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Simulation Software Engineer Internship Jobs in Tucson, AZ

Deliver technical guidance and recommendations to engineering team, helping them understand and drive innovation and advanced protype concepts into automation, modeling and simulation, software ...

Sr. Power Electronics Engineer

Tucson, AZ

$101K - $125K/yr

Experience with simulation software for circuit analysis or modeling. Qualifications We Value * Degree in Electrical Engineering. * Experience leading Root-Cause Corrective Action investigations.

Sr. Power Electronics Engineer

Tucson, AZ

$101K - $125K/yr

Experience with simulation software for circuit analysis or modeling. Qualifications We Value * Degree in Electrical Engineering. * Experience leading Root-Cause Corrective Action investigations.

Showing results 41-60

Simulation Software Engineer Internship information

See Tucson, AZ salary details

$12

$24

$36

How much do simulation software engineer internship jobs pay per hour?

As of Aug 7, 2026, the average hourly pay for simulation software engineer internship in Tucson, AZ is $24.03, according to ZipRecruiter salary data. Most workers in this role earn between $19.57 and $27.26 per hour, depending on experience, location, and employer.

What is the difference between Simulation Software Engineer Internship vs Simulation Software Engineer?

AspectSimulation Software Engineer InternshipSimulation Software Engineer
Required CredentialsCurrently pursuing or recently completed a relevant degree (e.g., Computer Science, Engineering)Bachelor's or Master's degree in a related field, with some roles preferring experience or certifications
Work EnvironmentInternship programs, often in corporate R&D or product teams, with mentorshipFull-time professional role in engineering teams, often in R&D or product development
Employer & Industry UsageUsed by tech companies, automotive, aerospace, and simulation firms for training and developmentEmployed in similar industries, focusing on developing and maintaining simulation software products

The main difference is that a Simulation Software Engineer Internship is a temporary, learning-focused position for students or recent graduates, while a Simulation Software Engineer is a full-time professional role requiring more experience and responsibility in developing simulation software.

What does a simulation software engineer intern do?

A Simulation Software Engineer Intern assists in developing and testing software models that simulate real-world processes or systems. They typically work with experienced engineers to write code, debug simulations, and analyze results to ensure accuracy and efficiency. Interns may use tools such as MATLAB, Simulink, or Python, and contribute to projects in fields like automotive, aerospace, or robotics. The role helps interns gain hands-on experience in software engineering and simulation technologies, preparing them for future careers in the industry.

What are the key skills and qualifications needed to thrive as a simulation software engineer intern, and why are they important?

To thrive as a Simulation Software Engineer Intern, you need a strong foundation in programming languages (such as C++, Python, or MATLAB), mathematical modeling, and computer science principles, typically supported by ongoing or completed coursework in engineering or related fields. Familiarity with simulation tools (like Simulink or Modelica), version control systems (such as Git), and possibly exposure to CAD or physics engines is often required. Problem-solving abilities, attention to detail, teamwork, and effective communication are important soft skills for this role. These skills and qualities are crucial for accurately developing, testing, and refining simulation models within collaborative engineering environments.

What types of projects or tasks can I expect to work on during a simulation software engineer internship?

As a Simulation Software Engineer Intern, you will typically contribute to developing, testing, and refining simulation models used for validating real-world systems or products. Your daily tasks may include coding simulation algorithms, analyzing performance data, debugging issues, and collaborating with engineers from other disciplines such as hardware, robotics, or product design. Interns often work closely with mentors, attend team meetings, and may have opportunities to present findings or improvements. This role provides hands-on experience with industry-standard simulation tools and fosters valuable teamwork and technical skills.
What cities near Tucson, AZ are hiring for Simulation Software Engineer Internship jobs? Cities near Tucson, AZ with the most Simulation Software Engineer Internship job openings:

