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Nuclear Research Scientist Jobs (NOW HIRING)

The Nuclear Company is the fastest growing AI tech-enabled startup in the nuclear and energy space ... Research Foundation: PhD in Computer Science, Machine Learning, Operations Research, Economics ...

The Nuclear Company is the fastest growing AI tech-enabled startup in the nuclear and energy space ... Research Foundation: PhD in Computer Science, Machine Learning, Operations Research, Economics ...

The Division of Applied Social Sciences seeks applications and nominations for up to three (3) ... nuclear research reactor on one campus. Community Information Columbia, Missouri: Columbia offers ...

... Research Scientist to study role of estrogen receptor regulation of innate immunity in the urinary ... and nuclear estrogen receptor signaling in regulation of inflammation in the bladder and kidney ...

Senior Research Scientist

Everett, WA · On-site

$140K - $200K/yr

Nuclear fusion can address the scale of this problem, but for decades, existing fusion approaches ... About the opportunity As a Senior Research Scientist, you'll be at the heart of our mission ...

Research Scientist, Analytical R&D The Role: Entegris is currently seeking an Analytical Research ... Strong expertise in NMR (Nuclear Magnetic Resonance) spectroscopy, along with experience in one or ...

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Nuclear Research Scientist information

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$50.5K

$130.1K

$174K

How much do nuclear research scientist jobs pay per year?

As of Jul 29, 2026, the average yearly pay for nuclear research scientist in the United States is $130,117.00, according to ZipRecruiter salary data. Most workers in this role earn between $107,500.00 and $173,000.00 per year, depending on experience, location, and employer.

How much do nuclear scientists earn?

Nuclear research scientists typically earn between $70,000 and $120,000 annually, depending on experience, education, and location. Advanced degrees and specialized skills in nuclear physics or engineering can lead to higher salaries, especially in government or private research facilities.

How much does a nuclear researcher make?

The average salary for a nuclear research scientist ranges from $70,000 to $120,000 annually, depending on experience, education, and location. Advanced roles often require a master's or doctorate degree and familiarity with nuclear physics, safety protocols, and specialized laboratory equipment.

What are the typical challenges faced by Nuclear Research Scientists in their daily work?

Nuclear Research Scientists often face complex challenges such as adhering to strict safety protocols, troubleshooting sensitive experimental equipment, and solving intricate technical problems related to nuclear reactions and materials. Collaboration across multidisciplinary teams and adapting to rapidly advancing technology require strong communication and learning agility. Additionally, staying current with regulatory standards and ensuring precise data analysis demand attention to detail and a commitment to continuous professional development. These challenges make the role intellectually stimulating and highly impactful in advancing scientific knowledge and applications.

What is a Nuclear Research Scientist job?

A Nuclear Research Scientist studies nuclear reactions, radiation, and atomic processes to develop applications in energy, medicine, and technology. They conduct experiments, analyze data, and improve nuclear safety protocols. Their work may involve nuclear reactors, particle accelerators, or radioactive materials. Scientists in this field contribute to advancements in nuclear energy, radiation therapy, and national security.

What are the key skills and qualifications needed to thrive in the Nuclear Research Scientist position, and why are they important?

To thrive as a Nuclear Research Scientist, you need a strong background in physics, mathematics, and engineering, generally supported by a Ph.D. or master’s degree in nuclear science or a related field. Familiarity with simulation software, radiation detection instruments, and adherence to safety protocols and certifications such as Radiation Worker Training are essential. Excellent analytical thinking, collaboration skills, and clear communication help researchers effectively conduct experiments and share results with multidisciplinary teams. These skills and qualifications are vital to ensure high-quality, safe research and drive innovation in nuclear science.

Are nuclear scientists in demand?

Nuclear scientists are in demand in research institutions, government agencies, and energy companies, especially as nuclear energy and safety remain priorities. Employment opportunities often require advanced degrees and expertise in nuclear physics, radiation safety, or related fields, with job growth driven by energy needs and technological advancements.

Can you make $500,000 as a nuclear engineer?

Nuclear research scientists and engineers typically earn salaries ranging from $70,000 to $150,000 annually, depending on experience, location, and employer. Reaching a $500,000 salary usually requires advanced roles, management positions, or specialized expertise, often supplemented by bonuses or additional responsibilities.
More about Nuclear Research Scientist jobs
What are the most commonly searched types of Nuclear Research Scientist jobs? The most popular types of Nuclear Research Scientist jobs are:
What states have the most Nuclear Research Scientist jobs? States with the most job openings for Nuclear Research Scientist jobs include:
Infographic showing various Nuclear Research Scientist job openings in the United States as of July 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $130,117 per year, or $62.6 per hour.

