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Computational Physicist Jobs in Arizona (NOW HIRING)

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

Applied Mathematics Tutor

Mesa, AZ · Remote

$18 - $40/hr

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

Ability to explain modeling techniques for physical systems, approximation methods, and stability analysis while preparing students for engineering, physics, finance, and computational science ...

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Computational Physicist information

See Arizona salary details

$142.4K

$168.8K

$192.4K

How much do computational physicist jobs pay per year?

As of Jul 29, 2026, the average yearly pay for computational physicist in Arizona is $168,770.00, according to ZipRecruiter salary data. Most workers in this role earn between $155,400.00 and $181,900.00 per year, depending on experience, location, and employer.

What Does a Computational Physicist Do?

A computational physicist applies numerical analysis to solve problems or support theories in physics. In this career, you use knowledge from numerous disciplines, including physics, statistics, mathematics, and computer science, to test a theory. You use algorithms and other methodological tools to crunch large datasets using powerful computers, which helps in solving differential equations and other statistical problems. This can include Monte Carlo calculations and eigenvalue problems. Some people consider computational physics a branch of theoretical physics or its own discipline with specific duties and responsibilities.

What is the difference between Computational Physicist vs Data Scientist?

AspectComputational PhysicistData Scientist
Required CredentialsPhysics degree, often PhD, strong math and programming skillsStatistics, computer science, or related degree, often with a master's or PhD
Work EnvironmentResearch labs, academia, government agencies, scientific institutionsTech companies, finance, healthcare, consulting firms
Industry UsageScientific research, simulations, modeling physical systemsData analysis, predictive modeling, business insights

While both roles require strong programming and analytical skills, Computational Physicists focus on physical systems and scientific research, whereas Data Scientists analyze data to inform business decisions. The choice depends on your interest in scientific research versus data-driven applications.

What are some typical challenges computational physicists face when working on collaborative research projects?

Computational physicists often collaborate with experimentalists, engineers, and other researchers, which can present challenges such as bridging communication gaps between disciplines and integrating diverse data formats or methodologies. Coordinating project timelines to ensure that simulations align with experimental milestones is also common. Additionally, managing large datasets and ensuring reproducibility of results across different computing environments can require careful planning and documentation. Effective teamwork and adaptability are essential to overcome these hurdles and drive successful research outcomes.

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

To thrive as a Computational Physicist, you need a strong background in physics, mathematics, and computer science, typically supported by at least a master's or Ph.D. in physics or a related field. Proficiency in programming languages such as Python, C++, and MATLAB, as well as experience with simulation software and high-performance computing systems, is essential. Strong analytical thinking, problem-solving abilities, and effective teamwork skills help you tackle complex scientific challenges and collaborate on interdisciplinary projects. These skills are crucial for developing accurate models, efficiently solving intricate problems, and advancing scientific research through computational methods.

What is a computational physicist?

A computational physicist is a scientist who uses computer simulations, numerical analysis, and algorithms to solve complex physical problems that are difficult or impossible to address analytically. They work in fields like condensed matter physics, astrophysics, and materials science, modeling phenomena such as atomic interactions or galaxy formation. Their work often involves writing code, analyzing large datasets, and collaborating with experimental and theoretical physicists. Computational physicists play a key role in advancing scientific knowledge by providing insights where traditional methods fall short.
What are the most commonly searched types of Computational Physicist jobs in Arizona? The most popular types of Computational Physicist jobs in Arizona are:
What are popular job titles related to Computational Physicist jobs in Arizona? For Computational Physicist jobs in Arizona, the most frequently searched job titles are:
What job categories do people searching Computational Physicist jobs in Arizona look for? The top searched job categories for Computational Physicist jobs in Arizona are:
What are popular job titles related to Computational Physicist jobs in AZ? For Computational Physicist jobs in AZ, the most frequently searched job titles are:
Infographic showing various Computational Physicist job openings in Arizona as of July 2026, with employment types broken down into 73% Full Time, 26% Part Time, and 1% Contract. Highlights an 64% Physical, 3% Hybrid, and 33% Remote job distribution, with an average salary of $168,770 per year, or $81.1 per hour.

Postdoctoral Researcher - Computational biology/Cancer bioinformatics (Full Time)

