Yes, it is correct.
yes, pure water is a non electrolyte liquid.
No, ethyl alcohol (also known as ethanol) is a weak electrolyte because it can partially dissociate into ions in solution. However, compared to strong electrolytes like salts, ethanol has a much lower conductivity in solution due to the small amount of ions it produces.
Non ionic, non electrolyte
No, glass is not a strong electrolyte. Strong electrolytes dissociate into ions completely in solution, leading to high electrical conductivity. Glass, on the other hand, is a non-conductive material and does not readily dissociate into ions in solution.
It is an electrolyte
Distilled water is a non electrolyte, since it doesn't contain free ions.
Butanol is a weak electrolyte because it only partially ionizes in water, resulting in low conductivity.
Ammonium sulfate is a strong electrolyte. It dissociates completely into ions when dissolved in water, leading to a high conductivity of the solution.
KOH is a strong electrolyte. When dissolved in water, it dissociates completely into ions, resulting in a high conductivity of the solution.
yes, pure water is a non electrolyte liquid.
Molar conductivity is what increases dilution. It is the conductivity of an electrolyte solution.
Non ionic, non electrolyte
No, ethyl alcohol (also known as ethanol) is a weak electrolyte because it can partially dissociate into ions in solution. However, compared to strong electrolytes like salts, ethanol has a much lower conductivity in solution due to the small amount of ions it produces.
Its a non electrolyte.
No, glass is not a strong electrolyte. Strong electrolytes dissociate into ions completely in solution, leading to high electrical conductivity. Glass, on the other hand, is a non-conductive material and does not readily dissociate into ions in solution.
It is an electrolyte
The relationship between electrolyte concentration and molar conductivity is that as the concentration of electrolytes increases, the molar conductivity also increases. This is because more ions are available to carry electrical charge, leading to higher conductivity.