GMU:Home Made Bioelectronics: Difference between revisions

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Eine andere Möglichkeit, das Profilbild auf Instagram zu vergrößern, besteht darin, es in eine quadratische Form zu beschneiden. Instagram wird Bilder aufnehmen, die nicht quadratisch genug sind. Sie können diese Tools verwenden, um Ihr Bild in ein Seitenverhältnis von 1: 1 oder sogar in eine benutzerdefinierte Messung zu beschneiden. Eine andere Möglichkeit, Ihr Profilfoto anzupassen, besteht darin, Filter oder Emojis hinzuzufügen. Durch die Auswahl eines zeitlosen Bildes wird es bei Ihren Followern abheben und dazu beitragen, die Markenerkennung aufzubauen.
[[:Category:Werkmodul|Werkmodul]] [[:Category:Fachmodul|Fachmodul]]<br />
''Lecturer(s):'' [[:Category:Mindaugas Gapševičius|Mindaugas Gapševičius]]<br />
''Credits:'' 4 [[SWS]]<br />
Date: Thursdays 11.00-15.00<br />
''Venue:'' DIY Biolab @ [[Marienstraße 7b]], [[Marienstraße 7b/202|Room 202]]<br />
''First meeting:'' 14.04.2022
 
==Description==
This course is designed as an introduction to working with interfaces between living organisms and computing machines. The weekly course is divided into a theoretical and a practical parts. In the theoretical part we will discuss artworks in relation to bioelectronics. The practical part will include work with organisms and interfaces that connect organisms to computers.
 
Participants are encouraged to develop their own ideas, which will then be presented at the exhibition in Berlin in the summer.
 
==Classes==
* 14.04.2022. [[/Introduction]]
* 21.04.2022. [[/Exchange of ideas]]
* 28.04.2022. [[/Further tips]]
* 05.05.2022. [[/Reflections]]
* 12.05.2022. [[/Further works]] + EOS 6D + Bresser oculus capture
 
==Students==
* [[/Marah Doleh]]
* [[/Sophia Amelia Eickhoff]]
* [[/Nicolas Krewer]]
* [[/Friedrich Wilhelm Albrecht Pittelkow]]
* [[/Cosmo Niklas Schüppel]]
* [[/Dahye Seo]]
* [[/Funda Zeynep Ayguler]]
 
==Literature==
* Homemade Bio Electronic Arts [[:File:inhalt_bioelectronics_final_greenpages_o.pdf]]
 
==Grading==
The successful completion of the course is the attendance of the seminar and the documented work on GMU wiki. The documentation may contain text, video, images, sketches, sound, and other digital formats.
 
*20 % Theory
*50 % Individual project
*30 % Documentation including 20% of updates in Wiki
 
[[Category:WS22]]
[[Category:Werkmodul]]
[[Category:Fachmodul]]
[[Category:Mindaugas Gapševičius]]

Revision as of 08:45, 19 May 2022

Werkmodul Fachmodul
Lecturer(s): Mindaugas Gapševičius
Credits: 4 SWS
Date: Thursdays 11.00-15.00
Venue: DIY Biolab @ Marienstraße 7b, Room 202
First meeting: 14.04.2022

Description

This course is designed as an introduction to working with interfaces between living organisms and computing machines. The weekly course is divided into a theoretical and a practical parts. In the theoretical part we will discuss artworks in relation to bioelectronics. The practical part will include work with organisms and interfaces that connect organisms to computers.

Participants are encouraged to develop their own ideas, which will then be presented at the exhibition in Berlin in the summer.

Classes

Students

Literature

Grading

The successful completion of the course is the attendance of the seminar and the documented work on GMU wiki. The documentation may contain text, video, images, sketches, sound, and other digital formats.

  • 20 % Theory
  • 50 % Individual project
  • 30 % Documentation including 20% of updates in Wiki