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Radiation Engineer Jobs in Michigan (NOW HIRING)

Nuclear Engineer

Lansing, MI · On-site

$89K - $107K/yr

Nuclear Engineer Who we are... We are a team of scientists, engineers, technicians, and innovators ... Radiation protection * Critical utilities handling radioactive material * Safely handles and ...

Controls Engineer

Lansing, MI · On-site

$76K - $98K/yr

Controls Engineer Who we are... We are a team of scientists, engineers, technicians, and innovators ... This role requires technical knowledge of high-reliability systems in radiation environments ...

Nuclear Engineer

Kalkaska, MI

$89K - $107K/yr

Job Title: Nuclear Engineer (Naval Reactors Engineer) Category / Component: Officer • Active ... radiation shielding, and chemistry and radiological controls; review designs and analyses from ...

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Radiation Engineer information

See Michigan salary details

$71K

$103.2K

$140.3K

How much do radiation engineer jobs pay per year?

As of Aug 18, 2026, the average yearly pay for radiation engineer in Michigan is $103,165.00, according to ZipRecruiter salary data. Most workers in this role earn between $78,900.00 and $136,000.00 per year, depending on experience, location, and employer.

What is a radiation engineer?

The duties of a radiation engineer are to conduct experiments that test and evaluate radiation effects in a variety of settings. Their responsibilities include providing theoretical analysis based on a test they perform in an experimental environment. Professionals in this career often focus on the performance of systems, equipment, or networks during and after exposure to radiation. While reporting their findings, a radiation engineer may suggest layouts, parts, and designs that meet requirements for operating under realistic levels of radiation.

What does a radiation engineer do?

A Radiation Engineer is a professional who studies and evaluates the effects of radiation on materials, electronics, and systems, particularly in environments such as space, nuclear facilities, or medical equipment. They design tests, conduct experiments, and develop methods to protect devices and people from harmful radiation. Their work is crucial for ensuring the safety and reliability of technology used in high-radiation environments. Radiation Engineers often collaborate with scientists, engineers, and regulatory agencies to develop guidelines and solutions.

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

To thrive as a Radiation Engineer, you need a solid background in physics, electrical engineering, or nuclear engineering, often supported by a relevant bachelor's or master's degree. Familiarity with radiation testing equipment, simulation software (such as Geant4 or MCNP), and knowledge of industry standards like MIL-STD-883 are typically required. Strong analytical thinking, problem-solving abilities, and effective teamwork are valuable soft skills for this role. These skills and qualifications are crucial for accurately assessing radiation effects on materials and systems, ensuring safety, compliance, and performance in high-reliability environments.

What are the main challenges radiation engineers face when working on projects for space applications?

Radiation Engineers working on space-related projects often encounter the challenge of accurately predicting and mitigating the effects of cosmic radiation on spacecraft systems and components. This requires a strong understanding of radiation environments, materials science, and specialized testing protocols. Collaboration with design, testing, and mission assurance teams is essential to ensure that electronic systems can withstand harsh radiation without failure. Additionally, staying updated with evolving standards and simulation tools is key to delivering robust and compliant solutions.

What is the difference between Radiation Engineer vs Medical Physicist?

AspectRadiation EngineerMedical Physicist
CredentialsBachelor's or Master's in Engineering, certifications in radiation safetyDoctorate in Medical Physics, board certification (ABMP or ABR)
Work EnvironmentIndustrial, nuclear power plants, research labsHospitals, clinics, cancer treatment centers
Industry UsageDesigning radiation systems, safety protocolsCalibrating equipment, treatment planning

While both roles involve radiation and safety, Radiation Engineers focus on designing and maintaining radiation systems in industrial or research settings, whereas Medical Physicists specialize in radiation therapy and diagnostic imaging in healthcare. The key differences lie in their work environments, required credentials, and specific responsibilities.

What job categories do people searching Radiation Engineer jobs in Michigan look for?

The top searched job categories for Radiation Engineer jobs in Michigan are:

What are popular job titles related to Radiation Engineer jobs in MI?

For Radiation Engineer jobs in MI, the most frequently searched job titles are:

Infographic showing various Radiation Engineer job openings in Michigan as of August 2026, with employment types broken down into 87% Full Time, 6% Part Time, 2% Temporary, 4% Contract, and 1% Nights. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution, with an average salary of $103,165 per year, or $49.6 per hour.

