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Your Learner Verification

This is to verify that Ahmed Mahmoud Mohamed Ibrahim has completed the course Advanced Diploma in Polymer Physics on Alison.

Ahmed Mahmoud Mohamed Ibrahim

Alison ID: 7125308

Course Completed: Advanced Diploma in Polymer Physics

Date of Completion: 14th April 2026

Email: [email protected]

Total Study Time: 4h 28m

Final Assessment Score:

Alison courses requires at least
80% to pass the final assessment

85%
CPD Hours Completed:

CPD approved learning hours
completed through this course

3-5h

Course Information

Learn about the theory and applications of Polymer technologies in manufacturing processes in this free online course.

In this free Polymer Physics course, you are introduced to the world of Polymer technologies, where you will explore the universal features of polymers and the processes involved in polymeric-based technological systems. Calculations, demonstrations and assessment questions in this video-based course, are designed to provide you with a comprehensive foundation in the subject.

The course begins by introducing you to what Polymers are and the importance of studying this subject. You will then explore how Polymers are different from other molecular substances, covering topics such as: Random walk models, Polymer chains, Thermodynamics, Flory-Huggins theory, Brownian motions, Continuum mechanics and Rheology.

This course will be of interest to Physics and Chemical Engineering students, those interested in research in this area or those looking to enhance their career prospects in the industry. Start this free course today and learn more about polymeric-based technological systems.

Modules Completed

Module 1: Polymers and Molecules
Module 2: Models and Probability
Module 3: Radius of Gyration
Module 4: Fractal Nature of Polymers
Module 5: Structure of Polymer Chain
Module 6: Solution Thermodynamics
Module 7: Lattice Model of Solutions
Module 8: Brownian Motion
Module 9: Rouse Model
Module 10: Continuum Mechanics
Module 11: Polymeric Systems
Module 12: Polymer Rheology
Module 13: Course assessment

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