1

Computational Design Internship Jobs in Alabama (NOW HIRING)

... computational studies, and lead lab-in-the-loop collaborations with UAB, regional, and national ... Active research areas include protein and antibody design, novel AI approaches to molecular ...

Computational Design Internship information

What is a computational design internship?

A Computational Design Internship is a temporary position where interns apply programming, algorithmic thinking, and design principles to solve complex design challenges. Interns often work with tools like Grasshopper, Dynamo, or scripting languages such as Python to automate workflows, generate design variations, and optimize solutions. This role is commonly found in architecture, engineering, product design, and other fields that integrate computation into the creative process. It provides hands-on experience with parametric modeling, generative design, and data-driven decision-making in real-world projects.

What types of projects or tasks might I work on during a computational design internship?

As a Computational Design Intern, you can expect to work on projects that integrate programming and design, such as developing parametric models, automating design processes, or optimizing architectural or product solutions using computational methods. You may collaborate closely with designers, engineers, and architects, contributing to both conceptual design and technical implementation. Typical responsibilities include scripting algorithms, analyzing design performance, building and testing prototypes, and visualizing data-driven design outcomes. This hands-on experience provides valuable exposure to cutting-edge digital design practices, teamwork, and real-world problem-solving.

What are the key skills and qualifications needed to thrive in the computational design internship position, and why are they important?

To thrive as a Computational Design Intern, a strong background in mathematics, programming (such as Python or C++), and design principles—often supported by coursework or relevant academic projects—is essential. Familiarity with computational design tools like Rhino/Grasshopper, Autodesk Revit, or parametric modeling software is commonly required. Strong problem-solving abilities, adaptability, and effective teamwork and communication skills are also highly valued. These competencies enable interns to contribute creatively and technically to design solutions, making them effective contributors in multidisciplinary environments.

Is computational design an in demand career?

Computational design is a growing field with increasing demand across architecture, engineering, and product design industries. Professionals skilled in programming, parametric modeling, and tools like Rhino, Grasshopper, or Dynamo are sought after for innovative and efficient design solutions.

What are the most commonly searched types of Computational Design jobs in Alabama?

The most popular types of Computational Design jobs in Alabama are:

What are popular job titles related to Computational Design Internship jobs in Alabama?

For Computational Design Internship jobs in Alabama, the most frequently searched job titles are:

Electrical Engineer

Integrated Solutions for Systems, Inc.

Hackleburg, AL • On-site

$100K - $150K/yr

Full-time

Posted 3 days ago

New


Job description

Title: Electrical Engineer – High Power Microwave & Pulsed Power Systems

Position Summary: We are seeking a graduate-level Electrical Engineer to support the development, integration, and testing of advanced high-power microwave (HPM) and pulsed-power systems. The engineer will work as part of a multidisciplinary team developing technologies associated with prime power, pulsed-power generation and conditioning, RF generation, impedance matching, transmission, and antenna systems. Responsibilities will include supporting the design, modeling, fabrication, integration, and laboratory/field testing of electrical and RF hardware, including systems utilizing conventional and explosive-driven pulsed-power technologies. The position will involve hands-on experimental work with high-voltage, high-current, fast-pulse, and high-power RF systems; instrumentation and data acquisition; analysis of test results; and troubleshooting of integrated systems. A graduate degree in Electrical Engineering or a closely related field is preferred, with 0–5 years of relevant professional or research experience. Experience gained through graduate research, laboratory work, internships, or government/DoD research programs involving RF, pulsed power, high-voltage systems, antennas, or electromagnetic systems is highly desirable.

Primary Responsibilities:

  • Support the design, development, integration, and testing of HPM and pulsed-power systems.
  • Develop and evaluate prime-power, pulse-forming, power-conditioning, and impedance-matching approaches for advanced RF systems.
  • Support integration of power sources, pulsed-power hardware, RF generators, transmission components, and antenna systems.
  • Plan and execute laboratory and field testing of high-voltage, high-current, fast-pulse, and high-power RF hardware.
  • Select and configure instrumentation, diagnostics, data-acquisition systems, and test equipment for transient electrical and RF measurements.
  • Analyze experimental data, compare results with analytical or computational predictions, and identify opportunities for system improvement.
  • Troubleshoot electrical, pulsed-power, RF, and system-integration issues during prototype development and testing.
  • Support the design, fabrication, assembly, and modification of experimental hardware and prototype systems.
  • Document test procedures, technical results, engineering analyses, and design recommendations.
  • Work collaboratively with engineers and scientists from multiple disciplines to transition concepts from analysis through prototype demonstration.

Required Qualifications:

  • Master's degree or Ph.D. in Electrical Engineering or a closely related engineering or applied-science discipline.
  • 0–5 years of relevant professional experience
  • Strong understanding of fundamental electrical engineering concepts, including circuits, electromagnetics, transmission lines, and electrical power systems.
  • Ability to perform analytical, numerical, or computational methods.
  • Experience working in a laboratory environment with electrical test equipment and instrumentation.
  • Strong written and verbal communication skills
  • Ability and willingness to perform hands-on engineering work

Desired Skills:

  • Coursework, research, or professional experience in high-power microwave systems, RF/microwave engineering, or pulsed power
  • Knowledge of impedance matching between prime-power sources, pulsed-power systems, RF generators, transmission structures, and antennas.
  • Experience with RF generators, antennas, waveguides, coaxial transmission systems, or electromagnetic structures.
  • Experience measuring high-voltage, high-current, nanosecond- or microsecond-scale transients and high-power RF signals.
  • Experience with electromagnetic, circuit, or Multiphysics modeling
  • Experience programming or scripting in MATLAB, Python, LabVIEW, or similar environments for analysis, modeling, test automation, or data processing.
  • Previous experience supporting DoD, government, university, or national-laboratory research and development programs is desirable.
  • Must be able to acquire and maintain security clearance.

The Ideal Candidate:

  • Is a technically curious, hands-on engineer, that is driven to achieve
  • Has a strong interest in high-power RF, pulsed power, electromagnetics, and advanced electrical systems
  • Desires to work projects from fundamental research to fielded system
  • Strong and concise communicator capable of teaching new grads up briefing general officers and academics
  • Follows systematic and logical progression of research with strong documentation habits
  • Works effectively in a multidisciplinary environment with electrical, mechanical, RF, energetic-materials, and systems engineers and scientists.