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Biosensors Engineer Jobs in Virginia (NOW HIRING)

Biosensors Engineer information

What is a biosensors engineer?

Biosensors engineers are professionals who design, develop, and improve devices that detect biological information and convert it into measurable signals. These devices, known as biosensors, are widely used in medical diagnostics, environmental monitoring, food safety, and biotechnology. Biosensors engineers work at the intersection of biology, chemistry, electronics, and materials science to create sensitive, reliable, and efficient sensors. Their work often involves research, prototyping, testing, and collaborating with multidisciplinary teams to bring innovative biosensing technologies to market.

What are the key skills and qualifications needed to thrive as a biosensors engineer, and why are they important?

To thrive as a Biosensors Engineer, you need a solid background in biomedical engineering, chemistry, or electrical engineering, often supported by a relevant degree or advanced studies. Familiarity with microfabrication techniques, signal processing software, and laboratory instrumentation is typically required, along with certifications in laboratory safety or quality standards. Strong analytical thinking, problem-solving abilities, and effective teamwork are essential soft skills in this role. These skills are crucial for developing innovative, accurate biosensor technologies that meet stringent regulatory and performance standards.

What are the main challenges biosensors engineers face when integrating new sensor technologies into existing medical devices?

Biosensors Engineers often encounter challenges when adapting innovative sensor technologies to established medical devices, such as ensuring compatibility with existing hardware and software, meeting strict regulatory and safety standards, and maintaining reliable performance in diverse clinical environments. Collaboration with multidisciplinary teams—including clinicians, software developers, and regulatory specialists—is essential to address issues like biocompatibility, signal interference, and data accuracy. Staying updated on industry standards and maintaining thorough documentation throughout the development process are also key factors for successful integration.

What is the difference between Biosensors Engineer vs Medical Device Engineer?

AspectBiosensors EngineerMedical Device Engineer
Required CredentialsBachelor's or Master's in Biomedical, Electrical, or Chemical EngineeringBachelor's or Master's in Biomedical, Mechanical, or Electrical Engineering
Work EnvironmentResearch labs, biotech companies, startupsMedical device manufacturing, hospitals, regulatory agencies
Industry UsageDeveloping biosensing technologies for diagnosticsDesigning and testing medical devices for patient care

While both roles require engineering degrees and focus on healthcare technology, Biosensors Engineers specialize in creating biosensing devices and sensors, whereas Medical Device Engineers work on a broader range of medical equipment. Both roles often collaborate and share similar credentials, but their specific focus and work environments differ.

What job categories do people searching Biosensors Engineer jobs in Virginia look for?

The top searched job categories for Biosensors Engineer jobs in Virginia are:

What cities in Virginia are hiring for Biosensors Engineer jobs?

Cities in Virginia with the most Biosensors Engineer job openings:

Infographic showing various Biosensors Engineer job openings in Virginia as of July 2026, with employment types broken down into 22% Internship, 12% As Needed, 19% Full Time, 4% Part Time, 1% Contract, and 42% Nights. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution.

AI Scientist- Computational Chemistry

AIToolboard

Ashburn, VA • On-site

$150 - $210/hr

Other

Posted 13 days ago


Job description

Jobs / AI Scientist- Computational Chemistry

AI Scientist- Computational Chemistry

Full-time

About the Role

About this role:HHMI has made a landmark $500 million commitment to support AI-driven projects and to embed AI systems throughout every stage of the scientific process in labs across HHMI. The AI initiative will be centered at HHMI’s Janelia Research Campus. Janelia has been at the forefront of AI-driven research in biology for more than 15 years. Its forward-thinking structure, centralized funding, and collaborative culture make it ideally suited to take this bold leap forward. To learn more about the initiative, visit ai.hhmi.org.The Artificial Intelligence (AI) Scientist is an outstanding independent scientist who develops, implements, and executes innovative AI-based research projects to make biological discoveries or to generate new research tools. AI Scientists create, lead, or participate in research projects of variable scale, ranging from individual work to HHMI-wide strategic initiatives. The AI Scientist will work closely with scientists from across the broader HHMI community. They participate in, build, or supervise highly collaborative research teams consisting of other scientists, engineers, and technicians.

What We Provide
  • A competitive compensation package with comprehensive health and welfare benefits. In addition to the base salary described below, this position may also be eligible for incentive pay.
  • Generous training and travel opportunities to workshops and conferences.
  • Access to state-of-the-art computational infrastructure and extended capabilities provided through assistance from Janelia’s Support teams and Project teams.
  • A healthy work-life balance, with on‑site childcare, free gyms, on‑campus housing, vibrant social and dining spaces, and shuttle‑bus service to Janelia from Washington, DC metro area!
  • Flexible work arrangements are available.
  • Relocation assistance provided for non‑local candidates who wish to transition to the Washington, DC, metro area.
What You’ll Do
  • Plan, initiate, and rigorously execute independent or collaborative AI-based research; may manage personnel and budgets towards this goal.
  • Plan and perform scientific duties on new and varied problems where only general objectives are stated.
  • Closely collaborate with other scientists, engineers, and technicians.
  • Initiate and remain flexible to transfer between projects and groups as appropriate.
  • Coordinate broad phases of projects and perform advanced development work to obtain and maintain technical leadership in the field of AI.
  • May assist HHMI and Janelia leadership in planning and execution of program‑wide initiatives; ensures coordination with related efforts or other projects and research areas.
  • Provide mentoring and leadership to others.
  • Participate in the review of other projects and scientists and provide input and guidance in a collaborative and constructive way.
  • Explore and develop new methods, skills, and tools. Make research outputs available through peer‑reviewed scientific publications, high‑quality datasets, code, and applications. Participate in patent disclosures where appropriate.
  • Apply AI and computational methods, including generative molecular design, molecular property prediction, and physics‑based simulation, to the development of chemical and biochemical tools such as fluorescent probes, biosensors, and imaging agents, working in close collaboration with experimental chemists and protein engineers.
  • Adhere to the highest academic, scientific, and ethical standards in all professional activities.
What You Bring
  • Ph.D. in Computer Science, AI, Machine Learning, Applied Mathematics, Physics, Chemistry, Chemical Engineering, Computational Chemistry, Biochemistry, Materials Science, or a related field — or equivalent combination of education and experience.
  • Demonstrated record of rigorous, innovative research evidenced by peer‑reviewed publications, high‑quality open‑source contributions, or impactful scientific applications, typically reflecting 5 or more years of research experience.
  • Deep expertise in computational chemistry, molecular photophysics, or a closely related field — including experience with excited‑state property prediction, fluorescent molecule or biosensor design, photoswitches, or related functional molecular systems, and familiarity with quantum chemistry methods (DFT, TD-DFT, or correlated approaches) for predicting photophysical properties such as absorption/emission spectra, quantum yield, and photostability. Candidates with this foundation who are actively building ML capabilities are strongly encouraged to apply.
  • Strong working knowledge of AI/ML methods — including deep learning, probabilistic modeling, and generative or optimization‑based molecular design — with an emphasis on physics‑guided or mechanism‑aware approaches suited to data‑limited chemical domains. Proficiency in PyTorch, JAX, or equivalent frameworks, and strong progr
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