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Applied Physicist Jobs in Wisconsin (NOW HIRING)

... applied learning, critical thinking, and community engagement. Faculty and staff teach and mentor ... Physics Required Qualifications: * Master's Degree in a field appropriate to the needs of the ...

WI ยท On-site

$60 - $80/hr

... Applied Optics, Biophysics, Computational Physics, Gravitational Wave Astronomy, Nanotechnology, Optical Astronomy, Physics Education, Radio Astronomy and Relativistic Astrophysics. Besides ...

Bachelor's Degree in Biomedical Engineering, Electrical Engineering, Physics, Medical Physics, Applied Mathematics or a closely related field * Ability to develop timely and effective solutions for ...

Bachelor's Degree in Biomedical Engineering, Electrical Engineering, Physics, Medical Physics, Applied Mathematics or a closely related field * Ability to develop timely and effective solutions for ...

Space Systems Engineering (Applied Physics) * Computer Science Massachusetts Institute of Technology (MIT) Curriculum Listing: * Naval Construction and Engineering * Nuclear Engineering ...

Space Systems Engineering (Applied Physics) * Computer Science Massachusetts Institute of Technology (MIT) Curriculum Listing: * Naval Construction and Engineering * Nuclear Engineering ...

Showing results 21-40

Applied Physicist information

See Wisconsin salary details

$39.9K

$95.7K

$228.6K

How much do applied physicist jobs pay per year?

As of Sep 8, 2026, the average yearly pay for applied physicist in Wisconsin is $95,691.00, according to ZipRecruiter salary data. Most workers in this role earn between $59,600.00 and $113,000.00 per year, depending on experience, location, and employer.

What is an applied physicist?

Applied physicists are scientists who use principles and theories of physics to solve practical problems and develop new technologies. Unlike theoretical physicists, who focus on understanding the fundamental laws of nature, applied physicists work on translating those principles into real-world applications. They may work in diverse fields such as engineering, materials science, electronics, medical technology, and energy. Their work often involves research, experimentation, and collaboration with engineers and other scientists to innovate and improve products, processes, or instruments.

What are the key skills and qualifications needed to thrive as an applied physicist?

To thrive as an Applied Physicist, you need a strong background in physics, mathematics, and problem-solving, typically supported by at least a bachelor's or master's degree in physics or a related field. Familiarity with laboratory instruments, simulation software (such as MATLAB or COMSOL), and data analysis tools is commonly required, and additional certifications in specialized areas can be advantageous. Strong analytical thinking, creativity, and clear communication are vital soft skills for collaborating with interdisciplinary teams and presenting complex findings. These skills and qualities are crucial for developing practical solutions to real-world problems and advancing innovation in scientific and technological industries.

What are some common interdisciplinary collaborations involved in an applied physicist role?

Applied Physicists frequently work alongside engineers, material scientists, computer scientists, and industry specialists to develop practical solutions based on physical principles. These collaborations often involve joint research projects, product development, and troubleshooting complex technical challenges. Teamwork is essential, as applied physics projects typically require input from multiple fields to move from theoretical concepts to real-world applications, such as developing medical devices, renewable energy technologies, or advanced manufacturing processes.

Is applied physics a good degree?

Applied physics is a valuable degree for careers such as applied physicist, as it provides a strong foundation in physics principles and practical problem-solving skills. Graduates often work in research, development, engineering, or technology sectors, where analytical skills and knowledge of experimental tools are essential.

What do applied physicists do?

Applied physicists use principles of physics to develop practical solutions in fields such as engineering, technology, and research. They design experiments, analyze data, and create new devices or materials, often working with tools like laboratory equipment and computer simulations. Their work supports innovation in industries like electronics, aerospace, and healthcare.

What jobs can you get with applied physicist?

Applied physicists can work in industries such as aerospace, defense, medical imaging, telecommunications, and research and development. They often find roles as research scientists, systems analysts, optical engineers, or technical consultants, utilizing skills in data analysis, modeling, and experimental design. Many positions require a strong understanding of physics principles and proficiency with laboratory tools and simulation software.

What are popular job titles related to Applied Physicist jobs in Wisconsin?

For Applied Physicist jobs in Wisconsin, the most frequently searched job titles are:

What job categories do people searching Applied Physicist jobs in Wisconsin look for?

The top searched job categories for Applied Physicist jobs in Wisconsin are:

Infographic showing various Applied Physicist job openings in Wisconsin as of August 2026, with employment types broken down into 1% As Needed, 75% Full Time, 23% Part Time, and 1% Contract. Highlights an 89% Physical, 2% Hybrid, and 9% Remote job distribution, with an average salary of $95,691 per year, or $46 per hour.

Engineer - Systems Engineering - GE HealthCare

Polluxa, Inc.

Waukesha, WI โ€ข On-site

$100 - $125/hr

Other

Posted yesterday

New


Job description

Job Description SummaryJob DescriptionRoles and Responsibilities
  • Work with a broad cross-functional team
  • Working across functions and team boundaries to implement and optimize system level image quality and dose management features for new products and technology roadmaps
  • Use broad technical expertise and experience to evaluate and tune complex designs focusing on the areas of image quality, calibration and dose management
  • Providing domain expertise to own/lead technical design reviews, investigation of technical risks, as well as providing innovative solutions to achieve optimal system performance
  • Developing methods to quantify subsystem interactions and their effects on system performance and image quality
  • Developing requirements for key system performance parameters as they relate to image quality, system safety, performance and calibration
  • Driving system tradeoff discussions within new product developments by having a full understanding of system architecture and interfaces
  • Investigating customer questions and complaints to provide technical answers and solutions
  • Providing technical leadership for project execution
  • Implementing and teaching engineering principles and standards
  • Driving innovation for competitive technical differentiation
  • Mentoring junior engineers in area of expertise
Required Qualifications
  • Bachelorโ€™s Degree in Biomedical Engineering, Electrical Engineering, Physics, Medical Physics, Applied Mathematics or a closely related field
  • Ability to develop timely and effective solutions for challenging design problems
  • Effective communication skills - ability to present ideas clearly and concisely
  • Ability to pursue tasks to completion
  • Must be legally authorized to work in the United States full-time
  • Must be willing to work in our Waukesha, WI facility full-time
Desired Characteristics
  • 2 years relevant industrial or academic experience
  • Strong understanding of X-ray physics, CT physics, CT imaging and image/signal processing fundamentals
  • Masterโ€™s Degree in Engineering, Biomedical Engineering, Electrical Engineering, Physics, Medical Physics, Applied Mathematics or a closely related field
  • Demonstrated record of innovation in technology development
  • Proficient in the use of software tools for analysis, modeling and simulations
  • Experience with CT specific device operation and troubleshooting issues
  • Excellent oral and written communication skills
  • Experience with research collaborations
  • Self-starter, energizing, results oriented, and able to multi-task
  • Demonstrated problem solving ability and results orientation
  • Demonstrated ability to work in a collaborative, matrixed, and customer focused environment
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