High-Resolution Mass Spectrometry for Decoding the Human Proteome — How Can Brain Cells Perform Functions Different from Those of Cells in the Eye or a Muscle?
How safe are toasters and laser pointers, and how is a real object turned into a 3D model? In the hands-on lab at ZEISS Quality Assurance, you’ll become a tester and experience measurement and testing technology up close.
For over 130 years, ZEISS camera lenses have been impressing users with their unique quality. In collaboration with vivo, ZEISS is developing smartphone cameras that bring the ZEISS Portrait Style to your phone. Tessar, Biogon, Sonnar—capture portraits with the legendary ZEISS look.
For over 100 years, ZEISS has been developing technologies that allow us to look inside the eye. Discover historical and modern fundus cameras, learn how eye diseases are diagnosed, and become an eye researcher yourself.
Y-Space is a research project aimed at developing a UAV carrier platform capable of briefly generating true microgravity (≤ 0.1 g, up to 10 seconds, 3 kg payload). The goal is to create a mobile, cost-effective alternative to parabolic flights.
Why do corals, tonic water, and paper bills glow? Discover the fascinating world of fluorescence in the Fluorescence Lab—with exciting experiments, glowing natural substances, and applications in everyday life, technology, and modern research.
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.
Do you want to know how to solve a Rubik's Cube or how satellites are controlled in space? Then come join us at the Department of Electrical Engineering and Information Technology