Department of Engineering
Dean:Dr. Ármann Gylfason
Email:ru@ru.is
Website:http://www.ru.is/tvd
TeachersView
MSc in Biomedical Engineering
Semesters:4
Years:2
ETCS:120
About majorÍ heilbrigðisverkfræði er verkfræðilegum aðferðum beitt til að fást við líffræðileg og læknisfræðileg viðfangsefni, s.s. uppgötvun og þróun nýrrar tækni og aðferða við greiningu og meðferð sjúkdóma. Hér sameinast ólíkar greinar eins og stærðfræði og eðlisfræði við sameindalíffræði og lífeðlisfræði í leit að lausnum heilsufarslegra viðfangsefna. MSc námið er mótað að kröfum Verkfræðingafélags Íslands um fullnaðarmenntun í verkfræði.
Learning OutcomesView
Education cycle2
Degree titleMSc in Biomedical Engineering
Legend
Mandatory course on majorTeaching language
Optional course on majorPrerequisites for course
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Vorönn/Spring 2024
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More infoFinite Element Analysis in EngineeringElectiveT-844-FEMMECTS 8
Year
1. yearPrint
SemesterSpring 2024
Level of courseFirst cycle - Advanced / Second cycle - Introductory
Type of courseElective
PrerequisitesT-106-BURD, Statics and Mechanics of Materials
T-534-AFLF, Classical Dynamics
ScheduleNo schedule found.
Lecturer
Jónas Þór Snæbjörnsson
Content
The course will present the main features and possibilities of the finite element method (FEM) and its application in analysis of problems in mechanics. Aspects of the finite element method, from the mathematical background through to practical implementation and application are discussed. Emphasis is placed on possible errors and how to minimize them. Students will develop an understanding of the fundamentals of the finite element method and get some training in the use of commercial finite element software. ???????
Learning outcome - Objectives
 On completion of the course the students should be:
  • Familiar with the FE method and common FE tools and approaches used for problem solving in mechanics,
  • able to build up the stiffness matrices for common element types and to construct the system matrices for the structure,
  • able to define the proper boundary conditions and solve the relevant systems of equations,
  • able to evaluate errors and deviations in FEM analyses.
  • able to build FE models for analysis of problems in mechanics using commercial FE software,
  • able to present the result of a FE analysis in a clear and concise manner
Course assessment

Reading material
No reading material found.
Teaching and learning activities

Language of instructionEnglish
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