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Remote Finite Element Jobs (NOW HIRING)

Fea Engineer

Arlington, VA ยท Remote

$100 - $125/hr

Description We are seeking a Finite Element Analysis (FEA) Engineer / Modeler to support the ... remote position. Application Deadline This position is anticipated to close on May 27, 2026. About ...

New

Houston,Tx preferred, Open to Remote Responsibilities : * Conduct comprehensive flexibility and ... Finite Element Analysis (FEA) for critical vessel junctions using FE Pipe or Nozzle Pro * Ensure ...

Strong background in simulation techniques (finite element, finite difference/time domain, or ... Classic Reach and Aggregate Remote Capability (ARC). * Finder Family of Systems. * Digital Receiver ...

Strong background in simulation techniques (finite element, finite difference/time domain, or ... Classic Reach and Aggregate Remote Capability (ARC). * Finder Family of Systems. * Digital Receiver ...

Fully remote would be considered on a case-by-case basis. There is an identical senior level ... Experience providing high level reviews of engineer's finite element analysis models, hand and ...

Fully remote would be considered on a case-by-case basis. There is an identical senior level ... Experience providing high level reviews of engineer's finite element analysis models, hand and ...

This is a full-time direct-hire Office Based/Remote assignment with our client. This position ... Lead finite element and fracture mechanics analyses addressing thermo-mechanical behavior, creep ...

Remote * Commitment : 10-40 hours/week What You'll Do * Design Complex Engineering Problems - Craft advanced, multi-step problems across domains like FEA (Finite Element Analysis), heat transfer ...

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Remote Finite Element information

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How much do remote finite element jobs pay per hour?

As of May 28, 2026, the average hourly pay for remote finite element in the United States is $62.51, according to ZipRecruiter salary data. Most workers in this role earn between $51.92 and $69.71 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Remote Finite Element Analyst, and why are they important?

To excel as a Remote Finite Element Analyst, you need a strong background in mechanical or civil engineering, proficiency in finite element analysis (FEA) principles, and typically a relevant degree. Familiarity with FEA software such as ANSYS, Abaqus, or NASTRAN, as well as knowledge of CAD systems, is essential, and certifications in FEA tools can be advantageous. Strong analytical thinking, problem-solving abilities, and effective communication are key soft skills, especially when collaborating remotely with clients or teammates. These skills ensure accurate simulations, efficient project delivery, and successful teamwork in a distributed work environment.

What are some common challenges faced by remote finite element analysts, and how can they be addressed?

Remote finite element analysts often encounter challenges related to communication and collaboration, especially when working on complex simulations that require input from multiple team members. Ensuring access to powerful computing resources and specialized software can also be a concern when working outside of a traditional office environment. To address these challenges, it's important to establish clear communication channels, utilize project management tools, and maintain regular virtual meetings with engineering and design teams. Additionally, many companies provide remote access to high-performance computing clusters and offer dedicated IT support to help analysts work efficiently from home.

What is a Remote Finite Element Engineer?

A Remote Finite Element Engineer is a professional who specializes in using finite element analysis (FEA) software to simulate and analyze the physical behavior of structures or components under various conditions. They work remotely, often collaborating with engineering teams through digital communication tools to solve complex engineering problems in industries like aerospace, automotive, civil, or mechanical engineering. Their main tasks include creating models, running simulations, interpreting results, and recommending design improvements, all while working from a location outside the traditional office environment.

What is the difference between Remote Finite Element vs Remote Mechanical Engineer?

AspectRemote Finite ElementRemote Mechanical Engineer
Required credentialsEngineering degree, finite element analysis certificationsEngineering degree, mechanical engineering certifications
Work environmentPrimarily computer-based, simulation-focusedDesign, testing, and analysis tasks, often in labs or offices
Industry usageEngineering, aerospace, automotive, researchManufacturing, product design, automotive, aerospace

Remote Finite Element specialists focus on simulation and analysis using finite element methods, often working remotely on complex models. Remote Mechanical Engineers handle design, testing, and development tasks, which may involve hands-on work or collaboration. While both roles require engineering credentials, their work environments and industry applications differ, with finite element roles emphasizing simulation expertise and mechanical engineering roles covering broader design responsibilities.