Senior Nuclear Radiation Shielding Engineer

Holtec International

Covert, MI • On-site

$155K - $185K/yr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 20 days ago


Holtec International rating

8.0

Company rating: 8.0 out of 10

Based on 16 frontline employees who took The Breakroom Quiz

178th of 490 rated machine equipment manufacturers


Job description

Senior Nuclear Radiation Shielding Engineer

The Senior Nuclear Radiation Shielding Engineer to support the design, analysis, and licensing of the SMR-300, an integral pressurized water reactor small modular reactor. The selected candidate will join an established and growing radiation protection and analysis team supporting SMR-300 development activities, including radiation source term development, shielding design and optimization, dose assessment, and preparation of licensing documentation. This role serves as a hands-on technical contributor, supporting plant design optimization and regulatory compliance through defensible radiological analyses. This role works independently performing detailed analyses, benchmark methods and models, clearly document results, and mentor junior engineers in analysis techniques and technical documentation.

Location: Flexible — role may be based in Camden, NJ; Jupiter, FL; Cranberry, PA; Madrid, Spain; Bristol, UK; or Kyiv, Ukraine

Primary Responsibilities:

  • Develop radiation source terms for normal operation, anticipated operational occurrences, and postulated accident conditions
  • Perform radiation transport analyses to evaluate dose rates in plant systems, structures, and components
  • Design and optimize radiation shielding to meet occupational exposure and site dose limits in accordance with ALARA principles
  • Conduct radiological consequences and control room habitability analyses using accepted regulatory methodologies
  • Perform reactor pressure vessel and structural component fluence evaluations to support shielding and material assessments
  • Benchmark analytical models against experimental data and industry guidance to ensure technical defensibility
  • Prepare technical reports and contribute to licensing documentation, including PSAR, FSAR, and responses to NRC Requests for Additional Information (RAIs)
  • Participate in technical meetings with internal teams, partners, clients, and the U.S. Nuclear Regulatory Commission
  • Mentor junior engineers and support the development of analysis standards and documentation best practices

Requirements:

  • Eligibility to work under U.S. Department of Energy 10 CFR Part 810 export control regulations
  • Bachelor's degree in Nuclear Engineering, Physics, or a closely related field with 10+ years of relevant experience OR Master's degree with 8+ years of relevant experience OR PhD with 6+ years of relevant experience
  • Demonstrated experience in radiation shielding design, source term development, and radiological dose assessment
  • Proficiency with radiation transport and dose analysis tools such as MCNP, SCALE, ADVANTG, GALE, ARCON96, RADTRAD, or equivalent codes
  • Working knowledge of nuclear power plant operations and radiological protection programs
  • Familiarity with NRC licensing processes and NUREG-0800 Chapters 11 and 12 requirements
  • Strong technical writing, documentation, and communication skills
  • Programming or scripting experience (e.g., Python) to support analysis automation and data processing
  • Experience supporting NRC audits, RAIs, and technical review meetings
  • Experience integrating shielding design with plant layout and multidisciplinary engineering teams

A Generation Ahead by Design™ Investing in people who power the future. We believe great work deserves great rewards. Our benefits go beyond the basics, reflecting our commitment to supporting your whole self…your health, your future, and your career growth. This includes:

Compensation: Compensation for U.S.-based roles range from $155,000 to $185,000 annually and is determined by skills and experience. Compensation for roles based outside the U.S. will be set in accordance with local market practices and applicable currency requirements.

Benefits: Benefits for U.S.-based employees include a comprehensive total rewards package designed to support health, wellbeing, and long-term financial security, including:

  • Medical, dental, and vision coverage with generous employer contributions and Day 1 eligibility
  • FLEX program with hybrid work opportunities for eligible roles
  • 401(k) retirement plan with up to a 5% company match and immediate vesting
  • Paid time off and 11 paid holidays
  • Wellness and commuter programs
  • Company-paid life and AD&D insurance
  • Education assistance and professional development support
  • Employee Assistance Program and optional voluntary benefits

Benefits for employees based outside the U.S. will vary by country and will be provided in accordance with local market practices, statutory requirements, and regional norms.

If you're driven to solve meaningful challenges and make a lasting impact, we invite you to build your career at Holtec— a generation ahead by design™


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