Controls Software Architect, Steward Observatory

University of Arizona

Tucson, AZ • On-site

Full-time

Medical, Dental, Vision, Life, PTO

Posted 9 days ago


University Of Arizona rating

7.2

Company rating: 7.2 out of 10

Based on 67 frontline employees who took The Breakroom Quiz

384th of 616 rated colleges and universities


Job description

Controls Software Architect, Steward Observatory
Posting Number
req26647
Department
Steward Observatory
Department Website Link
https://astro.arizona.edu/
Location
Tucson Campus
Address
Tucson, AZ USA
Position Highlights
The University of Arizona's Steward Observatory invites you to apply to the role of Controls Software Architect. The successful candidate will provide senior engineering data products in the form of systems architecture and controls analysis, simulation, modeling, and requirements management, to Space Telescope Programs. They will be a single point contributor who can independently work to develop simulations and software to meet the needs of space development for different spacecraft and bus packages and assess impacts to instrumentation to maximize data integrity.
Steward Observatory is both a century-old observatory on the University of Arizona campus and one of the University's oldest research units. Founded in 1918, the Observatory brings together students, staff, faculty, engineers, and technicians to explore the universe and share discoveries through world-class research, education, and outreach. With more than 180 professionals supporting advanced facilities, laboratories, and observatories, Steward Observatory offers a collaborative environment where technical expertise plays a critical role in advancing ground- and space-based astronomy.
Outstanding U of A benefits include health, dental, and vision insurance plans; life insurance and disability programs; paid vacation, sick leave, and holidays; U of A/ASU/NAU tuition reduction for the employee and qualified family members; retirement plans; access to U of A recreation and cultural activities; and more!
The University of Arizona has been recognized for our innovative work-life programs. For more information about working at the University of Arizona and relocations services, please click here.
Duties & Responsibilities
Lead System Modeling, Simulation, & Performance Analysis:
  • Lead the architecture, design, development, validation, and continuous improvement of advanced software models, simulations, and control system frameworks supporting space telescope pointing, guidance, navigation, and control (GNC) systems.
  • Develop high-fidelity system and subsystem models using first-principles analysis, physics-based methods, and empirical data to evaluate system behavior, predict performance, and support mission-critical engineering decisions.
  • Lead development of integrated control loop simulators and digital engineering environments to assess spacecraft performance, including jitter, line-of-sight stability, structural dynamics, image quality, and other mission-level performance metrics.
  • Define model assumptions, verification and validation strategies, data quality requirements, and model maturation plans throughout the system life cycle.
  • Present complex modeling approaches, simulation results, technical recommendations, and performance assessments to program leadership, customers, sponsors, and multidisciplinary engineering teams.

Lead System Architecture & Requirements Engineering:
  • Provide technical leadership in software-enabled systems architecture development and performance analysis for advanced spaceflight systems.
  • Lead the development, decomposition, and verification of system requirements related to spacecraft control systems, image quality, stability, and mission performance.
  • Develop software tools and analytical methods to evaluate architectural trade studies, system interfaces, and performance allocations while ensuring traceability between requirements, models, and verification activities.
  • Collaborate with multidisciplinary engineering teams to integrate software models with mechanical, electrical, optical, and systems engineering analyses, influencing design decisions across multiple programs.

Technical Leadership, Functional Excellence, & Engineering Standards:
  • Serve as a senior technical leader within the Space Telescope Program (STP) Functional Team by establishing software engineering best practices, modeling standards, simulation methodologies, and peer review processes across multiple projects.
  • Lead technical reviews of architecture, software, controls, and simulation products to ensure engineering rigor, quality, and consistency.
  • Mentor engineers and researchers in advanced modeling techniques, software development practices, and systems engineering methodologies.
  • Contribute to organizational design guides, engineering standards, reusable software frameworks, and lessons learned that advance institutional capabilities and support long-term strategic objectives.
  • Represent the organization as a recognized subject matter expert in software-enabled modeling, simulation, and control systems for complex aerospace and scientific instrumentation programs.

This job posting reflects the general nature and level of work expected of the selected candidate(s). It is not intended to be an exhaustive list of all duties and responsibilities. The institution reserves the right to amend or update this description as organizational priorities and institutional needs evolve.
Minimum Qualifications
  • Master's degree in Science, or Engineering
  • 10 years of control software experience in parametric simulation of controls systems and/or performance assessment of complex space/defense systems

Preferred Qualifications
FLSA
Exempt
Full Time/Part Time
Full Time
Number of Hours Worked per Week
40
Job FTE
1.0
Work Calendar
Fiscal
Job Category
Research
Benefits Eligible
Yes - Full Benefits
Rate of Pay
$139,102 - $180,833
Compensation Type
salary at 1.0 full-time equivalency (FTE)
Grade
14
Compensation Guidance
The Rate of Pay Field represents the University of Arizona's good faith and reasonable estimate of the range of possible compensation at the time of posting. The University considers several factors when extending an offer, including but not limited to, the role and associated responsibilities, a candidate's work experience, education/training, key skills, and internal equity.
The Grade Range represent a full range of career compensation growth over time. The university offers compensation growth opportunities within its career architecture. To learn more about compensation, please review our Applicant Compensation Guide and our Total Rewards Calculator.
Career Stream and Level
PC5
Job Family
Research Engineering
Job Function
Research
Type of criminal background check required:
Name-based criminal background check (non-security sensitive)
Number of Vacancies
1
Target Hire Date
8/10/2026
Expected End Date
Contact Information for Candidates
Catherine Merrill
Director, Space Telescope Programs
cdmerrill@arizona.edu
Open Date
7/29/2026
Open Until Filled
Yes
Documents Needed to Apply
Resume
Special Instructions to Applicant
Notice of Availability of the Annual Security and Fire Safety Report
In compliance with the Jeanne Clery Campus Safety Act (Clery Act), each year the University of Arizona releases an Annual Security Report (ASR) for each of the University's campuses.Thesereports disclose information including Clery crime statistics for the previous three calendar years and policies, procedures, and programs the University uses to keep students and employees safe, including how to report crimes or other emergencies and resources for crime victims. As a campus with residential housing facilities, the Main Campus ASR also includes a combined Annual Fire Safety report with information on fire statistics and fire safety systems, policies, and procedures.
Paper copies of the Reports can be obtained by contacting the University Compliance Office at cleryact@arizona.edu.

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