Preferred Qualifications, Competencies, and Experience 1. PhD or MD/PhD in neuroscience, computational neuroscience, bioengineering, structural biology, or a related quantitative discipline. 2. ...
Preferred Qualifications, Competencies, and Experience 1. PhD or MD/PhD in neuroscience, computational neuroscience, bioengineering, structural biology, or a related quantitative discipline. 2. ...
TSC's Intelligent Systems Laboratory in North Carolina is a state-of-the-art research and development research facility, dedicated to R&D in the areas of computational neuroscience, deep learning ...
TSC's Intelligent Systems Laboratory in North Carolina is a state-of-the-art research and development research facility, dedicated to R&D in the areas of computational neuroscience, deep learning ...
Research Scientist
Durham, NC · On-site
TSC's Intelligent Systems Laboratory in North Carolina is a state-of-the-art research and development research facility, dedicated to R&D in the areas of computational neuroscience, deep learning ...
Research Scientist
Durham, NC · On-site
TSC's Intelligent Systems Laboratory in North Carolina is a state-of-the-art research and development research facility, dedicated to R&D in the areas of computational neuroscience, deep learning ...
Research Associate, Senior
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Research Associate, Senior
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Postdoctoral Associate
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Postdoctoral Associate
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Research Associate, Senior
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Research Associate, Senior
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Research Associate, Senior
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Research Associate, Senior
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Postdoctoral Associate
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Postdoctoral Associate
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Postdoctoral Associate
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
Postdoctoral Associate
Durham, NC · On-site
Ongoing projects combine molecular biology, neurobiology, biochemistry, and computational approaches to address fundamental questions in RNA regulation. Minimum Requirements: Min Degree Requirements:
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
The lab uses high-density neurophysiology (Neuropixels), high-density spinal stimulation, brain-spine interfaces, computational modeling, computational systems neuroscience analytical methods, awake ...
POSTDOCTORAL ASSOCIATE
Durham, NC · On-site
Suthana and interdisciplinary team members. • Apply advanced statistical and computational ... D. in cognitive neuroscience, neuroscience, biomedical engineering, computer science, or a related ...
POSTDOCTORAL ASSOCIATE
Durham, NC · On-site
Suthana and interdisciplinary team members. • Apply advanced statistical and computational ... D. in cognitive neuroscience, neuroscience, biomedical engineering, computer science, or a related ...
POSTDOCTORAL ASSOCIATE
Durham, NC · On-site
Apply advanced statistical and computational approaches to investigate neural dynamics underlying ... Stay current with developments in cognitive neuroscience, neurotechnology, and wearable sensing ...
POSTDOCTORAL ASSOCIATE
Durham, NC · On-site
Apply advanced statistical and computational approaches to investigate neural dynamics underlying ... Stay current with developments in cognitive neuroscience, neurotechnology, and wearable sensing ...
Apply advanced statistical and computational approaches to investigate neural dynamics underlying ... Stay current with developments in cognitive neuroscience, neurotechnology, and wearable sensing ...
Apply advanced statistical and computational approaches to investigate neural dynamics underlying ... Stay current with developments in cognitive neuroscience, neurotechnology, and wearable sensing ...
Outstanding candidates at the interface of computational biomedical engineering and scientific ... Neuroscience, Electrical Engineering, or related areas, and have demonstrated excellent capability ...
Outstanding candidates at the interface of computational biomedical engineering and scientific ... Neuroscience, Electrical Engineering, or related areas, and have demonstrated excellent capability ...
Expertise in computational neuroscience is of particular interest. * Demonstrated success with independent or collaborative grant funding (e.g., NIH K/R mechanisms, foundation funding). * Experience ...
Expertise in computational neuroscience is of particular interest. * Demonstrated success with independent or collaborative grant funding (e.g., NIH K/R mechanisms, foundation funding). * Experience ...
Training in psychiatry or geriatric psychiatry, neuropsychology or geropsychology, neuroimaging, aging, computational neuroscience, and / or Alzheimer's disease research. * Demonstrated success with ...
Training in psychiatry or geriatric psychiatry, neuropsychology or geropsychology, neuroimaging, aging, computational neuroscience, and / or Alzheimer's disease research. * Demonstrated success with ...
Computational Neuroscience information
See Raleigh, NC salary details
$39.72 - $42.65
4% of jobs
$45.48 is the 25th percentile. Wages below this are outliers.
$42.65 - $45.58
22% of jobs
The median wage is $48.34 / hr.
$45.58 - $48.52
26% of jobs
$48.52 - $51.45
23% of jobs
$51.81 is the 75th percentile. Wages above this are outliers.
