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Physics Software Engineer Jobs in Orem, UT (NOW HIRING)

... Physics or related engineering degree * 2 + years of relevant Semiconductor experience in Process ... Experience on tool monitoring and interdiction software, and equipment maintenance and ...

... Physics or related engineering degree * 2 + years of relevant Semiconductor experience in Process ... Experience on tool monitoring and interdiction software, and equipment maintenance and ...

Typically requires a Bachelor's degree in Engineering, Science, Physics, Mathematics, or a related ... Education or experience with simulation software for circuit analysis or modeling. Qualifications ...

Our data centers serve as the foundation upon which our software operates to meet the demands of ... rules of physics. Meta is proud to be an Equal Employment Opportunity and Affirmative Action ...

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Physics Software Engineer information

See Orem, UT salary details

$55.2K

$128.3K

$178.7K

How much do physics software engineer jobs pay per year?

As of Aug 11, 2026, the average yearly pay for physics software engineer in Orem, UT is $128,253.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,300.00 and $150,400.00 per year, depending on experience, location, and employer.

What is the difference between Physics Software Engineer vs Data Scientist?

AspectPhysics Software EngineerData Scientist
Required CredentialsBachelor's or Master's in Physics, Computer Science, or related fieldBachelor's or Master's in Data Science, Statistics, Computer Science, or related field
Work EnvironmentResearch labs, tech companies, aerospace, or defense industriesTech firms, finance, healthcare, or consulting companies
Industry UsagePhysics research, simulation, modeling, and software developmentData analysis, machine learning, predictive modeling, and data visualization

Physics Software Engineers focus on developing software for physics applications, simulations, and research, often working in research or engineering environments. Data Scientists analyze large datasets to extract insights and build predictive models. While both roles require strong programming skills, Physics Software Engineers emphasize physics principles, whereas Data Scientists focus on data analysis and statistical methods.

What are the key skills and qualifications needed to thrive as a physics software engineer?

To thrive as a Physics Software Engineer, you need a strong background in physics, mathematics, and computer science, typically supported by a degree in physics, engineering, or a related field. Proficiency in programming languages such as C++, Python, or MATLAB, and experience with simulation software or scientific computing libraries are essential. Analytical thinking, problem-solving, and effective communication are crucial soft skills for collaborating with multidisciplinary teams and interpreting complex data. These skills are vital for developing accurate, efficient software solutions that model physical systems and drive innovation in scientific and engineering projects.

What is a physics software engineer?

A Physics Software Engineer is a professional who develops, maintains, and optimizes software that simulates or models physical systems and phenomena. They often work at the intersection of physics, computer science, and engineering, creating tools for scientific research, simulations, or real-time physics engines used in industries like gaming, aerospace, or research institutions. These engineers typically have a strong background in both physics and programming, enabling them to translate complex physical formulas and concepts into efficient and accurate code. Their work is crucial for advancing technology in areas such as computational physics, virtual reality, and engineering design.

How does a physics software engineer typically collaborate with scientists and other engineering teams during a project?

Physics Software Engineers often work closely with physicists, data scientists, and hardware engineers to translate complex physical models into reliable software solutions. Collaboration usually involves regular meetings to clarify requirements, iterative development cycles to test and validate simulation accuracy, and ongoing feedback to refine algorithms. Effective communication and teamwork are essential, as engineers must bridge the gap between theoretical concepts and practical implementation while ensuring that software integrates smoothly with other systems. This collaborative environment fosters continuous learning and problem-solving, making the role both challenging and rewarding.
What are popular job titles related to Physics Software Engineer jobs in Orem, UT? For Physics Software Engineer jobs in Orem, UT, the most frequently searched job titles are:
What job categories do people searching Physics Software Engineer jobs in Orem, UT look for? The top searched job categories for Physics Software Engineer jobs in Orem, UT are:
What cities near Orem, UT are hiring for Physics Software Engineer jobs? Cities near Orem, UT with the most Physics Software Engineer job openings:

Post-Doctoral Researcher - Civil & Construction Engineering - Hypersonic Flow Solvers and Computa...

Brigham Young University

Provo, UT • On-site

Full-time

Re-posted yesterday


Brigham Young University rating

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Company rating: 7.4 out of 10

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Job description

Job Title:Post-Doctoral Researcher - Civil & Construction Engineering - Hypersonic Flow Solvers and Computational Mechanics

Posting End Date:August 6, 2026

*NOTE: Last day to apply is Wednesday, August 5, 2026, at 11:59 pm (MT)

Position Start Date:September 1, 2026

Required Degree:

PhD in Mechanical Engineering, Aerospace Engineering, Civil Engineering, Applied Mathematics, Computational Science, Computer Science, or a closely related field, completed prior to the start date.

The required degree must be completed by the start date.

Required Qualifications:

  • Strong background in computational mechanics, numerical methods, scientific computing, or solver development.
  • Demonstrated experience developing scientific or engineering simulation software.
  • Strong written and verbal communication skills.
  • Ability to work independently while contributing effectively to a collaborative research team.

Preferred Qualifications:

  • Experience developing or using computational fluid dynamics solvers, particularly for compressible, high-speed, or hypersonic flows.
  • Experience with computational solid mechanics solvers.
  • Experience with high-order mesh generation, computational geometry, adaptive meshing, moving meshes, or mesh optimization.
  • Experience with fluid-structure interaction or other multiphysics coupling strategies.
  • Experience with isogeometric analysis, high-order finite element methods, discontinuous Galerkin methods, finite volume methods, or related advanced discretizations.
  • Experience with C++, Fortran, Python, Julia, MATLAB, or other scientific computing languages.
  • Experience with MPI, OpenMP, CUDA, Kokkos, RAJA, PETSc, Trilinos, MFEM, deal.II, libMesh, SU2, OpenFOAM, FUN3D, or related computational science software.
  • Experience with collaborative software development practices, including Git, GitHub/GitLab, testing frameworks, continuous integration, and technical documentation.

