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Internship High Performance Computing Engineer Jobs in Wichita, KS

Knowledge of programming, complex codes, Unix operating systems, high-performance computing interfaces, and languages such as Fortran, Visual Basic, C++, C#, or Python is preferred COMPETENCIES

C++ Tutor

Wichita, KS ยท Remote

$18 - $40/hr

Emphasizes understanding memory management principles and connects C++ programming to operating systems, embedded systems, and high-performance computing applications. * Curriculum Awareness ...

This positions us to deliver high-performance ducted systems, air handlers, and next-generation ... Our solutions are engineered to be intuitive, connected, and efficient-supporting both customers ...

This positions us to deliver high-performance ducted systems, air handlers, and next-generation ... Our solutions are engineered to be intuitive, connected, and efficient--supporting both customers ...

Motor Design Engineer

Wichita, KS ยท On-site

$59 - $65/hr

... high-performance solutions that power aerospace, defense, and industrial systems. Your work will ... Create and maintain engineering documentation, including drawings, models, BOMs, calculations, and ...

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... in high-performance, safety-critical applications. This position offers the opportunity to ... Bachelor's degree in Electrical Engineering. * Minimum of 5 years of experience in analog and mixed ...

Software Engineer thrives as part of a high-performance team tasked with finding creative solutions to the most profound data challenges customers face. Job Requirements 8 plus years of Lustre ...

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Internship High Performance Computing Engineer information

See Wichita, KS salary details

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How much do internship high performance computing engineer jobs pay per hour?

As of Aug 6, 2026, the average hourly pay for internship high performance computing engineer in Wichita, KS is $53.77, according to ZipRecruiter salary data. Most workers in this role earn between $44.09 and $60.87 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an internship high performance computing engineer?

To thrive as an Internship High Performance Computing Engineer, you need a solid background in computer science fundamentals, programming (especially in C/C++ or Python), and a familiarity with parallel computing concepts, often supported by coursework or relevant project experience. Experience with Linux environments, HPC clusters, and distributed computing frameworks, as well as tools like MPI, OpenMP, or Slurm, is commonly required. Strong problem-solving skills, attention to detail, and the ability to collaborate effectively within technical teams help interns stand out. These skills ensure you can efficiently support computational research, resolve technical challenges, and contribute meaningfully to HPC projects.

What is the difference between Internship High Performance Computing Engineer vs Internship Data Scientist?

AspectInternship High Performance Computing EngineerInternship Data Scientist
Required SkillsProgramming (C++, Python), parallel computing, HPC systemsStatistics, machine learning, data analysis, Python/R
Work EnvironmentResearch labs, tech companies, academia with focus on HPC systemsTech firms, finance, healthcare, research institutions
Industry UsageHigh-performance computing projects, scientific simulationsData analysis, predictive modeling, business insights

Internship High Performance Computing Engineers focus on developing and optimizing computational systems for large-scale scientific and engineering problems, requiring skills in parallel programming and HPC environments. In contrast, Internship Data Scientists analyze data to extract insights, using statistical and machine learning techniques. Both roles are valuable in tech and research sectors but differ in technical focus and daily tasks.

What is an internship high performance computing engineer?

An Internship High Performance Computing (HPC) Engineer is a student or early-career professional who works with advanced computing systems designed for processing large data sets and complex calculations at high speeds. During the internship, they assist in developing, optimizing, and maintaining HPC infrastructure, software, or applications used in scientific research, engineering, or data analysis. The role often involves learning about parallel computing, cluster management, and performance tuning, while gaining hands-on experience with cutting-edge technologies. Interns work under the supervision of experienced HPC engineers, contributing to projects that advance computational capabilities in various fields.

What types of projects can I expect to work on as an internship high performance computing engineer?

As an Internship High Performance Computing (HPC) Engineer, you will typically contribute to projects involving optimization of scientific applications, performance analysis, and cluster management. Interns often assist with benchmarking software, troubleshooting issues in parallel computing environments, and supporting researchers with technical solutions. You'll likely collaborate closely with senior HPC engineers, system administrators, and academic researchers to ensure efficient use of computing resources. This hands-on experience provides valuable insight into real-world challenges faced in HPC environments and helps build a strong foundation for future roles in the field.
What job categories do people searching Internship High Performance Computing Engineer jobs in Wichita, KS look for? The top searched job categories for Internship High Performance Computing Engineer jobs in Wichita, KS are:
What cities near Wichita, KS are hiring for Internship High Performance Computing Engineer jobs? Cities near Wichita, KS with the most Internship High Performance Computing Engineer job openings:

Engineering Thermodynamics

AXIUS GROUP LLC

Wichita, KS โ€ข On-site

Other

Posted 6 days ago


Job description

SUMMARY

The Professional, Engineering - Thermodynamics is responsible for performing advanced thermodynamic, fluid-flow, heat-transfer, and computational fluid dynamics analyses in support of aircraft design, testing, and performance optimization. This position evaluates complex coupled fluid-heat transfer challenges, supports aircraft right-sizing and design decisions, prepares and documents analysis and test results, and develops engineering practice documentation to support consistent technical execution.

ESSENTIAL FUNCTIONS

  • Perform complex computational analyses involving coupled fluid-heat transfer, pipe network flow, heat transfer, thermodynamics, and aircraft-related thermal challenges
  • Conduct internal flow CFD analysis to support aircraft design, system performance, and component sizing decisions
  • Interpret analysis results within the context of aircraft design requirements, right-sizing, reliability, safety, and performance objectives
  • Prepare engineering test plans for analysis validation, ground testing, flight testing, and related technical evaluations
  • Document analysis results, assumptions, methodologies, ground test findings, flight test findings, and technical recommendations
  • Develop, write, and update engineering practice documents, procedures, and technical standards as required
  • Use CFD, finite element, CAD, and simulation tools to model complex thermal-fluid behavior and support design trade studies
  • Collaborate with engineering, design, testing, and program stakeholders to communicate results and support informed technical decisions
  • Comply with company policies and procedures and perform other duties as assigned

KNOWLEDGE

  • Advanced knowledge of thermodynamics, fluid mechanics, heat transfer, internal flow analysis, and coupled fluid-thermal systems
  • Knowledge of CFD analysis methods, finite element analysis concepts, aircraft system performance, and in-flight icing considerations
  • Working knowledge of Star-CCM+, Ansys Fluent, SpaceClaim, SimCenter3D, and Microsoft Office products, including advanced Excel
  • Familiarity with inlet and outlet design, pipe network flow, test planning, ground testing, and flight test documentation
  • Knowledge of programming, complex codes, Unix operating systems, high-performance computing interfaces, and languages such as Fortran, Visual Basic, C++, C#, or Python is preferred

COMPETENCIES

  • Strong analytical thinking and technical problem-solving
  • Clear and professional written and verbal communication
  • Attention to detail in analysis, documentation, validation, and reporting
  • Ability to translate complex technical results into practical design recommendations
  • Self-motivated, innovative, and collaborative team approach
  • Ability to manage priorities, deadlines, and short-term travel assignments as required

EXPERIENCE AND EDUCATION

  • Master's degree in Mechanical Engineering, Aerospace Engineering, or a related field required
  • Coursework or experience in fluid mechanics, heat transfer, in-flight icing, CFD analysis, and thermal systems required
  • Minimum of five to eight years of experience in internal flow CFD analysis required
  • Experience performing complex CFD and finite element analyses required
  • Experience with inlet/outlet design and analysis, high-performance computing, or programming is 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 test, laboratory, aircraft, or shop environments
  • Short-term travel may be required to support testing, technical reviews, or project assignments
  • 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