Research Scientist

The Nuclear Company

Washington, DC • On-site

Other

Medical, Dental, Vision, Retirement, PTO

Re-posted 7 days ago


Job description

The Nuclear Company is the fastest growing AI tech-enabled startup in the nuclear and energy space, pioneering a fleet-scale approach to building the next generation of nuclear reactors. Through our design-once, build-many model, we're accelerating the deployment of safe, reliable, and affordable nuclear energy.

We operate with an AI-first mindset. Every employee is expected to leverage AI, technology, and the Nuclear Operating System (NOS) as integral components of their role to improve the quality, speed, and impact of their work. We expect every team member to continuously identify opportunities to automate workflows, enhance decision-making, improve processes, and contribute to the ongoing evolution of NOS as a strategic operating capability that enables The Nuclear Company to scale with excellence.

We hire people who are driven by purpose, thrive in ambiguity, and are energized by building what has never been built before. Our team combines intellectual curiosity with high agency, embraces candid feedback and continuous learning, and holds themselves and others to exceptional standards. Our values-Transparency, Responsibility, Unity, Scrappiness, and Tenacity-guide how we hire, collaborate, and make decisions every day. They are not words on a wall; they are the standard by which we operate. TRUST is the foundation of our safety culture, fostering intellectual honesty, accountability, and open communication, while our values challenge every team member to execute with urgency, humility, resilience, and an unwavering commitment to our mission.

About the role

Deploying a fleet of nuclear power plants is one of the most ambitious and consequential undertakings in the global energy transition - and The Nuclear Company is doing it. You will join a small but world-class Applied Research and AI team and work on genuinely hard, open research problems at the intersection of AI and large-scale infrastructure: how do you optimize construction across a fleet of simultaneous sites, allocate capital intelligently under deep uncertainty, and keep a distributed critical infrastructure secure? These are not incremental problems - they sit at the frontier of applied AI research, with real operational stakes and the potential to reshape how the energy industry is built.

In this role, you will research novel approaches to these problems, collaborate closely with domain experts and engineering partners, and see your work through to deployed systems that actively inform decisions - across construction, capital planning, security operations, and beyond. You will work alongside some of the top nuclear industry experts in the field, a team of PhD-level researchers, and software engineers dedicated to bringing your models into production - giving you the domain depth, technical support, and collaborative environment to do your best work. This is a place to make major contributions on a small but growing team, develop your skills across a remarkable range of hard problems, and be part of something that genuinely matters.

Responsibilities

Research & Modeling

  • Problem Formulation: Translate complex operational processes into well-defined research problems; identify the right modeling approach for each domain and build the case for why it will work in practice.
  • Simulation & Evaluation: Build simulation environments that faithfully represent our operational processes - construction scheduling, portfolio sequencing, security operations - and can be used to train, evaluate, and iterate on decision-making models.
  • Empirical Research: Design rigorous experiments, maintain reproducible codebases, and communicate results clearly in internal reports and, where the research warrants it, external publications.

Some of the exciting topics you are likely to work on include:

Construction Schedule Optimization

  • Schedule Optimization: Develop models that optimize construction scheduling across multiple concurrent sites - minimizing schedule variance, resource idle time, and cascading delays across a growing fleet of projects.
  • Dynamic Rescheduling: Design approaches that adapt scheduling decisions in real time to disruptions - supply chain delays, labor fluctuations, permitting hold-ups - learning from historical project data to improve over time.

Site Portfolio Optimization

  • Portfolio Decision Systems: Build models that inform how we sequence site development and allocate capital across a growing fleet - accounting for regulatory milestones, capital constraints, and correlated risks across sites.
  • Uncertainty Quantification: Develop approaches that account for uncertainty in key inputs - permitting timelines, cost distributions, grid demand forecasts - to produce portfolio decisions with bounded downside.

Security Operations

  • Security Intelligence: Build models for alert prioritization, anomaly detection, and patrol scheduling that support physical and cyber security operations across a distributed multi-site infrastructure.
  • Human-in-the-Loop Design: Design systems where models and human analysts share decision authority appropriately - communicating uncertainty clearly and degrading safely when operating outside familiar conditions.

Production Deployment & Cross-Functional Collaboration

  • Model Deployment: Collaborate with engineering to define how models are served, monitored, updated, and overridden in production - ensuring deployed systems are reliable, maintainable, and trusted by the teams that use them.
  • Stakeholder Communication: Present research results and system performance to operations, security, and leadership stakeholders; translate findings into actionable operational recommendations.

