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Computational Engineering Jobs in Michigan (NOW HIRING)

... computational technologies. Required Skills: Bachelor's Degree (preferably Masters) in electrical / Computer Engineering or similar discipline 7 years experience working in embedded software ...

LimnoTech is a leading environmental engineering and science firm with clients who face water ... Strong analytical and computational abilities (MS Excel, Google Sheets, and Python and/or R)

The role focuses on developing workforce capability in design, simulation, and engineering analysis ... Computational Fluid Dynamics (CFD) * Structural, thermal, and durability analysis * Guide learners ...

Cadence is a market leader in AI and digital twins, pioneering the application of computational software to accelerate innovation in the engineering design of silicon to systems. Founded in 1988, the ...

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Ann Arbor, MI · On-site

$62K - $64K/yr

... Marine Engineering, Scientific Computation, Computer Science, Mathematics, Physics or related areas is required. The successful candidate will have a strong record of computational/theoretical ...

Students graduating in 2025 or later with a Bachelor's degree in Computer Science, Software Engineering, Biomedical Engineering (with computational focus), or related field * Preference for students ...

Students graduating in 2025 or later with a Bachelor's degree in Computer Science, Software Engineering, Biomedical Engineering (with computational focus), or related field * Preference for students ...

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Computational Engineering information

See Michigan salary details

$42.3K

$105.9K

$119.8K

How much do computational engineering jobs pay per year?

As of Jun 10, 2026, the average yearly pay for computational engineering in Michigan is $105,912.00, according to ZipRecruiter salary data. Most workers in this role earn between $97,200.00 and $114,600.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in the Computational Engineering position, and why are they important?

To thrive as a Computational Engineer, a strong background in mathematics, computer science, and engineering fundamentals is essential, generally supported by a degree in computational engineering or a related field. Familiarity with programming languages like Python, MATLAB, or C++, as well as experience using simulation software and high-performance computing systems, is typically required. Analytical thinking, effective communication, and problem-solving abilities are important soft skills for collaboration and innovation. These competencies enable Computational Engineers to develop accurate models, optimize complex systems, and deliver efficient solutions in multidisciplinary environments.

What are some common challenges Computational Engineers face in their work?

Computational Engineers often encounter complex, large-scale problems that require developing accurate and efficient computational models, which can be challenging due to intricacies in physical systems or computational resource limitations. Managing tight project deadlines while ensuring high-quality results and adapting to rapidly evolving technology are also common aspects of the role. Collaboration across multidisciplinary teams—often with scientists, designers, or other engineers—requires strong communication and adaptability. Embracing these challenges can help Computational Engineers expand their expertise and positively impact project outcomes.

What is a Computational Engineering job?

A Computational Engineering job involves using mathematical models, algorithms, and computer simulations to analyze and solve engineering problems. It combines principles from computer science, applied mathematics, and engineering to improve product design, optimize systems, and enhance efficiency in various industries. Professionals in this field develop software tools, conduct simulations, and utilize high-performance computing to solve complex engineering challenges in areas such as aerospace, automotive, energy, and healthcare.

What are the most commonly searched types of Computational Engineering jobs in Michigan? The most popular types of Computational Engineering jobs in Michigan are:
What are popular job titles related to Computational Engineering jobs in Michigan? For Computational Engineering jobs in Michigan, the most frequently searched job titles are:
Infographic showing various Computational Engineering job openings in Michigan as of June 2026, with employment types broken down into 4% Internship, 67% Full Time, 13% Part Time, 4% Temporary, 6% Contract, and 6% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $105,912 per year, or $50.9 per hour.

Full-time

Posted 26 days ago


Job description

Job Description

Within the Body Control Systems group, responsibilities for the Senior Product Engineer include but are not limited to the following:


o Designing product to meet customer structural, packaging and performance requirements

o Designing and developing test set-ups for the testing and evaluation of HMI features (buttons, rotaries, displays, etc.)

o Using DFSS and CAE analysis while developing and maintaining timing of engineering tasks to support program milestones

o Developing DFMEA and coordinating computational analysis of components, coordinating prototype builds and validation process and design validation testing

o Interact with customers to assure product performs appropriately in vehicle tests

o Participate in cross functional teams in APQP process throughout the product development cycle

o Oversight of development projects related to customer concerns and cost reductions

o Performing failure analyses and problem resolutions related to HMI feature concerns

o Drawing conclusions from analyses performed and writing formal reports, preparing and presenting analyses performed

o Creating finite element models translated from CAD models through UG NX or from 2D drawings

o Interact with product engineering staff to propose, evaluate and recommend necessary design changes or other solutions to improve quality or reduce costs.

o Understanding of design, manufacturing, cost and weight constraints necessary.

o Occasional travel to Manufacturing sites and Customer sites as required.


Additional Information
Contact Person: Rachel F