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Physics Simulation Intern Jobs in Minnesota (NOW HIRING)

Physics Simulation Intern information

What are the key skills and qualifications needed to thrive as a Physics Simulation Intern, and why are they important?

To thrive as a Physics Simulation Intern, you need a solid foundation in physics, mathematics, and programming, usually supported by coursework or a degree in physics, engineering, or computer science. Familiarity with simulation software such as MATLAB, Python libraries (NumPy, SciPy), and tools like COMSOL or ANSYS is often required. Strong problem-solving, analytical thinking, and communication skills help you collaborate effectively and convey complex results. These skills are crucial for accurately modeling physical systems and delivering valuable insights to research or development teams.

What types of projects or tasks can a Physics Simulation Intern expect to work on during their internship?

As a Physics Simulation Intern, you will typically assist in developing, testing, and refining simulation models for physical phenomena, which may include fluid dynamics, particle systems, mechanical interactions, or thermal processes. You'll often work closely with experienced engineers or researchers, contributing to codebases, running simulations, and analyzing results. Collaboration is key, as you'll frequently interact with software developers, physicists, and data analysts to ensure your simulations align with project goals. Expect a mix of independent technical work and team meetings, with opportunities to present your findings and receive feedback.

What does a Physics Simulation Intern do?

A Physics Simulation Intern assists with developing and testing computer simulations that model physical systems, such as fluid dynamics, mechanics, or electromagnetism. They often work under the guidance of experienced engineers or scientists, using programming languages and specialized software to create realistic simulations for research or product development. Their responsibilities may also include analyzing simulation results, debugging code, and helping to improve simulation accuracy. This role provides valuable hands-on experience in computational physics and software development.

What is the difference between Physics Simulation Intern vs Physics Engineer?

AspectPhysics Simulation InternPhysics Engineer
Required CredentialsEnrolled in or recent graduate in physics, engineering, or related fieldBachelor's or master's degree in physics, engineering, or related discipline
Work EnvironmentInternship setting, often in research labs or tech companiesFull-time engineering teams, R&D departments
Employer & Industry UsageTech companies, gaming, simulation firms, research institutionsEngineering firms, aerospace, automotive, gaming industries
Common Search & ComparisonYesYes

The main difference between a Physics Simulation Intern and a Physics Engineer lies in experience level, responsibilities, and employment status. Interns typically focus on learning and supporting projects, while engineers take on more complex tasks and design responsibilities within their teams.

What are the most commonly searched types of Physics Simulation jobs in Minnesota? The most popular types of Physics Simulation jobs in Minnesota are:
What job categories do people searching Physics Simulation Intern jobs in Minnesota look for? The top searched job categories for Physics Simulation Intern jobs in Minnesota are:
What cities in Minnesota are hiring for Physics Simulation Intern jobs? Cities in Minnesota with the most Physics Simulation Intern job openings:
Graduate Engineering Intern - Building Controls Modeling & Simulation

Graduate Engineering Intern - Building Controls Modeling & Simulation

Daikin Applied

Plymouth, MN • On-site

$30 - $33/hr

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 15 days ago


Job description

Join the world's largest HVAC company, named by Forbes as one of America's Best-In-State Employers 2025!
Graduate Engineering Intern - Building Controls Modeling & Simulation - Plymouth, MN - Hybrid
Make your mark at the world's largest HVAC company
Daikin Applied is seeking a highly motivated graduate engineering student for a full-time, 10 month engagement as a Graduate Engineering Intern (Building Controls Modeling & Simulation). This position will support the development of a generic, parameterizable building energy and controls model using Modelica / Dymola, with integration into FMU-based workflows and MATLAB/Simulink environments.
This effort will serve as a proof of concept (PoC) demonstrating that physics-based building models can be used to evaluate transient behavior, robustness, and performance of building automation and control strategies in greater than real time Model in the Loop (MiL) simulations.
The longer-term vision is to evolve this capability into a scalable engineering and decision support tool, potentially leveraging AI and machine learning, to help applications and sales engineers size, tune, and compare optimal building control solutions across a wide range of building types and operating conditions.
Come be a part of an exciting journey at Daikin Applied, where innovation and excellence drive our every endeavor!
Location: Plymouth, MN - Hybrid
Timeline: This Internship opportunity will start approximately May-June 2026 (flexible to align with academic schedules) and has an end date of December 2026
What you will do:
  • Develop a generic, modular, and parameterizable building model in Modelica/Dymola suitable for multiple building archetypes and HVAC/control configurations.
  • Leverage and extend existing Modelica building libraries (e.g., Berkeley National Laboratory / Modelica Buildings Library) where appropriate.
  • Implement and evaluate building automation and control strategies within a dynamic simulation framework.
  • Export and integrate models as FMUs (Functional Mock-up Units) for use in MATLAB/Simulink MiL simulations.
  • Demonstrate transient system behavior, control robustness, and performance under disturbances, parameter variation, and uncertainty.
  • Optimize model structure and solver settings to enable faster-than-real-time simulation performance.
  • Collaborate with engineering stakeholders to define modeling scope, use cases, and success criteria for the PoC.
  • Clearly document model architecture, assumptions, limitations, and validation results.
  • Explore opportunities to incorporate AI/ML techniques (e.g., surrogate modeling, optimization, or design-space exploration) to enhance scalability and usability.

What's in it for you:
  • The ability to make an impact and shape your career with a company that is passionate about growth
  • The support of an organization that believes it is vital to include and engage diverse people, perspectives, and ideas to achieve our best

Minimum Qualifications:
  • Currently enrolled M.S. or Ph.D. student in Mechanical Engineering, Electrical Engineering, Architectural Engineering, Controls Engineering, or a closely related field.
  • Academic or research focus in building automation, building energy modeling, HVAC systems, or advanced control methods.
  • Experience with Modelica and Dymola, or equivalent equation-based physical modeling tools.
  • Strong foundation in dynamic systems, control theory, and numerical simulation.
  • Experience using MATLAB/Simulink for modeling, simulation, or control development.
  • Proficiency in technical programming or scripting (MATLAB, Python, or similar).
  • Ability to work independently on an applied, deliverables-driven project and communicate results clearly.

Preferred Qualifications:
  • Familiarity with the Berkeley National Laboratory Modelica Buildings Modeling Library.
  • Experience with the FMI/FMU standard and multi-tool simulation workflows.
  • Knowledge of building automation systems (BAS) architectures and control strategies.
  • Exposure to MiL, SiL, real-time, or accelerated simulation workflows.
  • Coursework or experience in optimization, reduced-order modeling, or machine learning.
  • Interest in applying AI/ML methods to physics-based engineering models and decision-support tools.

Benefits:
  • Daikin Applied offers the following benefits for this position, subject to applicable eligibility requirements:
  • Multiple medical insurance plan options + dental and vision insurance
  • 401K retirement plan with employer match
  • Paid time off and company paid holidays
  • Paid sick time in accordance with the federal, state and local law
  • Tuition Reimbursement after 6 months of continuous service

The typical hourly rate for this position ranges from $30.00/ hr. to $33.00 / hr. in Minnesota. The range displayed represents the pay range for all positions in the job grade which this position falls. Individual base pay will depend on a wide range of factors including your skills, qualifications, experience, and location.
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If you're looking for an engaging career with growth opportunities in a supportive environment, you'll love a career at Daikin Applied!