-
the intersection of sepsis, microbiology, molecular biology, and renal physiology. Our laboratories use the kidney as a model organ to understand how microbial signals shape tissue function, host responses, and
-
use tools from engineering, epidemiology, and environmental health microbiology to investigate the problems affecting low-income individuals and aim to improve public health in the communities where
-
modern disciplines including analytical chemistry, organic chemistry, inorganic chemistry, physical chemistry, materials chemistry, and biochemistry. Indiana University is an equal employment and
-
translate these discoveries into precision medicine. We develop computational and statistical methods while integrating human genetics, single-cell and multi-omics, large-scale biobank resources, and
-
disciplines including analytical chemistry, organic chemistry, inorganic chemistry, physical chemistry, materials chemistry, and biochemistry. Indiana University is an equal employment and affirmative action
-
Reports 2016). This position focuses on determining the mechanisms by which chronic viral infections drive APC dysfunction / exhaustion, and will use cutting edge technologies to define how these cells
-
, and upkeep of the transient absorption and magnetic circular dichroism setups. Serve as a super-user on one of these instruments and train other group members. When necessary, develop and write SOPs
-
. 2. Adapt existing, and develop new, scientific techniques and experimental protocols to achieve research objectives. 3. Use specialist scientific equipment in a laboratory environment. 4. Assist in
-
use a deep understanding of synthetic nanomaterial design to develop systems for bio- and chemical transformations/catalysis. Motivated applicants with a Ph.D. in any area of chemistry will be
-
accommodate the needs of outstanding candidates. The successful applicant will use a deep understanding of synthetic and photochemical transformations including laser characterization methods. Motivated