Experience

  • Research Foundation: PhD in Computer Science, Machine Learning, Operations Research, Economics, Applied Mathematics, or a closely related quantitative field - or MS with a demonstrable track record of independent research output (publications, patents, or equivalent deployed systems).
  • Reinforcement Learning Depth: Hands-on experience implementing and evaluating deep RL algorithms; fluency in policy gradient methods (PPO, TRPO, SAC), value-based approaches (DQN variants, IQL), and the tradeoffs between model-free and model-based RL.
  • Simulation Engineering: Experience building RL training environments; demonstrated ability to translate complex real-world operational processes into tractable MDP formulations with appropriate state/action/reward design.
  • Software Engineering: Production-quality Python; deep learning frameworks (PyTorch); version control, testing, and reproducibility practices expected of research code that ships into production systems.
  • Startup Agility: A demonstrated ability to operate in a fast-moving environment where problem definitions evolve, priorities shift, and hands-on technical contribution - not just research direction - is expected at all levels.

Preferred Experience

  • Offline / Batch RL: IQL, CQL, TD3+BC, Decision Transformer, or similar methods - directly relevant given limited online interaction in our deployment environments.
  • Combinatorial Optimization + ML: Graph neural networks for scheduling or routing (GCN, attention-based), neural combinatorial optimization, or hybrid learned/exact solver approaches.
  • Multi-Agent RL: MADDPG, QMIX, MAPPO, or related methods for multi-site coordination and adversarial security formulations.
  • Stochastic / Robust Optimization: CVaR-constrained RL, distributionally robust MDPs, or chance-constrained programming for decision-making under uncertainty.
  • Production RL Deployment: Experience monitoring and retraining RL systems post-deployment, including distribution shift detection and safe policy update procedures.
  • Domain Exposure: Construction project management, infrastructure operations, energy industry, electricity markets, nuclear power, industrial control systems, or physical/cyber security for critical infrastructure.
  • Game Theory: Familiarity with game-theoretic frameworks - strategic interactions, mechanism design, adversarial dynamics, or equilibrium concepts - provides useful modeling perspective for problems where multiple decision-makers interact, compete, or coordinate.
  • Behavioral Science: An understanding of how people actually make decisions - including cognitive biases, bounded rationality, and responses to uncertainty - is valuable when building systems that work alongside human decision-makers.
  • Research Program Leadership: 2-5 years of post-PhD research experience with demonstrated ownership of a research program: defining scope, setting methodology under uncertainty, and being accountable for both published results and deployed system quality.
  • Publication Track Record: Publications at top-tier venues (NeurIPS, ICML, ICLR, AAMAS, or equivalent); experience driving a team's external research agenda and identifying which contributions warrant external dissemination.
  • Mentorship & Team Development: Experience formally mentoring PhD-level researchers or interns; ability to define research objectives for others and provide substantive technical guidance on experimental design and problem formulation.
  • Cross-Functional Technical Leadership: Experience making research architecture decisions that span research and engineering - model serving, retraining triggers, monitoring design - and communicating technical direction to non-technical senior stakeholders.

Benefits

  • Competitive compensation packages
  • 401k with company match
  • Medical, dental, vision plans
  • Generous vacation policy, plus holidays

Estimated Starting Salary Range
The estimated starting salary range for this role is $150,000 - $173,000 annually less applicable withholdings and deductions, paid on a bi-weekly basis. The actual salary offered may vary based on relevant factors as determined in the Company's discretion, which may include experience, qualifications, tenure, skill set, availability of qualified candidates, geographic location, certifications held, and other criteria deemed pertinent to the particular role. 

EEO Statement
The Nuclear Company is an equal opportunity employer committed to fostering an environment of inclusion in the workplace. We provide equal employment opportunities to all qualified applicants and employees without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability, veteran status, or any other protected characteristic. We prohibit discrimination in all aspects of employment, including hiring, promotion, demotion, transfer, compensation, and termination.

Export Control
Certain positions at The Nuclear Company may involve access to information and technology subject to export controls under U.S. law. Compliance with these export controls may result in The Nuclear Company limiting its consideration of certain applicants.
 
Recruiting Fraud Alert
Your safety is our priority. We want to ensure your job search stays secure. Please note that the team at The Nuclear Company only communicates through official @thenuclearcompany.com email addresses. We will never ask for payments or sensitive financial information at any stage of our recruitment process. For your peace of mind, please verify all openings and submit your applications directly through our official careers page.