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Particle Physicist Jobs in Ohio (NOW HIRING)

... particle and aggregate structure to properties; and (g) any other comparable area of fundamental engineering science or physics, such as optics, heat transfer, soil mechanics, or electronics. You may ...

$97.01 - $131.25/hr

Providing technical oversight for space weather instrumentation (e.g., particle detectors ... Physics, Electrical Engineering, Space Science, or a related technical discipline. * Minimum 4 ...

Showing results 41-49

Particle Physicist information

See Ohio salary details

$37.6K

$90.1K

$215.3K

How much do particle physicist jobs pay per year?

As of Aug 24, 2026, the average yearly pay for particle physicist in Ohio is $90,130.00, according to ZipRecruiter salary data. Most workers in this role earn between $56,100.00 and $106,500.00 per year, depending on experience, location, and employer.

What is the difference between Particle Physicist vs Nuclear Physicist?

AspectParticle PhysicistNuclear Physicist
Required credentialsPhysics degree, PhD often preferredPhysics or nuclear engineering degree, PhD often preferred
Work environmentResearch labs, universities, large collidersNuclear facilities, research reactors, laboratories
Industry usageHigh-energy physics, fundamental particlesNuclear energy, radiation, nuclear safety

Particle Physicists focus on understanding fundamental particles and forces at high-energy colliders, often working in large research facilities. Nuclear Physicists study atomic nuclei, nuclear reactions, and applications in energy and medicine. While both roles require advanced physics knowledge and similar credentials, their work environments and research focus differ significantly.

Is particle physics a good career?

Particle physics is a specialized field within physics that involves research at universities, laboratories, and research institutions, often requiring advanced degrees such as a Ph.D. It offers opportunities for research, data analysis, and collaboration but can be highly competitive and may involve irregular hours and funding challenges. Overall, it can be a rewarding career for those passionate about fundamental science and discovery.

What does a particle physicist do?

A particle physicist studies the fundamental particles and forces that make up matter and the universe. They conduct experiments using large particle accelerators, analyze data, and develop theories to understand subatomic phenomena. This role often requires strong skills in physics, mathematics, and programming, and may involve working in research laboratories or academic settings.

What jobs can you get with a particle physicist degree?

Particle physicists can pursue careers in research and development, data analysis, and scientific consulting in academia, government laboratories, and private industry. They often work as research scientists, data analysts, or technical consultants, utilizing skills in programming, statistical analysis, and complex problem-solving. Many also transition into roles in engineering, software development, or science communication.

What are popular job titles related to Particle Physicist jobs in Ohio?

For Particle Physicist jobs in Ohio, the most frequently searched job titles are:

What cities in Ohio are hiring for Particle Physicist jobs?

Cities in Ohio with the most Particle Physicist job openings:

Infographic showing various Particle Physicist job openings in Ohio as of August 2026, with employment types broken down into 80% Full Time, 18% Part Time, and 2% Contract. Highlights an 80% Physical, 1% Hybrid, and 19% Remote job distribution, with an average salary of $90,130 per year, or $43.3 per hour.

Material Development Engineer-Dry Friction

Carlisle Industrial Brake & Friction, Inc.

Solon, OH • On-site

Full-time

Re-posted 5 hours ago


Job description

Manage, develop, and help successfully launch new semi-metallic, non-asbestos organic friction materials for Carlisle's extensive customer base. Manages a group of formulators of dry and metallic friction products while still being a formulator.
ESSENTIAL DUTIES and RESPONSIBILITIES:
• Directly and indirectly develop friction materials in transmission and brakes for off highway (mining, construction, agriculture), aircraft, power sports, recreation, heavy truck, and industrial applications. This will include supervising and some pilot/fabricating of test materials manufactured in plant environments.
• Participate in and sometimes lead project/program management of a typical APQP/stage gate/phased launch process for creating new materials (NPD, NPI).
• Responsible for managing multiple testing plans/DVP&R's across a broad range of applications, formulas, processes, customers, and plants.
• Regularly report out on program status, team progress, performance and actions.
• Develop personnel performance and development plans in conjunction with company goals.
• Assist in study of markets, customer applications/usage, new technology and regulatory landscape to create technical roadmaps.
• Generates research and development projects with focus on commercialization and product launch.
• Participates in industry associations globally for materials, testing, brakes, and various end-market industry associations.
• Experience in ceramics, polymers, composites, and other materials and material science systems.
• Position requires a strong theoretical knowledge of coppers, steels, non-ferrous powder metallurgy and friction characteristics associated with brakes, clutches and drive trains.
• Experience with composite mixing, molding/bonding, curing/baking, and finishing of dry friction products is desired.
• Some experience with metallic or powdered metallurgy environments is helpful.
• Experience with sintering/brazing and heat treatment of steels is helpful.
• Have the ability to use concepts and tools of Six Sigma as a means to develop materials to meet customer requirements. These can include Design of Experiments (DOE), DFMEA, and the ability to understand a QFD (Quality Functional Deployment) to establish customer critical requirements.
• Interfaces with sales personnel in and on customer visits when necessary. The object is to understand conditions under which the manufactured parts must operate in the longer term from an applications perspective.
• Comfortable presenting technical data sheets, test results, and failure analysis to both internal and external customers.
• Collaborate on equipment setup, operation and maintenance procedures for laboratory and dynamometers.
• Recommends new and improved test procedures to improve test quality and reduce test time.
• Interfaces with product and manufacturing engineering to introduce and further develop new materials.
• Assist production when difficulties occur in manufacturing parts in the engineer's product area.
• Interfaces with test engineers to develop new test methods and procedures as well as communicating how test data is analyzed and presented.
• Interpreting dynamometer and analytical test lab results.
• Assist quality control and supplier quality to work on production and developmental issues relating to part quality, standards, testing methods, and analysis of defects.
• Support sourcing via helping to identify new suppliers, assisting with supplier audits as necessary, generating standards/specifications for qualifying incoming products.
• Experience in evaluating new raw material sources due to shortage, va/ve, and performance enhancements is highly recommended.
• Assist with the creation and maintenance of ISO/QS documentation and control systems.
Requirements
PREFERRED QUALIFICATIONS:
Education:
• Minimum of a Bachelors Degree, in Chemistry, Materials Science, Metallurgy, Physics, Composite Materials & Structures, Chemical Engineering, or Mechanical Engineering. Masters or Advanced Technical Degree in these fields preferred but not required.
Experience and/or Training:
• Ideally 10-15 years of experience (more preferred) in compounding/formulating, product development, testing, and launch of materials.
• Ideally 3-5 years of experience (more preferred) in managing formulators/compounders.
• Position requires a strong theoretical knowledge of physical properties and materials science relating to the use of such materials in friction material composites.
• Analytical evaluation typically includes DSC, TGA, FTIR, GC Mass spectroscopy, elemental and phase identification, particle size, optical and electron microscopy, particle sizing and compound identification.
• Experience with the use of these materials in friction applications such as brakes, clutches and drivetrains is a plus.
• Practical experience with the use of Six Sigma techniques is desirable but not essential as formal on-site training is available and encouraged.
• A history of successful commercialization of friction materials is preferred.