The cations and anoin moves towards opposite electrodes ... or they will settle at the bottom
When an electric current is passed through a colloidal solution, the colloidal particles may migrate towards the electrodes due to the electrical charge. This process is known as electrophoresis. Additionally, the movement of colloidal particles may cause them to coagulate or form larger aggregates.
They get electricuted.
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When a strong beam of light is passed through a colloidal solution, then scattering of light is absorbed.
When an electric current passes through a wire, the wire heats up due to the resistance in the material. The current causes electrons to flow through the wire, creating a magnetic field around it. This effect is used in electromagnets and electric motors.
Water is dissociated in hydrogen and oxygen.
You generate a (stronger) magnetic field.
When an electric current passes through a wire, the flow of electrons creates a magnetic field around the wire. This phenomenon is known as electromagnetism. The strength of the magnetic field is directly proportional to the amount of current flowing through the wire.
The opposite of an electric current is the absence of an electric current, meaning no flow of electric charge through a conductor.
During this electrolysis are obtained chlorine and sodium.
Yes, an electric current is the flow of charged particles.
When an electric charge moves through a conductor, an electric current is generated in the conductor. The flow of electrons creates a flow of current in the conductor, which is the movement of electric charge through the material.