yes. it forms a strong base.
A strong base such as sodium hydroxide (NaOH) or potassium hydroxide (KOH) can ionize completely in a solvent, producing hydroxide ions (OH-) in high concentrations. These bases dissociate completely in solution, making them strong electrolytes that readily conduct electricity.
Kb = 55 It is a very strong base therefore it completely dissociates.
Methoxyphenol is a phenol derivative and so, is soluble in water. This means that methoxyphenol will dissolve in an aqueous NaOH solution, but will not react with the NaOH.
Ammonia solution is a weak base.
The pH of a 0.33 M solution of NaOH is approximately 13.5. This is because NaOH is a strong base that dissociates completely in water to give hydroxide ions, which results in a highly alkaline solution.
Yes it does! Examples are HCl and NaOH.
A strong base such as sodium hydroxide (NaOH) or potassium hydroxide (KOH) can ionize completely in a solvent, producing hydroxide ions (OH-) in high concentrations. These bases dissociate completely in solution, making them strong electrolytes that readily conduct electricity.
Kb = 55 It is a very strong base therefore it completely dissociates.
Methoxyphenol is a phenol derivative and so, is soluble in water. This means that methoxyphenol will dissolve in an aqueous NaOH solution, but will not react with the NaOH.
Ammonia solution is a weak base.
The pH of a 0.33 M solution of NaOH is approximately 13.5. This is because NaOH is a strong base that dissociates completely in water to give hydroxide ions, which results in a highly alkaline solution.
NaOH, sodium hydroxide is a strong base. This is because it dissociates completely in solution becoming a strong electrolyte. Na(+) and OH(-) ions in solution.
The pH of a 0.002M solution of NaOH is around 11.98. This is because NaOH is a strong base that dissociates completely in water to produce hydroxide ions, which lead to the alkaline pH.
In a 0.25M solution of NaOH, the concentration of hydroxide ions (OH-) is also 0.25M. This is because NaOH dissociates completely in water to form Na+ and OH- ions. OH- represents the hydroxide ion in solution.
NaOH, sodium hydroxide is a strong base. This is because it dissociates completely in solution becoming a strong electrolyte. Na(+) and OH(-) ions in solution.
The pH of a 1.0 x 10^-6 M NaOH solution is approximately 11.00. This is because NaOH is a strong base that dissociates completely in solution to produce hydroxide ions, resulting in a high pH.
Yes, that's correct. Molecular compounds that ionize completely in water are called strong electrolytes, while those that do not ionize completely are called weak electrolytes. Strong electrolytes dissociate completely into ions when dissolved, whereas weak electrolytes only partially dissociate.