71 high-performance-quantum-computing Postdoctoral positions at University of Minnesota
Sort by
Refine Your Search
-
dependent care flexible spending accounts University HSA contributions Disability and life insurance Employee wellbeing program Financial counseling services Employee Assistance Program with eight sessions
-
Medical, dental, and pharmacy plans Healthcare and dependent care flexible spending accounts University HSA contributions Disability and life insurance Employee wellbeing program Financial counseling
-
dependent care flexible spending accounts University HSA contributions Disability and life insurance Employee wellbeing program Financial counseling services Employee Assistance Program with eight sessions
-
Supercomputing Institute. Expectations: Perform hands-on research focusing on techniques listed in preferred qualifications. Mentor/supervise undergraduate students, technicians, and volunteers. Disseminate
-
accounts University HSA contributions Disability and life insurance Employee wellbeing program Financial counseling services Employee Assistance Program with eight sessions of counseling at no cost How
-
vitro, as they relate to basic biology as well as in disease. 70%: Experimental design and implementation. Design and perform experiments to assess the regulatory roles for histone PTM-interacting
-
to the preparation of manuscripts. Qualifications Required Qualifications: Ph.D. in Bioinformatics or Computational Biology Preferred Qualifications: Experience in preclinical studies, animal handling, molecular
-
professional training Medical, dental, and pharmacy plans Healthcare and dependent care flexible spending accounts University HSA contributions Disability and life insurance Employee wellbeing program Financial
-
Disability and life insurance Employee wellbeing program Financial counseling services Employee Assistance Program with eight sessions of counseling at no cost How To Apply Applications must be submitted
-
experimentalists to develop a computational framework that is based on the responses of specific inhibitory neuronal sub-populations (e.g., parvalbumin- vs. somatostatin-containing interneurons) measured via 2