$51.45 - $54.38
6% of jobs
$54.38 - $57.31
3% of jobs
$57.31 - $60.24
0% of jobs
$60.24 - $63.17
0% of jobs
$63.17 - $66.10
0% of jobs
$66.10 - $69.04
0% of jobs
$69.04 - $71.97
16% of jobs
$39
$53
$71
How much do computational neuroscience jobs pay per hour?
How do you become a computational neuroscientist?
What are the key skills and qualifications needed to thrive as a Computational Neuroscientist, and why are they important?
What is the difference between Computational Neuroscience vs Neuroscientist?
| Aspect | Computational Neuroscience | Neuroscientist |
|---|---|---|
| Required Credentials | Advanced degrees in neuroscience, computer science, or related fields | Typically PhD in neuroscience or related disciplines |
| Work Environment | Research labs, universities, tech companies focusing on modeling and data analysis | Research institutions, hospitals, universities studying brain function |
| Industry Usage | Develops models, algorithms, and simulations of neural systems | Investigates brain mechanisms, conducts experiments, publishes research |
Computational Neuroscience focuses on creating models and simulations of neural systems using computational methods, while Neuroscientists primarily conduct experimental research to understand brain function. Both roles often collaborate but differ in their approach and tools used.
What Is Computational Neuroscience?
Computational neuroscience involves studying brain function through computer modeling and mathematical analysis. Computational neuroscientists perform research in which they collect data and create computer models based on the electrical patterns and biological functions of the brain. Researchers in this field may focus on making connections between brain functions and cognition, sensory experience, or the behavior of the central nervous system. They may use computer models and data to create theoretical models. Other scientists may test the models to see if they have biological or psychological applications.
What is computational neuroscience?
What are some common challenges faced by professionals in computational neuroscience, and how can they be addressed?
What is the highest paying job in neuroscience?
How hard is computational neuroscience?
How much do computational biologists get paid?

University Of North Carolina At Chapel Hill rating
7.5
Based on 48 frontline employees who took The Breakroom Quiz
307th of 612 rated colleges and universities
Job description
Patient care: We promote health and provide superb clinical care while maintaining our strong tradition of reaching underserved populations and reducing health disparities across North Carolina and beyond.
Education: We prepare tomorrow`s healthcare professionals and biomedical researchers from all backgrounds by facilitating learning within innovative and integrated curricula and team-oriented interprofessional education to ensure a highly skilled workforce.
Research: We develop and support a rich array of outstanding health sciences research programs, centers and resources. We provide infrastructure and opportunities for collaboration among disciplines throughout and beyond our university to support outstanding research. We foster programs in the areas of basic, translational, mechanistic and population research.
2. Completion of, or near-completion of, residency training in psychiatry or a closely related clinical neuroscience specialty.
3. Research training and demonstrated experience in computational neuroscience, structural biology, and/or molecular pharmacology, including molecular dynamics simulations and/or cell-based functional receptor pharmacology assays.
4. Strong peer-reviewed publication record in computational, structural, and/or molecular neuroscience.
2. Experience with G protein-coupled receptor (GPCR) structural biology, AlphaFold-based protein structure prediction, and high-performance computing for large-scale molecular dynamics simulations.
3. Experience with Bioluminescence Resonance Energy Transfer (BRET) or comparable cell-based functional assays, and a track record of competitive extramural research funding.
4. Ability to coordinate multi-disciplinary studies with collaborators from diverse scientific backgrounds.
Not Applicable.
Special Instructions Quick Link https://unc.peopleadmin.com/postings/320168Please note: The Executive Vice Chancellor & Provost office will not be able to provide specific updates regarding position or application status.
If you have any questions about the job requirements or the hiring department notify the Department Contact.
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About University of North Carolina at Chapel Hill
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The University of North Carolina at Chapel Hill (UNC-Chapel Hill), located in Chapel Hill, NC, US, is renowned for being one of the leading research institutes in the world. Operating within the education industry, this public research university offers a broad range of undergraduate, graduate, and professional programs across various disciplines. UNC-Chapel Hill was chartered in 1789 and has maintained its legacy of academic excellence and innovative research for more than two centuries. The institution operates under the core values of excellence, innovation, engagement, accessibility, diversity, and inclusivity. Their mission is to serve the people of North Carolina and the United States by teaching a diverse community of students to become the next generation of leaders.
Industry
Colleges, universities, and professional schools
Company size
10,000+ Employees
Headquarters location
Chapel Hill, NC, US
Year founded
1789