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In this online course (MOOC), participants will learn how a material’s properties are determined by the microstructure of the material.The course includes topics such as:Atomic...
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This course explores the analysis and design of beam bending problems.
This course lets participants explore the concept of emergence using examples from materials science, mathematics, biology, physics, and neuroscience to illustrate how ordinary...
This course is the first of three in a series of mechanics courses from the Department of Materials Science and Engineering at MIT. Part 1 covers stress-strain behavior, topics...
This online course teaches Python step by step for beginners. It includes more than 100 short video lessons, covering topics from the object and data structure basics to...
The key goal of this course is to understand, from a chemical point of view, how conservation protocols and the material aspects of an art work allow a better appreciation of an...
Religions are deeply, stubbornly physical and sensual. This online course aims to re-imagine the understanding of religion by grounding traditions in physical encounters between...
Fluid-Solid Interactions happen when the motion of solids and fluids are coupled. The aim of the course is to give students the basic tools to be able to understand, predict and...
This course is an introduction to high-throughput experimental methods that accelerate the discovery and development of new materials.
This online course explores intercultural communication by teaching the concepts of culture and interculturality.
Dieser MOOC (Online-Kurs) diskutiert die Unterrichtsgestaltung an Schulen mit großer Heterogenität der Schüler, u.a. durch die Ausrichtung auf individuelle Förderung.
This course is Part 4 of an Environmental Science series designed to prepare students for the AP exam. In this special Review and Exam Preparation Course, students will find...
This course explores the analysis and design of engineering structures considering factors of deflection, buckling, combined loading, & failure theories.
This MOOC explores how materials look and work at atomic scales. Prior knowledge of engineering or physical science required.
This course explores the analysis and design of thin-walled pressure vessels and engineering structures subjected to torsion.
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