
Explore electrochemistry and its energy conversions between electrical and chemical energy, and examine batteries, fuel cells, corrosion, and electrolysis as pollution-free energy.
Explore how galvanic cells convert chemical energy to electrical energy using electrodes, electrolytes, and a solid bridge, with electron flow from anode to cathode.
Learn how to compute a cell's emf from concentrations and temperature using the Nernst equation, relate emf to Gibbs free energy, and connect Q to the equilibrium constant K.
Explore how resistivity and conductivity relate to material geometry and concentration, including molar conductivity and limiting values at infinite dilution for strong and weak electrolytes.
Master electrolysis fundamentals, including oxidation–reduction, anode and cathode roles, copper deposition, water electrolysis, and Faraday’s laws, with practical electrolyte examples and gas evolution analysis.
Learn how hydrogen-oxygen fuel cells convert chemical energy into electricity with water as a byproduct, and compare primary and secondary batteries (lead-acid, Ni-Cd) while noting corrosion and its prevention.
In this course you will learn about the Electrochemistry.
Consisting of Below Topics:
1) Electrolytic Cell
2) Electronic Cell
3) Measuring Cell Potential
4) Reference Electrode
5) Primary & Secondary Batteries
6) Fuel cell
7) Corrosion
8) Galvanic Cell
9) Electrode Potential
10) Nernst Equation
11) Nernst Equation at equilibrium
12) Gibb's free Energy
And many more with Explanation of all Topics with Examples.