl2 in water is: CaCl2 (s) → Ca2+ (aq) + 2Cl- (aq)
The dissociation equation for potassium chromate (K2CrO4) in water is: K2CrO4(s) -> 2K+(aq) + CrO4^2-(aq).