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Physics Computer Science Jobs in Wisconsin (NOW HIRING)

MS in Physics or Geophysics, Electrical Engineering, Computer Science, or Math How to Apply: Please click the Apply Now box to start the application process. Please upload the following documents:

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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 ...

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 ...

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 ...

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

WI · On-site

$184 - $287.50/hr

MS or PhD in Engineering, Mathematics, Physics, Computer Science or equivalent experience. * 8+ years of work‑related experience in data science or software development with knowledge of parallel ...

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WI · On-site

$184 - $287.50/hr

Bachelors degree in Engineering, Mathematics, Physics, Computer Science or equivalent experience. * 8+ years of work-related experience in data science or software development with knowledge of ...

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WI · On-site

$85 - $110/hr

Bachelor of Science degree in chemistry or related field (biology, physics, computer science, zoology); or successfully completed a laboratory technician training program at a community college or ...

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WI · On-site

$9.26/hr

Majoring in Computer Science, Data Science, Computer Engineering, Software Engineering, Statistics, Mathematics, Electrical Engineering, Physics, Programming, Cybersecurity, Cloud Computing, DevOps ...

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Showing results 21-40

Physics Computer Science information

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How much do physics computer science jobs pay per hour?

As of Aug 20, 2026, the average hourly pay for physics computer science in Wisconsin is $20.25, according to ZipRecruiter salary data. Most workers in this role earn between $12.60 and $25.72 per hour, depending on experience, location, and employer.

What is a Physics Computer Science?

A Physics Computer Science job involves applying computational methods to solve physics-related problems. Professionals in this field use programming, data analysis, and simulations to model physical systems, develop algorithms, and analyze complex datasets. These roles are common in research institutions, engineering firms, and technology companies working on areas like quantum computing, scientific simulations, and machine learning. Knowledge of both physics principles and computer science techniques is essential for success in this interdisciplinary field.

What kinds of projects or problems do professionals in Physics Computer Science typically work on?

Professionals in Physics Computer Science often work on projects involving simulation of physical systems, large-scale data analysis from experiments, algorithm development for modeling natural phenomena, or creating custom software for research applications. Their daily responsibilities may include coding, running simulations, analyzing complex datasets, or collaborating with physicists and engineers to solve technical challenges. Many roles are highly collaborative, requiring regular teamwork with multidisciplinary research groups, and offer the opportunity to publish findings or contribute to open-source projects. This environment provides substantial opportunities for learning and professional growth, especially for those interested in fields like scientific research, biotechnology, or advanced engineering.

What are the key skills and qualifications needed to thrive in Physics Computer Science, and why are they important?

To thrive in a Physics Computer Science role, you need a strong understanding of both physics principles and computer science concepts, typically demonstrated through a relevant degree and experience in scientific computing or data analysis. Familiarity with programming languages such as Python, C++, MATLAB, and tools like simulation software or computational frameworks is often required. Analytical thinking, problem-solving ability, and effective teamwork are crucial soft skills in this interdisciplinary field. These competencies enable professionals to bridge the gap between theoretical physics and practical computational solutions, driving innovation and accurate research outcomes.

What can I do with physics and computer science?

A physics computer science graduate can work in fields such as data analysis, simulation, software development, and research, often applying programming languages like Python, C++, or MATLAB. They may find roles in industries like technology, aerospace, finance, or academia, where skills in algorithms, modeling, and computational methods are valued.

What are popular job titles related to Physics Computer Science jobs in Wisconsin?

For Physics Computer Science jobs in Wisconsin, the most frequently searched job titles are:

What job categories do people searching Physics Computer Science jobs in Wisconsin look for?

The top searched job categories for Physics Computer Science jobs in Wisconsin are:

Infographic showing various Physics Computer Science job openings in Wisconsin as of August 2026, with employment types broken down into 1% As Needed, 84% Full Time, 12% Part Time, 2% Contract, and 1% Nights. Highlights an 76% Physical, 2% Hybrid, and 22% Remote job distribution, with an average salary of $42,121 per year, or $20.3 per hour.

Applied Machine Learning Engineer I - Advanced Engineering & Technology

Milwaukee Tool

Brookfield, WI • On-site

Full-time

Medical, Dental, Vision, Retirement

Re-posted 8 days ago


Job description

Job Description:

Applicants must be authorized to work in the U.S.; Sponsorship is not available for this position at this time.

INNOVATE WITHOUT BOUNDARIES!At Milwaukee Tool we firmly believe that our People and our Culture are the secrets to our success - so we give you unlimited access to everything you need to create disruptive new technologies and solutions.

