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Full Time Discrete Element Method Jobs (NOW HIRING)

Infor Consulting Services Employment Type: Full Time Location: US-Remote Description Infor is ... Experience working with software development methodologies, including Agile and DevOps. * ...

Senior Software Engineer, Geometry

San Mateo, CA · On-site

$139K - $183K/yr

Tackle discrete math and computational geometry challenges, applying linear algebra, numerical ... element methods). * Mathematically Minded: You have a passion for solving complex geometry problems ...

Propulsion Engineer III

Madison, WI · On-site

$100K - $138K/yr

Determine and develop approaches to solutions while serving as the owner of discrete technical ... Experience with finite element analysis (FEA) tools such as Abaqus or NASTRAN. * Knowledge of ...

Propulsion Engineer III

Madison, WI · On-site

$100K - $138K/yr

Determine and develop approaches to solutions while serving as the owner of discrete technical ... Experience with finite element analysis (FEA) tools such as Abaqus or NASTRAN. * Knowledge of ...

Understanding of the finite element method and how to perform basic FEA. * Ability to work in a ... Work full time in assigned office Required Qualifications * Bachelor's degree in Structural ...

Understanding of the finite element method and how to perform basic FEA. * Ability to work in a ... Work full time in assigned office Qualifications Required Qualifications * Bachelor's degree in ...

... of Finite Element Method (FEM) software such as COMSOL or ANSYS is a plus.Knowledge of how to ... Full-time, onsite at our Santa Barbara office from Monday to FridaySonatech is an Equal ...

Showing results 41-60

Full Time Discrete Element Method information

What is a full time discrete element method (DEM) job?

A Full Time Discrete Element Method (DEM) job typically involves using computational techniques to model and analyze the behavior of systems composed of discrete particles, such as grains, powders, or rocks. Professionals in this field work on developing, implementing, and running DEM simulations to solve engineering problems in industries like mining, pharmaceuticals, agriculture, and civil engineering. The role may require knowledge of physics, material science, and programming, as well as experience with DEM software. Tasks could include designing experiments, interpreting simulation results, and collaborating with multidisciplinary teams. Full-time positions often require at least a bachelor's or master's degree in engineering, physics, or a related field.

What are some common challenges faced by professionals working with the discrete element method (DEM) in a full-time role?

Professionals working full-time with the Discrete Element Method often encounter challenges such as handling large datasets and computational intensity, which can require advanced simulation hardware and efficient coding practices. Additionally, translating real-world material behaviors into accurate DEM models can be complex and time-consuming, especially when calibrating model parameters. Collaboration with multidisciplinary teams—such as mechanical engineers, material scientists, and software developers—is essential to ensure the simulations align with both theoretical and practical project goals. Staying updated with the latest DEM software and best practices is also crucial for success in this field.

What are the key skills and qualifications needed to thrive as a discrete element method (DEM) engineer, and why are they important?

To thrive as a Discrete Element Method (DEM) Engineer, you need a strong background in mechanical or civil engineering, applied mathematics, and computational modeling, usually supported by a relevant engineering degree. Familiarity with DEM simulation software (such as EDEM or LIGGGHTS), programming languages like Python or C++, and experience with high-performance computing are typically required. Problem-solving, analytical thinking, and effective communication are essential soft skills for interpreting results and collaborating with multidisciplinary teams. These abilities ensure accurate simulations, innovative solutions, and successful project outcomes in complex engineering environments.

What is the difference between Full Time Discrete Element Method vs Full Time Finite Element Analyst?

AspectFull Time Discrete Element MethodFull Time Finite Element Analyst
CredentialsEngineering degrees, certifications in DEM softwareEngineering degrees, certifications in FEA software
Work EnvironmentResearch labs, manufacturing, simulation firmsEngineering firms, aerospace, automotive industries
Industry UsageMining, pharmaceuticals, granular material analysisStructural analysis, stress testing, product design

Both roles involve advanced simulation skills, but Discrete Element Method specialists focus on particle-based modeling, while Finite Element Analysts work on structural and continuum mechanics simulations. The choice depends on the industry and specific project needs.

More about Full Time Discrete Element Method jobs

What are the most commonly searched types of Discrete Element Method jobs?

The most popular types of Discrete Element Method jobs are:

What states have the most Full Time Discrete Element Method jobs?

States with the most job openings for Full Time Discrete Element Method jobs include:

What job categories do people searching Full Time Discrete Element Method jobs look for?

The top searched job categories for Full Time Discrete Element Method jobs are:

Infographic showing various Full Time Discrete Element Method job openings in the United States as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.

Senior R&D Electromagnetic Analysis Engineer

Commonwealth Fusion Systems

Devens, MA • On-site

$110K - $185K/yr

Full-time

Re-posted 19 days ago


Job description

About Commonwealth Fusion Systems: 
 
Commonwealth Fusion Systems is on a mission to deliver the urgent transition to fusion energy.
 
