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Course Catalog 2010-2011
SMG-5356 Electromagnetic modelling II, 3-5 cr |
Person responsible
Saku Suuriniemi, Antti Stenvall
Lessons
| Study type | P1 | P2 | P3 | P4 | Summer | Implementations | Lecture times and places |
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Requirements
Exam or exercise problems. 2 credits from the seminar work.
Principles and baselines related to teaching and learning
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Learning outcomes
The student can formulate time-dependent boundary value problems in time and frequency domain, and apply separation of variables for scalar field problems. The student can choose an efficient numerical method for a boundary value problem according to its type and design objective, and can operate a solver software. The student recognizes if a time-static problem is forward or inverse. The student can implement a 1D difference- or variational method solver.
Content
| Content | Core content | Complementary knowledge | Specialist knowledge |
| 1. | Transient and time harmonic problems, boundary and initial conditions, wave and eddy current problems. | ||
| 2. | Special features of 2D-problems | ||
| 3. | Difference-, finite element-, FDTD and FIT-methods. | ||
| 4. | Short introduction to inverse problems. |
Evaluation criteria for the course
Without the seminar work, exams / exercises determine 1/1 of the grade. Else exam / exercises determine 3/5, and seminar work 2/5 of the grade.
Assessment scale:
Numerical evaluation scale (1-5) will be used on the course
Study material
| Type | Name | Author | ISBN | URL | Edition, availability, ... | Examination material | Language |
| Lecture slides | English |
Prerequisites
| Course | Mandatory/Advisable | Description |
| SMG-1400 Electromagnetic fields and waves II | Advisable | |
| SMG-5100 Electromagnetics and mathematical physics I | Advisable | |
| SMG-5156 Electromagnetic Modelling I | Advisable |
Prerequisite relations (Requires logging in to POP)
Correspondence of content
| Course | Corresponds course | Description |
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Additional information
During the course, students get acquainted with solution methods for time-varying electromagnetic fields
Suitable for postgraduate studies
More precise information per implementation
| Implementation | Description | Methods of instruction | Implementation |
| Implementation for academic year 2010-11 |