Your Role on the Team:

As a member of the Advanced Engineering and Technology (AET) Team in the Power Tool Accessories business unit you will utilize your expertise in machine learning to solve problems where no established solution exists and deliver first-of-its-kind technologies at Milwaukee Tool. You will support the research, prototyping, and delivery of ML-driven capabilities that accelerate how we design and develop products. You will take ideas from conceptual whiteboard architectures through functional prototypes and support hand-off integrations, delivering technology innovation to product and production engineering teams. This role is an individual contributor position focused on applied execution and technology demonstration, working under shared technical direction.

Why This Role is Different:

  • FullStack ML in a Physical Domain: Work across the ML stack, from machine and sensorlevel data through model deployment on edge hardware or cloud infrastructure.
  • R&D Engineering First: Apply ML across Technology Readiness Levels (TRL 1-7), bringing technology innovation to life beyond model tuning. Domain knowledge in materials, mechanics, signals, or physics is central to this role.
  • Flexible Tools: Select and use frameworks and libraries best suited to the problem, without being constrained to a single ecosystem.
  • Real Impact: Deliver MLdriven capabilities that shorten product development cycles and unlock new engineering possibilities at Milwaukee Tool.

What You'll Do:

  • Research and evaluate emerging AI and ML technologies, advancing them through the Technology Readiness Level (TRL) process from concept through technology integration.
  • Frame engineering problems as ML problems by assessing ML value versus physicsbased or analytical approaches and defining practical success criteria.
  • Design, train, and evaluate ML models to help solve well-scoped applied science and engineering problems, working under the guidance of senior engineers.
  • Build ML workflows spanning data acquisition, feature engineering, model development, and validation using standard scientific and ML libraries (NumPy, Pandas, scikit-learn, PyTorch, TensorFlow).
  • Support algorithm selection and the construction of standard feature sets for engineering problems.
  • Support the deployment of ML models on edge hardware and cloud infrastructure, building and deploying with guidance.
  • Deploy ML enabled systems on edge hardware and cloud infrastructure to support engineering decisions.
  • Prepare technology transfer packages by documenting architecture decisions, known limitations, data requirements, and deployment specifications to enable technology adoption.
  • Conduct experiments and data analysis following established patterns and methods; identify and debug basic model errors.
  • Organize, clean, and prepare data for downstream tasks, and create visualizations that support hypotheses, insights, and conclusions.
  • Collaborate with cross-functional teams to deliver ML solutions aligned with engineering needs, and support the design of data collection and test plans.
  • Research and learn about emerging AI and ML technologies through literature, universities, conferences, and vendor engagement.

What You'll Bring:

  • BS in Mechanical Engineering, Electrical Engineering, Materials Science, Physics, Computer Science, Data Science, or related engineering discipline, with advanced coursework or experience in Machine Learning.
  • Experience applying ML to physical-world engineering or scientific problems (materials, mechanical systems, manufacturing, sensor systems, chemical processes, or similar).
  • Demonstrated experience designing, training, and evaluating ML models on real-world or academic problems.
  • Working knowledge of Python and the scientific computing ecosystem (NumPy, SciPy, Pandas, scikit-learn), with familiarity with SQL.
  • Exposure to at least one deep learning framework (PyTorch or TensorFlow), including training models, and awareness of cloud ML platforms (Azure ML, AWS SageMaker, or equivalent).
  • Strong mathematical foundations in linear algebra, probability, statistics, and optimization, with the ability to reason about loss functions, convergence behavior, and model assumptions.
  • Ability to help formulate well-scoped engineering or scientific tasks into ML problems with clear objectives and evaluation criteria, and awareness of when different model classes should be used.
  • Curiositydriven approach to learning new technologies and methods, with emphasis on applying machine learning to realworld scientific and engineering challenges.
  • Ability to work across a diverse range of data types.
  • Hands-on approach to collaboration and evaluation of technologies.
  • Ability to thrive in an ambiguous and fast-paced environment, where problem definitions evolve.
  • Ability to travel 10% of the time (domestic and international).

Preferred

  • Master's Degree in relevant field.
  • Familiarity with common sensors and interpreting their physical data, and exposure to engineering test lab workflows.
  • Experience with computer vision for engineering applications.
  • Awareness of edge deployment concepts: model optimization and containerized deployment to industrial hardware.
  • Coursework or exposure to design of experiments (DOE), uncertainty quantification, or Bayesian optimization.
  • Familiarity with version control, experiment tracking, and reproducible research practices

Working Environment

  • In-Person, Office Environment, R&D Engineering Lab

Our Perks and Benefits:

  • Robust health, dental and vision insurance plans
  • Generous 401 (K) savings plan
  • Education assistance
  • On-site wellness, fitness center, food, and coffee service
  • And many more, check out our benefits siteHERE.

Milwaukee Tool is an equal opportunity employer.