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Internship Theoretical Computational Chemistry Jobs

Own computational theoretical chemistry programs across therapeutic modalities, disease targets ... internship and co-op * Publication records in computational chemistry related to drug discovery #LI ...

Own computational theoretical chemistry programs across therapeutic modalities, disease targets ... internship and co-op * Publication records in computational chemistry related to drug discovery #LI ...

Own computational theoretical chemistry programs across therapeutic modalities, disease targets ... internship and co-op * Publication records in computational chemistry related to drug discovery #LI ...

Own computational chemistry programs across therapeutic modalities, disease targets, and ... Manage day-to-day operations of the Computational Theoretical Chemistry Team, mentor junior staff ...

Own computational chemistry programs across therapeutic modalities, disease targets, and ... Manage day-to-day operations of the Computational Theoretical Chemistry Team, mentor junior staff ...

Own computational chemistry programs across therapeutic modalities, disease targets, and ... theory (DFT) approaches, molecular dynamics (MD) simulations, including both standard MD and ...

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Internship Theoretical Computational Chemistry information

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How much do internship theoretical computational chemistry jobs pay per hour?

As of Aug 18, 2026, the average hourly pay for internship theoretical computational chemistry in the United States is $17.80, according to ZipRecruiter salary data. Most workers in this role earn between $14.42 and $19.95 per hour, depending on experience, location, and employer.

What is an internship theoretical computational chemistry?

Internship positions in Theoretical Computational Chemistry are temporary roles designed for students or recent graduates to gain practical experience in using computer simulations and theoretical methods to solve chemical problems. These internships typically involve working on research projects that utilize computational tools to model molecular structures, reactions, or properties. Interns often learn to use software like Gaussian, VASP, or Python-based tools, and may analyze data or help develop new computational methods. Such positions are valuable for gaining hands-on experience, networking, and preparing for advanced studies or careers in chemistry, physics, or related fields.

What types of projects and tasks can I expect to work on during an internship in theoretical computational chemistry?

Interns in Theoretical Computational Chemistry typically work on projects involving molecular modeling, quantum chemical calculations, or simulations of chemical systems using specialized software. You may assist in setting up computational experiments, analyzing large datasets, and interpreting results to support ongoing research. Collaboration with other interns, graduate students, and senior researchers is common, providing a supportive environment to develop both technical and communication skills. Expect to present findings in group meetings and possibly contribute to academic publications, making this internship an excellent stepping stone for further study or a research career.

What are the key skills and qualifications needed to thrive as an internship theoretical computational chemistry, and why are they important?

To thrive in an Internship in Theoretical Computational Chemistry, a solid background in chemistry, physics, and mathematics, along with current university enrollment in a relevant field, is essential. Familiarity with computational tools such as Gaussian, VASP, or Python, and possibly experience with Linux systems, is typically expected. Critical thinking, problem-solving abilities, and strong teamwork and communication skills help interns excel in complex research environments. These skills enable effective simulation, data analysis, and collaboration, which are crucial for advancing scientific projects.

What is the difference between Internship Theoretical Computational Chemistry vs Research Chemist?

AspectInternship Theoretical Computational ChemistryResearch Chemist
CredentialsTypically pursuing or recent graduate with relevant courseworkBachelor's or Master's in Chemistry or related field
Work EnvironmentAcademic labs, research institutions, or industry internshipsLaboratories, research facilities, or industry R&D departments
Job FocusLearning, assisting, and supporting computational research projectsDesigning experiments, analyzing data, and developing new chemical methods
Usage & IndustryEducational and entry-level roles, often temporary or internship-basedFull-time professional roles in chemical research and development

Internship Theoretical Computational Chemistry roles are primarily educational, focusing on gaining experience in computational methods, while Research Chemists are full-time professionals conducting advanced chemical research. The internship provides foundational exposure, whereas the Research Chemist role involves independent project management and innovation in the industry.

