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The [course_title] course focuses on the principles and mathematical models of electrochemical energy conversion and storage. The course is divided into several parts covering circuit methods, thermodynamics, kinetics, and transport phenomena. Topics discussed in the course are equivalent circuits dynamics, thermodynamics, Impedance, reaction kinetics, transport phenomena, electrostatics, porous media, and phase transformations. Apart from these, the course covers the Reactions in Concentrated Solutions, applications to batteries, fuel cells, supercapacitors, Butler-Volmer Equation, and electrokinetics.

Assessment

This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.

Certification

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Course Credit: MIT

Course Curriculum

Basic Physics of Galvanic Cells, Electrochemical Energy Conversion 01:00:00
Electrochemical Energy Storage 00:30:00
Equivalent Circuit Dynamics 00:15:00
Impedance I 00:15:00
Impedance II & III 00:25:00
Statistical Thermodynamics, Regular Solution Model 00:15:00
Nernst Equation, Open Circuit Voltage 00:20:00
Fuel Cells and Batteries 00:15:00
Pourbaix Diagram 00:35:00
Metal Acid Batteries, Lemon Battery Demo 00:10:00
Li-ion Batteries, Pseudocapacitance 00:50:00
Ideal Solution Model, Linear Sweep Voltammetry 00:30:00
Regular Solution Model, Phase Separation 00:15:00
Reactions in Concentrated Solutions 00:15:00
Faradaic Reactions 00:20:00
Electrocatalysis 00:20:00
Electrochemical Phase Transformations 00:30:00
Homogeneous Charge Transfer 00:10:00
Heterogeneous Charge Transfer 00:15:00
Charge Transfer at Metal Electrodes 00:15:00
Concentration Polarization 00:20:00
Transient Diffusion 00:15:00
Warburg Impedance 00:15:00
Forced Convection I 00:40:00
Forced Convection II 00:20:00
Forced Convection III 00:20:00
Transport in Solids 00:15:00
Concentrated Solutions, Bulk Electrolytes 00:10:00
Homogeneous Reaction-diffusion 00:15:00
Ion Concentration Polarization 00:25:00
Double Layers, Supercapacitors 00:30:00
Transport in Porous Media 00:50:00
Scaling Analysis of Energy Storage 00:25:00
Porous Electrodes (Overview) 01:00:00
Assessment
Submit Your Assignment 00:00:00
Certification 00:00:00

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