Occupational mathematics (5 cr)
Code: TSAM0100-3001
General information
- Enrollment
-
03.08.2020 - 30.08.2020
Registration for the implementation has ended.
- Timing
-
31.08.2020 - 31.12.2020
Implementation has ended.
- Number of ECTS credits allocated
- 5 cr
- Local portion
- 5 cr
- Mode of delivery
- Face-to-face
- Unit
- School of Technology
- Campus
- Main Campus
- Teaching languages
- Finnish
- Seats
- 60 - 60
- Degree programmes
- Bachelor's Degree Programme in Electrical and Automation Engineering
- Teachers
- Tomi Nieminen
- Teacher in charge
- Tomi Nieminen
- Scheduling groups
- TSA19A (Capacity: 30 . Open UAS : 0.)
- TSA19S (Capacity: 30 . Open UAS : 0.)
- Groups
-
TSA19SABachelor's Degree Programme in Electrical and Automation Engineering
-
TSA19S1Sähkö- ja automaatiotekniikka
- Small groups
- TSA19A
- TSA19S
- Course
- TSAM0100
Evaluation scale
0-5
Objective
The student masters the mathematical modeling and simulation of dynamical systems. He is able to apply these skills in electrical engineering, control engineering and mechatronics.
EA-KN EUR-ACE Knowledge and understanding: The students understand the principles of mathematical modeling in their own field of expertise.
EA-EN EUR-ACE Technical analysis: The students are able to apply the modeling techniques to practical engineering problems.
Content
Differential equations and their analytical and numerical solutions, the modeling and simulation of dynamical systems, integral transforms and applications in electrical and control engineering.
Materials
Nieminen: Säätötekniikan matemattiiset mallit
Nieminen: Sähkötekniikan ja signaalinkäsittelyn matemaattiset mallit
Teaching methods
Contact lessons, virtual study
Student workload
Lectures and exercises 42 h. Self study 80 h.
Assessment criteria, satisfactory (1)
Excellent 5: The student masters the mathematical modeling of dynamical systems and he is able to creatively apply his skills to new application areas.
Very good 4: The student masters the mathematical modeling of dynamical systems and he is able to apply his skills to the application areas covered during the course.
Good 3: The student masters the basics of mathematical modeling of dynamical systems and he is able to solve basic engineering applications.
Satisfactory 2: The student masters the basic concepts of mathematical modeling of dynamical systems but he has trouble with applications.
Adequate 1: The student is familiar with the basic concepts of mathematical modeling of dynamical systems but he has significant problems with applications.
Qualifications
Solving equations and systems of equations, the concepts of derivative and integral.