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Full Time Computational Chemical Engineering Jobs

Chemical Engineering Intern

Houston, TX · On-site

$16 - $20.75/hr

Launch Your Future Exceptional interns may be considered for future full-time opportunities ... Huntsman Corporation (HUN) What You'll Do As a Chemical Engineering Intern, you may: * Support ...

Knowledge of safety regulations and best practices in the chemical engineering field * Strong project management skills Benefits Full Time Benefits Include: * Vacation Time (After 1 Year) * 401k With ...

Knowledge of safety regulations and best practices in the chemical engineering field * Strong project management skills Benefits Full Time Benefits Include: * Vacation Time (After 1 Year) * 401k With ...

Knowledge of safety regulations and best practices in the chemical engineering field * Strong project management skills Benefits Full Time Benefits Include: * Vacation Time (After 1 Year) * 401k With ...

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Full Time Computational Chemical Engineering information

See salary details

$92.5K

$135.2K

$161K

How much do full time computational chemical engineering jobs pay per year?

As of Aug 4, 2026, the average yearly pay for full time computational chemical engineering in the United States is $135,168.00, according to ZipRecruiter salary data. Most workers in this role earn between $125,000.00 and $148,500.00 per year, depending on experience, location, and employer.

What are some common challenges faced by full time computational chemical engineers, and how can they be addressed?

Full-time computational chemical engineers often encounter challenges such as integrating complex simulation tools with experimental data, optimizing computational resources, and collaborating effectively with multidisciplinary teams. Adapting to rapidly evolving software and maintaining accuracy in large-scale simulations can also be demanding. Addressing these challenges typically involves ongoing professional development, clear communication with team members from different backgrounds, and staying updated on the latest industry software and best practices.

What is a full time computational chemical engineer?

A full time computational chemical engineering job involves using computer-based models and simulations to solve problems in chemical engineering. Professionals in this field develop and apply computational methods to design chemical processes, optimize reactor performance, and predict the behavior of chemical systems. These roles often require strong skills in programming, data analysis, and chemical process modeling. Typical employers include research institutions, chemical companies, energy firms, and technology startups. This career combines engineering principles with advanced computing to improve efficiency, safety, and innovation in the chemical industry.

What are the key skills and qualifications needed to thrive as a full time computational chemical engineer?

To thrive as a Full Time Computational Chemical Engineer, you need strong analytical skills, a solid background in chemical engineering principles, and advanced proficiency in mathematics, often supported by a relevant engineering degree or higher. Familiarity with simulation software (such as Aspen Plus, MATLAB, or COMSOL), programming languages (like Python or C++), and experience with high-performance computing are typically required. Excellent problem-solving abilities, teamwork, and effective communication are crucial soft skills for collaborating on interdisciplinary projects and conveying complex results. These competencies ensure accurate modeling, efficient process optimization, and successful integration of computational methods in real-world chemical engineering challenges.

What is the difference between Full Time Computational Chemical Engineering vs Full Time Chemical Process Engineering?

AspectFull Time Computational Chemical EngineeringFull Time Chemical Process Engineering
Primary FocusSimulation, modeling, and computational analysis of chemical processesDesign, operation, and optimization of chemical manufacturing processes
Required SkillsProgramming, chemical process modeling, data analysisProcess design, safety protocols, plant operation
Work EnvironmentResearch labs, software development, simulation centersIndustrial plants, manufacturing facilities, plant floors
Common CertificationsNone specific, often requires chemical engineering degreePE license, safety certifications

Full Time Computational Chemical Engineering focuses on using computational tools to analyze and optimize chemical processes, often in research or software environments. In contrast, Full Time Chemical Process Engineering involves hands-on process design and plant operations. Both roles require a chemical engineering degree but differ in daily tasks and work settings.