Position Summary:

A post-doctoral researcher position is available to support advanced research and software development in computational mechanics, with a primary emphasis on high-performance hypersonic flow solvers and related multiphysics simulation technologies. The researcher will contribute to the development, implementation, verification, validation, and application of advanced numerical methods for high-speed compressible flows and related multiphysics simulation capabilities. Depending on the candidate's background and project needs, research may involve spline-based finite element methods, coupled fluid-structure interaction, space-time solvers, solid mechanics, mesh generation, and related computational modeling capabilities.

The position is intended for a highly motivated researcher with strong technical depth in numerical methods, scientific computing, solver development, and computational mechanics. Experience with one or more of the following areas is especially desirable: computational fluid dynamics, computational solid mechanics, mesh generation, multiphysics coupling, parallel programming, and/or isogeometric analysis.

This role emphasizes rigorous computational research, high-quality scientific software development, and close collaboration with faculty, students, and external research partners. The successful candidate will help advance next-generation simulation capabilities for challenging hypersonic and multiphysics applications.

Duties/Expectations:

The Post-Doctoral Researcher will contribute in the following areas:

Hypersonic Flow Solvers, Computational Mechanics, and Numerical Methods

  • Develop, implement, test, and improve numerical methods for hypersonic and high-speed compressible flow simulation.
  • Contribute to scalable solver capabilities for complex flow physics, which may include shocks, boundary layers, thermal effects, fluid-structure coupling, solid mechanics, mesh motion, and other challenging multiphysics phenomena.
  • Develop and evaluate numerical discretizations, nonlinear and linear solvers, preconditioners, time-integration strategies, and stabilization approaches relevant to large-scale simulation.
  • Support research involving advanced discretization technologies, potentially including finite element methods, high-order methods, space-time methods, and related approaches.
  • Assist in integrating solver components across fluid, solid, mesh, and multiphysics modules.
  • Support verification and validation activities, including benchmark problems, code-to-code comparisons, manufactured solutions, and comparison with available experimental or reference data.
  • Develop robust workflows for simulation setup, execution, post-processing, and analysis of hypersonic flow problems.

High-Performance Scientific Software Development

  • Design, implement, and maintain high-quality scientific computing software in modern programming environments.
  • Develop scalable parallel algorithms and simulation workflows for distributed-memory, shared-memory, and GPU-accelerated high-performance computing.
  • Use and contribute to computational tools involving linear algebra, sparse matrix methods, iterative solvers, preconditioning, mesh data structures, and parallel communication.
  • Support code testing, documentation, reproducibility, version control, and software engineering best practices.

Applied Research, Publications, and Technical Communication

  • Conduct original research related to hypersonic simulation, computational mechanics, numerical methods, and scientific computing.
  • Co-author peer-reviewed journal articles, conference papers, technical reports, and research presentations.
  • Present research results at project meetings, technical reviews, conferences, and sponsor-facing discussions.
  • Contribute to proposal development, technical documentation, and research planning as appropriate.

Collaboration and Mentorship

  • Work closely with faculty, graduate students, undergraduate researchers, and external collaborators on research and software development activities.
  • Provide technical guidance to students contributing to solver development, computational mechanics, mesh generation, or multiphysics simulation tasks.
  • Support internal knowledge transfer through documentation, tutorials, code reviews, and collaborative development practices.
  • Help maintain a productive, rigorous, and collegial research environment.

Documents Required at the Time of Application: Please attach the following documents to your faculty application:

  • Cover letter describing research interests, relevant experience, and fit for the position.
  • Curriculum vitae.
  • Mission Alignment Statement
  • Names and contact information for three professional references.
  • Representative publications or technical writing samples.
  • Optional: links to relevant software repositories, computational projects, or research codes.

Note: Failure to attach the required documents may result in your application not being considered.

This position requires the successful candidate to relocate and/or reside in Utah for the duration of their employment.

MISSION ALIGNMENT STATEMENT INSTRUCTIONS

If you are a member of the Church of Jesus Christ of Latter-day Saints:

BYU is committed to hiring faculty members who enthusiastically embrace and energetically advance its unique mission. To this end, please include a one-page mission alignment statement as part of your application that addresses how you might, as a BYU faculty member: (1) live a life of loyalty to Jesus Christ and His restored Church and align yourself with doctrine and teachings declared by living prophets, seers, and revelators; (2) demonstrate intentionality in building faith in Jesus Christ and testimony of His restored gospel among students and others in the BYU community; and (3) teach your subject matter with the Spirit of God and strive to keep it "bathed in the light and color of the restored gospel" (Spencer W. Kimball).

If you are not a member of the Church of Jesus Christ of Latter-day Saints:

Applicants who are not members of The Church of Jesus Christ of Latter-day Saints include a one-page mission alignment statement that describes understanding of and commitment to the Mission of Brigham Young University and the AIMS of a BYU Education.

EMPLOYMENT REQUIREMENTS

All new employees who are members of The Church of Jesus Christ of Latter-day Saints will be required to hold and be worthy to hold a current temple recommend.

All faculty are required to abide by the university's Honor Code and Dress &Grooming Standards. Preference is given to qualified candidates who are members in good standing of the affiliated church, The Church of Jesus Christ of Latter-day Saints. Successful candidates are expected to support and contribute to the academic and religious missions of the university within the context of the principles and doctrine of the affiliated church.


EQUAL OPPORTUNITY

Brigham Young University is an equal opportunity employer, including disability and protected veteran status.


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