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Engineering Physicist Jobs in Minnesota (NOW HIRING)

R&D Atomic Physicist - 649

Brooklyn Park, MN ยท On-site

$135K - $175K/yr

You will work alongside teams of scientists and engineers to bring new concepts to life. * You will ... ion physics * Due to Contractual requirements, must be a U.S. Person defined as, U.S. citizen ...

Ion Transport Physicist - 893

Brooklyn Park, MN ยท On-site

$148K - $185K/yr

We are seeking a highly qualified Ion Transport Physicist for our Broomfield, CO or Brooklyn Park ... WE VALUE: * 8+ years of experience in scientific research and development, engineering, or a ...

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Showing results 1-20

Engineering Physicist information

See Minnesota salary details

$38.7K

$92.9K

$221.8K

How much do engineering physicist jobs pay per year?

As of Aug 4, 2026, the average yearly pay for engineering physicist in Minnesota is $92,853.00, according to ZipRecruiter salary data. Most workers in this role earn between $57,800.00 and $109,700.00 per year, depending on experience, location, and employer.

How does an engineering physicist typically collaborate with multidisciplinary teams during project development?

Engineering Physicists often work closely with engineers, material scientists, and researchers to bridge the gap between theoretical concepts and practical applications. They play a key role in translating complex physics principles into innovative solutions for real-world engineering challenges. Effective communication and teamwork are essential, as Engineering Physicists contribute specialized knowledge during brainstorming, prototyping, and testing phases. This collaborative environment fosters professional growth and exposes team members to a broad range of technical perspectives.

What is an engineering physicist?

Engineering Physicists are professionals who apply principles of physics and engineering to solve complex technical problems, develop new technologies, and improve existing processes or devices. They bridge the gap between pure scientific research and practical engineering applications, often working in industries such as aerospace, energy, electronics, and manufacturing. Their work can involve designing experiments, creating prototypes, and conducting simulations to test new theories or products. Engineering Physicists typically have a strong background in both physics and engineering and are skilled at using advanced mathematical and computational tools.

How much does an engineering physicist make?

Engineering physicists typically earn a median annual salary of around $100,000, with salaries varying based on experience, education, and location. Entry-level positions may start lower, while experienced professionals or those in specialized fields can earn significantly more. They often work in research, development, or technical roles requiring strong problem-solving skills and knowledge of physics and engineering principles.

What are the key skills and qualifications needed to thrive as an engineering physicist?

To thrive as an Engineering Physicist, you need a strong background in physics, mathematics, and engineering principles, typically evidenced by at least a bachelor's or master's degree in engineering physics or a related field. Familiarity with simulation software, laboratory instrumentation, and modeling tools such as MATLAB or COMSOL is commonly required, and certifications like Professional Engineer (PE) can be advantageous. Critical thinking, problem-solving abilities, and effective communication are vital soft skills for collaborating across disciplines and presenting complex findings. These competencies enable Engineering Physicists to develop innovative solutions and bridge the gap between scientific research and practical engineering applications.

What does an engineering physicist do?

An engineering physicist applies principles of physics to develop and improve technology, often working on research, design, and testing of new devices or systems. They use advanced math, modeling software, and laboratory equipment to solve complex technical problems in industries such as aerospace, electronics, or energy.
What cities in Minnesota are hiring for Engineering Physicist jobs? Cities in Minnesota with the most Engineering Physicist job openings:
Infographic showing various Engineering Physicist job openings in Minnesota as of July 2026, with employment types broken down into 86% Full Time, and 14% Contract. Highlights an 93% In-person, and 7% Hybrid job distribution, with an average salary of $92,853 per year, or $44.6 per hour.

Therapeutic Medical Physicist (Advanced Level)