More about Remote Finite Element jobs
What cities are hiring for Remote Finite Element jobs? Cities with the most Remote Finite Element job openings:
What are the most commonly searched types of Finite Element jobs? The most popular types of Finite Element jobs are:
What states have the most Remote Finite Element jobs? States with the most job openings for Remote Finite Element jobs include:

Software Engineer, Finite Element Analysis & Structural Optimization

InfinitForm, Inc

Los Angeles, CA โ€ข On-site, Remote

Full-time

Posted 8 days ago


Job description

Full-time | Hybrid (LA / Orange County) or Remote
About InfinitForm
InfinitForm is building the Physical AI platform for engineering teams.
We help manufacturers generate production-ready designs dramatically faster by bringing simulation, optimization, manufacturability constraints, and editable parametric CAD into one workflow.
Today, engineering teams often spend months moving from concept to validated, manufacturable design. InfinitForm compresses that cycle from months to days - helping teams explore more design options, reduce late-stage rework, and bring better physical products to production faster.
Our platform is designed for aerospace, automotive, defense, robotics, and advanced manufacturing companies operating at the frontier of physical product development.
Backed by leading investors and built by pioneers in computational geometry, simulation, and advanced manufacturing, InfinitForm is defining a new category at the intersection of AI and engineering.
The Role
We're looking for a skilled and driven Finite Element Analysis & Structural Optimization Engineer to join our core engineering team. The seniority level for this role is flexible.
You'll work at the intersection of computational mechanics, simulation, optimization, and AI-native engineering workflows - helping build the core simulation and optimization infrastructure behind InfinitForm's platform.
This is a deeply technical, hands-on role focused on building high-performance systems for structural simulation and generative engineering. Your work will directly shape the algorithms and solvers powering a new generation of engineering software for the physical world.
You'll collaborate closely with researchers, computational engineers, geometry engineers, and product teams working on complex real-world problems across aerospace, automotive, defense, robotics, and industrial manufacturing.
What You'll Do
Simulation & Solver Development
  • Design, implement, and optimize finite element analysis (FEA) solvers and structural simulation pipelines
  • Develop high-performance simulation infrastructure for large-scale engineering optimization workflows
  • Improve solver stability, accuracy, scalability, and runtime performance
  • Build production-quality numerical software in C++ for scientific and engineering computation
  • Contribute to GPU-accelerated simulation and optimization systems
Structural Optimization & Research
  • Develop structural optimization algorithms including topology, shape, and sizing optimization
  • Work on sensitivity analysis, constraint handling, and optimization methodologies
  • Explore new approaches to simulation-aware and manufacturability-aware optimization
  • Contribute to research-oriented problem solving across engineering and computational geometry domains
  • Help bridge optimization outputs into production-ready CAD workflows
Technical Collaboration
  • Collaborate closely with Product, Research, and Application Engineering teams
  • Participate in technical architecture discussions, code reviews, and solver design decisions
  • Document technical findings and communicate complex ideas clearly across the team
  • Help shape the technical direction of InfinitForm's core engineering platform
What Success Looks Like
  • Meaningful improvements in optimization quality, manufacturability, and runtime performance
  • Technical contributions that directly improve customer outcomes and platform capability
  • Strong collaboration between simulation, geometry, and product engineering teams

What You'll Bring
  • MS or PhD in Mechanical Engineering, Aerospace Engineering, Applied Mathematics, Physics, Computational Mechanics, Computer Science, or a related technical field, with a focus on FEA, structural optimization, numerical methods, simulation, or scientific computing
  • Strong foundation in finite element analysis, solid mechanics, and numerical methods
  • Deep understanding of structural optimization techniques including topology optimization and sensitivity analysis
  • Strong C++ experience for scientific, numerical, or high-performance computing applications
  • Strong mathematical and problem-solving skills
  • Ability to work independently on complex technical systems
  • Collaborative mindset and ability to communicate technical ideas clearly
  • Curiosity and excitement for solving difficult engineering and computational problems
Nice to Have
  • Experience with GPU computing (CUDA, OpenCL, or similar)
  • Familiarity with parallel computing or HPC environments
  • Background in computational geometry, CAD/CAE systems, or generative design
  • Experience with large-scale numerical optimization systems
  • Published research or advanced academic background in computational mechanics, simulation, or optimization
  • Experience working on production engineering software platforms

Why InfinitForm
  • Work on foundational technology shaping the future of engineering and manufacturing
  • Solve genuinely difficult computational and optimization problems with real-world impact
  • Work alongside a highly technical team including multiple PhDs across computational geometry, simulation, optimization, AI/ML, and advanced manufacturing
  • Help define a new category at the intersection of AI and engineering
  • Competitive compensation and meaningful equity