Combining decades of research, top talent, and new technologies, we’re designing and building commercially viable fusion power plants. And we're working with policymakers, suppliers, and many others to build the energy industry of the future.
 
We’re in the best position to make it happen. Since 2018, we’ve raised $4 billion of capital, making us the largest and leading fusion company in the world.
 
Now we’re looking for more thinkers, doers, builders, and makers to join us. People who’ll bring new perspectives, solve tough problems, and thrive as part of a team. 
 
If that’s you and this role fits, we want to hear from you.

Join the power movement as a Senior R&D Electromagnetic Analysis Engineer
 
The R&D team’s mission at CFS is to vet potential technical solutions in order to guide the overall SPARC subsystem design, and plan for the technology needs of future fusion power plants and spin-off projects.  The Electromagnetics Analysis Engineer within the R&D team will perform electromagnetic (EM) analysis of superconducting magnets using finite element and other methods. This analysis includes the non-linear, anisotropic behavior of high-temperature superconductors (HTS) in both insulated and non-insulated magnet systems. Incorporating complex multi-physics (heat transfer, fluids, mechanics, etc) system behavior into simplified, elegant network circuit and/or FEA models are also crucial to modelling the multi-physics behavior of superconducting magnets. The Electromagnetics Analysis Engineer will also work with a team of experimentalists and engineers to validate simulations against experimental data. Familiarity with both commercial finite element analysis software packages and developing custom in-house code in python and extensions of commercial packages is necessary.
 
This work is conducted within a multi-disciplinary team of physicists and engineers. Participation and clear, concise communication in design and test activities is necessary to both inform design decisions and correlate models to experiment.
What you'll do:
  • Perform electromagnetic analysis of superconducting magnets and inform design decisions
  • Work with experimental teams on instrumentation, measurement, and correlation of experiment to analysis
  • Develop new numerical tools, as needed, to facilitate multi-objective design optimization of high-temperature superconducting magnets
  • Perform non-linear, highly-anisotropic E&M simulations in complicated geometries
  • Identify enabling technologies in the modeling and construction of high-temperature superconducting magnets
  • Prepare reports and presentations as necessary
  • Mentor and guide new members of the team in magnet design and analysis as necessary
What we’re looking for:
  • At least a Bachelor’s Degree in electrical engineering or another relevant field with an EM background (physics, mechanical engineering, etc.)
  • 7+ years of experience modeling electromagnetics using finite element method
  • A strong background and theoretical understanding of computational electromagnetic analysis
  • Experience modeling non-linear physics
  • Experience with commercial finite element tools. COMSOL preferred
  • The ability to customize commercial finite element tools or develop new in-house codes in modern programming languages such Python/MATLAB/C/C++
  • Able to quickly grasp experimental setups and analyze data to validate models
  • An ability to clearly express and critique ideas
  • Ability to innovate towards solutions to complex problems
  • An emphasis on elegance and simplicity over complexity
  • A drive towards commercially viable solutions
  • A history of thriving in fast-paced, dynamic environments
  • Values that align with our company’s values of integrity, execution, impact, and self-critique
Bonus points for:
  • Multi-physics FEM modeling with electromagnetics, heat transfer, mechanics, fluids, structures, etc.
  • Experience working with superconducting non-linear physics
  • Developing equivalent thermal and electrical circuit models
  • Familiarity with agentic coding tools and best practices
Must-have requirements:
  • Perform activities such as sitting for extended periods of time
  • Dedication to safety to mitigate industrial hazards that may include heat, cold, noise, fumes, strong magnets, lead (Pb), high voltage, high current, pressure systems, and cryogenics
 
Salary range for this full-time position + equity + benefitsThe actual salary will depend on level, location, qualifications, and experience. The range displayed on each job posting reflects new hire salaries for the position across all US locations. Benefits include:
•  Competitive compensation with equity
•  13 Company-wide Holidays
•  Flexible vacation days
•  10 sick days
•  Generous parental leave policy
•  Health, dental, and vision insurance
•  401(k) with employer matching
•  Professional growth opportunities
•  Team-building activities
#LI-Onsite

At CFS, we excel in fast-paced environments, driven by our values of integrity, execution, impact, and self-critique. As we grow, we’re eager to bring on mission-driven folks who offer diverse perspectives and fresh ways to tackle challenges.
 
We value diversity deeply and are proud to be an equal opportunity employer by choice. We consider all qualified applicants equally, regardless of race, color, national origin, ancestry, citizenship status, protected veteran status, religion, physical or mental disability, marital status, sex, sexual orientation, gender identity or expression, age, or any other basis protected by law.
 
This role requires compliance with U.S. laws concerning the export of controlled or protected technologies or information (collectively, “Export Control Laws"). Any offer of employment will be contingent on the need for compliance with such Export Control Laws.