- Admission : /en/education/bachelor/mechanical-engineering/admission/
- Structure of studies : /en/education/bachelor/mechanical-engineering/structure-of-studies/
- Study program : /en/education/bachelor/mechanical-engineering/study-program/
- Career perspectives : /en/education/bachelor/mechanical-engineering/career-perspectives/
- Exchange programs : /en/education/bachelor/mechanical-engineering/exchange-programs/
- People : /en/education/bachelor/mechanical-engineering/people/
- Admission : /en/education/bachelor/mechanical-engineering/admission/
- Structure of studies : /en/education/bachelor/mechanical-engineering/structure-of-studies/
- Study program : /en/education/bachelor/mechanical-engineering/study-program/
- Career perspectives : /en/education/bachelor/mechanical-engineering/career-perspectives/
- Exchange programs : /en/education/bachelor/mechanical-engineering/exchange-programs/
- People : /en/education/bachelor/mechanical-engineering/people/
Study program
Course description
Back-
Objectives
Partie biomécanique: - Introduction à la biomécanique- appareil locomoteur et anatomie- propriétés mécaniques des tissus humains, en particulier os, muscle, cartilage, tendon/ligaments
Partie nanomécanique:- introduction générale aux nanotechnologies- outils expérimentaux permettant l'analyse des propriétés mécaniques à l'échelle nano- traitements de surface Remarque:petits travaux pratiques, exercices en classe, la note finale sera basée sur les travaux écrits
-
Content
L'étudiant fera connaissance des outils/notions suivantes de la biomécanique- anatomie- anthropométrie- modèles biomécanique simples- propriétés mécaniques des os, muscles, ligaments, tendons et du cartilage - il est capable de résoudre des problèmes d'un niveau intermédiaireL'étudiant fera connaissance des instruments/méthodes de mesure suivants- AFM (microscope à force atomique)- nanoindentation- revêtements nano (sol gel)- applications des nanoparticules- risque des nanoparticules
Type of teaching and workload
Course specification
Evaluation methods
- Continuous assessment Written work,
Course grade calculation method
The continuous assessment mark is the weighted average of the courses evaluations. If the course includes practical labs (TP), the course mark is the weighted average of the TP mark and the mark of the other evaluations. If one of these two marks (TP or other evaluations) is less than 3.0, the course counts as failed and no mark is given.
Intructor(s) and/or coordinator(s)
Stefan Hengsberger