SD Department of Veterans Affairs

Minneapolis, MN โ€ข On-site

$181K/yr

Other

Re-posted 20 days ago


Job description

This position is eligible for the Education Debt Reduction Program (EDRP), a student loan payment reimbursement program. You must meet specific eligibility requirements per VHA policy and submit your EDRP application within four months of appointment. Program Approval, award amount (up to $200,000) & eligibility period (one to five years) are determined by the VHA Education Loan Repayment Services program office after review of the EDRP application. Former EDRP participants ineligible to apply.Qualifications:Basic Requirements:
  • United States Citizenship: Non-citizens may only be appointed when it is not possible to recruit qualified citizens in accordance with VA Policy.
  • Education: Master's degree or higher in a physics, science, or engineering discipline recognized by an accredited college or university with at least 30 semester hours in medical physics, health physics, radiological science, physics, engineering, chemistry, or biology; or an equivalent foreign degree and coursework substantiated by the National Association of Credential Evaluation Services.
  • Board Certification: Persons hired or reassigned to TMP positions in the VHA must be board certified in the field of therapeutic medical physics by an approved certifying body. The board certificate must be current and the applicant must abide by the certifying body's requirements for continuing education.
    • Approved Certifying Bodies
      • The American Board of Radiology (ABR) in any of the following field titles:
        • Therapeutic Medical Physics
        • Therapeutic Radiologic or Therapeutic Radiological Physics
        • Radiologic Physics or Radiological Physics
      • The American Board of Medical Physics (ABMP) in the subfield of Radiation Oncology Physics.
      • The Canadian College of Physicists in Medicine (CCPM) in the subfield of Radiation Oncology Physics.
  • Physical Requirements: See VA Directive and Handbook 5019.
  • English Language Proficiency: TMPs must be proficient in spoken and written English as required by 38 U.S.C. 7402(d), and 7407(d).
May qualify based on being covered by the Grandfathering Provision as described in the VA Qualification Standard for this occupation (only applicable to current VHA employees who are in this occupation and meet the criteria).
Grade Determinations: In addition to the basic requirements for employment, the following criteria must be met when determining the grade of candidates.
GS-14 Therapeutic Medical Physicist (Advanced Level)
  • Experience: In addition to the basic requirements, completion of a minimum of 1 year of progressively complex experience equivalent to the next lower grade (GS-13). This would be experience which demonstrates the knowledge, skills, and abilities (listed below) to fully perform at that grade level. GS-13 experience is defined as:
    1. Knowledge regarding the safe and efficient use of all radiotherapy devices for external beam radiotherapy.
    2. The ability to evaluate and ensure correct and safe operation of radiotherapy equipment through complex problem diagnosis and scheduled quality assurance.
    3. Knowledge of the scientific, clinical, and technical applications of high dose rate and low dose rate brachytherapy treatment simulation, planning, dosimetry, and treatment methods.
    4. Expertise in the professional, scientific, and technical aspects of shielding methods for external beam radiation delivery systems, radiation survey methods, developing procedures, setting action levels, delivering radiation safety training, developing and documenting competencies, and reporting. This includes an in-depth knowledge of regulatory requirements and guidelines for radiation shielding and personnel protection.
    5. Ability to exercise independent professional judgment in the performance and evaluation of calibration, acceptance testing, and clinical commissioning procedures for all types of external beam photon and electron beam delivery systems. Skilled in the evaluation of acceptance testing and commissioning results of CT simulators.
    6. Technical skills in 3-D treatment planning, intensity modulated radiation therapy treatment planning, and stereotactic body radiation therapy planning. This includes specialized knowledge of clinical process steps and resource requirements for planning and delivery of radiation oncology treatments.
    7. Ability to process information from multi-modality imaging datasets for treatment planning, treatment verification, and radiotherapy response assessment.
  • In addition to the experience above, the candidate must demonstrate the following KSAs:
    1. Advanced expertise and experience in the safe and efficient use of all radiotherapy devices for external beam radiotherapy and brachytherapy.
    2. Highly developed expertise with commissioning linear accelerators and treatment planning systems for complex clinical use, to include project management, performance testing, data acquisition, beam modeling, and validation testing.
    3. Advanced knowledge (treatment simulation, planning, dosimetry, and treatment methods) of the scientific, clinical, and technical applications of one or more specialized procedures including, but not limited to, high dose rate brachytherapy, low dose rate brachytherapy, stereotactic body radiation therapy, stereotactic radiation therapy, intensity modulated radiation therapy, volumetric modulated arc therapy, total body irradiation, advanced image-guided therapy, and adaptive therapy.
    4. Advanced expertise in acceptance testing, clinical commissioning, and (when applicable) calibration procedures for a variety of ancillary radiation oncology delivery, imaging, dosimetry, metrology, and computational systems.
Reference: For more information on this qualification standard, please visit https://www.va.gov/ohrm/QualificationStandards/.
Physical Requirements: You will be asked to participate in a pre-employment examination or evaluation as part of the pre-employment process for this position. Questions about physical demands or environmental factors may be addressed at the time of evaluation or examination.Education:IMPORTANT: A transcript must be submitted with your application.
Note: Only education or degrees recognized by the U.S. Department of Education from accredited colleges, universities, schools, or institutions may be used to qualify for Federal employment. You can verify your education here: http://ope.ed.gov/accreditation/. If you are using foreign education to meet qualification requirements, you must send a Certificate of Foreign Equivalency with your transcript in order to receive credit for that education. For further information, visit: https://sites.ed.gov/international/recognition-of-foreign-qualifications/.Employment Type: OTHER