Sort by
Refine Your Search
-
Category
-
Program
-
Employer
-
Field
-
, and machine learning, applied to longitudinal multi-omics data from pediatric cohorts spanning diverse socio-economic and geographical contexts. Our lab will be supported by two major grants starting in
-
statistical and mechanistic mathematical modeling, causal inference, and machine learning, applied to longitudinal multi-omics data from pediatric cohorts spanning diverse socio-economic and geographical
-
6,500 people supporting the three main missions of the institutions: education, research and innovation. The EPFL campus offers an exceptional working environment at the heart of a community of more
-
6,500 people supporting the three main missions of the institutions: education, research and innovation. The EPFL campus offers an exceptional working environment at the heart of a community of more
-
The AIS Instrumentation Gym is a multi-tier ML platform being built by both the National University of Singapore and the Singapore-ETH Centre (SEC) for shared scientific instruments (e.g., electron
-
The Soft Robotics Lab within the Institute of Robotics and Intelligent Systems at ETH Zurich, through the Singapore-ETH Centre (SEC), is inviting applications for a full-time researcher position
-
of translating our insights into actionable strategies for pediatric care. Our work combines statistical and mechanistic mathematical modeling, causal inference, and machine learning, applied to longitudinal multi
-
6,500 people supporting the three main missions of the institutions: education, research and innovation. The EPFL campus offers an exceptional working environment at the heart of a community of more
-
, Switzerland, on the shores of Lake Geneva, is an international, dynamically growing and well-funded institution fostering excellence and diversity. The EPFL environment is multi-lingual and multi-cultural. As a
-
The Tissue Engineering and Biofabrication Laboratory (Prof. Marcy Zenobi-Wong) at ETH Zurich develops light-based 3D bioprinting techniques to engineer functional tissues with multi-scale porosity