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Computational Engineer Jobs in Houston, TX (NOW HIRING)

Aerospace Engineer

Houston, TX · On-site

$86K - $198K/yr

Aerospace Engineer The Opportunity: We're looking for someone to join the Booz Allen Space ... To do so, they develop and use advanced computational modeling tools and techniques. Join the team ...

Aerospace Engineer

Houston, TX · On-site +1

$86K - $198K/yr

Share Aerospace Engineer The Opportunity: We're looking for someone to join the Booz Allen Space ... To do so, they develop and use advanced computational modeling tools and techniques. Join the team ...

Aerospace Engineer

Houston, TX · On-site

$86K - $198K/yr

Aerospace Engineer The Opportunity: We're looking for someone to join the Booz Allen Space ... To do so, they develop and use advanced computational modeling tools and techniques. Join the team ...

Reactor Physics Engineer I & II

Houston, TX · On-site

$94K - $112K/yr

REACTOR PHYSICS & NEUTRONICS ENGINEER II Deployable Energy Position Summary Early to Mid-career ... Key Responsibilities • Perform reactor-physics and neutronics calculations and computational ...

Showing results 21-40

Computational Engineer information

See Houston, TX salary details

$46.3K

$116K

$131.3K

How much do computational engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for computational engineer in Houston, TX is $116,044.00, according to ZipRecruiter salary data. Most workers in this role earn between $106,500.00 and $125,600.00 per year, depending on experience, location, and employer.

What is a computational engineer?

A computational engineer is a professional who uses advanced computing techniques and mathematical models to solve complex engineering problems. They develop simulations, algorithms, and software to analyze and optimize systems in fields such as aerospace, automotive, civil engineering, and more. Their work often involves programming, data analysis, and applying principles from physics and mathematics to create efficient solutions. Computational engineers bridge the gap between traditional engineering and computer science, enabling innovation through technology.

How does a computational engineer typically collaborate with multidisciplinary teams on complex projects?

Computational Engineers frequently work alongside professionals from various disciplines such as mechanical engineers, data scientists, and software developers. Effective collaboration often involves translating engineering problems into computational models, communicating technical requirements, and integrating simulation results into broader project workflows. Regular meetings, shared documentation, and collaborative software tools are commonly used to ensure alignment and progress. This team-based approach helps deliver accurate and actionable insights for product design, optimization, or research objectives.

What are the key skills and qualifications needed to thrive as a computational engineer, and why are they important?

To thrive as a Computational Engineer, you need a strong background in mathematics, physics, computer science, and engineering principles, typically supported by a relevant degree. Proficiency in programming languages (such as Python, C++, or MATLAB), experience with simulation software (like ANSYS or COMSOL), and familiarity with high-performance computing environments are essential. Strong analytical thinking, problem-solving abilities, and effective communication skills help set top performers apart in this field. These skills are crucial for developing accurate models, optimizing complex systems, and effectively collaborating in multidisciplinary teams.

What is the difference between Computational Engineer vs Software Engineer?

AspectComputational EngineerSoftware Engineer
Required CredentialsBachelor's or Master's in Engineering, Computer Science, or related fields; knowledge of programming and numerical methodsBachelor's or Master's in Computer Science, Software Engineering, or related fields; strong programming skills
Work EnvironmentResearch labs, engineering firms, tech companies; often involves simulation and modelingTech companies, startups, software firms; focuses on application development and system design
Industry UsageEngineering, aerospace, automotive, scientific researchIT, software development, technology services

Computational Engineers and Software Engineers share programming skills and work in tech-related environments. However, Computational Engineers focus more on applying computational methods to engineering problems, simulations, and modeling, while Software Engineers primarily develop software applications and systems. Both roles require strong technical backgrounds but serve different industry needs.

How much do computational engineers make?

Computational engineers typically earn a median annual salary between $80,000 and $120,000, depending on experience, education, and industry. Senior roles or those with specialized skills in programming, simulation, or data analysis can earn higher salaries, especially in high-demand sectors like aerospace, defense, or technology companies.

What are popular job titles related to Computational Engineer jobs in Houston, TX?

For Computational Engineer jobs in Houston, TX, the most frequently searched job titles are:

What job categories do people searching Computational Engineer jobs in Houston, TX look for?

