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Internship Physics Simulation Jobs in Wichita, KS

Internship Physics Simulation information

What is an internship physics simulation?

Internship Physics Simulation jobs are positions for students or recent graduates to gain practical experience working on the development and application of physics-based simulations. These internships typically involve collaborating with experienced researchers or engineers to model physical systems, design experiments, and analyze data using computational tools. Interns may work in industries such as gaming, engineering, research, or animation, applying physics principles to solve real-world problems or improve simulations. The experience gained helps prepare interns for careers in physics, engineering, or related fields.

What types of projects or tasks can I expect to work on during an internship physics simulation?

As a Physics Simulation intern, you'll typically assist with developing, testing, and refining simulation models under the guidance of experienced engineers or researchers. Tasks may include running computational simulations, analyzing data outputs, validating models against experimental results, and helping to optimize algorithms for efficiency and accuracy. You may also attend team meetings, collaborate with other interns or staff, and present your findings. This hands-on experience not only strengthens your technical skills but also exposes you to real-world problem-solving in a collaborative research or engineering environment.

What are the key skills and qualifications needed to thrive as an internship physics simulation, and why are they important?

To thrive in a Physics Simulation Internship, you generally need a solid background in physics, mathematics, and computer science, often supported by progress toward a relevant degree. Familiarity with simulation software (such as MATLAB, ANSYS, or COMSOL), programming languages like Python or C++, and data analysis tools is typically expected. Strong analytical thinking, problem-solving skills, and the ability to communicate complex ideas effectively are crucial soft skills. These qualifications enable interns to contribute meaningfully to simulation projects, interpret results accurately, and collaborate efficiently within multidisciplinary teams.

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

AspectInternship Physics SimulationPhysics Engineer
Required CredentialsTypically pursuing or recent graduate in physics, engineering, or related fieldBachelor's or master's degree in physics, engineering, or related discipline
Work EnvironmentInternship programs, research labs, or corporate R&D departmentsFull-time employment in R&D, product development, or simulation teams
Industry UsageEntry-level, learning-focused role often part of training programsProfessional role with responsibilities for developing and validating physics-based models

Internship Physics Simulation positions are typically entry-level, designed for students or recent graduates gaining practical experience. Physics Engineers are full-time professionals responsible for creating and applying physics models in real-world projects. While internships focus on learning and skill development, physics engineering involves ongoing project work and expertise application.

Infographic showing various Internship Physics Simulation job openings in Wichita, KS as of June 2026, with employment types broken down into 16% Internship, 70% Full Time, and 14% Part Time. Highlights an 84% In-person, and 16% Remote job distribution.

Engineering Electromagnetic Compatibility

AXIUS GROUP LLC

Wichita, KS

$80K - $104K/yr

Full-time

Re-posted 3 days ago


Job description

SUMMARY

The Professional Sr., Engineering - Electromagnetic Compatibility (EMC) is responsible for leading complex engineering assignments related to electromagnetic compatibility certification, analysis, testing, and sustaining activities. This position supports aircraft safety and compliance with internal and external electromagnetic requirements, including Electromagnetic Interference (EMI), High-Intensity Radiated Fields (HIRF), Low-Intensity Radiated Fields (LIRF), Lightning, and Electrostatic Discharge.

ESSENTIAL FUNCTIONS

  • Lead complex engineering assignments related to EMI, HIRF, LIRF, Lightning, and Electrostatics, including detailed analyses using similarity assessments, simulation, and analytical methods
  • Drive resolution of electromagnetic-related issues to support EMC certification, sustaining activities, production, and in-service aircraft support
  • Define EMC scope of work, project effort, activities, milestones, technical risks, and task priorities for engineering projects
  • Analyze new and modified system or structure designs to assess engineering impacts and propose EMC compliance approaches
  • Review and approve engineering documentation, including test procedures, test reports, analysis reports, and certification compliance documentation
  • Support creation and updates of technical requirements for EMI, HIRF, LIRF, Lightning, and Electrostatics
  • Prepare and review aircraft-level EMI, HIRF, LIRF, Lightning, and Electrostatic Discharge test procedures, oversee testing, and generate test reports
  • Provide EMC guidance to internal teams, external suppliers, partners, clients, and collaborative research and development teams
  • Mentor junior team members and interns, delegate project work, and support knowledge capture, training, and skills development initiatives
  • Represent the EMC team in multidisciplinary meetings and support EMC testing in Canada, the United States, and Europe as needed
  • Identify and implement improvements to engineering processes, technical practices, and EMC best practices

Comply with company policies and procedures and perform other duties as assigned

KNOWLEDGE

  • Advanced knowledge of electromagnetic compatibility, including EMI, HIRF, LIRF, Lightning, Electrostatics, and Electrostatic Discharge requirements
  • Knowledge of aerospace EMC qualification and certification processes for aircraft systems and structures
  • Working knowledge of relevant industry standards, including RTCA/DO-160 and SAE Aerospace Recommended Practices
  • Familiarity with airworthiness regulations and advisory materials from TCCA, FAA, and EASA related to EMC compliance
  • Knowledge of test planning, aircraft-level EMC testing, analysis reports, certification documentation, and compliance verification
  • Experience with electromagnetic simulation tools is preferred

COMPETENCIES

  • Strong engineering leadership and ability to work independently on complex technical assignments
  • Excellent analytical thinking, problem-solving, and technical decision-making skills
  • Ability to identify technical, schedule, and budget risks related to EMC activities
  • Clear and professional written and verbal communication with technical and non-technical audiences
  • Ability to mentor, coach, train, and guide junior team members and interns
  • Collaborative approach with airworthiness, manufacturing, engineering, suppliers, partners, and clients
  • Ability to manage priorities, deadlines, multidisciplinary reviews, and occasional travel requirements

EXPERIENCE AND EDUCATION

  • Degree in Electrical Engineering, Engineering Sciences, Physics, or a related technical discipline required
  • Minimum of eight years of EMC experience, which may include professional and/or academic experience, required
  • Minimum of four years of aerospace systems or structures EMC qualification/certification experience required
  • Experience participating in major project and design reviews and identifying EMC-related technical, schedule, and budget risks required
  • Demonstrated specialist-level expertise in at least one area of EMC, with broad knowledge across additional EMC disciplines required
  • Participation in at least one aircraft development program is preferred
  • French language skills, knowledge of the aviation business, and experience with electromagnetic simulation tools are preferred

WORKING CONDITIONS

  • Prolonged periods of sitting at a desk and working at a computer
  • Repetitive use of the hands, wrists, and arms due to computer usage
  • Work is primarily performed in an office or engineering environment with occasional exposure to laboratory, test, aircraft, or production environments
  • Travel may be required to support EMC testing, technical reviews, and project activities in Canada, the United States, and Europe
  • Reasonable accommodations may be made to enable qualified individuals with disabilities to perform the essential functions of the position

WORK AUTHORIZATION/SECURITY CLEARANCE

  • Must be legally authorized to work in the United States
  • If a security clearance is required:
    • Candidate must be able to obtain and maintain applicable security clearance requirements
    • Successful candidates must be able to obtain required Program Access approval, if applicable