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Radiation Monitoring Jobs in California (NOW HIRING)

Monitor the patient to check for unusual reactions to the treatment. Care Career Job ID #37878247 ... Radiology/Imaging Radiation Therapy About Care Career Care Career brings together a portfolio of ...

Monitor the patient to check for unusual reactions to the treatment. Care Career Job ID #37778864 ... Radiology/Imaging Radiation Therapy About Care Career Care Career brings together a portfolio of ...

Monitor the patient to check for unusual reactions to the treatment. Care Career Job ID #37781102 ... Radiology/Imaging Radiation Therapy About Care Career Care Career brings together a portfolio of ...

Radiation Therapist * Discipline: Allied Health Professional * Start Date: 09/21/2026 * Duration ... Monitor the patient to check for unusual reactions to the treatment. Care Career Job ID #37898607.

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Radiation Monitoring information

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$939

$2K

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How much do radiation monitoring jobs pay per week?

As of Aug 25, 2026, the average weekly pay for radiation monitoring in California is $1,989.85, according to ZipRecruiter salary data. Most workers in this role earn between $1,451.92 and $2,448.08 per week, depending on experience, location, and employer.

What is radiation monitoring?

Radiation monitoring is the process of measuring and assessing levels of radiation in an environment to ensure safety and compliance with regulations. It involves using specialized instruments to detect and quantify ionizing radiation, such as alpha, beta, gamma, or neutron radiation. Professionals in this field work in industries like nuclear power, medical facilities, research institutions, and environmental agencies to protect workers, the public, and the environment from harmful radiation exposure. Regular monitoring helps identify potential risks and implement corrective actions if necessary.

What are some common challenges faced by professionals in radiation monitoring, and how can they be managed effectively?

Professionals in radiation monitoring often encounter challenges such as ensuring accurate measurements in dynamic environments, keeping up with evolving safety regulations, and maintaining calibration of monitoring equipment. Effective management involves regular training, adherence to strict protocols, and close collaboration with safety officers and other technical teams. Staying updated on regulatory changes and utilizing advanced monitoring technology can also help mitigate risks and improve the reliability of radiation assessments.

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

To thrive as a Radiation Monitoring Specialist, you need a solid background in physics or environmental science, often with a relevant degree and specialized training in radiation safety. Familiarity with radiation detection instruments, data analysis software, and regulatory compliance systems is typically required. Attention to detail, strong problem-solving abilities, and effective communication are standout soft skills in this field. These skills ensure accurate monitoring, compliance with safety standards, and the protection of people and the environment from radiation hazards.

What is the difference between Radiation Monitoring vs Radiation Safety Technician?

AspectRadiation MonitoringRadiation Safety Technician
CertificationsRadiation Safety Officer (RSO), Certified Health Physicist (CHP)Radiation Safety Officer (RSO), Certified Health Physicist (CHP)
Work EnvironmentIndustrial, medical, nuclear facilities, outdoor sitesIndustrial, medical, nuclear facilities, outdoor sites
Primary FocusMonitoring radiation levels, data collection, reportingImplementing safety protocols, training, compliance
Employer & Industry UsageHospitals, nuclear plants, research labsHospitals, nuclear facilities, industrial sites

Both Radiation Monitoring and Radiation Safety Technicians work in environments involving radiation, often requiring similar certifications. Radiation Monitoring focuses on measuring and reporting radiation levels, while Radiation Safety Technicians implement safety procedures and train staff. Understanding these roles helps in choosing the right career path or job search focus.

How do you become a radiation monitoring professional?

To become a radiation monitoring professional, individuals typically need a high school diploma or equivalent, followed by specialized training or an associate's or bachelor's degree in health physics, radiological science, or a related field. Certification from organizations such as the American Board of Health Physics or state licensing may be required, and familiarity with radiation detection tools and safety protocols is essential.

What does a radiation monitoring do?

A radiation monitoring professional is responsible for measuring and assessing radiation levels in various environments to ensure safety and compliance with regulations. They use specialized instruments like Geiger counters and dosimeters, often working in industrial, medical, or nuclear settings, and may require certifications such as radiation safety training.
Infographic showing various Radiation Monitoring job openings in California as of August 2026, with employment types broken down into 1% As Needed, 87% Full Time, 8% Part Time, and 4% Contract. Highlights an 92% Physical, 3% Hybrid, and 5% Remote job distribution, with an average salary of $103,472 per year, or $49.7 per hour.

Staff Instrumentation & Controls Engineer - Nuclear

Torrance, CA • On-site

Socket.dev
Network Security • 1 - 10 employees

$173 - $211/hr

Other

Medical, PTO

Posted 7 days ago


Job description

About Valar Atomics

At Valar Atomics, we're redefining what's possible in energy. Our mission is to make clean, high-temperature nuclear power scalable—unlocking abundant energy for industry, hydrogen, and next-generation manufacturing. We are a team of builders, engineers, and operators who believe nuclear energy should be fast to deploy, factory-made, and built for the real world. Our first pilot plant in Orangeville, Utah will demonstrate how advanced nuclear systems and fuel fabrication can power the future. Joining Valar Atomics means becoming part of a company where autonomy, ownership, and impact exist at every level.

