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Internship Biomedical Computing Jobs (NOW HIRING)

... interns toward achieving lab and project goals. * Funding Opportunities: Identifying and ... Doctor of Philosophy (PhD) in biomedical informatics, computing, computer science, data science ...

Pharmacist (10 Months)

Atlanta, GA · On-site

$55 - $67/hr

... engineering, computing, science, business, design, and liberal arts. Georgia Tech's faculty ... biomedical technology to artificial intelligence, energy, sustainability, semiconductors ...

Research Engineer I

New York, NY · On-site

$60K - $91K/yr

Prior research, internship, or laboratory experience involving data analysis, instrumentation ... Familiarity with scientific computing and technical writing tools (e.g., LaTeX) * Experience ...

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Internship Biomedical Computing information

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How much do internship biomedical computing jobs pay per hour?

As of Jun 29, 2026, the average hourly pay for internship biomedical computing in the United States is $18.64, according to ZipRecruiter salary data. Most workers in this role earn between $16.35 and $20.67 per hour, depending on experience, location, and employer.

What is an Internship in Biomedical Computing?

An internship in biomedical computing is a temporary, hands-on learning experience where students or recent graduates work with professionals to apply computer science, data analysis, and software development skills to solve problems in biology and medicine. Interns may assist with tasks such as analyzing biomedical data, developing algorithms for medical imaging, or supporting software development for healthcare applications. These internships provide valuable exposure to interdisciplinary work at the intersection of technology and healthcare, often helping students decide on future career or educational paths.

What is the difference between Internship Biomedical Computing vs Biomedical Data Analyst?

AspectInternship Biomedical ComputingBiomedical Data Analyst
Required CredentialsTypically pursuing or recent graduate in biomedical, computer science, or related fieldsBachelor's or master's in bioinformatics, data science, or related fields
Work EnvironmentResearch labs, hospitals, biotech companies, academic institutionsHealthcare organizations, research institutions, biotech firms
Employer & Industry UsageInternship roles in biomedical research and tech developmentData analysis and interpretation in healthcare and biomedical research
Common Search & ComparisonYesYes

Internship Biomedical Computing focuses on gaining practical experience in developing and applying computational tools in biomedical research, often during academic training. Biomedical Data Analysts analyze and interpret biomedical data to support research and clinical decisions. While both roles involve data and computing skills, internships are entry-level training positions, whereas data analysts are typically full-time professionals specializing in data interpretation within the biomedical field.

What are the key skills and qualifications needed to thrive as an Internship Biomedical Computing, and why are they important?

To thrive in a Biomedical Computing internship, you generally need a background in computer science, biology, or biomedical engineering, with foundational knowledge in programming and data analysis. Familiarity with tools like Python, MATLAB, bioinformatics software, and version control systems is often expected. Strong analytical thinking, attention to detail, and collaborative communication skills help interns excel in multidisciplinary teams. These skills are crucial for effectively contributing to complex biomedical research and technology projects that require both technical expertise and teamwork.

What kinds of projects do interns typically work on during a Biomedical Computing internship?

As a Biomedical Computing intern, you can expect to contribute to projects that involve analyzing biomedical data, developing computational tools, or supporting research in areas like medical imaging or genomics. Interns often work closely with interdisciplinary teams of engineers, scientists, and clinicians, gaining hands-on experience with programming languages such as Python or MATLAB and exposure to real-world healthcare challenges. The environment is collaborative, and supervisors usually encourage interns to take initiative, ask questions, and participate in regular meetings or presentations. This experience provides valuable insight into both technical problem-solving and the practical application of computing in healthcare.
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What cities are hiring for Internship Biomedical Computing jobs? Cities with the most Internship Biomedical Computing job openings:
What are the most commonly searched types of Biomedical Computing jobs? The most popular types of Biomedical Computing jobs are:
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What job categories do people searching Internship Biomedical Computing jobs look for? The top searched job categories for Internship Biomedical Computing jobs are:
Infographic showing various Internship Biomedical Computing job openings in the United States as of June 2026, with employment types broken down into 97% Full Time, and 3% Part Time. Highlights an 90% Physical, 1% Hybrid, and 9% Remote job distribution, with an average salary of $38,778 per year, or $18.6 per hour.
SCIENTIST III

Other

Posted 18 days ago


Key responsibilities

  • Lead the development of novel AI models and software systems that are integral to SPARC's drug discovery pipeline.

  • Direct in silico computational studies and lead lab-in-the-loop collaborations with experimental partners.

  • Obtain AI drug discovery research funding as a Co-Principal Investigator or Co-Investigator on extramural grant proposals.


