The factors on which the current through an electrolyte depend are:
(i) Nature of electrolyte
(ii) Concentration of the solution
(iii) Temperature
Current flowing through a device depends on resistance offered by that device.
as it is an electrolyte
well two factors that affects electrolytic processes are, Quantity of electric current passed through the electrolyte and the nature of electrodes being used.
Charged particles can move through an electrolyte to produce an electric current. In an electrolyte, ions can migrate and carry an electric charge, allowing for the flow of electricity. This is the basis of how batteries and electrochemical cells work.
An electrolyte is a substance that conducts electricity when dissolved in water. To determine if a substance is an electrolyte, you can test its ability to conduct electricity in a solution. If the substance allows electric current to flow through the solution, it is likely an electrolyte.
The current carriers for electrolytes are ions, specifically positively charged cations and negatively charged anions. These ions help to conduct electricity by moving through the electrolyte solution or material.
The strength of electromagnet depends on the electric current flowing through the core because when the current is stopped, the core is no longer magnetized and the rate of change of flux linkage.
False. The movement of charged particles through an electrolyte is essential in producing an electric current in electrolytic cells. This movement allows the flow of electrons from one electrode to another, resulting in the generation of an electric current.
This is possible because potassium hydroxide is an electrolyte.
Electric current does not need a liquid. It can pass in solids, liquids, gases, and even empty space. If it passes through a liquid, the liquid is called an electrolyte.
Electric current passing through the electrolyte generates heat due to resistance in the electrolyte. This heat is also necessary to maintain the electrolyte at the proper operating temperature during the process. Additionally, external heating sources can be used to control the temperature of the electrolyte if needed.
Electricity is conducted through a solution containing an electrolyte by the movement of ions. The electrolyte dissociates into positive and negative ions in the solution, allowing for the flow of electric current. This movement of charged particles enables the solution to conduct electricity.