The Team

As part of the Engineering organization, Instrumentations & Controls designs the systems that monitor, automate, and protect Valar's facilities and reactor technologies. The team develops reliable control architectures that enable safe and efficient operations.

The Role

You will serve as a senior technical authority for nuclear instrumentation and controls (I&C) systems with a focus on neutron detection, detector signal processing electronics, and radiation monitoring equipment. This role supports reactor design, test operations, and safety‑significant monitoring systems, ensuring compliance with nuclear industry codes and standards. You will lead design efforts, system integration, vendor oversight, safety evaluations, and commissioning activities for reactor protection and radiation monitoring systems.

Key Responsibilities Instrumentation & Detection Systems
  • Lead design, specification, selection, and integration of neutron detectors (e.g., fission chambers, boron‑lined detectors) and associated signal conditioning electronics (wide‑range, source range channels).
  • Design and validate radiation monitoring systems including area monitors, process radiation monitors, stack monitors, and coolant activity systems.
  • Oversee detector placement, shielding design, and response characterization (in‑core and ex‑core).
  • Perform calibration strategies and uncertainty analyses for neutron flux power range, intermediate range, and startup‑range instrumentation.
I&C Engineering
  • Develop and maintain I&C architectures for safety‑related and non‑safety systems in accordance with IEEE 603, IEC 61508, and DOE guidance.
  • Produce and review engineering deliverables: control logic, loop diagrams, instrument datasheets, architecture drawings, control narratives, and functional requirement specifications.
  • Execute I&C system modeling, failure modes analysis, response time calculations, and SIL/Category/Level classification (per IEC/ISA standards).
  • Design interfaces to PLCs, safety‑significant controllers, distributed I/O, and high‑reliability digital platforms.
  • Guide system integration with reactor protection, and radiation monitoring systems.
Testing, Validation, and Qualification
  • Lead Factory Acceptance Tests (FAT), Site Acceptance Tests (SAT), environmental qualification (EQ), and seismic qualification for sensitive instrumentation.
  • Develop calibration, maintenance, and surveillance procedures for neutron and radiation detectors.
  • Support performance testing, flux mapping, channel operability checks, trip setpoint verification, and acceptance criteria development.
Regulatory & Standards Compliance
  • Ensure system designs adhere to nuclear regulatory requirements, including DOE Reg Guides, IEEE standards, IAEA SSG‑39, and ANS/ANS‑related instrumentation standards.
  • Prepare and review technical documentation for licensing, safety basis, and hazard analysis activities.
  • Participate in I&C‑related inputs and support for deterministic safety analyses.
Leadership & Collaboration
  • Mentor junior engineers and provide technical guidance across interdisciplinary teams.
  • Collaborate with reactor physics, thermal‑hydraulics, electrical engineering, and operations teams to meet program requirements.
  • Interface with vendors, labs, and regulatory bodies on detector procurement, radiation monitoring equipment, and safety systems.
Basic Qualifications
  • Bachelor’s degree in Nuclear Engineering, Electrical Engineering, Physics, or related discipline.
  • 8+ years of experience in nuclear I&C, radiation detection, reactor protection, or related areas.
  • Hands‑on experience with:
  • Neutron detectors (fission chambers, B‑10 proportional counters)
  • Signal processing electronics (wide‑range, source range channels)
  • Area/process radiation monitors and environmental monitoring instrumentation
  • Strong understanding of nuclear standards: IEEE 603, ANSI/ANS‑specific radiation monitoring standards
  • Experience with safety classification, SIL analysis, FMEA, and hazard analysis.
  • Ability to lead technical projects and cross‑functional engineering efforts.
Preferred Skills and Experience
  • Master’s degree or Ph.D. in Nuclear Engineering or related field.
  • Experience with HTGR, sodium‑cooled, or research reactor designs.
  • Experience with data acquisition systems, digital I&C platforms, and PLCs (e.g., Allen‑Bradley).
  • Familiarity with radiation transport modeling and detector response simulations.
  • Experience with environmental qualification per IEEE 323 and seismic qualification per IEEE 344.
  • Prior regulatory engagement (NRC, DOE, INL, ORNL, etc.).
  • Experience writing safety basis documents, technical reports, or licensing submittals.
What We Offer
  • Competitive base salary
  • Equity ownership in a rapidly growing advanced energy company
  • Comprehensive medical benefits
  • Unlimited PTO
  • Free daily lunch and dinner provided onsite
  • Generous PPE stipend
  • High‑impact startup environment with significant ownership and autonomy
  • Opportunities for rapid career growth and internal advancement
  • Direct collaboration with experienced operators, engineers, and industry leaders
  • The opportunity to help build and scale transformative energy technology from the ground up
Equal Employment Opportunity Statement

Valar Atomics is an equal opportunity employer.

We consider all qualified applicants without regard to race, color, religion, sex, gender identity, sexual orientation, national origin, age, disability, veteran status, or any other protected status under applicable law.

We are committed to providing a workplace free of discrimination and harassment and will provide reasonable accommodation as required by law.

Applicants must be legally authorized to work in the United States as a U.S. citizen or lawful permanent resident (green card holder).

Salary

$173,000 — $211,000 USD

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