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Overnight Nuclear Radiation Protection Jobs (NOW HIRING)

... nuclear, isotope production, laboratory, or industrial environments. * Demonstrated experience implementing and managing radiation protection programs in regulated radiological environments.

... nuclear, isotope production, laboratory, or industrial environments. * Demonstrated experience implementing and managing radiation protection programs in regulated radiological environments.

Radiation Technician

Sunol, CA · On-site

$46.67 - $60.10/hr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

S. in Health Physics, Radiation Protection, Nuclear Technology, or a related field preferred. * 2+ years of experience as a radiation protection technician (RCT/HP Tech) in a nuclear or radiological ...

Radiation Technician

Sunol, CA · On-site

$46.67 - $60.10/hr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

S. in Health Physics, Radiation Protection, Nuclear Technology, or a related field preferred. * 2+ years of experience as a radiation protection technician (RCT/HP Tech) in a nuclear or radiological ...

Showing results 41-60

Overnight Nuclear Radiation Protection information

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$50K

$87.7K

$143.5K

How much do overnight nuclear radiation protection jobs pay per year?

As of Aug 16, 2026, the average yearly pay for overnight nuclear radiation protection in the United States is $87,706.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,500.00 and $100,000.00 per year, depending on experience, location, and employer.

What is the difference between Overnight Nuclear Radiation Protection vs Nuclear Safety Technician?

AspectOvernight Nuclear Radiation ProtectionNuclear Safety Technician
CertificationsRadiation Safety Certification, OSHA trainingRadiation Safety Certification, OSHA training
Work EnvironmentNight shifts in nuclear plants, radiation monitoringDay shifts, safety inspections, equipment testing
Job FocusMonitoring radiation levels, ensuring safety protocols during overnight hoursImplementing safety procedures, maintaining equipment

Overnight Nuclear Radiation Protection specialists focus on monitoring radiation and maintaining safety during night shifts, while Nuclear Safety Technicians typically work during day hours performing inspections and safety checks. Both roles require similar certifications and are essential for nuclear plant safety, but differ mainly in work hours and specific responsibilities.

More about Overnight Nuclear Radiation Protection jobs

What cities are hiring for Overnight Nuclear Radiation Protection jobs?

Cities with the most Overnight Nuclear Radiation Protection job openings:

What are the most commonly searched types of Nuclear Radiation Protection jobs?

The most popular types of Nuclear Radiation Protection jobs are:

What states have the most Overnight Nuclear Radiation Protection jobs?

States with the most job openings for Overnight Nuclear Radiation Protection jobs include:

Infographic showing various Overnight Nuclear Radiation Protection job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 82% Full Time, 12% Part Time, and 5% Contract. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $87,706 per year, or $42.2 per hour.

Radiation Physicist / Radiation Protection Engineer

Essnova Solutions, Inc.

Berkeley, CA • On-site

Full-time

Posted 2 days ago

New


Job description

Radiation Physicist / Radiation Protection Engineer – Advanced Light Source Upgrade (ALS-U)

Location: Lawrence Berkeley National Laboratory (LBNL) – Berkeley, CA
Project: Advanced Light Source Upgrade (ALS-U)
Contract Environment: U.S. Department of Energy (DOE)
Anticipated Period of Performance: Approximately 3 years, beginning upon contract award and continuing through completion of ALS-U Dark Time activities

Position Overview

We are seeking an experienced Radiation Physicist / Radiation Protection Engineer to provide professional radiation physics consulting services in support of the Advanced Light Source Upgrade (ALS-U) Project at Lawrence Berkeley National Laboratory.

The successful candidate will provide technical expertise supporting accelerator, beamline, and associated facility systems throughout design, procurement, fabrication, installation, testing, commissioning, and operational readiness.

This position will perform radiation physics and radiation protection engineering activities including radiation shielding evaluations, radiation transport analyses, ALARA evaluations, radiological hazard assessments, technical and design reviews, field assessments, and radiation safety support.

Key Responsibilities
  • Provide radiation protection engineering expertise for ALS-U systems and facilities.
  • Perform and/or review radiation shielding evaluations.
  • Perform radiation transport analyses.
  • Conduct ALARA (As Low As Reasonably Achievable) evaluations and planning.
  • Participate in radiation protection design reviews.
  • Evaluate radiological hazards associated with accelerator systems and experimental equipment.
  • Provide technical recommendations supporting engineering and design decisions.
  • Perform accelerator radiation safety evaluations throughout the project lifecycle.
  • Support safety-basis documentation.
  • Review accelerator modifications and evaluate proposed changes for potential radiological impacts.
  • Support configuration-management activities affecting radiation safety.
  • Participate in technical reviews of engineering drawings, specifications, design packages, procurement documentation, installation plans, test procedures, operating procedures, and readiness documentation.
  • Perform or support radiological hazard assessments for project work.
  • Evaluate potential worker radiation exposure.
  • Review work-planning documentation and recommend appropriate engineering and administrative controls.
  • Develop, review, and revise radiation protection documentation, including technical reports, engineering calculations, procedures, technical basis documents, engineering memoranda, design-review comments, compliance documentation, and lessons learned.
  • Provide field support during installation, testing, commissioning, and operational readiness activities.
  • Conduct walkdowns and field observations and assist with resolution of technical radiation-protection issues.
  • Evaluate changing field conditions and provide recommendations supporting safe execution of work.
  • Support compliance with applicable federal, DOE, LBNL, and ALS-U requirements.
  • Participate in DOE reviews and independent assessments.
  • Prepare technical presentations, review materials, responses, corrective actions, and supporting documentation.
  • Coordinate with the ALS-U Project Office, Engineering, Quality Assurance, Procurement, EH&S, Systems Engineering, and other project stakeholders.

Requirements

Relevant Technical Experience

Strong candidates should demonstrate professional experience in several of the following areas:

  • Radiation physics
  • Radiation protection engineering
  • Accelerator radiation safety
  • Radiation shielding calculations and evaluations
  • Radiation transport analysis
  • ALARA evaluations and planning
  • Radiological hazard assessments
  • Worker exposure evaluation
  • Accelerator and/or beamline systems
  • Radiation protection design
  • Engineering calculations
  • Technical basis documentation
  • DOE radiation protection requirements
  • Technical and engineering design reviews
  • Operational/readiness reviews
  • Field radiation assessments and measurements
  • Configuration management affecting radiation safety
Ideal Candidate

The ideal candidate combines a strong radiation-physics or radiation-protection engineering background with practical experience supporting complex technical facilities.

Experience within accelerator, national laboratory, DOE, nuclear, high-energy physics, research facility, or similarly regulated environments would be particularly relevant to the ALS-U mission.

The individual should be comfortable moving between analytical engineering work and field execution—from performing shielding and transport analyses and reviewing technical designs to conducting field walkdowns and supporting installation, testing, commissioning, and readiness activities.