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Virtual Quantum Computing Internship Jobs in Boston, MA

Advances in big chemical data, massive computing power, artificial intelligence, and molecular ... Progress a virtual hit to a biochemical/cellular hit * Validate a cellular hit in a clinically ...

Advances in big chemical data, massive computing power, artificial intelligence, and molecular ... Progress a virtual hit to a biochemical/cellular hit * Validate a cellular hit in a clinically ...

Showing results 41-44

Virtual Quantum Computing Internship information

See Boston, MA salary details

$9

$16

$23

How much do virtual quantum computing internship jobs pay per hour?

As of Aug 20, 2026, the average hourly pay for virtual quantum computing internship in Boston, MA is $16.89, according to ZipRecruiter salary data. Most workers in this role earn between $13.56 and $19.09 per hour, depending on experience, location, and employer.

What is a virtual quantum computing internship?

A Virtual Quantum Computing Internship is a remote work opportunity where students or early-career professionals gain practical experience in quantum computing through online projects, mentorship, and training. Interns typically work on tasks like quantum algorithm development, simulation, and research, often using cloud-based quantum computers or simulators. This type of internship allows participants to collaborate with experts, attend virtual workshops, and build skills in areas like quantum programming languages (e.g., Qiskit, Cirq) without needing to relocate. These internships are ideal for those interested in cutting-edge technology and eager to contribute to the rapidly evolving field of quantum computing.

What types of projects or tasks can I expect to work on during a virtual quantum computing internship?

During a Virtual Quantum Computing Internship, you can expect to work on a variety of projects such as developing quantum algorithms, simulating quantum circuits, and contributing to open-source quantum software. Interns often collaborate with experienced researchers and engineers, participate in code reviews, and present findings in team meetings. You'll likely use platforms like Qiskit or Cirq, and may also analyze real-world data sets or help optimize existing quantum solutions. This hands-on experience not only builds technical skills but also exposes you to the collaborative and fast-evolving nature of the quantum computing field.

What are the key skills and qualifications needed to thrive as a virtual quantum computing intern, and why are they important?

To thrive as a Virtual Quantum Computing Intern, you need a foundational understanding of quantum mechanics, linear algebra, and computer science, often supported by coursework or a degree in physics, mathematics, or a related field. Familiarity with quantum programming languages like Qiskit or Cirq, and experience using cloud-based quantum computing platforms are typically expected. Strong problem-solving skills, curiosity, and effective communication help interns collaborate remotely and learn quickly in this evolving field. These skills and qualities are essential for contributing meaningful work, adapting to new quantum technologies, and maximizing the learning experience in a virtual environment.

What is the difference between Virtual Quantum Computing Internship vs Quantum Computing Research Assistant?

AspectVirtual Quantum Computing InternshipQuantum Computing Research Assistant
Required CredentialsEnrolled in or recent graduate in Computer Science, Physics, or related fieldsAdvanced degree (Master's or PhD) in Physics, Computer Science, or Quantum Computing
Work EnvironmentRemote, project-based, often with industry or tech companiesAcademic labs, university research centers, or industry R&D teams
Employer & Industry UsageTech companies, startups, educational platformsUniversities, research institutions, industry R&D divisions

The Virtual Quantum Computing Internship is typically a remote, short-term program aimed at students or recent graduates gaining practical experience in quantum computing. In contrast, a Quantum Computing Research Assistant usually holds an advanced degree and works in academic or research settings, focusing on in-depth research projects. Both roles involve quantum computing but differ in experience level, environment, and scope.

What are popular job titles related to Virtual Quantum Computing Internship jobs in Boston, MA?

For Virtual Quantum Computing Internship jobs in Boston, MA, the most frequently searched job titles are:

What job categories do people searching Virtual Quantum Computing Internship jobs in Boston, MA look for?

The top searched job categories for Virtual Quantum Computing Internship jobs in Boston, MA are:

What cities near Boston, MA are hiring for Virtual Quantum Computing Internship jobs?

Cities near Boston, MA with the most Virtual Quantum Computing Internship job openings:

Computational Theoretical Chemist II

1910

Boston, MA

Full-time

Re-posted 26 days ago


Job description

Company Overview

We are the only AI-native biotech, pioneering small and large molecule therapeutics discovery by integrating massive multimodal data, frontier AI models, and high-throughput lab automation into an infrastructure for AI-enabled drug discovery.

We hire top 1% talent to join our interdisciplinary team of scientists, engineers, researchers, operators, innovators, drug developers, business professionals, and technologists.

Join us to build the world's first AI infrastructure for tech-enabled drug discovery and to deliver a pipeline of diverse drug modalities for all major disease areas.

Computation is revolutionizing drug discovery. Advances in big chemical data, massive computing power, artificial intelligence, and molecular dynamics simulation 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 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
  • Progress a virtual hit to a biochemical/cellular hit
  • 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
  • 2 years of relevant industry experience within drug discovery or biotechnology
  • Played a key role in advancing a drug discovery program from early research phases to clinical development
  • 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

  • Publications in computational chemistry related to drug discovery

#LI-Onsite

Diversity and Inclusion (1910's Promise)

At 1910, we believe that a diverse, equitable, and inclusive workplace furthers relevance, resilience, and longevity. We encourage people from all backgrounds, ages, abilities, and experiences to apply. 1910 is proud to be an equal-opportunity workplace and is an affirmative action employer. We are committed to equal employment opportunity regardless of race, color, ancestry, religion, sex, national origin, sexual orientation, age, citizenship, marital status, disability, gender identity, or Veteran status. If, due to a disability, you need an accommodation during any part of the interview process, please let your recruiter know. While 1910 supports visa sponsorship, sponsorship opportunities may be limited to certain roles and skills.

Benefits and Perks

  • Competitive compensation package
  • Above market benefits
  • Generous vacation and parental leave
  • Super cool team building activities
  • Great colleagues