The top searched job categories for Computational Engineer jobs in Houston, TX are:

What cities near Houston, TX are hiring for Computational Engineer jobs?

Cities near Houston, TX with the most Computational Engineer job openings:

Infographic showing various Computational Engineer job openings in Houston, TX as of September 2026, with employment types broken down into 1% Internship, 89% Full Time, 6% Part Time, and 4% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $116,044 per year, or $55.8 per hour.

Postdoctoral Fellow - Bioinformatics & Computational Biology

Houston, TX • On-site

MD Anderson
Health Care and Social Assistance • 10K+ employees

$46K - $63K/yr

Full-time

Medical, Dental, Retirement, PTO

Re-posted 20 days ago


MD Anderson Cancer Center rating

8.5

Company rating: 8.5 out of 10

Based on 172 frontline employees who took The Breakroom Quiz

12th of 898 rated healthcare providers


Job description

Postdoctoral Fellow in Computational Biology, AI/ML, and Cancer Systems Biology
We are seeking highly motivated postdoctoral fellows in computational biology, cancer systems biology, and artificial intelligence/machine learning to join our research group at UT MD Anderson Cancer Center.
The fellows will contribute to the development of a new AI/ML-driven paradigm for precision oncology, integrating computational methodology with large-scale translational and clinical datasets. Projects will span both the development of novel machine-learning and computational approaches and their application to biologically and clinically important problems in cancer.
Our group has assembled extensive collections of single-cell and spatial omics data, multi-omics datasets, functional and pharmacologic data, and clinically annotated patient cohorts across multiple cancer types. Fellows will also have opportunities to work closely with clinical, translational, and experimental collaborators and to participate in the generation of new datasets using cutting-edge spatial imaging and profiling technologies. This environment provides an unusual opportunity to develop computational methods and rapidly evaluate their biological and translational relevance.
Why join our group
This position offers access to an exceptionally rich collection of spatial omics, single-cell, multi-omics, and clinically annotated datasets, together with numerous unanswered biological and translational questions. Fellows will have considerable opportunities to lead projects, develop independent research directions, collaborate across disciplines, and generate high-impact publications.
The research program is well funded through multiple NIH, CPRIT, and other research awards, providing strong support for ambitious computational and translational projects.
UT MD Anderson Cancer Center is one of the world's leading institutions for cancer research and clinical care and provides an outstanding environment for computational, translational, and interdisciplinary research. Salaries and benefits are highly competitive.
Houston is one of the most diverse and dynamic cities in the United States, with excellent neighborhoods and schools, internationally recognized museums and performing arts organizations, outstanding restaurants, and extensive year-round recreational opportunities.
All duties and responsibilities are carried out in compliance with institutional policies, ethical research standards, and applicable federal and state regulations.
LEARNING OBJECTIVES
The postdoc fellows will work on projects with the objectives:
1. AI/ML and computational modeling for precision combination therapy discovery, including integration of multi-omics, pharmacologic, and clinical data to identify therapeutic vulnerabilities and predict treatment response.
2. AI/ML for single-cell and spatial multi-omics, including development of new approaches to characterize tumor ecosystems, cellular interactions, spatial organization, biomarkers, and therapeutic response.
3. Major contributions to translational and collaborative projects accross the institution and nation with bioinformatics data analyses and modeling applications
ELIGIBILITY REQUIREMENTS
Qualifications
1. PhD in a relevant quantitative or biomedical field, such as bioinformatics, computational biology, biophysics, genomics, computer science, statistics, applied mathematics, or a related discipline.
2. Strong quantitative, computational, and programming skills.
3. Experience with machine learning, statistical modeling, and/or high-dimensional biological data.