More about Full Time Computational Chemical Engineering jobs
What cities are hiring for Full Time Computational Chemical Engineering jobs? Cities with the most Full Time Computational Chemical Engineering job openings:
What are the most commonly searched types of Computational Chemical Engineering jobs? The most popular types of Computational Chemical Engineering jobs are:
What job categories do people searching Full Time Computational Chemical Engineering jobs look for? The top searched job categories for Full Time Computational Chemical Engineering jobs are:
Infographic showing various Full Time Computational Chemical Engineering job openings in the United States as of July 2026, with employment types broken down into 1% As Needed, 86% Full Time, 11% Part Time, 1% Contract, and 1% Nights. Highlights an 95% Physical, 1% Hybrid, and 4% Remote job distribution, with an average salary of $135,168 per year, or $65 per hour.

Chemical Kinetics Modeling Engineer

University of Dayton

Dayton, OH • On-site

Full-time

Medical, Retirement

Posted 4 days ago


University Of Dayton rating

8.4

Company rating: 8.4 out of 10

Based on 6 frontline employees who took The Breakroom Quiz

95th of 614 rated colleges and universities


Job description

Chemical Kinetics Modeling Engineer
Job No: 503766
Work Type: Staff Full Time (1500 hours or greater)
Location: Dayton, OH
Category: Research Institute Staff
Department: Thermal Management - 250513
Pay Grade: R2 - Exempt
Advertised: July 31, 2026
Applications close:
Position Summary:
Join the University of Dayton Research Institute (UDRI) as a Chemical Kinetics Modeling Engineer where you will bring your modeling expertise to develop powerful fuel flow and chemistry simulations! Located in the vibrant tech hub of Dayton, Ohio, you'll contribute to cutting-edge research that directly impacts national security and technological advancement. UDRI offers an exceptional work environment where research excellence thrives. You'll enjoy comprehensive benefits including robust health coverage, retirement contributions, and professional development opportunities. Apply today!
The primary purpose of this position is to lead the development, numerical optimization, and validation of chemical kinetic mechanisms for complex aviation fuels and surrogate models. The researcher will utilize advanced computational tools and mathematical optimization techniques to align theoretical chemical models with experimental reactor data. This role bridges the gap between fundamental physical chemistry, reaction engineering, and applied computational fluid dynamics (CFD) to support advanced propulsion, thermal management, and energy system modeling.
Minimum Qualifications:
Master's degree in Chemical Engineering, Mechanical Engineering, Chemistry, or a closely related STEM field, plus a minimum of 3 years of relevant research experience (or a Bachelor's degree with 5+ years of highly specialized experience).
Proficiency with chemical kinetics modeling software (e.g., Cantera, Chemkin).
Experience with fluid dynamics software in current position (coursework alone may be acceptable if all other criteria met).
Strong programming skills in Python or equivalent, with specific expertise in scientific computing and numerical optimization libraries.
Experience processing and interpreting experimental datasets to validate computational models.
Comfortable working in groups, communicating/collaborating, and presenting technical findings to management.
Ability to obtain and maintain a U.S. Department of Defense security clearance.
Due to the requirements of our research contracts with the U.S. federal government, candidates for this position must be a U.S. citizen.
Preferred Qualifications:
While not everyone may possess all of the preferred qualifications, the ideal candidate will bring many of the following:
Ph.D. in Engineering (Chemical, Mechanical, or Aerospace) plus 5 years of relevant research experience.
At least one degree (B.S., M.S., or Ph.D.) specifically in Chemical Engineering or Chemistry.
Experience coupling chemical kinetics with fluid dynamics software (e.g., ANSYS Fluent) for reacting flow simulations.
Expertise in surrogate fuel formulation, structural constraint modeling, and hierarchical mechanism tuning.
Familiarity with interpreting high-resolution analytical chemistry data (e.g., GCxGC).
Special Instructions to Applicants:
To apply please submit a cover letter addressing each minimum qualification and any applicable preferred qualifications that you meet.
Closing Statement:
Informed by its Catholic and Marianist mission, the University is committed to the dignity of every human being. Informed by this commitment, we seek to increase diversity in all of its forms, achieve fair outcomes, and model inclusion across our campus community. The University is committed to policies of affirmative action designed to increase the employment opportunities of individuals with disabilities and protected veterans in compliance with the Rehabilitation Act of 1973 and Vietnam Era Veterans' Readjustment Assistance Act of 1973.
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