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Computational Design Jobs in Ohio (NOW HIRING)

Flavors Science & Technology Computational Sciences Lead Responsibilities * Design and implement cheminformatics algorithms and workflows to accelerate flavor ingredient discovery across aroma and ...

Flavors Science & Technology Computational Sciences Lead Responsibilities * Design and implement cheminformatics algorithms and workflows to accelerate flavor ingredient discovery across aroma and ...

Engineering Data Architect

Dayton, OH · On-site

$110 - $135/hr

Establish interfaces between test data, finite element models, computational workflows, and engineering applications. * Design digital threads that preserve relationships between requirements ...

New

Establish interfaces between test data, finite element models, computational workflows, and engineering applications. * Design digital threads that preserve relationships between requirements ...

Engineering Data Architect

Dayton, OH · On-site

$110 - $135/hr

Establish interfaces between test data, finite element models, computational workflows, and engineering applications. * Design digital threads that preserve relationships between requirements ...

Engineering Data Architect

Dayton, OH · On-site

$120 - $180/hr

Establish interfaces between test data, finite element models, computational workflows, and engineering applications. * Design digital threads that preserve relationships between requirements ...

Showing results 41-60

Computational Design information

See Ohio salary details

$38

$52

$70

How much do computational design jobs pay per hour?

As of Sep 4, 2026, the average hourly pay for computational design in Ohio is $52.22, according to ZipRecruiter salary data. Most workers in this role earn between $44.57 and $69.95 per hour, depending on experience, location, and employer.

What is a computational design?

A Computational Design job involves using algorithms, programming, and digital tools to create and optimize designs across various disciplines such as architecture, engineering, and product design. Professionals in this field leverage parametric modeling, generative design, and automation to enhance efficiency and innovation. They often work with software like Grasshopper, Dynamo, Python, or machine learning frameworks to solve complex design challenges. This role blends creativity with technical expertise to develop smarter, data-driven design solutions.

What does a typical day look like for someone working in computational design?

A typical day in Computational Design involves using specialized software to develop, test, and refine design algorithms that solve spatial or structural problems. You might collaborate with architects, engineers, or product designers to create digital prototypes, analyze performance data, and implement feedback for iterative improvement. Much of the work is project-based and requires frequent teamwork and meetings to align goals and ensure smooth integration of computational solutions into larger projects. Expect a dynamic environment where problem-solving and creativity are highly valued, and learning opportunities are ongoing as you stay up-to-date with new tools and methods.

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

To thrive in Computational Design, a strong background in mathematics, programming, and design principles is essential, often supported by a degree in architecture, engineering, computer science, or a related field. Proficiency in software tools such as Rhino, Grasshopper, Python, MATLAB, and CAD platforms is typically required, along with relevant certifications in parametric or generative design if available. Strong problem-solving skills, creative thinking, and the ability to collaborate across multidisciplinary teams help candidates excel in this position. Mastery of these skills enables the creation of innovative, efficient solutions for complex design challenges and facilitates effective teamwork within fast-moving project environments.

Is computational design an in demand career?

Computational design is a growing field with increasing demand across architecture, engineering, and product development industries. Professionals skilled in programming, parametric modeling, and software like Rhino, Grasshopper, or Dynamo are sought after as companies adopt digital fabrication and automation technologies.

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

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

What job categories do people searching Computational Design jobs in Ohio look for?

The top searched job categories for Computational Design jobs in Ohio are:

Infographic showing various Computational Design job openings in Ohio as of August 2026, with employment types broken down into 87% Full Time, 8% Part Time, 1% Temporary, and 4% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $108,617 per year, or $52.2 per hour.

Development Engineer (AI-Augmented Scientific Modeling)

