Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
-
Field
-
Mechanobiology, Stem Cell and Bone Marrow Niche Biology, or a related field Professional experience in cell mechanics research Professional experience with confocal microscopy and data visualization Professional
-
The Max Planck Institute for Multidisciplinary Sciences is a leading international research institute of exceptional scientific breadth. With more than 40 research groups and some 1,000 employees
-
Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 12 days ago
Job Code: 43-25 Job Offer from December 04, 2025 The Max Planck Institute for Multidisciplinary Sciences is a leading international research institute of exceptional scientific breadth. With
-
of the Western Mediterranean World between 800 BCE and 300 CE. The thematic focus is on material remains (art, urban architecture and monuments, visual culture, urban performances) and their relevance
-
-based modeling methods, or continuum mechanics, especially blood flow and transport modeling. Knowledge of AI and OpenGL-based visualization techniques and/or image analysis methods is an advantage
-
computational skills for data analysis and visualization Good communication skills in English and French Ability to work independently and in a multicultural team Our offer Access to Max Planck Institute state
-
7 Nov 2025 Job Information Organisation/Company University of Bremen Department Faculty 2 Biology / Chemistry Research Field Biological sciences » Other Researcher Profile Recognised Researcher (R2
-
, TensorFlow, Pandas), ideally combined with knowledge of data visualization or statistical analysis Knowledge of software development (e.g., Python, Matlab, Simapro), especially in combination with experience
-
, NeRFs, Diffusion Models, LLMs, etc. PhD and PostDoc Positions in Visual Computing & AI The Visual Computing & Artificial Intelligence Group at the Technical University of Munich is looking for highly
-
with such environments. We investigate machine learning approaches to infer semantic understanding of real-world scenes and the objects inside them from visual data, including images and depth/3D