Sort by
Refine Your Search
-
Category
-
Country
-
Program
-
Employer
- Carnegie Mellon University
- Nanyang Technological University
- ETH Zurich
- Pennsylvania State University
- Harvard University
- Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association
- McGill University
- Oak Ridge National Laboratory
- Queensland University of Technology
- Rutgers University
- The University of Manchester
- University of Notre Dame
- University of Texas at Austin
- 3 more »
- « less
-
Field
-
-cell culture, optical biosensing, and device-oriented in vitro testing. This position will focus primarily on developing, executing, and documenting calibration workflows for cells designed to measure
-
cells and adapting them for use with in implantable bio integrated device environments. The postdoctoral associate will design and execute studies of cell viability, growth, functionality, optical
-
on the interface between engineered mammalian cells and implantable device environments, including studies of cell adaptation, longevity, functional stability, optical readout compatibility, and integrated system
-
polymer networks; (ii) (bio)material processing; (iii) organ perfusion and regeneration; (iv) tools to study mechanobiology and cell–matrix interactions; and (v) engineered drug delivery systems. The lab is
-
Aerodynamics/ Aerodynamics (1 position, 50 hours) MECH 535 - Turbomachinery and Propulsion (1 position, 100 hours) MECH 536 - Aerospace Structures (1 position, 75 hours) MECH 548 - Cellular Materials in Natural
-
software Experience with hot cell operations and/or other remote handling operations using remote machines, cameras, long handled tools, etc. Experience with radioactive environments and radioactive
-
membranes for efficient plasma delivery to electrochemical sensors. Characterize plasma separation performance including separation time, yield, cell carryover, and robustness across physiological and
-
in two-phase transport, heat transfer, and fuel cell electrochemistry The ECEC, directed by Prof. Chao-Yang Wang, is a multi-disciplinary research program concentrating on advanced batteries and fuel
-
our Fuel Cell and Hydrogen Technologies programme, contributing to a flagship research project on next-generation Vanadium Redox Flow Battery (VRFB) stack design and prototyping. The Research Associate
-
aligned with translation, scalability, and real-world impact. Materials will be validated using human stem cell models relevant to skeletal tissue regeneration. This project offers a unique opportunity to