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Computational Design Jobs in Texas (NOW HIRING)

The Computational Design Specialist supports the Corporate Practice Technology Director in developing and scaling advanced digital workflows, automation, and data-driven processes across projects and ...

The Computational Design Specialist supports the Corporate Practice Technology Director in developing and scaling advanced digital workflows, automation, and data-driven processes across projects and ...

Computational Biology Expert Role Type: Contractor Location: Remote micro1 is engaging ... Demonstrated expertise in medicinal chemistry, including experience with drug discovery or design.

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Computational Design information

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$38

$51

$68

How much do computational design jobs pay per hour?

As of Aug 7, 2026, the average hourly pay for computational design in Texas is $51.17, according to ZipRecruiter salary data. Most workers in this role earn between $43.65 and $68.51 per hour, depending on experience, location, and employer.

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.

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.

Is computational design a good career?

Computational design is a growing field that combines design skills with programming and data analysis, often requiring knowledge of software like Rhino, Grasshopper, or Python. It offers opportunities in architecture, product design, and engineering, with a focus on innovation and problem-solving. Job prospects depend on industry demand, technical proficiency, and the ability to adapt to new tools and technologies.

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 are the most commonly searched types of Computational Design jobs in Texas? The most popular types of Computational Design jobs in Texas are:
What are popular job titles related to Computational Design jobs in Texas? For Computational Design jobs in Texas, the most frequently searched job titles are:
What cities in Texas are hiring for Computational Design jobs? Cities in Texas with the most Computational Design job openings:
Infographic showing various Computational Design job openings in Texas as of July 2026, with employment types broken down into 81% Full Time, 5% Part Time, and 14% Contract. Highlights an 95% In-person, and 5% Hybrid job distribution, with an average salary of $106,441 per year, or $51.2 per hour.

Computational Design Specialist

PBK

Houston, TX

Full-time

Posted 28 days ago


Job description

The Computational Design Specialist supports the Corporate Practice Technology Director in developing and scaling advanced digital workflows, automation, and data-driven processes across projects and offices. This role focuses on integrating technology into project delivery to improve efficiency, coordination, quality, and consistency while helping project teams reduce repetitive manual tasks and focus on higher-value work.


Your Impact:

  • Develop and implement advanced digital workflows, tools, and automation strategies to improve project delivery and operational efficiency.
  • Collaborate with the Corporate Technology Director, BIM Managers, and project teams to evaluate emerging technologies and translate them into scalable solutions.
  • Support pilot initiatives, applied research, and repeatable workflows across project teams and offices.
  • Provide advanced technical support for Revit, Autodesk Forma, Dynamo, Rhino, Grasshopper, visualization tools, Bluebeam, and other design/practice technology platforms.
  • Develop automation scripts and digital tools using Dynamo, Python, C#, JavaScript, APIs, MCPs, or similar platforms.
  • Assist with rollout plans, documentation, guides, and best practices for new tools, automation workflows, and advanced digital delivery methods.
  • Work across disciplines to integrate data, models, and workflows into coordinated digital processes that support project delivery.
  • Troubleshoot design and practice technology issues for project teams, including support through the ticketing system.
  • Train, support, and upskill project teams in advanced digital capabilities, automation tools, and computational design workflows.

Here's What You'll Need:

  • Bachelor's degree in Architecture, Engineering, Design Technology, Practice Technology, Computer Science, or a related field.
  • 5+ years of experience in A/E/C, computational design, design technology, or practice technology.
  • Demonstrated expertise in advanced BIM, computational design, automation, and digital workflows within the AEC industry.
  • Strong technical proficiency in Revit, Dynamo, Rhino, Grasshopper, Python, C#, JavaScript, APIs, MCPs, Navisworks, Autodesk Forma/APS, Bluebeam, and other advanced digital platforms.
  • Experience implementing multi-discipline BIM workflows and supporting broader design and practice technology processes.
  • Strong analytical, problem-solving, and systems-thinking skills with the ability to develop scalable solutions.
  • Ability to collaborate across multidisciplinary teams and communicate complex technical workflows effectively.
  • Strong communication, collaboration, and documentation skills.
  • Ability to implement processes consistently in a fast-paced, multi-office environment.

Here's How You'll Stand Out:

  • Advanced degree or certifications in Architecture, Engineering, Design Technology, Computational Design, Computer Science, or a related field.
  • Experience developing automation tools, scripts, dashboards, or data-driven workflows that improve project delivery and team efficiency.
  • Strong expertise in computational design platforms such as Dynamo, Grasshopper, Rhino, Python, C#, JavaScript, APIs, MCPs, or related tools.
  • Experience translating emerging technologies into practical, scalable workflows for project teams.
  • Strong understanding of BIM, model coordination, data interoperability, visualization, and digital project delivery in an AEC environment.
  • Experience leading pilot initiatives, applied research, or innovation efforts that result in repeatable tools or workflows.
  • Ability to train, mentor, and upskill users with varying levels of design technology and computational design experience.