1

Molecular Dynamics Simulation Phd Jobs in Raleigh, NC

A PhD degree is required. Preferred Qualifications: * Experience with mathematical, computational ... The position involves designing simulation architectures, implementing dynamic network models ...

Postdoctoral Associate

Durham, NC ยท On-site

  • Medical

  • Retirement

  • PTO

A PhD degree is required. Preferred Qualifications: * Experience with mathematical, computational ... The position involves designing simulation architectures, implementing dynamic network models ...

College Biology Tutor

Chapel Hill, NC ยท Remote

$18 - $40/hr

... and molecular genetics, natural selection, and ecosystem dynamics while preparing students for ... Adapts instruction using visual diagrams, virtual lab simulations, and MCAT-aligned practice to ...

College Biology Tutor

Raleigh, NC ยท Remote

$18 - $40/hr

... and molecular genetics, natural selection, and ecosystem dynamics while preparing students for ... Adapts instruction using visual diagrams, virtual lab simulations, and MCAT-aligned practice to ...

College Biology Tutor

Durham, NC ยท Remote

$18 - $40/hr

... and molecular genetics, natural selection, and ecosystem dynamics while preparing students for ... Adapts instruction using visual diagrams, virtual lab simulations, and MCAT-aligned practice to ...

Participating in performance simulation of features to improve memory access efficiency ... A PhD with a focus in computer architecture is a plus. * 6+ years of meaningful work experience in ...

Showing results 21-40

Molecular Dynamics Simulation Phd information

See Raleigh, NC salary details

$37.9K

$120K

$185.2K

How much do molecular dynamics simulation phd jobs pay per year?

As of Aug 17, 2026, the average yearly pay for molecular dynamics simulation phd in Raleigh, NC is $119,954.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,400.00 and $142,400.00 per year, depending on experience, location, and employer.

What is the difference between Molecular Dynamics Simulation Phd vs Computational Chemist?

AspectMolecular Dynamics Simulation PhdComputational Chemist
Required CredentialsPhD in Chemistry, Physics, or related fieldMaster's or PhD in Chemistry, Chemical Engineering, or related field
Work EnvironmentResearch labs, academia, industry R&DLaboratories, industry, academia
Industry UsageFocuses on simulating molecular interactions and dynamicsDesigns and applies computational models to chemical problems

While both roles involve computational modeling and require advanced degrees, Molecular Dynamics Simulation Phd specializes in simulating molecular interactions using physics-based methods, often in research settings. Computational Chemists apply a broader range of computational techniques to solve chemical problems across academia and industry. The choice depends on whether the focus is on detailed molecular dynamics or broader chemical modeling.

What is a molecular dynamics simulation PhD?

A Molecular Dynamics Simulation PhD is a doctoral program focused on the use of computational methods to study the physical movements of atoms and molecules. Students learn to develop and apply simulation techniques to investigate molecular systems, understand material properties, and predict behaviors at the atomic scale. Research in this field is commonly applied in physics, chemistry, biology, and materials science, offering insights into phenomena such as protein folding, chemical reactions, and nanomaterial design. Graduates often pursue careers in academia, research, pharmaceuticals, or computational modeling industries.

What are the key skills and qualifications needed to thrive as a molecular dynamics simulation PhD?

To thrive as a Molecular Dynamics Simulation PhD, you need a solid background in physics, chemistry, or related fields, with advanced knowledge of computational modeling and statistical mechanics, typically supported by a doctoral degree. Proficiency in programming languages (such as Python, C++, or Fortran), experience with molecular dynamics software (like GROMACS, LAMMPS, or AMBER), and familiarity with high-performance computing environments are essential. Strong problem-solving ability, attention to detail, and effective collaboration and communication skills set top candidates apart. These competencies are crucial for designing robust simulations, interpreting complex results, and contributing to interdisciplinary research teams.

What are some common challenges faced by molecular dynamics simulation PhD researchers in collaborative projects?

Molecular Dynamics Simulation PhD researchers often collaborate with experimentalists, theorists, and computational scientists, which can present challenges such as aligning different research methodologies and timelines. Communication is key, as interpreting simulation data in the context of experimental results requires mutual understanding of each team's constraints and objectives. Additionally, managing computational resources and integrating diverse software tools can be complex, especially in large, interdisciplinary projects. Developing strong project management and communication skills is essential for effectively contributing to and benefiting from collaborative research environments.

What job categories do people searching Molecular Dynamics Simulation Phd jobs in Raleigh, NC look for?

The top searched job categories for Molecular Dynamics Simulation Phd jobs in Raleigh, NC are:

Infographic showing various Molecular Dynamics Simulation Phd job openings in Raleigh, NC as of August 2026, with employment types broken down into 82% Full Time, 15% Part Time, 1% Temporary, and 2% Contract. Highlights an 78% Physical, 4% Hybrid, and 18% Remote job distribution, with an average salary of $119,954 per year, or $57.7 per hour.

Polymer Scientist

Mentis Systems

Research Triangle Park, NC โ€ข On-site

Contractor

Re-posted 7 days ago


Job description

The successful candidate must have hands-on experience working in a chemicals/materials/biomedical/textiles lab, be familiar with basic synthetic (polymers or small molecules) chemistry techniques, and have hands-on experience using instruments for materials characterization (rheology, Instron, DSC, GPC, and spectroscopic methods). Additional experience with test method development using medical prototypes, working knowledge of biomedical polymeric materials, and preclinical testing in animals is also valuable.
The candidate should have excellent communication and interpersonal skills, ability to proactively identify and resolve experimental challenges, and a strong desire to gain experience in developing medical technologies. The candidate should be able to plan and conduct scientific experiments, and effectively analyze, interpret, and present experimental results while collaborating with team members from a variety of backgrounds. The candidate should also be able to adapt to changing requirements that can arise in a dynamic work environment and will be expected to contribute intellectually to areas not directly related to his or her field.
Education:
PhD suggested, Bachelors required
Requirements
• Hands on laboratory experience working with various polymers/biomaterials/formulations
• Experience with design and development of a polymeric materials-based solution for a biomedical or pharmaceutical application
• Hands on experience characterizing formulations/polymers (gels, polymer blends, emulsions, particles, biomedical polyesters, other viscoelastic systems etc.)
• Experience operating commonly used materials characterization tools (such as rheometer, Instron, spectroscopic methods, DSC, GPC, etc.) and interpreting resultant data
• Ability to design, execute, and appropriately document experiments
• Good written and verbal technical communication skills
• Ability to effectively interpret and present scientific results
Desired skills
• Experience developing test methods to assess biomechanical performance of prototypes
• Knowledge of polymer processing methods (extrusion, thermoforming, 3D printing, etc.), resorbable materials
• Experience with design of preclinical studies and interpretation of resultant data
• Experience in basic synthetic chemistry (small molecule or polymer synthesis)
• Willingness to work occasionally with biological specimens (e.g. animal tissues) for lab scale testing
Education:
Graduate degree (Ph.D. preferred) or equivalent work experience in the fields of Chemistry, Chemical Engineering, Textile engineering, Biomedical Engineering, Materials Science and Engineering, or related scientific discipline. Prior work experience in a medical device R&D organization is a plus.