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Company rating: 7.4 out of 10

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Job description

Position Summary

The University of Alabama at Birmingham invites qualified candidates to apply for a Scientist III position in the Systems Pharmacology AI Research Center (SPARC) department. The candidate will frequently encounter high-level complexities that demand sharp judgment and rigorous decision-making. The role requires deep technical expertise across AI for science protein and antibody design, AI-driven molecular dynamics, agentic AI and autonomous research systems, clinical trial simulations, virtual cell modeling, multi-modal drug discovery, and retrosynthesis; combined with a strategic orientation toward research planning, execution, and translation. The selected candidate will lead the development of novel AI models and software systems that form essential components of SPARC's AI-accelerated drug discovery pipeline, direct in silico computational studies, and lead lab-in-the-loop collaborations with UAB, regional, and national experimental partners. Obtaining AI drug discovery research funding as a Co-Principal Investigator or Co-Investigator on extramural grant proposals is a major and recurring responsibility, alongside leading SPARC service activities not covered by existing external funding and authoring scientific manuscripts, progress reports, and grant documentation. Active research areas include protein and antibody design, novel AI approaches to molecular dynamics simulations, agentic AI and autonomous systems for science, clinical trial simulations, virtual cell modeling, multi-modal drug discovery, retrosynthesis, and AI for science more broadly. Excellent office, programming, and communication skills are essential. SPARC offers GPU/HPC infrastructure, large biomedical data assets, deep clinical partnerships, and direct opportunities to translate methodological advances into impact across the UAB School of Medicine.

General Responsibilities

  • To interpret, organize, execute and coordinate research assignments.

  • To formulate and conduct research on problems of considerable scope and complexity.

  • To explore subject area and define scope and selection of problems for investigation through conceptually related studies or series of projects of lesser scope.

Key Duties & Responsibilities

  1. Research Direction: Deciding the focus of the lab's research agenda, including selection of research projects that align with both current scientific needs and future potential.

  2. Methodological Choices: Making choices about research methodologies, including the selection of appropriate AI algorithms, data sources, and experimental designs that maximize the potential for impactful findings.

  3. Resource Allocation: Determining how to allocate limited resources, such as lab equipment, funding, and personnel time, in a manner that optimally supports ongoing and future research efforts.

  4. Team Leadership: Making decisions about the mentoring and development of research staff, prioritizing areas for skills development and guiding research assistants and interns toward achieving lab and project goals.

  5. Funding Opportunities: Identifying and prioritizing grant and external funding opportunities that will offer the highest yield for the lab's objectives, including making decisions on when and how to pursue these opportunities.

  6. Commercial Partnerships: Judging the viability and potential of industrial and commercial collaborations and deciding the terms under which these collaborations will proceed to ensure the mutual benefit of all stakeholders.

  7. Publication and Dissemination: Deciding when research findings are robust and significant enough for publication and choosing the appropriate platforms and journals for dissemination to ensure maximum impact.

  8. Perform other duties as assigned.

Salary Range:   $ 80,300- $ 133,300

Qualifications

Doctor of Philosophy, D.V.M. or M.D. degree in a related field and six (6) years of related experience OR M.D. and Master's degree and four (4) years of related experience required. Work experience may NOT substitute for education requirement.

Preferences

  • Doctor of Philosophy (PhD) in biomedical informatics, computing, computer science, data science, artificial intelligence, or a closely related field. PhD completed within the last 10 years preferred.

  • AI/ML Expertise: Deep proficiency with modern machine learning, including deep learning, transformers, graph neural networks, generative models, and foundation models and their application across biomedical and chemical sciences. 

  • Molecular and Structural AI: Hands-on experience with novel AI approaches to molecular dynamics simulations, protein/antibody structure prediction and design, retrosynthesis, and multi-modal drug discovery. 

  • Programming and Engineering: Strong Python skills (PyTorch / JAX / TensorFlow); comfortable with HPC and GPU workflows, modern MLOps, and reproducible computational pipelines.

  • Agentic and Autonomous AI: Experience designing agentic AI workflows or autonomous research systems for science, including LLM tool-use, retrieval-augmented pipelines, and self-driving experimentation loops.   

  • Statistical and Causal Reasoning: Strong statistical foundations including hypothesis testing, Bayesian inference, uncertainty quantification, and causal modeling for biomedical data.  

  • Biomedical Data at Scale: Familiarity with large-scale biomedical, omics, imaging, clinical-trial, and chemical datasets, including data integration across modalities for virtual-cell and multi-modal drug-discovery applications.

Key Skills

  • Leadership: Ability to lead, guide, and mentor a team of researchers and students. 

  • Communication: Excellent verbal and written communication skills for publishing research, delivering presentations, and grant writing. 

  • Collaboration: Ability to work efficiently in a multidisciplinary environment, with the capability to integrate various scientific domains. 

  • Problem-Solving: Strong analytical thinking and the ability to approach complex scientific problems creatively. 

  • Time Management: Ability to manage multiple projects and deadlines effectively.


 

UAB is an Equal Employment/Equal Educational Opportunity Institution dedicated to providing equal opportunities and equal access to all individuals regardless of race, color, religion, ethnic or national origin, sex (including pregnancy), genetic information, age, disability, and veteran's status. As required by Title IX, UAB prohibits sex discrimination in any education program or activity that it operates. Individuals may report concerns or questions to UAB's Assistant Vice President and Senior Title IX Coordinator. The Title IX notice of nondiscrimination is located at uab.edu/titleix.


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