10 density-functional-theory Postdoctoral research jobs at Case Western Reserve University
-
. POSITION OBJECTIVE Working under moderate supervision, perform research work in medical and related technical. Work includes: 1) antibody labeling of Drosophila tissue, 2) generating transgenic flies by
-
of attention. The work will involve experimental techniques ranging from basic cell and molecular biology, immunology, biochemistry to cell culture, animal studies and patient samples. Experience with mouse
-
of attention. The work will involve experimental techniques ranging from basic cell and molecular biology, immunology, biochemistry, to cell culture, animal studies, and patient samples. Experience with mouse
-
will work on multiple projects funded by NIH/NHGRI. The objective of the position is to develop novel statistical methods and computer software and analyze large scale biological data from biobanks
-
. POSITION OBJECTIVE Working under moderate supervision, the Research Assistant 1 will perform research work in medical and related technical areas for 3 currently funded projects. Project 1s objectives
-
family pathway as well as regulation of cellular functions by other MAPK signaling pathways are key areas of attention. The work will involve experimental techniques ranging from basic molecular biology
-
areas of attention. The work will involve experimental techniques ranging from basic cell and molecular biology, immunology, biochemistry to cell culture, animal studies and patient samples. Experience
-
of transformative therapeutic approaches for brain tumor patients. ESSENTIAL FUNCTIONS Technology and Methodology Development: Independently develop and optimize novel technologies and analytical methods, including
-
footprinting of the cellular proteome, and others. Opportunities exist to collaborate with current XFP beamline users and contribute to their use of X-ray footprinting towards their research projects, and to
-
Cryo-ET/EM postdoctoral position immediately available in Zhu Lab at Case Western Reserve University
techniques to investigate the in situ structure and physiological function of antimicrobial protein complexes. In parallel, we are also committed to advancing cryo-electron tomography (cryo-ET) technology and