Sort by
Refine Your Search
-
Category
-
Country
-
Employer
- SINGAPORE INSTITUTE OF TECHNOLOGY (SIT)
- Nanyang Technological University
- University of Oslo
- National University of Singapore
- University of Stavanger
- University of Bergen
- Center for Drug Evaluation and Research (CDER)
- University of British Columbia
- University of South-Eastern Norway
- Zintellect
- Dana-Farber Cancer Institute (DFCI)
- Universidade do Minho
- Center for Biologics Evaluation and Research (CBER)
- Harvard University
- INESC TEC
- TAIPEI MEDICAL UNIVERSITY (TMU)
- UiT The Arctic University of Norway
- Yale University
- Center for Devices and Radiological Health (CDRH)
- Centro de Engenharia Biológica da Universidade do Minho
- Corify Care
- Dana-Farber Cancer Institute
- Ellison Institute of Technology
- Indiana University
- Institute for Basic Science
- National Center for Toxicological Research (NCTR)
- Oslo Metropolitan University
- Oslo University Hospital
- OsloMet
- SUNY University at Buffalo
- SciLifeLab
- Trinity College Dublin
- University of Birmingham
- University of Florida
- University of London
- University of Maryland, Baltimore
- University of New South Wales
- University of Notre Dame
- University of Sussex;
- University of Texas at Austin
- Wayne State University
- 31 more »
- « less
-
Field
-
Center for Biologics Evaluation and Research (CBER) | Southern Md Facility, Maryland | United States | about 16 hours ago
through optimized antigen immunogenicity and enhanced vaccine production processes, while analyzing their protective effects against viral infections in animal models. Learning Objectives: You will have
-
complexity tools for optimization problems involving geometric and algebraic objects such as points, vectors, linear spaces, and matrices. Qualifications and personal qualities Applicants must hold a master's
-
Center for Biologics Evaluation and Research (CBER) | Silver Spring, Maryland | United States | about 16 hours ago
proteins are recognized by antibodies at an atomic level, and how that recognition can be exploited to design effective vaccines. You will learn to design and execute experiments to determine the structures
-
, process optimization, and project management. Key Responsibilities Lead and manage applied food processing related research projects in collaboration with Principal Investigators, Co-PIs, and industry
-
-polysaccharide interactions under different food processing conditions. Profile phenolic compound and evaluate the bio-functional properties such as antioxidant activity Identify optimal processing conditions that
-
systems for optimizing adaptive, temporal, high-dimensional systems Data: Real-World Multi-Modal Patient Data: Multimodal biomedical data (omics, medical images, histopathology, single cell/bulk, spatial
-
for optimization, history matching, decision making, uncertainty quantification, etc Conduct geothermal assessments, as this is a hot field (> 150 C) The candidate can also suggest other objectives / research
-
factories and warehouses with autonomous components. It addresses a fundamental challenge in industrial digitalization: the lack of formal, machine-interpretable representations that integrate structural
-
lab (marklundlab.com ), we investigate how sequence information in biological macromolecules governs recognition, binding, and dynamical structure. We combine high-throughput measurements of molecular
-
the research area where required. Lead the synthesis, functionalization, and intercalation of graphene and graphene-oxide materials including optimizing morphology, defect chemistry, and interlayer spacing