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Electrical engineering and electric machines (5 cr)

Code: TX00BU70-3032

General information


Enrollment
25.11.2024 - 31.12.2024
Registration for the implementation has ended.
Timing
13.01.2025 - 11.05.2025
Implementation is running.
Number of ECTS credits allocated
5 cr
Local portion
3 cr
Virtual portion
2 cr
Mode of delivery
On-campus and online
Unit
(2019-2024) School of Automotive and Mechanical Engineering
Campus
Leiritie 1
Teaching languages
Finnish
Degree programmes
Mechanical Engineering
Teachers
Maarit Ahoste
Ilkka Kinosmaa
Sanna Heikkinen
Teacher in charge
Sanna Heikkinen
Groups
K23B
Konetekniikka, aloittaneet opiskelun s.2023
Course
TX00BU70

Implementation has 13 reservations. Total duration of reservations is 51 h 0 min.

Time Topic Location
Tue 14.01.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMB101 Auditorio 1 krs.
Thu 16.01.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMC345 Oppimistila
Tue 21.01.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMB101 Auditorio 1 krs.
Thu 23.01.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMC345 Oppimistila
Tue 28.01.2025 time 09:00 - 12:00
(3 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMC345 Oppimistila
Thu 30.01.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMC345 Oppimistila
Tue 04.02.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMB101 Auditorio 1 krs.
Thu 06.02.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMC345 Oppimistila
Thu 13.02.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3031, Sähkötekniikka ja sähkökoneet TX00BU70-3032, Sähkötekniikka ja sähkökoneet TX00BU70-3033
MMC345 Oppimistila
Fri 28.02.2025 time 11:00 - 15:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3032
MMC136 Sähkökonelaboratorio
Mon 03.03.2025 time 13:00 - 17:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3032
MMC136 Sähkökonelaboratorio
Fri 14.03.2025 time 11:00 - 15:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3032
MMC136 Sähkökonelaboratorio
Thu 20.03.2025 time 08:00 - 12:00
(4 h 0 min)
Sähkötekniikka ja sähkökoneet TX00BU70-3032
MMC136 Sähkökonelaboratorio
Changes to reservations may be possible.

Objective

On completion of the course, the student will understand the fundamental principles and most common applications of electricity.
The student will be familiar with the fundamental principles of electromagnetic induction and its applications in engineering.
The student will be familiar with the most common types of electric motors, generators and transformers.

Content

1. Basic concepts in electrostatics
2. Magnetic force and magnetic field.
3. Electromagnetic induction.
4. Kirchhoff’s laws and Ohm’s law.
5. Basics of DC and AC circuits.
6. Basics of circuit analysis.
7. Three-phase systems and electric installations.
8. Basics of transmission and distribution networks.
9. Applications of electrical engineering.
10. Basics of electric work safety.
11. Electric safety regulations and standards.
12. Electric machines
13. Transformers

Location and time

Lukujärjestyksen mukaan

Materials

Electric machines: materials in Moodle and Oma
Electrical engineering and physics: Moodle.

Teaching methods

Partly online in Moodle
Lectures and exercises, lab work
electric machines: laboratory work is mandatory

Employer connections

Ei ole

Exam schedules

Electric machines: no exam
Electrical engineering and physics:no exam

International connections

Ei ole

Completion alternatives

Ei ole

Student workload

Electric machines: Electric machines: lessons according to the timetable + independent work, the amount of work depends on the student's experience
Electrical engineering and physics: 20h + 20h independent work and exercises

Content scheduling

Lukujärjestyksen mukaan

Evaluation scale

0-5

Assessment criteria, satisfactory (1)

The student is familiar with the key concepts of electric current and its behaviour in electric circuits, as well as with some most common applications of them.
The student is aware of the dangers of electricity.
The student is familiar with the basics of power applications of electricity.
The student is able to use the laws of electrostatics and magnetism to describe simple phenomena and to solve simple application problems.
The student knows the basic phenomena and principles of electromagnetic induction, and knows how to solve simple problems related to them.

Assessment criteria, good (3)

The student is able to apply basic laws of electrostatics, magnetism, and electromagnetic induction in more demanding situations.
The student can analyze simple circuits.
The student understands the basic operating principles of electric machines and transformers, and can perform simple sizing calculations.

Assessment criteria, excellent (5)

The student understands the basic concepts of AC circuits and can apply the knowledge to real-life cases.
The student can design simple electric power systems.

Assessment criteria, approved/failed

The student is familiar with the key concepts of electric current and its behaviour in electric circuits, as well as with some most common applications of them.
The student is aware of the dangers of electricity.
The student is familiar with the basics of power applications of electricity.
The student is able to use the laws of electrostatics and magnetism to describe simple phenomena and to solve simple application problems.
The student knows the basic phenomena and principles of electromagnetic induction, and knows how to solve simple problems related to them.

Assessment methods and criteria

Electric machines: Electric machines: exercises and laboratory work must be done with approval. More information in the lesson
Electrical engineering and physics: Moodle exercises

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