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Physics Software Engineer Jobs in Birmingham, AL

Develop and perform test procedures to validate new RF hardware and control software. * Analyze and ... MS Degree in Electrical Engineering / Physics or BS Degree in Electrical Engineering / Physics with ...

Develop and perform test procedures to validate new RF hardware and control software. * Analyze and ... MS Degree in Electrical Engineering / Physics or BS Degree in Electrical Engineering / Physics with ...

Calculus 3 Tutor

Birmingham, AL · Remote

$18 - $40/hr

Ability to explain vector calculus concepts for engineering and physics applications. * Conceptual ... Adapts instruction using 3D graphing software, step-by-step parametrization guidance, and ...

... physics, and applied mathematics applications. * Conceptual Teaching & Problem-Solving: Skilled at ... Adapts instruction using direction fields, software visualization tools, and engineering-context ...

... and software. * Alert management of project overruns, missed deadlines, and any challenges that ... Preferred Qualifications * MBA or Master's Degree in Engineering or Physics * Project Management ...

... and software. * Alert management of project overruns, missed deadlines, and any challenges that ... Preferred Qualifications * MBA or Master's Degree in Engineering or Physics * Project Management ...

Physics Software Engineer information

See Birmingham, AL salary details

$59.5K

$138.3K

$192.6K

How much do physics software engineer jobs pay per year?

As of Aug 27, 2026, the average yearly pay for physics software engineer in Birmingham, AL is $138,258.00, according to ZipRecruiter salary data. Most workers in this role earn between $112,500.00 and $162,100.00 per year, depending on experience, location, and employer.

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.

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.

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 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 popular job titles related to Physics Software Engineer jobs in Birmingham, AL?

For Physics Software Engineer jobs in Birmingham, AL, the most frequently searched job titles are:

What job categories do people searching Physics Software Engineer jobs in Birmingham, AL look for?

The top searched job categories for Physics Software Engineer jobs in Birmingham, AL are:

What cities near Birmingham, AL are hiring for Physics Software Engineer jobs?

Cities near Birmingham, AL with the most Physics Software Engineer job openings:

Infographic showing various Physics Software Engineer job openings in Birmingham, AL as of August 2026, with employment types broken down into 82% Full Time, and 18% Contract. Highlights an 100% In-person job distribution, with an average salary of $138,258 per year, or $66.5 per hour.

Computer Engineer (Cybersecurity)

Birmingham, AL • On-site


US Department of the Treasury
Public Administration • 10K+ employees

8.2

Company rating: 8.2 out of 10

Based on 13 frontline employees who took The Breakroom Quiz

309th of 851 rated public administrative organizations

Good employer

Paid breaks

Respectful managers


$106K/yr

Full-time, Part-time

Posted 2 days ago

New


Job description

PLEASE NOTE: Based on the current hiring restrictions, selectees may be subject to additional approvals prior to an offer being extended.

This position is located at Bureau of the Fiscal Service, Applications Development Division. As a Computer Engineer (Cybersecurity), you will oversee development, implementation, integration, testing, security, and modernization activities for assigned systems and applications.

Qualifications:You must meet the following requirements by the closing date of this announcement.
The experience may have been gained in either the public, private sector or volunteer service. One year of experience refers to full-time work; part-time work is considered on a prorated basis. To ensure full credit for your work experience, please indicate dates of employment by month/day/year and indicate number of hours worked per week on your resume.
For the GS-13, you must have one year of specialized experience at a level of difficulty and responsibility equivalent to the GS-12 grade level in the Federal service.Specialized Experience for this position includes:
Experience performing work that involves the design, documentation, development, modification, testing, installation, implementation, and support of new or existing applications software in order to ensure that applications are optimized for state-of-the-art technology, current and planned functionality, and regulatory requirements for an organization.
Examples for this position could include:
- Project experience for a business system with a wide variety of technologies (i.e. programming languages, frameworks, platforms, tools, databases); OR
- Experience providing IT services such as designing, developing, testing, documenting, maintaining, and/or integrating application software; OR
- Participating in technological planning, product evaluation, and report development.Education:Education Requirements:
A. Degree: Engineering. To be acceptable, the program must: (1) lead to a bachelor's degree in a school of engineering with at least one program accredited by ABET; or (2) include differential and integral calculus and courses (more advanced than first-year physics and chemistry) in five of the following seven areas of engineering science or physics: (a) statics, dynamics; (b) strength of materials (stress-strain relationships); (c) fluid mechanics, hydraulics; (d) thermodynamics; (e) electrical fields and circuits; (f) nature and properties of materials (relating particle and aggregate structure to properties); and (g) any other comparable area of fundamental engineering science or physics, such as optics, heat transfer, soil mechanics, or electronics.
OR
B. Combination of education and experience -- college-level education, training, and/or technical experience that furnished (1) a thorough knowledge of the physical and mathematical sciences underlying engineering, and (2) a good understanding, both theoretical and practical, of the engineering sciences and techniques and their applications to one of the branches of engineering. The adequacy of such background must be demonstrated by one of the following:
  1. Professional registration or licensure -- Current registration as an Engineer Intern (EI), Engineer in Training (EIT)1, or licensure as a Professional Engineer (PE) by any State, the District of Columbia, Guam, or Puerto Rico. Absent other means of qualifying under this standard, those applicants who achieved such registration by means other than written test (e.g., State grandfather or eminence provisions) are eligible only for positions that are within or closely related to the specialty field of their registration. For example, an applicant who attains registration through a State Board's eminence provision as a manufacturing engineer typically would be rated eligible only for manufacturing engineering positions.
  2. Written Test -- Evidence of having successfully passed the Fundamentals of Engineering (FE)2 examination or any other written test required for professional registration by an engineering licensure board in the various States, the District of Columbia, Guam, and Puerto Rico.
  3. Specified academic courses -- Successful completion of at least 60 semester hours of courses in the physical, mathematical, and engineering sciences and that included the courses specified in the basic requirements under paragraph A. The courses must be fully acceptable toward meeting the requirements of an engineering program as described in paragraph A.
  4. Related curriculum -- Successful completion of a curriculum leading to a bachelor's degree in an appropriate scientific field, e.g., engineering technology, physics, chemistry, architecture, computer science, mathematics, hydrology, or geology, may be accepted in lieu of a bachelor's degree in engineering, provided the applicant has had at least 1 year of professional engineering experience acquired under professional engineering supervision and guidance. Ordinarily there should be either an established plan of intensive training to develop professional engineering competence, or several years of prior professional engineering-type experience, e.g., in interdisciplinary positions. (The above examples of related curricula are not all-inclusive.)
Note: An applicant who meets the basic requirements as specified in A or B above, except as noted under B.1., may qualify for positions in any branch of engineering unless selective factors indicate otherwise.
Employment Type: OTHER


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