University of Arizona

Tucson, AZ • On-site

Full-time

Medical, Dental, Vision, Life, PTO

Re-posted 15 days ago


University Of Arizona rating

7.2

Company rating: 7.2 out of 10

Based on 67 frontline employees who took The Breakroom Quiz

384th of 612 rated colleges and universities


Job description

Postdoctoral Researcher - Computational biology/Cancer bioinformatics (Full Time)
Posting Number
req26025
Department
Cancer Center Division
Department Website Link
https://cancercenter.arizona.edu/
Location
Tucson Campus
Address
1501 N. Campbell Ave, Tucson, AZ 85719 USA
Position Highlights
The Theodorescu Lab within the University of Arizona Cancer Center (UACC) and Padi Labs within the Department of Molecular and Cellular Biology are looking to hire a joint postdoctoral researcher with a strong background in computational biology and/or cancer bioinformatics. This project will be focused on integrating rich, multimodal 'omics data from cell lines and animal models, with the goal of identifying mechanisms leading to transformation and cancer. To identify such cancer-driving effects, we combine genomics, proteomics, and spatial transcriptomics data generated in the Theodorescu Lab with techniques for network inference, epigenetic rewiring, and dynamic modeling developed in the Padi Lab. Examples of the type of work that will be undertaken can be seen by our papers by Chen (Nature. 2025 Jun;642(8069):1041-1050), Abdel-Hafiz (Nature. 2023 Jul;619(7970):624-631), Gouin (Nature Commun. 2021; 12;12(1)), Ben Guebila (Genome Biology. 2023; 24(1):45) and Yang (Journal of Clinical Investigation. 2025; 135(7)). Our final goal is to identify novel biomarkers and interventions for cancer that will improve patient outcomes.
This individual would join two vibrant groups that closely collaborate to bridge the gap between innovative cancer research and state-of-the-art computational modeling. The successful candidate will be a driven, creative, team-oriented individual with an aptitude for quantitative/informatic methods and a passion for helping to discover fundamental cancer biology mechanisms that have potential clinical impact and thus can be moved eventually towards a clinical setting. We employ a wide variety of computational and experimental approaches and seek individuals with a strong understanding of both bioinformatics and molecular biology. Experience gained in our laboratory will help the candidate to become competitive for permanent positions in either academia or industry. We welcome applications from both recent PhD or MD/PhD recipients and individuals seeking additional postdoctoral training. For more information, please visit: https://cancercenter.arizona.edu/person/dan-theodorescu-md-phd and https://www.padilab.com.
Outstanding U of A benefits include health, dental, vision, and life insurance; paid vacation, sick leave, and holidays; UA/ASU/NAU tuition reduction for the employee and qualified family members; access to UA recreation and cultural activities; and more!
The University of Arizona has been recognized for our innovative work-life programs. For more information about working at the University of Arizona and relocation services, please click here.
Duties & Responsibilities
  • Design and perform quantitative data analysis. Keep detailed record of codebase with documentation and share the results with the Principal Investigators.
  • Develop, adapt, and implement new research techniques and algorithms.
  • Analyze, interpret, present, and interpret the data clearly and accurately.
  • Perform routine and complex data analysis procedures throughout training period.
  • Assist in preparation of grant proposals with the PIs but is not responsible for generating grant funds.
  • Participate in publications and presentations as author or co-author.
  • Meet with both PIs on a regular basis to discuss research progress and plans.
  • May be asked to write small grant proposals or NRSA/T32 applications.
  • Spends about 75% of time on computational analysis and 25% of time on writing articles/analyzing data/online research.

Knowledge,Skills, and Abilities:
  • Ability to work semi-independently on research projects within an area of specialization.
  • Thorough technical and theoretical knowledge of research projects and the objectives to be accomplished during this post-doctoral appointment.
  • Demonstrated aptitude to perform quantitative analyses, generate reproducible code, and interpret results in a biological context.
  • Strong understanding of both bioinformatics andmolecular biology.

Minimum Qualifications
  • Doctorate(PhD or MD/PhD) in computational biology, physics, math, computer science, orrelated field.

Preferred Qualifications
  • Outstanding publication record from prior graduate and/or postgraduate training and/or existing extramural funding.

FLSA
Exempt
Full Time/Part Time
Full Time
Number of Hours Worked per Week
40
Job FTE
1.0
Work Calendar
Fiscal
Job Category
Research
Benefits Eligible
Yes - Full Benefits
Rate of Pay
NIH salary guidelines, Depends on Experience
Compensation Type
salary at 1.0 full-time equivalency (FTE)
Type of criminal background check required:
Name-based criminal background check (non-security sensitive)
Number of Vacancies
1
Target Hire Date
Expected End Date
Contact Information for Candidates
Dr Megha Padi,mpadi@arizona.edu
Open Date
5/15/2026
Open Until Filled
Yes
Documents Needed to Apply
Curriculum Vitae (CV) and Cover Letter
Special Instructions to Applicant
Application: The online application should be completed in its entirety. Blank or missed information may be considered an incomplete submission.
Cover Letter: Should clearly indicate how your skills and professional employment experience meet the Minimum and the Preferred qualifications (if applicable).
Notice of Availability of the Annual Security and Fire Safety Report
In compliance with the Jeanne Clery Campus Safety Act (Clery Act), each year the University of Arizona releases an Annual Security Report (ASR) for each of the University's campuses.Thesereports disclose information including Clery crime statistics for the previous three calendar years and policies, procedures, and programs the University uses to keep students and employees safe, including how to report crimes or other emergencies and resources for crime victims. As a campus with residential housing facilities, the Main Campus ASR also includes a combined Annual Fire Safety report with information on fire statistics and fire safety systems, policies, and procedures.
Paper copies of the Reports can be obtained by contacting the University Compliance Office at cleryact@arizona.edu.

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