Here, you can build your own AI to take with you and train it to become unbeatable in a logic game. Along the way, you'll learn about the basic principles of machine learning.
Every body emits thermal radiation, which we make visible using an infrared camera. This helps answer questions such as: “Am I a ‘cold nose’ or a ‘warm nose’?” or “Where can a mouse hide from a snake?”
How are high-precision components made from modern materials? See firsthand how 5-axis CNC machines are used to manufacture complex free-form optical surfaces with the highest precision and to finish ceramic-printed watch components.
We're opening the Makerspace (a student workshop) and the microaircraft lab: exciting exhibits, live demos, and hands-on activities centered on microaircraft, sensor technology, and flight tests.
Medical imaging techniques are the product of various scientific subdisciplines. The fundamentals of these subdisciplines and their applications are presented through numerous interactive experiments on optics and machine learning.
A tray with a glass of water should be kept level. A microcontroller issues a warning if the tray tilts, using two approaches: classically programmed versus trained using sample data. In doing so, we examine the question of when we can refer to it as “AI.”
Do you want to build and solder something yourself and get your circuit up and running? Then come join us in the Department of Electrical Engineering and Information Technology!
You can simulate a race using just (lots of) LEDs. Two people compete against each other and try to "drive" their vehicle across the finish line first by pressing a button as quickly as possible.