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Biomedical Physics Jobs in Minnesota (NOW HIRING)

Faculty Positions

Minneapolis, MN · On-site

$110K - $130K/yr

... and physics-inspired computing. Collaboration in research and development in chip design ... Current research areas include Biomedical and Biological Computation Methods; Devices and Systems;

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Biomedical Physics information

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$5

$17

$41

How much do biomedical physics jobs pay per hour?

As of Aug 11, 2026, the average hourly pay for biomedical physics in Minnesota is $17.48, according to ZipRecruiter salary data. Most workers in this role earn between $9.66 and $19.52 per hour, depending on experience, location, and employer.

Do biomedical physicists make good money?

Biomedical physicists typically earn a competitive salary, with median annual wages often exceeding the national average for healthcare professionals. Salaries vary based on experience, education, location, and work setting, such as hospitals or research institutions, and may include benefits like health insurance and retirement plans.

Are biomedical physicists in high demand?

Biomedical physicists are in growing demand due to advancements in medical imaging, radiation therapy, and healthcare technology. Employment opportunities are expected to increase as hospitals and research institutions seek specialists with expertise in medical instrumentation, radiation safety, and clinical applications of physics.

What are the key skills and qualifications needed to thrive in biomedical physics?

To thrive in Biomedical Physics, you need a solid background in physics, mathematics, and biology, generally requiring a degree in biomedical physics, medical physics, or a related field. Experience with medical imaging systems (such as MRI, CT, or PET), radiation safety protocols, and relevant certifications like board certification in medical physics are often essential. Strong problem-solving abilities, communication, and teamwork skills help navigate interdisciplinary projects and interact with healthcare professionals. These skills ensure the effective application of physical principles to improve medical technologies, patient diagnostics, and treatment outcomes.

What can you do with a biomedical physics degree?

A biomedical physics degree prepares individuals for careers in medical imaging, radiation therapy, medical device development, and research. Graduates often work in hospitals, research institutions, or industry, utilizing skills in physics, biology, and technology to improve healthcare diagnostics and treatments.

What does a biomedical physicist do?

Professionals in Biomedical Physics often work on projects involving the development, calibration, or maintenance of medical imaging and therapy equipment, as well as ensuring radiation safety in clinical settings. Daily tasks may include troubleshooting technical issues, analyzing imaging data, collaborating with physicians and technologists to optimize equipment use, and conducting quality assurance tests. Depending on the workplace, you may also participate in research studies or contribute to the training of medical staff. This multidisciplinary role is well-suited for those who enjoy both hands-on technical work and close collaboration within healthcare teams.

What is biomedical physics?

A Biomedical Physics job involves applying principles of physics to healthcare and medical technology. Professionals in this field work on medical imaging, radiation therapy, biomechanics, and the development of medical devices. They collaborate with physicians, engineers, and researchers to improve diagnostic tools and treatment methods. Biomedical physicists typically work in hospitals, research institutions, or medical technology companies. Their work ensures that medical equipment is accurate, safe, and effective for patient care.

What job categories do people searching Biomedical Physics jobs in Minnesota look for? The top searched job categories for Biomedical Physics jobs in Minnesota are:
What cities in Minnesota are hiring for Biomedical Physics jobs? Cities in Minnesota with the most Biomedical Physics job openings:
Infographic showing various Biomedical Physics job openings in Minnesota as of July 2026, with employment types broken down into 72% Full Time, 26% Part Time, and 2% Contract. Highlights an 74% Physical, 3% Hybrid, and 23% Remote job distribution, with an average salary of $36,361 per year, or $17.5 per hour.

Photon Faculty Medical Physicist in Radiation Oncology

Mayo Clinic

Rochester, MN • On-site

Full-time

Medical, Dental, Vision, Retirement

Re-posted 18 days ago


Mayo Clinic rating

7.8

Company rating: 7.8 out of 10

Based on 697 frontline employees who took The Breakroom Quiz

132nd of 887 rated healthcare providers


Job description

Why Mayo Clinic

Mayo Clinic is top-ranked in more specialties than any other care provider according to U.S. News & World Report. As we work together to put the needs of the patient first, we are also dedicated to our employees, investing in competitive compensation and comprehensive benefit plans - to take care of you and your family, now and in the future. And with continuing education and advancement opportunities at every turn, you can build a long, successful career with Mayo Clinic.

Benefits Highlights
  • Medical: Multiple plan options.
  • Dental: Delta Dental or reimbursement account for flexible coverage.
  • Vision: Affordable plan with national network.
  • Pre-Tax Savings: HSA and FSAs for eligible expenses.
  • Retirement: Competitive retirement package to secure your future.

Responsibilities

Mayo Clinic in Rochester, Minnesota, is currently recruiting a board-certified photon faculty medical physicist for the Division of Medical Physics within the Department of Radiation Oncology.

We are seeking applicants with a track record that demonstrates academic and clinical productivity, including clinical practice and project participation, collaboration, and leadership, as well as research productivity and commitment to educational service. A proven track record of successfully leading groups or projects is highly desirable. Successful candidates will have responsibility for and participate in all aspects of clinical coverage and QA for photon therapy procedures. The candidate will also be expected to participate in educational activities and consistently publish peer reviewed research.

