when base react with water it decomposes to give hydroxide OH negative and acids react with water to produce hydronium ion H3O positive.......
Hydronium hydroxide is not a recognized chemical compound. There is no stable form of hydronium hydroxide because hydronium ions (H3O+) and hydroxide ions (OH-) react to form water.
Their are hydroxyl ions not hydroxide ions. They are OH- . hydronium ions are H3O+ . Presence of hydroxyl ionsin a compound shows its basic nature whereas presence of hydronium ions in a compound shows its acidic nature .
The not chemical name of CuOH is copper hydroxide, and the not chemical name of H3O is hydronium.
Yes, water undergoes autoprotolysis to form small amounts of hydroxide (OH-) and hydronium (H3O+) ions. This process involves the transfer of a proton between two water molecules.
A hydronium ion has an extra proton compared to a hydroxide ion. The chemical formula for a hydronium ion is H3O+ while for a hydroxide ion it is OH-. Hydronium ions are commonly found in acidic solutions, while hydroxide ions are commonly found in basic solutions.
Hydronium hydroxide is not a recognized chemical compound. There is no stable form of hydronium hydroxide because hydronium ions (H3O+) and hydroxide ions (OH-) react to form water.
Their are hydroxyl ions not hydroxide ions. They are OH- . hydronium ions are H3O+ . Presence of hydroxyl ionsin a compound shows its basic nature whereas presence of hydronium ions in a compound shows its acidic nature .
The product of a hydronium ion (H3O+) and a hydroxide ion (OH-) is water (H2O). The hydronium ion and hydroxide ion react to form water in an acid-base neutralization reaction.
The not chemical name of CuOH is copper hydroxide, and the not chemical name of H3O is hydronium.
Yes, water undergoes autoprotolysis to form small amounts of hydroxide (OH-) and hydronium (H3O+) ions. This process involves the transfer of a proton between two water molecules.
A hydronium ion has an extra proton compared to a hydroxide ion. The chemical formula for a hydronium ion is H3O+ while for a hydroxide ion it is OH-. Hydronium ions are commonly found in acidic solutions, while hydroxide ions are commonly found in basic solutions.
Hydronium Ions
A strong acids dissociates completely in water to produce hydronium (H3O+) ions A strong base dissociates completely in water to produce hydroxide (OH-) ions
In a neutral solution, the amount of hydronium ions (H3O+) is equal to the amount of hydroxide ions (OH-), giving a pH of 7. However, in acidic solutions, there are more hydronium ions than hydroxide ions, leading to a pH less than 7. In basic solutions, there are more hydroxide ions than hydronium ions, resulting in a pH greater than 7.
In an acidic solution, the relative concentration of hydronium ions will always be higher than hydroxide ions. This means that the relatively concentration of hydroxide ions will always be lower than hydronium ions in an acidic solution. The reason for this is that in a neutral solution, the concentration of both hydronium ions and hydroxides ions are equal (both are 10-7). By making the concentration of hydronium ions greater than the concentration of hydroxide ions, the solution becomes acidic.
The concentration of the hydroxide ion can be determined using the ion product constant for water (Kw). Since water autoionizes to form equal concentrations of hydronium and hydroxide ions, if the hydronium ion concentration is 1.5x10-5 M, then the hydroxide ion concentration would also be 1.5x10-5 M.
No, you mixed it up. Hydronium H3O+ from strong acid and Hydroxide OH- from strong base (alkaline)