First Solar

Perrysburg, OH • On-site

Full-time

Re-posted 22 hours ago


First Solar rating

6.6

Company rating: 6.6 out of 10

Based on 77 frontline employees who took The Breakroom Quiz

460th of 545 rated manufacturers


Job description


First Solar reserves the right to offer you a role most applicable to your experience and skillset.
Basic Job Functions:
First Solar is seeking a self-driven computational scientist, scientific modeling engineer, applied physicist, or AI-augmented research engineer to help accelerate scientific learning and R&D decision-making. The role combines physical reasoning, computation, data analysis, scientific software, and modern AI-assisted workflows to turn complex observations into practical insight.
This role sits at the intersection of scientific modeling, AI-assisted research workflows, data science, simulation, uncertainty analysis, and engineering decision support. The candidate will develop models, software tools, and analytical workflows that help transform scientific information and experimental results into practical engineering insight.
Education/Experience:
  • Bachelor's degree and 10 years of experience, Master's degree and 8 years of experience, or Ph.D. (strongly preferred) and 5 years of experience in Engineering (Chemical, Electrical, Mechanical, or Computational Science and Engineering) or a related technical field (e.g., Applied Mathematics, Scientific Computing, Physics, Materials Science, Astronomy/Astrophysics, Computational Chemistry, or Computational Biology).
  • Relevant experience must include applying computational, physical, statistical, data-driven, or AI-enabled methods to scientific or engineering challenges.
  • Alternatively, candidates with 2 years of experience as a Development Engineer II at First Solar will be considered.
  • Helpful, but not necessary experience:
    • Experience creating models, software tools, or analytical workflows that influenced experimental decisions, process improvements, engineering decisions, or scientific strategy.
    • Experience building computational pipelines for complex experimental or observational data from microscopy, spectroscopy, scattering measurements, tomography, reliability testing, manufacturing systems, or field-performance monitoring.
    • Experience modeling one or more of the following: transport, diffusion, reaction kinetics, degradation, defect physics, semiconductor behavior, electrochemical systems, materials evolution, or coupled process-structure-property relationships.
    • Familiarity with materials science, photovoltaics, semiconductor devices, thin films, defect chemistry, energy materials, manufacturing process data, or field-performance modeling.

Required Skills/Competencies:
  • Strong written and verbal English communication skills, with the ability to participate effectively in cross-functional technical teams.
  • Experience using modern AI tools and integrating AI-assisted methods into scientific, engineering, or research workflows to accelerate modeling, simulation, software development, literature synthesis, data analysis, or technical decision-making.
  • Demonstrated ability to independently learn new scientific, computational, or analytical methods and apply them to unfamiliar technical problems.
  • Ability to work effectively in ambiguous research environments where the correct model, mechanism, or interpretation is not known in advance.
  • Candidates should demonstrate strength in the following areas:
    • Machine learning, AI-assisted scientific workflows, surrogate modeling, or simulation acceleration.
    • Scientific modeling of physical, chemical, materials, device, or engineering systems.
    • Data analysis, inference, uncertainty assessment, optimization, or model calibration.
    • Scientific software development in Python, Julia, C++, MATLAB, C#, or similar environments.
    • Integration of models and algorithms with experimental, operational, reliability, manufacturing, or field data.
    • Ability to connect scientific understanding with practical engineering decisions.
    • Evidence of scientific curiosity, creativity, intellectual independence, and ability to challenge assumptions constructively.

Essential Responsibilities:
  • Develop and apply machine-learning, generative AI, and physics-informed modeling approaches to explore complex structure-property-performance relationships, identify promising design directions, and accelerate scientific understanding of material systems.
  • Evaluate and apply AI-assisted tools and emerging computational methods that meaningfully improve scientific productivity, model development, data analysis, simulation workflows, or engineering decision quality.
  • Translate physical hypotheses, experimental observations, and engineering questions into scientific models, surrogate models, decision-support tools, and AI-enhanced analytical workflows that help researchers understand complex systems, evaluate competing hypotheses, prioritize opportunities, and guide R&D decisions.
  • Implement scientific models and analysis workflows as reusable computational tools with attention to robustness, computational efficiency, documentation, and reproducibility.
  • Identify knowledge gaps, critical uncertainties, and high-value learning opportunities across research programs, to maximize information gained from experiments and simulations.
  • Use experimental data to support model calibration, parameter estimation, uncertainty assessment, sensitivity analysis, and model validation.
  • Work closely with process development, characterization, reliability, device physics, and other technical teams to improve scientific learning cycles, accelerate problem-solving, and convert research insights into practical engineering actions.
  • Communicate modeling assumptions, limitations, validation results, uncertainty, and technical conclusions clearly to both specialist and non-specialist audiences.

Reporting Relationships:
  • Report to Fellow, Advanced Research.
  • This position will not have direct reports.

Travel:
  • 0% - 5% (On occasion/as needed for training, etc.)

Estimated Salary Range:
  • $80,700 - $135,000 Annually

Physical Requirements:
All positions in our office require interaction with people and technology while either standing or sitting. To best service our customers, internal and external, all associates must be able to communicate face-to-face and on the phone with or without reasonable accommodation. First Solar is committed to compliance with its obligations under all applicable state and federal laws prohibiting employment discrimination. In keeping with this commitment, it attempts to reasonably accommodate applicants and employees in accordance with the requirements of the disability discrimination laws. It also invites individuals with disabilities to participate in a good faith, interactive process to identify reasonable accommodations that can be made without imposing an undue hardship.
Potential candidates will meet the education and experience requirements provided on the above job description and excel in completing the listed responsibilities for this role. All candidates receiving an offer of employment must successfully complete a background check and any other tests that may be required.
Equal Opportunity Employer Statement: First Solar is an Equal Opportunity Employer that values and respects the importance of a diverse and inclusive workforce. It is the policy of the company to recruit, hire, train and promote persons in all job titles without regard to race, color, religion, sex, age, national origin, veteran status, disability, sexual orientation, or gender identity. We recognize that diversity and inclusion is a driving force in the success of our company.

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