4. Knowledge of cancer biology, signaling pathways, tumor biology, or drug-response mechanisms is highly desirable.
Ability and enthusiasm to work collaboratively across computational, experimental, and clinical disciplines.
ADDITIONAL APPLICATION INFORMATION
Representative publications
1. Luna A, Wang H, Wang L, et al ... Korkut, A. Co-targeting PARP and SHP2 overcomes resistance to apoptosis and induces durable responses in preclinical models of breast cancer. Cancer Research. Under minor revision.
2. Li X, Dowling EK, Yan G, et al... Korkut A, Precision combination therapies based on recurrent oncogenic coalterations. Cancer Discov. 2022;12(6):1542-1559. doi:10.1158/2159-8290.CD-21-0832.
3. Li X, Nguyen J, Korkut A. RECOMBINE identifies recurrent composite markers of cell types and states. Genome Res. 2026;36(6):1221-1237. doi:10.1101/gr.280817.125.
4. Johnson A, Shen Y, Zheng X, et al. The actionable transcriptome: a framework for incorporating RNA sequencing into precision oncology. Nat Rev Clin Oncol. 2026;23(3):213-229.
5. Vishnoi M, Dereli Z, Yin Z, et al... Korkut A, prognostic matrix gene expression signature defines functional glioblastoma phenotypes and niches. Commun Biol. 2026;9:18. doi:10.1038/s42003-025-09245-8.
6. Bozorgui B, Thibault G, Yuan C, et al... Korkut A, CROCHET: a versatile pipeline for automated analysis and visual atlas creation from single-cell spatialomic data. bioRxiv. Published online March 17, 2026. doi:10.64898/2026.03.13.711472.
7. Dereli Z, Bozorgui B, Sanchez M, Hornstein N, Thibault, G, Wang H, Mills GB, Weinstein JN, Overman, MJ, Korkut, A. A spatially resolved single cell proteomic atlas of Small Bowel Adenocarcinoma. Version: 1. Biorxiv [Preprint]. 2025 February 4. Available from: https://www.biorxiv.org/content/10.1101/2025.02.01.634535v1 DOI: doi.org /10.1101/2025.02.01. 634535
8. Franz A, Shen C, Coscia F, et al. Design of combination therapeutics from protein response to drugs in ovarian cancer cells. eLife. 2025;14:RP106729. doi:10.7554/eLife.106729.2.
9. McDaniel JM, Morrissey RL, Chau GP, et al. Multi-omics analysis identifies intrinsic Trp53-driven metastatic breast cancer subtypes. Sci Adv. In press.
10. Carapeto F, Bozorgui B, Shroff RT, et al. The immunogenomic landscape of resected intrahepatic cholangiocarcinoma. Hepatology. 2022;75(2):297-308. doi:10.1002/hep.32150.
11. Yan G, Luna A, Wang H, et al... Korkut A, BET inhibition induces vulnerability to MCL1 targeting through upregulation of fatty acid synthesis pathway in breast cancer. Cell Rep. 2022;40(11):111304. doi:10.1016/j.celrep.2022.111304.
12. Bozorgui B, Kong EK, Luna A, Korkut A. Mapping the functional interactions at the tumor-immune checkpoint interface. Commun Biol. 2023;6:462. doi:10.1038/s42003-023-04777-3.
13. Dibra D, Xiong S, Moyer SM, et al. Mutant p53 protects triple-negative breast adenocarcinomas from ferroptosis in vivo. Sci Adv. 2024;10(7):eadk1835. doi:10.1126/sciadv.adk1835.
POSITION INFORMATION
MD Anderson offers full-time postdoc positions with a salary ranging from $64,000 to $76,000. depending on the number of years of postgraduate experience. The University of Texas MD Anderson Cancer Center offers excellent benefits, including medical, dental, paid time off, retirement, tuition benefits, educational opportunities, and individual and team recognition
Offsite work arrangements are subject to approval and may be modified or revoked at any time based on business needs, performance considerations, or regulatory requirements.
This position may be responsible for maintaining the security and integrity of critical infrastructure, as defined in Section 113.001(2) of the Texas Business and Commerce Code and therefore may require routine reviews and screening. The ability to satisfy and maintain all requirements necessary to ensure the continued security and integrity of such infrastructure is a condition of hire and continued employment.
It is the policy of The University of Texas MD Anderson Cancer Center to provide equal employment opportunity without regard to race, color, religion, age, national origin, sex, gender, sexual orientation, gender identity/expression, disability, protected veteran status, genetic information, or any other basis protected by institutional policy or by federal, state or local laws unless such distinction is required by law. http://www.mdanderson.org/about-us/legal-and-policy/legal-statements/eeo-affirmative-action.html

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