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Introduction to energy technology (5 cr)

Code: TX00EJ49-3013

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
5 cr
Mode of delivery
On-campus
Unit
(2019-2024) School of Automotive and Mechanical Engineering
Campus
Leiritie 1
Teaching languages
Finnish
Degree programmes
Mechanical Engineering
Teachers
Marko Tiermas
Teacher in charge
Marko Tiermas
Groups
K23A
Konetekniikka, aloittaneet opiskelun s.2023
K23B
Konetekniikka, aloittaneet opiskelun s.2023
K23C
Konetekniikka, aloittaneet opiskelun s.2023
Course
TX00EJ49

Implementation has 25 reservations. Total duration of reservations is 57 h 0 min.

Time Topic Location
Fri 07.02.2025 time 13:00 - 15:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Mon 10.02.2025 time 14:30 - 17:00
(2 h 30 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Thu 13.02.2025 time 14:00 - 16:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Fri 14.02.2025 time 11:00 - 13:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMC310 Oppimistila
Fri 14.02.2025 time 13:00 - 15:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Thu 27.02.2025 time 08:00 - 11:00
(3 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Fri 28.02.2025 time 12:00 - 14:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA115 Oppimistila
Fri 28.02.2025 time 14:00 - 16:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA219 Oppimistila
Tue 04.03.2025 time 08:00 - 09:30
(1 h 30 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Thu 06.03.2025 time 08:00 - 11:00
(3 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Thu 13.03.2025 time 08:00 - 11:00
(3 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Wed 19.03.2025 time 14:00 - 17:00
(3 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Thu 20.03.2025 time 11:00 - 13:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Thu 20.03.2025 time 15:00 - 17:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Fri 21.03.2025 time 08:00 - 10:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Wed 26.03.2025 time 14:00 - 17:00
(3 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Thu 27.03.2025 time 11:00 - 13:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Thu 27.03.2025 time 15:00 - 17:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Fri 28.03.2025 time 08:00 - 10:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMC375 Oppimistila
Wed 02.04.2025 time 14:00 - 17:00
(3 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Wed 09.04.2025 time 14:00 - 17:00
(3 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
Online
Thu 10.04.2025 time 11:00 - 13:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Thu 10.04.2025 time 15:00 - 17:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Tue 15.04.2025 time 08:00 - 10:00
(2 h 0 min)
Energiatekniikan perusteet TX00EJ49-3013
MMA119 Oppimistila
Wed 16.04.2025 time 14:00 - 16:00
(2 h 0 min)
KOE Energiatekniikan perusteet TX00EJ49-3013
MMA101 A-auditorio
Changes to reservations may be possible.

Objective

On completion of the course, the student's will have developed his/her thermodynamic thinking, and he/she will be familiar with common thermodynamic applications in his/her field of engineering. The student will be familiar with the concept of energy efficiency.

Content

1. Laws of thermodynamics and applications
2. Energy balance
3. Energy efficiency of machines
4. Sustainable development: economics and ecology
5. Energy sources and basics of power generation
6. Heat engines
7. Concept of efficiency

Evaluation scale

0-5

Assessment criteria, satisfactory (1)

The student understands the basics of thermodynamic thinking and can solve simple tasks related to energy technology.

Assessment criteria, good (3)

The student is able to use thermodynamic thinking to solve simple problems related to his/her own field of engineering, and solve tasks related to energy technology.

Assessment criteria, excellent (5)

The student is able to use thermodynamic thinking to solve problems related to energy technology and solve tasks related to energy technology.

Assessment criteria, approved/failed

The student understands the basics of thermodynamic thinking and can solve simple tasks related to energy technology.

Qualifications

Physics 2

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