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States with the most job openings for Internship Theoretical Computational Chemistry jobs include:

Infographic showing various Internship Theoretical Computational Chemistry job openings in the United States as of August 2026, with employment types broken down into 10% Internship, 56% Full Time, 32% Part Time, 1% Temporary, and 1% Contract. Highlights an 77% Physical, 2% Hybrid, and 21% Remote job distribution, with an average salary of $37,034 per year, or $17.8 per hour.

Computational Theoretical Chemist I

1910

Boston, MA

Full-time

Re-posted 24 days ago


Job description

Computation is revolutionizing drug discovery. Advances in big chemical data, massive computing power, artificial intelligence, and molecular dynamics simulations are changing the way we develop new drugs. At 1910 , we put computation at the heart of drug discovery, blending expertise in computational chemistry, structural biology, pharmacology, data science, and software engineering to develop drugs for previously undruggable targets. 

Role Description 

  • Own computational theoretical chemistry programs across therapeutic modalities, disease targets, and indications 
  • Ensure effective collaboration with the Biology, and Medicinal Chemistry teams by providing key computational chemistry insights to aid in the Hit-to-Lead and Lead Optimization phases of drug discovery operations  
  • Ensure effective collaboration with the ML Engineering and AI Research team by providing key computational chemistry insights to aid in the development of AI/ML models for drug discovery as well as the incorporation of those models into drug discovery operations 
  • Teach key computational chemistry principles to your cross-disciplinary colleagues from Medicinal Chemistry, AI Research, Machine Learning Engineering, Cell Biology, and Pharmacology 
  • Partner to improve 1910's existing process for progressing from computational hit to experimental hit to lead to drug candidate 
  • Co-author provisional patents and peer-reviewed research papers  
  • Validate a cellular hit in a clinically relevant animal model of disease 
  • Update provisional patents with the animal model data 
  • Nominate a lead candidate for progression into IND-enabling studies 
  • Attend and present research at conferences and events related to computational modeling in drug discovery 

Qualifications 

  • Ph.D. in computational chemistry or related discipline 
  • In-depth knowledge and hands-on experience with quantum chemical (QC) methods, including semi-empirical and density functional theory (DFT) approaches, molecular dynamics (MD) simulations, including both standard MD and enhanced sampling techniques such as metadynamics, umbrella sampling, and replica exchange MD, free energy simulations such as FEP and TI, and QM/MM methodologies for small and large molecular systems 
  • Strong understanding of key concepts, including potential energy surfaces (PES), intermolecular and intramolecular forces/interactions, force fields, molecular properties, thermodynamic properties, solvation models (implicit/explicit), and conformational sampling 
  • Proficiency in analyzing molecular properties such as solvation free energy, dipole moments, vibrational frequencies, electrostatic potential, charge distribution, and more 
  • Deep knowledge of implicit and explicit solvent models, with extensive experience modeling solvent effects on molecular systems and chemical reactions in various environments 
  • Extensive experience in using and troubleshooting software tools for QC calculations (e.g., ORCA, xTB, CREST, etc.), MD simulations (e.g., GROMACS, OpenMM, etc.), Drug Design Development Packages (e.g., EG, Schrodinger, MOE, CRESSET) 
  • Experience working with HPC Clusters and cloud-based services like (e.g., Microsoft AZURE, AWS) 
  • Ability to optimize computational simulation protocols for efficient resource usage 
  • Proven experience working with small organic molecules and large biomolecular systems (e.g., peptides, proteins, etc.) for property prediction, conformational analysis, and structure-activity relationships (SAR) 
  • Hands-on experience with Python and Bash scripting for automating workflows and data analysis 
  • Familiarity with cheminformatics toolkits such as RDKit for molecular property prediction and data management 
  • Basic knowledge of machine learning (ML) techniques applied to molecular property prediction, virtual screening, and related tasks 
  • Strong desire to collaborate with AI scientists, data scientists, medicinal chemists, and biologists to interpret computational results and guide experimental design 
  • Clear and effective communication of complex scientific ideas through reports, presentations, and publications 

Nice to Haves 

  • Relevant industry experience via internship and co-op 
  • Publication records in computational chemistry related to drug discovery 

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