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Modeling And Simulation Engineer Jobs in Tempe, AZ

Experience using Python to analyze data, model behaviors, or support operational workflows ... Aerospace Engineering * Experience using AFSIM or other mission analysis simulation tools

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Modeling And Simulation Engineer information

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$37.4K

$118.2K

$182.5K

How much do modeling and simulation engineer jobs pay per year?

As of Sep 2, 2026, the average yearly pay for modeling and simulation engineer in Tempe, AZ is $118,189.00, according to ZipRecruiter salary data. Most workers in this role earn between $88,100.00 and $140,300.00 per year, depending on experience, location, and employer.

What is a modeling and simulation engineer?

Modeling and Simulation Engineers are professionals who use mathematical models and computer simulations to analyze complex systems and predict their behavior. They work in various industries, including aerospace, defense, healthcare, and manufacturing, to improve product design, optimize processes, and support decision-making. Their work often involves creating virtual prototypes, running simulations to test different scenarios, and interpreting results to provide insights for engineering projects. These engineers typically have strong backgrounds in mathematics, physics, and computer science.

What are the key skills and qualifications needed to thrive as a modeling and simulation engineer?

To thrive as a Modeling and Simulation Engineer, you need a strong background in mathematics, physics, computer science, and engineering principles, typically supported by a relevant degree. Proficiency with simulation software (such as MATLAB, Simulink, or ANSYS), programming languages (like Python or C++), and sometimes certifications in modeling tools are highly valued. Analytical thinking, problem-solving, and effective communication are essential soft skills for translating complex systems into accurate models and collaborating with multidisciplinary teams. These skills are crucial for ensuring the accuracy, reliability, and usability of simulations that inform critical engineering decisions.

What are some common challenges a modeling and simulation engineer faces when integrating new models into existing systems?

A common challenge for Modeling and Simulation Engineers is ensuring that new models are compatible with existing simulation frameworks and data sources. This often involves resolving discrepancies in data formats, model fidelity, and simulation timing, as well as validating that the integrated system produces accurate and reliable results. Collaboration with software developers, data analysts, and subject matter experts is essential to troubleshoot integration issues and maintain system performance. Effective communication and thorough documentation are key to overcoming these integration hurdles.

What is the difference between Modeling And Simulation Engineer vs Systems Engineer?

AspectModeling And Simulation EngineerSystems Engineer
CredentialsBachelor's or Master's in Engineering, Computer Science, or related fields; certifications like INCOSEBachelor's or Master's in Engineering, Systems Engineering, or related fields; certifications like INCOSE
Work EnvironmentDesigning and developing simulation models, testing scenarios in labs or software environmentsIntegrating system components, coordinating across engineering teams, often in project offices
Industry UsageDefense, aerospace, automotive, and manufacturing sectorsDefense, aerospace, IT, and complex system development industries

While both roles require engineering backgrounds and similar certifications, Modeling And Simulation Engineers focus on creating and testing simulation models, whereas Systems Engineers oversee the integration and functionality of entire systems. Both collaborate closely but serve different specialized functions within engineering projects.

Are modeling and simulation engineers in demand?

Modeling and simulation engineers are in high demand across industries such as aerospace, defense, automotive, and healthcare due to their expertise in developing complex models and simulations. The role often requires proficiency in programming, simulation software, and systems analysis, with job growth driven by technological advancements and increased reliance on virtual testing and training tools.

How to become a modeling and simulation engineer?

To become a modeling and simulation engineer, typically a bachelor's degree in engineering, computer science, or a related field is required, often complemented by experience with simulation software, programming languages, and systems modeling. Advanced roles may require a master's degree or higher, along with skills in data analysis, systems engineering, and familiarity with tools like MATLAB, Simulink, or C++. Certifications in systems modeling or simulation can enhance job prospects.

What are popular job titles related to Modeling And Simulation Engineer jobs in Tempe, AZ?

For Modeling And Simulation Engineer jobs in Tempe, AZ, the most frequently searched job titles are:

What cities near Tempe, AZ are hiring for Modeling And Simulation Engineer jobs?

Cities near Tempe, AZ with the most Modeling And Simulation Engineer job openings:

Infographic showing various Modeling And Simulation Engineer job openings in Tempe, AZ as of August 2026, with employment types broken down into 91% Full Time, 5% Part Time, and 4% Contract. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $118,189 per year, or $56.8 per hour.

Development Engineer-Simulation Expert

rogersco

Chandler, AZ โ€ข On-site

Full-time

Re-posted 8 days ago


Job description

Summary:

This role is responsible for driving the thermal design and optimization of highperformance computing (HPC) systems using advanced Multiphysics simulations and CADbased design support. The role focuses on thermal and CFD modeling to evaluate new concepts, materials, cooling architectures, and CAD models for highpowerdensity applications. By translating simulation insights into robust design recommendations, this position helps enable nextgeneration HPC solutions. is responsible for assisting in the development of new products and manufacturing processes. Establishing a sound technical basis for these developments, this role will work closely with internal team members to understand material and manufacturing constraints. With a strong detail-orientation, this position will help document development processes, perform experimental processes, and track results.

Essential Functions:
  • Perform advanced Multiphysics simulations with a strong emphasis on thermal and CFD analyses for the thermal design of HPC systems and components.
  • Develop and optimize cooling concepts for highpowerdensity and highperformance computing applications, including cold plates and systemlevel thermal architectures.
  • Evaluate new product concepts, materials, and processes using simulation to guide thermal design decisions.
  • Create CAD models to support simulation setup, design evaluation, and optimization of thermal solutions.
  • Apply simulationbased Design of Experiments (DoE) to assess sensitivities, tradeoffs, and robustness of thermal designs.
  • Support the development and refinement of thermal design rules and operating limits for HPC applications.
  • Collaborate closely with crossfunctional teams (R&D, engineering, sales, marketing) to translate customer and system requirements into effective thermal solutions.
  • Provide simulation expertise during technical discussions with customers to understand performance requirements and application challenges.
  • Monitor relevant technologies, tools, and market trends related to HPC cooling, thermal management, and Multiphysics simulation.
  • Review and evaluate external patents and publications related to thermal design, simulation methods, and cooling technologies.
  • Support development projects through clear technical documentation and regular status updates.ย 
Qualifications:
  • Bachelor's, Master's, or PhD in Mechanical Engineering, Physics, Materials Science, or a related engineering discipline.
  • 3+ years of professional experience in Multiphysics simulation, ideally gained in an industrial environment.
  • Strong handson experience with Multiphysics simulations, with a clear focus on thermal and CFD modeling.
  • Experience applying simulation methods to thermal design of complex systems, preferably in HPC or highpowerdensity environments.
  • Experience using DoE or structured experimentation methods to evaluate and optimize thermal concepts is preferred.
  • Experience creating CAD models and applying strong CAD skills in support of simulationdriven design and optimization.
  • Deep understanding of heat transfer, fluid dynamics, and thermal management principles.
  • Ability to translate simulation results into practical, designrelevant recommendations.
  • Familiarity with HPC system architecture and cooling challenges is highly desirable.
  • Experience in power electronics or related applications is a plus.
  • Knowledge of Six Sigma or structured problemsolving methods is an advantage.