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Video: Conductance of Electrolytic Solutions Video Lecture | Chemistry for JEE Main & Advanced

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FAQs on Video: Conductance of Electrolytic Solutions Video Lecture - Chemistry for JEE Main & Advanced

1. What is conductance in electrolytic solutions?
Ans. Conductance is the measure of a substance's ability to conduct an electric current in electrolytic solutions. It is the reciprocal of resistance and is measured in siemens (S). Conductance depends on factors such as the concentration of ions, the nature of the solvent, and the temperature.
2. How is conductance related to the concentration of ions in electrolytic solutions?
Ans. Conductance is directly proportional to the concentration of ions in electrolytic solutions. As the concentration of ions increases, the number of charge carriers available for conduction also increases, leading to higher conductance. Conversely, a decrease in ion concentration will result in lower conductance.
3. What factors affect the conductance of electrolytic solutions?
Ans. Several factors can affect the conductance of electrolytic solutions. These include the concentration of ions, temperature, nature of the solvent, and the distance between the electrodes. Higher ion concentration, higher temperature, and a solvent with high ion mobility tend to increase conductance, while larger electrode distance reduces conductance.
4. How does temperature affect the conductance of electrolytic solutions?
Ans. Temperature has a significant impact on the conductance of electrolytic solutions. As temperature increases, the kinetic energy of ions increases, allowing them to move more freely, resulting in higher conductance. Conversely, a decrease in temperature reduces ion mobility and thus decreases conductance.
5. How can the conductance of electrolytic solutions be measured?
Ans. The conductance of electrolytic solutions can be measured using a conductometer or conductivity meter. These instruments typically consist of two electrodes immersed in the solution, and the conductance is measured by applying a potential difference across the electrodes and measuring the resulting current. The conductance can then be calculated using Ohm's law.
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