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Quick Facts

Medium Of InstructionsMode Of LearningMode Of Delivery
EnglishSelf StudyVideo and Text Based

Course Overview

The Phase Equilibria in Materials (Nature & Properties Of Materials-II) certification course, targets undergraduates and postgraduates across science and engineering fields. Over 8 weeks, it delves into thermodynamics essentials, emphasizing their application in comprehending phase diagrams, phase equilibrium, and microstructure evolution correlation.

Catering to students with a 12th-standard science background, the Phase Equilibria in Materials (Nature & Properties Of Materials-II) certification by Swayam illuminates unary, binary, and ternary systems' phase diagrams. Supported by materials-focused industries, the course aims to equip learners with a profound grasp of phase diagrams' intricacies.

The Highlights

  • Elective Online Course
  • 8 Weeks Duration
  • Offered by IIT Kanpur

Programme Offerings

  • Certificate of completion
  • Practical Learning
  • Hands-on Experience

Courses and Certificate Fees

Fees InformationsCertificate AvailabilityCertificate Providing Authority
INR 1000yesIIT Kanpur

The Phase Equilibria In Materials (Nature & Properties Of Materials-II) certification fees is free. However, if you want a certificate, you must register and take the proctored exam at designated centers, which is optional and comes with a fee of Rs 1000.

Phase Equilibria In Materials (Nature & Properties Of Materials-II) Certification Fee Structure

Particulars

Total Fees

Phase Equilibria In Materials (Nature & Properties Of Materials-II) (exam)

Rs 1000/-


Eligibility Criteria

Academic Qualifications

The Phase Equilibria in Materials (Nature & Properties Of Materials-II) certification course is accessible to candidates who have passed the 12th standard in science background.

Certification Qualifying Details

To receive the Phase Equilibria in Materials (Nature & Properties Of Materials-II) certification by Swayam, you need a minimum average assignment score of 10/25 and an exam score of 30/75.

What you will learn

After completing the Phase Equilibria in Materials (Nature & Properties Of Materials-II) certification syllabus, you will delve into the fundamental principles of thermodynamics. You will unravel the thermodynamic basis of phase diagrams, decode free energy composition diagrams, and explore the nuances of phase equilibrium.

Upon completion of the Phase Equilibria in Materials (Nature & Properties Of Materials-II) training, you will gain a solid grasp of the essential concepts, equipping you with the knowledge to decipher and interpret phase diagrams effectively. You will learn how to apply these insights, making you adept at correlating phase diagrams with microstructural changes. 


Who it is for

The Phase Equilibria in Materials (Nature & Properties Of Materials-II) online course is designed for people aiming to enhance their knowledge of material science and its practical applications. This course is particularly beneficial for: 


Admission Details

Follow these steps to join the Phase Equilibria in Materials (Nature & Properties Of Materials-II) classes:

Step 1: Browse the URL below:

https://onlinecourses.nptel.ac.in/noc23_mm27/preview

Step 2: Click on the “Sign-in/ Register” button

Step 3: Fill out the necessary details and submit the form

The Syllabus

  • Introduction, Thermodynamic aspects of phase formation and phase equilibrium, Mixing of atoms

  • Thermodynamics of mixing in binary solutions: Ideal and Regular Solutions, Real Solutions

  • Systems with intermediate phases, Equilibrium in Heterogenous systems, Free energy composition diagrams and their use in determining phase diagrams

  • Types of Phase diagrams and reactions, Gibbs phase rule and its applications to phase diagrams, Invariant reactions, Tie-line and Lever rule

  • Binary Phase Diagrams: Applications of tie-line and lever rules to determine phase compositions and fractions, Microstructure evolution under equilibrium and non-equilibrium cooling conditions, Examples of Phase diagrams and their correlations with microstructures in common alloy systems.

  • Examples of Phase diagrams and their correlations with microstructures in common alloy systems: Fe-C, Cu-Zn systems

  • Experimental determination of phase diagrams, Ternary phase diagrams

  • Ternary Phase diagrams and Course summary

Evaluation process

The Phase Equilibria in Materials (Nature & Properties Of Materials-II) certification offers an optional exam. Your final score is determined by averaging the best 8 out of 12 assignments (25%) and your proctored exam score (75%). 

Instructors

IIT Kanpur Frequently Asked Questions (FAQ's)

1: Who is eligible for the Phase Equilibria in Materials (Nature & Properties Of Materials-II) online course?

This course is open to undergraduate students from any branch of science or engineering and postgraduate students engaged in materials-related research. 

2: What is the duration of the Phase Equilibria in Materials (Nature & Properties Of Materials-II) training?

The course spans 8 weeks, providing a comprehensive exploration of thermodynamics, phase diagrams, and their applications in materials science.

3: How will the Phase Equilibria in Materials (Nature & Properties Of Materials-II) certification course benefit my career?

Completing this course can lead to various career paths, including roles in materials engineering, metallurgy, research, quality control, and academia. The industry support indicates its practical relevance to materials-related companies.

4: Are there specific prerequisites for enrollment?

Yes, a 12th standard science background is required for enrollment. This ensures that participants have a foundational understanding of the scientific principles essential for the course.

5: Can I apply the knowledge gained in the Phase Equilibria in Materials (Nature & Properties Of Materials-II) online course to real-world scenarios?

Yes. The course emphasizes the practical application of thermodynamics and phase diagrams, enabling you to correlate these concepts with microstructure evolution.

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