Search result for Courses taught by Lorna J. Gibson
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Mechanical Behavior of Materials, Part 1: Linear Elastic Behavior
by Lorna J. Gibson , Jessica Sandland- 0.0
5 Weeks
Explore materials from the atomic to the continuum level, and apply your learning to mechanics and engineering problems. All around us, engineers are creating materials whose properties are exactly tailored to their purpose. This course is the first of three in a series of mechanics courses from the Department of Materials Science and Engineering at MIT....
$49
Mechanical Behavior of Materials, Part 2: Stress Transformations, Beams, Columns, and Cellular Solids
by Lorna J. Gibson , Jessica Sandland- 0.0
4 Weeks
Explore materials from the atomic to the continuum level, and apply your learning to mechanics and engineering problems. All around us, engineers are creating materials whose properties are exactly tailored to their purpose. This course is the second of three in a series of mechanics courses from the Department of Materials Science and Engineering at MIT....
$49
Cellular Solids Part 1: Structures, Properties and Engineering Applications
by Lorna J. Gibson , Jessica Sandland- 0.0
9 Weeks
Learn how to model the mechanical properties of honeycombs and foams and to apply the models to material selection in engineering design. In this engineering course, we will explore the processing and structure of cellular solids as they are created from polymers, metals, ceramics, glasses and composites. Cellular Solids Part 2: Applications in Medicine...
$99
Mechanical Behavior of Materials, Part 3: Time Dependent Behavior and Failure
by Lorna J. Gibson , Jessica Sandland- 0.0
6 Weeks
Explore materials from the atomic to the continuum level, and apply your learning to mechanics and engineering problems. All around us, engineers are creating materials whose properties are exactly tailored to their purpose. This course is the third of three in a series of mechanics courses from the Department of Materials Science and Engineering at MIT....
$49
Cellular Solids Part 2: Applications in Medicine
by Lorna J. Gibson , Jessica Sandland- 0.0
4 Weeks
Learn how to apply foam models to trabecular bones and osteoporosis as well as to scaffolds for tissue engineering. This course should be taken with 3. 054. 1x: Cellular Solids Part 1. Application of the foam models to trabecular bone Modeling of bone loss in osteoporosis Application of foam models to tissue engineering scaffolds...
$49
Cellular Solids Part 3: Applications in Nature
by Lorna J. Gibson , Jessica Sandland- 0.0
3 Weeks
Learn how to apply models for cellular materials to natural materials such as wood, cork, monocotyledon leaves, skulls, palm and bamboo. In this engineering course, we will explore sandwich structures and cellular solids that occur in nature, and we will consider examples of engineering design inspired by natural materials. Examples of engineering design inspired by natural cellular solids...
$49
Cellular Solids 1: Structures, Properties and Engineering Applications
by Lorna J. Gibson- 0.0
9 Weeks
Learn how to model the mechanical properties of honeycombs and foams and to apply the models to material selection in engineering design. In this engineering course, we will explore the processing and structure of cellular solids as they are created from polymers, metals, ceramics, glasses and composites. Cellular Solids 2: Applications in Medicine...
$99
Cellular Solids Part 2: Applications in Medicine
by Lorna J. Gibson- 0.0
4 Weeks
Learn how to apply foam models to trabecular bones and osteoporosis as well as to scaffolds for tissue engineering. This course should be taken with 3. 054. 1x: Cellular Solids Part 1. Application of the foam models to trabecular bone Modeling of bone loss in osteoporosis Application of foam models to tissue engineering scaffolds...
$49
Cellular Solids Part 3: Applications in Nature
by Lorna J. Gibson- 0.0
3 Weeks
Learn how to apply models for cellular materials to natural materials such as wood, cork, monocotyledon leaves, skulls, palm and bamboo. In this engineering course, we will explore sandwich structures and cellular solids that occur in nature, and we will consider examples of engineering design inspired by natural materials. Examples of engineering design inspired by natural cellular solids...
$49
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