Physics 2 (5 cr)
Code: TX00EE49-3024
General information
- Enrollment
-
27.11.2023 - 15.01.2024
Registration for the implementation has ended.
- Timing
-
04.01.2024 - 31.05.2024
Implementation has ended.
- 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
- Kari Laajalehto
- Teacher in charge
- Kari Laajalehto
- Groups
-
K23BKonetekniikka, aloittaneet opiskelun s.2023
- Course
- TX00EE49
Implementation has 28 reservations. Total duration of reservations is 54 h 0 min.
Time | Topic | Location |
---|---|---|
Mon 15.01.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 16.01.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA115
Oppimistila
|
Mon 22.01.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 23.01.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA125
Oppimistila
|
Mon 29.01.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Fri 02.02.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
Online
|
Mon 05.02.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 06.02.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA215
Oppimistila
|
Mon 12.02.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 13.02.2024 time 12:00 - 13:30 (1 h 30 min) |
Fysiikka 2 TX00EE49-3024 |
Online
|
Mon 26.02.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 27.02.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA115
Oppimistila
|
Mon 04.03.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 05.03.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA115
Oppimistila
|
Mon 11.03.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 12.03.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA115
Oppimistila
|
Mon 18.03.2024 time 12:30 - 14:00 (1 h 30 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 19.03.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA115
Oppimistila
|
Mon 25.03.2024 time 11:30 - 13:00 (1 h 30 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Mon 25.03.2024 time 13:30 - 15:00 (1 h 30 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 26.03.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA115
Oppimistila
|
Tue 02.04.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024 |
MMA115
Oppimistila
|
Mon 08.04.2024 time 12:00 - 14:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
Online
|
Tue 09.04.2024 time 10:00 - 11:30 (1 h 30 min) |
Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
MMC375
Oppimistila
|
Tue 16.04.2024 time 10:00 - 12:00 (2 h 0 min) |
Fysiikka 2 TX00EE49-3024, Fysiikka 2 TX00EE49-3022 |
MMC375
Oppimistila
|
Mon 22.04.2024 time 14:00 - 17:00 (3 h 0 min) |
Loppukoe: Fysiikka 2 TX00EE49-3022, Fysiikka 2 TX00EE49-3023, Fysiikka 2 TX00EE49-3024 |
MMA101
A-auditorio
|
Thu 02.05.2024 time 14:00 - 15:00 (1 h 0 min) |
Fysiikka 2 Loppukokeen ratkaisut ja tulokset |
Online
|
Fri 10.05.2024 time 15:00 - 17:30 (2 h 30 min) |
Fysiikka 2. 1. uusintakoe: A23A/B/C ja K23A/B/C |
MMA101
A-auditorio
|
Objective
A student learns the basic laws and concepts of thermal physics and thermodynamics and their restrictions and relevance in technology.
A Student knows the basic laws and concepts of mechanical vibrations and waves and how to use them in simple technical applications.
A student learns the basic concepts of thermal chemistry and is able to apply them in gas processes and thermal chemical reactions.
Content
1. Basic concepts of thermal physics and their applications: temperature and thermometers, thermal expansion, heat, phase changes, ideal gas law, transfer of heat.
2. The laws of thermodynamics. Thermal processes and their applications.
3. Mechanical vibrations: harmonic oscillations, damped and driven oscillations.
4. Mechanical waves. Interference and standing waves.
5. Basics in chemistry and thermal reactions: the structure and the phases of the matter, gas processes and thermal reactions.
Teaching methods
Theory lessons as large group teaching for classes together (TEAMS)
Calculation exercises for each class as contact teaching
Evaluation scale
0-5
Assessment criteria, satisfactory (1)
A student knows the most important temperature scales and methods of temperature measurements and can calculate thermal expansion in one-dimensional systems. A student also knows the basic concepts in thermal chemistry, thermodynamics and heat transfer mechanisms and is able to calculate heat changes in simple systems. A student knows the basic concepts of mechanical vibrations and waves and is able to use them in simple applications.
Assessment criteria, good (3)
A student can determine thermal expansion of different body shapes and calculate changes in thermal energy in systems having phase changes. She or he is able to use ideal gas equations in simple changes of state and calculate energy changes in different heat transfer processes.
A student understands the basic concepts of thermodynamics and is able to apply these in simple practical situations.
A student can solve simple problems related to vibration mechanics and wave motion.
Assessment criteria, excellent (5)
The student is able to handle situations requiring simultaneous application of various fundamental laws relating to the subjects of the course. Students are able to use the acquired knowledge to new situations.
A student knows how to consider the effects of thermal expansion in different materials and constructions. She or he can calculate heat changes and apply ideal gas law in different systems and changes of state. A student is able to evaluate the significance of different heat transfer mechanisms and can calculate heat changes related to radiation. A student can apply thermodynamics in simple cycle processes and apply basic models of mechanical vibrations and waves in practical situations.
Assessment criteria, approved/failed
A student knows the most important temperature scales and methods of temperature measurements and can calculate thermal expansion in one-dimensional systems. A student also knows the basic concepts in thermal chemistry, thermodynamics and heat transfer mechanisms and is able to calculate heat changes in simple systems. A student knows the basic concepts of mechanical vibrations and waves and is able to use them in simple applications.
Assessment methods and criteria
Obligatory calculation exercises (15 % of the grade).
Final exam (85 % of the grade)