Siirry suoraan sisältöön

Resurssitehokas yhteiskunta -harjoitustyö (5 cr)

Code: TX00DF82-3001

General information


Enrollment

13.01.2020 - 14.01.2020

Timing

13.01.2020 - 10.05.2020

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Puhtaat ja älykkäät ratkaisut

Campus

Leiritie 1

Teaching languages

  • Finnish

Seats

0 - 100

Degree programmes

  • Energia- ja ympäristötekniikan tutkinto-ohjelma

Teachers

  • Ismo Halonen
  • Opettaja Energia ja ympäristötekniikka

Teacher in charge

Ismo Halonen

Groups

  • YMP18
    Energia- ja ympäristötekniikan tutkinto-ohjelma: Ympäristötekniikan pääaine
  • TXO18S1
    Energia- ja ympäristötekniikan tutkinto-ohjelma

Objective

After the course student is capable to design local material and energy symbiosis in a schematic level. Design and project type varies annually.
Students learn the material recycling and reuse processes and concepts discussed during the course so that they can solve the main problems, to apply their knowledge in subsequent studies and material to provide expertise in future occupation in a project environment.

Content

Scope varies yearly

Evaluation scale

0-5

Assessment criteria, satisfactory (1)

To define or describe the subject matter related to the concepts and phenomena qualitatively and calculate the associated basic quantitative comparisons and calculations

Assessment criteria, good (3)

The student is able to apply, calculate, change and choose the concepts related to the matter and phenomena qualitatively and calculate the basic quantitative calculations as well as to complete and produce the necessary information for the calculations.

Assessment criteria, excellent (5)

The students is able to categorize, collect, combine and generalize the concepts related to the matter and phenomena qualitatively and calculate the basic quantitative calculations as well as derive and rearrange given basic information.

Assessment criteria, approved/failed

After the course student is capable to design local material and energy symbiosis in a schematic level. Design and project type varies annually.
Students learn the material recycling and reuse processes and concepts discussed during the course so that they can solve the main problems, to apply their knowledge in subsequent studies and material to provide expertise in future occupation in a project environment.