The applicant will also be expected to submit a brief (<1000 words) research proposal.  The research proposal should summarize the candidate's research interests, goals, qualifications, potential for funding, and vision for synergistic collaboration with the other members of the Department of Radiation Oncology.  Preference will be given to those candidates who have interests and qualifications consistent with key clinical, research and innovation initiatives including MR simulation and advanced MR applications in radiotherapy.

Facility and Equipment: The Radiation Oncology Medical Physics Division currently has 25 faculty medical physicists, 48 staff clinical medical physicists, 9 residents/fellows, 6 medical physicist assistants, along with several engineers and IT support. The Division is a seasoned and cohesive team responsible for all aspects of therapy medical physics in support of clinical practice, education and research in radiation oncology in Rochester and at 5 satellite facilities. The Medical Physics Division is noted for research in image guided radiation therapy, clinical application of advanced imaging modalities, radiomics, quality and safety, treatment delivery dosimetry and verification, development of novel treatment technologies, advances in brachytherapy, Monte Carlo techniques, particle therapy treatment planning and beam delivery, radiobiology and outcomes-informatics.

Equipment in our Department includes 15 Varian Truebeam/Edge/Ethos linacs including 7 with Hypersight, a Gamma Knife ICON, GE and Siemens CT simulators with wide bore and 4D capability, a 3T MRI, VariSource and Bravos HDR afterloaders, Varian Brachyvision for HDR planning, Variseed for LDR planning, XStrahl Orthovoltage, IntraOp Mobetron, Eclipse, ARIA and a full complement of dosimetry and detector systems for photon, proton and brachytherapy. Photon treatment procedures include all conventional radiation therapy modalities plus special procedures that include IORT, TBI, TSET, HDR, SRS, SBRT, SFRT, BH, Orthovoltage, LDR and IVBT treating over 6000 patients per year. Expansion of the Rochester-based photon clinical to add 3 additional vaults is underway, with a planned implementation of state-of-the-art treatment technology, including an MR-Linac. The proton center with a Hitachi synchrotron-based treatment system treats over 1200 patients per year in a facility adjacent to our photon radiation oncology clinic, and a 2-gantry proton expansion project with a second accelerator is underway.

Mayo Clinic is an integrated, multidisciplinary academic medical center and supports a vibrant and diverse research enterprise. Mayo Clinic strives to remain a world leader for advanced quantitative approaches, including AI and machine learning, and novel insights from the diverse landscape of health care technology and data. The Department of Radiation Oncology leads or contributes to national efforts in basic, translational, clinical, and population sciences. Furthermore, Radiation Oncology has a rich tradition of collaborating with other Mayo Clinic departments, health and data scientists, biomedical engineering programs, and animal and cell laboratories.  The unique resources available to faculty for research and innovation include a clinical data warehouse containing over twenty years of EHR data for 10 million patients, a vibrant radiology practice with state-of-the-art imaging modalities, and reference labs including pathology, genomic data, and drug discovery pipelines. Advanced GPU and CPU based computational infrastructure exists for research, development, and clinical applications.


Qualifications

Minimum qualifications include a Ph.D. and board certification; board eligible Ph.D. graduates from a CAMPEP accredited residency program with experience in MR-Linacs and MR-Based online adaptive radiotherapy will also be considered.


Exemption Status
Exempt
Compensation Detail
The minimum starting salary for PhD/Doctoral specialties may range from $136,643 to $280,250. This range reflects full-time total base compensation prior to consideration of additional experience or duties. Pay for the selected candidate will vary based on specialty, experience, FTE, internal equity, or external market data.
Benefits Eligible
Yes
Schedule
Full Time
Hours/Pay Period
80
Schedule Details
Full Time
International Assignment
No
Site Description
Just as our reputation has spread beyond our Minnesota roots, so have our locations. Today, our employees are located at our three major campuses in Phoenix/Scottsdale, Arizona, Jacksonville, Florida, Rochester, Minnesota, and at Mayo Clinic Health System campuses throughout Midwestern communities, and at our international locations. Each Mayo Clinic location is a special place where our employees thrive in both their work and personal lives. Learn more about what each unique Mayo Clinic campus has to offer, and where your best fit is. 

Equal Opportunity

All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, gender identity, sexual orientation, national origin, protected veteran status or disability status. Learn more about the 'EOE is the Law'.  Mayo Clinic participates in E-Verify and may provide the Social Security Administration and, if necessary, the Department of Homeland Security with information from each new employee's Form I-9 to confirm work authorization.

Recruiter
Ryan BrunnerQualifications:

Minimum qualifications include a Ph.D. and board certification; board eligible Ph.D. graduates from a CAMPEP accredited residency program with experience in MR-Linacs and MR-Based online adaptive radiotherapy will also be considered.


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About Mayo Clinic

Sourced by ZipRecruiter

Mayo Clinic is the largest integrated, not-for-profit medical group practice in the world. We're building the future, one where the best possible care is available to everyone — and more people can heal at home. Our relentless research turns into earlier diagnoses and new cures. That's how we inspire hope in those who need it most. At Mayo Clinic, experts work together to solve the most challenging unmet needs of patients. Our history of innovation dates back almost 150 years, when brothers Will and Charlie Mayo pioneered an integrated, team-based approach to medicine. Today, that trailblazing spirit drives innovations like Mayo Clinic Platform — which powers new technologies to change how care is delivered to all.

Industry

Hospitals

Company size

10,000+ Employees

Headquarters location

Rochester, MN, US

Year founded

1919