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Fundamentals of Materials Science

Explore materials science: composition, structure, processing, and properties. Learn about metals, ceramics, polymers, and composites.

Explore materials science: composition, structure, processing, and properties. Learn about metals, ceramics, polymers, and composites.

This comprehensive course covers the fundamentals of materials science, focusing on the correlation between composition, microstructure, processing, and properties of materials. Taught by experts from Shanghai Jiao Tong University, it adopts an integrated approach combining metallic, ceramic, and polymeric materials. The course covers atomic bonding, crystal structures, defects, mechanical properties, kinetics, diffusion, phase diagrams, and transformations. Suitable for undergraduate and graduate students with knowledge in calculus and college physics, it provides a deep understanding of materials science principles essential for various industrial applications.

4.6

(159 ratings)

12,694 already enrolled

Instructors:

English

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Fundamentals of Materials Science

This course includes

19 Hours

Of Self-paced video lessons

Intermediate Level

Completion Certificate

awarded on course completion

2,435

What you'll learn

  • Understand atomic bonding in solids and crystal structures of metals, ceramics, and polymers

  • Analyze crystallographic points, directions, and planes in materials

  • Explain point defects, dislocations, and their impact on material properties

  • Describe mechanical properties of materials and strengthening mechanisms

  • Understand diffusion phenomena and their role in materials processing

  • Interpret phase diagrams and understand phase transformations in materials

Skills you'll gain

crystal structures
mechanical properties
diffusion
phase diagrams
solidification
materials characterization
metals
ceramics
polymers
composites

This course includes:

13.97 Hours PreRecorded video

16 assignments

Access on Mobile, Tablet, Desktop

FullTime access

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There are 16 modules in this course

This course provides a comprehensive introduction to the fundamentals of materials science. It covers atomic bonding, crystal structures, defects, mechanical properties, kinetics of recovery and recrystallization, diffusion phenomena, phase diagrams, and phase transformations. The course adopts an integrated approach, discussing metallic, ceramic, and polymeric materials. Students will learn about the correlation between composition, microstructure, processing, and properties of materials. The curriculum is designed to give a deep understanding of materials science principles, which are essential for various industrial applications including aerospace, telecommunications, transportation, and infrastructure.

Introduction to Materials Science

Module 1 · 1 Hours to complete

Crystal Structures and Characterization

Module 2 · 1 Hours to complete

Point Defects and Dislocations

Module 3 · 1 Hours to complete

Dislocations and Surfaces

Module 4 · 1 Hours to complete

Mechanical Properties Part 1

Module 5 · 1 Hours to complete

Mechanical Properties Part 2

Module 6 · 56 Minutes to complete

Mechanical Properties of Various Materials

Module 7 · 59 Minutes to complete

Recovery and Recrystallization

Module 8 · 1 Hours to complete

Diffusion Part 1

Module 9 · 1 Hours to complete

Diffusion Part 2

Module 10 · 57 Minutes to complete

Phase Diagrams Part 1

Module 11 · 1 Hours to complete

Phase Diagrams Part 2

Module 12 · 1 Hours to complete

Phase Diagrams Part 3

Module 13 · 1 Hours to complete

Phase Diagrams Part 3

Module 14 · 1 Hours to complete

Phase Transformations Part 1

Module 15 · 1 Hours to complete

Phase Transformations Part 2

Module 16 · 1 Hours to complete

Fee Structure

Payment options

Financial Aid

Instructors

Kolan M. Reddy
Kolan M. Reddy

4.5 rating

66 Reviews

12,878 Students

1 Course

Materials Science Expert and Advanced Ceramics Researcher

Kolan Madhav Reddy serves as a Tenured Associate Professor at the School of Materials Science and Engineering, Shanghai Jiao Tong University (SJTU). His academic journey includes a PhD from Tohoku University, Japan (2013), and degrees from IIT Kanpur (M.Tech, 2010) and MGIT Hyderabad (B.Tech, 2007), followed by postdoctoral research at Johns Hopkins University (2014-2016). Since joining SJTU in 2017, he has established himself as a leading researcher in materials science, focusing on advanced ceramics, high entropy materials, and catalytic materials. His research impact is evidenced by over 100 peer-reviewed publications garnering more than 2,600 citations (h-index: 30). He teaches key courses including "Fundamentals of Materials Science" and "Transmission Electron Microscopy and Spectroscopy." His achievements include the Teaching Award from SJTU (2018) and the Dr. R.L. Thakur Memorial Young Scientist Award (2017) from the Indian Ceramic Society. His research emphasizes understanding advanced materials at the atomic scale, particularly for defense, space, and sustainable energy applications.

Liu Jing
Liu Jing

4.5 rating

66 Reviews

12,878 Students

1 Course

Expert in Materials Science and Catalysis Research

Jing Liu has served as an Assistant Professor in the School of Materials Science and Engineering at Shanghai Jiao Tong University since 2014. Her academic background includes a BS in Materials Science and Engineering from Tongji University, an MSc in Materials Science from Loughborough University (UK), and a PhD also from Loughborough University (2012), where she subsequently completed postdoctoral research. Her research expertise has evolved from nano ceramics and metal-ceramic composites to focus on heterogeneous catalysis and electrocatalysis. At Shanghai Jiao Tong University, she contributes to advancing understanding of catalytic materials and their applications. Her work bridges fundamental materials science with practical applications in catalysis, particularly focusing on the development and characterization of advanced materials for catalytic processes. Her transition from ceramic materials to catalysis research demonstrates her adaptability and commitment to addressing contemporary challenges in materials science.

Fundamentals of Materials Science

This course includes

19 Hours

Of Self-paced video lessons

Intermediate Level

Completion Certificate

awarded on course completion

2,435

Testimonials

Testimonials and success stories are a testament to the quality of this program and its impact on your career and learning journey. Be the first to help others make an informed decision by sharing your review of the course.

4.6 course rating

159 ratings

Frequently asked questions

Below are some of the most commonly asked questions about this course. We aim to provide clear and concise answers to help you better understand the course content, structure, and any other relevant information. If you have any additional questions or if your question is not listed here, please don't hesitate to reach out to our support team for further assistance.