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Continuum Mechanics I
Last Updated: 2026-02-05 15:35:57
Abstract
The lecture deals with constitutive models that are relevant for design and calculation of structures. These include anisotropic linear elsticity, linear viscoelasticity, plasticity, viscoplasticity. Homogenization theories and laminate theory are presented. Theoretical models are complemented by examples of engineering applications and eperiments.
Objective
Basic theories for solving continuum mechanics problems of engineering applications, with particular attention to material models.
Content
Anisotrope Elastizität, Linearelastisches und linearviskoses Stoffverhalten, Viskoelastizität, mikro-makro Modellierung, Laminattheorie, Plastizität, Viscoplastizität, Beispiele aus der Ingenieuranwendung, Vergleich mit Experimenten.
Resources
Lecture Notes
yes
General Information
- Language
- English
- Levels
- BSC , MSC , NDS
- Frequency
- Yearly recurring
Examination
- Type
- session examination
- Mode
- written 60 minutes
- Aids
- None
Course Components
| Type | Title | Time & Place | Hours |
|---|---|---|---|
| lecture |
Continuum Mechanics I
The lecturers will communicate the exact lesson times of ONLINE courses.
|
|
2 h weekly |
| exercise |
Continuum Mechanics I
Exercises start in the second week of the semester.
The lecturers will communicate the exact lesson times of ONLINE courses.
|
|
1 h weekly |
Offered In
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Biomedical Engineering (Focus Coordinator: Prof. Edoardo Mazza)
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Design, Mechanics and Materials (Focus Coordinator: Prof. Kristina Shea In order to achieve the required 20 credit points for the Focus Specialization Design, Mechanics and Material you are free to choose any of the courses offered within the focus and are encouraged to select among those recommended. If you wish to take one of the Master level courses, you must get approval from the lecturer.)
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Mechanics, Materials, Structures (The courses listed in this category “Core Courses” are recommended. Alternative courses can be chosen in agreement with the tutor.)
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Recommended Elective Courses (These courses are particularly recommended for the Biomechanics track. Please consult your track advisor if you wish to select other subjects.)
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