21 modelling-and-simulation-of-combustion-postdoc Postdoctoral research jobs at The University of Arizona
Sort by
Refine Your Search
-
techniques, mouse models, human specimens, and bioinformatics. We are looking for applicants with wet lab immunology research experience driving the successful completion of projects and authoring peer
-
supported by multiple NIH R01 grants and focuses on molecular immunology and inflammatory mechanisms. Cutting-edge research models (eg. primary cell/organoid cultures, mouse models and human clinical samples
-
of Emmanuel Katsanis, MD to pursue studies in transplant and tumor immunology. Research involves murine bone marrow and peripheral blood stem cell transplantation and tumor models. Studies may also include use
-
technologies on the vacuum Space Coronagraph Optical Bench (SCoOB), coronagraphic image post-processing for existing and future space telescopes, simulation of coronagraphs for future missions including
-
neuroscience research including performing behavioral experiments and electrophysiological recordings in animal models, Ability to work with a high degree of independence, to find creative solutions
-
, western blot analyses, and qRT-PCR. • Expertise with immunofluorescence high-resolution imaging and live-cell imaging. • Experience with preclinical models of auditory and vestibular diseases. • Experience
-
representation learning, and real-world data modeling to stratify risk and optimize MHT formulations. The candidate must thrive in a multidisciplinary, fast-paced research environment and work independently and
-
of experiments or simulations. Develop, implement, and refine computational and/or experimental techniques relevant to the project. Analyze data, prepare publications, and present findings at scientific meetings
-
patient-specific human induced pluripotent stem cells (iPSCs), primary human cells/tissues, along with animal models, to develop a platform for the evaluation of cardiovascular toxicity associated with
-
use a combination of patient-specific human induced pluripotent stem cells (iPSCs), primary human cells/tissues, along with animal models, to develop a platform for the evaluation of cardiovascular