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Arunachala Nadar Mada Kannan

Primary and Secondary Batteries: This course will focus on fundamentals and basic operating principles of batteries; battery electrode active materials, performance, and life cycle evaluation; commercialization outlook of smart energy systems.

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What's inside

Syllabus

Course Introduction
Module 1: Introduction to Battery Types
Module 1 provides the basic definition of electrochemical aspects of batteries. The major objective in this module is to clearly understand the anode and cathode reactions in both the primary and secondary batteries. This module also provides details for learning the cell voltage and capacity values for anode and cathode materials. In addition, the objective is also to bring out the difference between primary and secondary batteries.
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Module 2: Electrochemical Fundamental Principles
Module 2 provides the fundamental principles of batteries. The major objective in this module is to learn about the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This module also provides details for various operating factors influencing battery performance cycle life and calendar lives.
Module 3: Application and Market for Batteries
Module 3 provides the application areas and markets for both the primary and secondary batteries. The major objective in this module is to learn the importance of batteries in portable, stationary, and automotive application areas. In addition, the objective is also to bring out the major criteria for selecting batteries for any specific application.

Good to know

Know what's good
, what to watch for
, and possible dealbreakers
Introduces the fundamental principles of batteries and their applications in various fields
Taught by Arunachala Nadar Mada Kannan, recognized for their expertise in battery research
Provides a comprehensive overview of primary and secondary batteries, covering their types, performance, and lifecycle
Suitable for learners interested in understanding the fundamentals of battery technologies and their applications
Students with a background in chemistry or electrochemistry may find this course particularly relevant

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Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Primary and Secondary Batteries with these activities:
Review the basic principles of electrochemistry
Reinforce your understanding of the basic principles of electrochemistry, such as cell potential, electrochemical reactions, and Nernst equation, which are essential for understanding battery operation.
Browse courses on Electrochemistry
Show steps
  • Review your notes or textbooks on electrochemistry, focusing on topics such as cell potential, electrochemical reactions, and the Nernst equation.
  • Solve practice problems related to electrochemistry to test your understanding.
Read 'Battery Technologies for Electric Vehicles'
Provides a comprehensive overview of battery technologies.
Show steps
  • Obtain the book 'Battery Technologies for Electric Vehicles'.
  • Read and understand the chapters relevant to the course.
  • Make notes and highlight important concepts.
Participate in Peer Study Group
Encourages collaboration and discussion, which can solidify understanding.
Show steps
  • Form a study group with peers in the course.
  • Establish regular meeting times and a study plan.
  • Review and discuss course materials together.
  • Work on practice problems and assignments collaboratively.
Five other activities
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Analyze different types of batteries and their applications
Deepen your understanding of the different types of batteries, their working principles, and their applications in various industries, including portable devices, electric vehicles, and renewable energy storage.
Show steps
  • Create a table comparing the different types of batteries, including primary and secondary batteries, lithium-ion batteries, and other popular battery technologies.
  • Research and analyze the applications of each battery type in different industries, such as consumer electronics, automotive, and energy storage.
Explore Advanced Battery Technologies
Provides an in-depth exploration of emerging battery technologies.
Show steps
  • Identify reliable sources for information on advanced battery technologies.
  • Follow guided tutorials or online courses on specific battery technologies.
  • Engage in discussions or forums to share knowledge and insights.
Design a Battery Storage System
Provides practical experience in designing and evaluating battery systems.
Show steps
  • Define the requirements and specifications for the battery storage system.
  • Research and select appropriate battery technologies.
  • Design the battery system architecture and configuration.
  • Evaluate the performance and cost-effectiveness of the design.
  • Present the design to the class or a mentor.
Explore advanced battery technologies for improved performance
Stay abreast of the latest advancements in battery technology, such as solid-state batteries, graphene-based electrodes, and flow batteries, which have the potential to revolutionize battery performance and applications.
Browse courses on Battery Performance
Show steps
  • Identify reputable sources of information on advanced battery technologies, such as scientific journals, research institutes, and industry publications.
  • Follow online courses or tutorials on advanced battery technologies to gain in-depth knowledge.
Contribute to Open-Source Battery Management Systems
Provides exposure to real-world battery management systems.
Show steps
  • Identify open-source battery management system projects.
  • Contribute code or documentation to the project.
  • Engage with the community and learn from others.

Career center

Learners who complete Primary and Secondary Batteries will develop knowledge and skills that may be useful to these careers:
Mechanical Engineer
A Mechanical Engineer designs, develops, and tests mechanical systems. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for a Mechanical Engineer because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Energy Storage Specialist
An Energy Storage Specialist designs, develops, and tests energy storage systems. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for an Energy Storage Specialist because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Electrochemist
An Electrochemist studies the relationship between electrical energy and chemical change. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for an Electrochemist because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Battery Engineer
A Battery Engineer designs, develops, and tests batteries. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for a Battery Engineer because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Battery Researcher
A Battery Researcher is a scientist who studies both primary and secondary batteries. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for a Battery Researcher because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Battery Technician
A Battery Technician installs, maintains, and repairs batteries. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for a Battery Technician because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Electrical Engineer
An Electrical Engineer designs, develops, and tests electrical systems. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for an Electrical Engineer because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Materials Scientist
A Materials Scientist develops and characterizes new materials. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for a Materials Scientist because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Chemical Engineer
A Chemical Engineer designs, develops, and operates chemical plants. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course would be particularly useful for a Chemical Engineer because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Patent Attorney
A Patent Attorney prepares, files, and prosecutes patent applications. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course may be useful for a Patent Attorney because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Consultant
A Consultant provides advice to organizations. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course may be useful for a Consultant because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Technical Writer
A Technical Writer writes and edits technical documents. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course may be useful for a Technical Writer because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Product Manager
A Product Manager manages the development, marketing, and sales of a product. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course may be useful for a Product Manager because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Sales Engineer
A Sales Engineer sells and supports products. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course may be useful for a Sales Engineer because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.
Investment Analyst
An Investment Analyst researches and makes recommendations on investments. This course, Primary and Secondary Batteries, provides the fundamental principles of batteries, including the standard reduction potentials, electrochemical equivalent of electrode materials at standard conditions, as well as any operating conditions through Nernst Equation. This course may be useful for an Investment Analyst because it provides a comprehensive overview of the different types of batteries, their applications, and their performance characteristics.

Reading list

We've selected seven books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in Primary and Secondary Batteries.
Provides comprehensive coverage of the underlying principles of electrochemistry, and how this knowledge can be applied to electrochemical systems.
Provides a comprehensive overview of electric vehicle batteries. It covers a wide range of topics, including the history of electric vehicle batteries, the basic principles of electrochemistry, and the design and performance of different types of electric vehicle batteries.
Provides a comprehensive overview of fuel cells. It covers a wide range of topics, including the history of fuel cells, the basic principles of electrochemistry, and the design and performance of different types of fuel cells.
Provides a comprehensive overview of electrochemical engineering. It covers a wide range of topics, including the history of electrochemical engineering, the basic principles of electrochemistry, and the design and performance of different types of electrochemical engineering systems.
Provides a comprehensive overview of electrochemical phenomena. It covers a wide range of topics, including the history of electrochemical phenomena, the basic principles of electrochemistry, and the design and performance of different types of electrochemical phenomena systems.

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