82 postdoc-molecular-dynamics-simulation Postdoctoral positions at Stony Brook University
Sort by
Refine Your Search
-
field. Strong background in power system stability analysis and nonlinear system dynamics. Experience with simulation tools such as PSCAD, MATLAB/Simulink, or PSS/E. Solid understanding of power
-
Energy, Control Systems, or a related field. Strong background in power system stability analysis and nonlinear system dynamics. Experience with simulation tools such as PSCAD, MATLAB/Simulink, or PSS/E
-
related to single-cell spatial omics technologies and systems biology for disease diagnosis and molecular mechanism studies. Research directions include exploring DNA sequencing, bioanalytical chemistry
-
Postdoctoral Associate Required Qualifications: (as evidenced by an attached resume) Doctoral Degree (or foreign equivalent) in Molecular and Cellular Biology or closely related field in hand by
-
related to single-cell spatial omics technologies and systems biology for disease diagnosis and molecular mechanism studies. Research directions include exploring DNA sequencing, bioanalytical chemistry
-
Postdoctoral Associate Required Qualifications: (as evidenced by an attached resume) Doctoral Degree (or foreign equivalent) in Molecular and Cellular Biology or closely related field in hand by
-
theory and applications, instrumentation and signal processing and cloud microphysics and dynamics. Strong programming abilities (like Python), statistical knowledge, machine learning expertise, and data
-
the Department of Radiology at Stony Brook University. The successful candidate will lead efforts to quantify multi-scale neurofluid dynamics, including blood flow and cerebrospinal fluid movement, using state
-
laboratory in the Department of Radiology at Stony Brook University. The successful candidate will lead efforts to quantify multi-scale neurofluid dynamics, including blood flow and cerebrospinal fluid
-
laboratory in the Department of Radiology at Stony Brook University. The successful candidate will lead efforts to quantify multi-scale neurofluid dynamics, including blood flow and cerebrospinal fluid