Michael Faraday reported that the quantity of elements separated by passing an electrical current through a molten or dissolved salt is proportional to the quantity of electric charge passed through the circuit. This became the basis of the first law of electrolysis:
Faraday also discovered that the mass of the resulting separated elements is directly proportional to the atomic masses of the elements when an appropriate integral divisor is applied. This provided strong evidence that discrete particles of matter exist as parts of the atoms of elements.
He is a physician and formulated faradays law of electrolysis
faradays second law
FARADAY
First LawThe quantity of a substance produced by electrolysis is proprotional to the quantity of electricity used.
A magnetic field is induced in an region of space in which and electric field is changing with time.
not entirely, you need Maxwell's equations for a complete explanation
the inducedd e.m.f and the change in magnetic flux have opposite direction
In copper electrolysis, Faraday's law is used to calculate the amount of copper deposited on the cathode during electrolysis based on the current passing through the circuit and the duration of the electrolysis process. This law states that the amount of substance deposited on an electrode is directly proportional to the quantity of electricity passed through the solution. By knowing the molar mass of copper and the charge of an electron, the amount of copper deposited can be accurately determined using Faraday's law.
Faraday's second law of electrolysis states that the amount of a substance deposited or liberated at an electrode during electrolysis is directly proportional to the quantity of electricity passed through the electrolyte. It quantitatively relates the amount of a substance produced in electrolysis to the charge transferred during the process.
Basically all the motors run by "Electromagnetic induction" principle which was set by Michael Faraday.This principle also known as "Faradays law of electromagnetic induction".
The general equation for Faraday's law of electrolysis is the following: Q = ∫0T I dt,where,Q is the total charge moved through the electrode,T is total length of time the charge was moving,I is current,t is time.
Michael Faraday discovered the laws of electrolysis in 1833. These laws are known as Faraday's laws of electrolysis, which describe the relationship between the amount of a substance produced or consumed during electrolysis and the current flowing through the electrolyte.