1

Physics Simulation Python Jobs in Arlington, TX (NOW HIRING)

Computational Designer Staff

Grand Prairie, TX · On-site +1

$19.50 - $24/hr

... physics, visual effects, 3D animation, simulation analysis, software development, and manufacturing ... programming language (Python or C++ preferred but other languages will be considered). • ...

Computational Designer Staff

Grand Prairie, TX · On-site +1

$19.50 - $24/hr

... physics, visual effects, 3D animation, simulation analysis, software development, and manufacturing ... programming language (Python or C++ preferred but other languages will be considered). • ...

Computational Designer Staff

Grand Prairie, TX · On-site

$19.50 - $24/hr

... physics, visual effects, 3D animation, simulation analysis, software development, and manufacturing ... programming language (Python or C++ preferred but other languages will be considered). • ...

Computational Designer Staff

Grand Prairie, TX · On-site +1

$19.50 - $24/hr

... physics, visual effects, 3D animation, simulation analysis, software development, and manufacturing ... programming language (Python or C++ preferred but other languages will be considered). • ...

next page

Showing results 1-20

Physics Simulation Python information

See Arlington, TX salary details

$9.9K

$60.8K

$109.3K

How much do physics simulation python jobs pay per year?

As of Jun 9, 2026, the average yearly pay for physics simulation python in Arlington, TX is $60,837.00, according to ZipRecruiter salary data. Most workers in this role earn between $39,600.00 and $71,500.00 per year, depending on experience, location, and employer.

What is the difference between Physics Simulation Python vs Mechanical Engineer?

AspectPhysics Simulation PythonMechanical Engineer
Required CredentialsProgramming skills, knowledge of physics, often a degree in physics or computer scienceMechanical engineering degree, professional licensure in some regions
Work EnvironmentSoftware development, research labs, simulation environmentsDesign offices, manufacturing plants, R&D departments
Industry UsageSimulation software development, research, academiaProduct design, manufacturing, systems optimization

Physics Simulation Python focuses on developing and implementing physics-based simulations using Python programming, often in research or software development contexts. Mechanical Engineers apply engineering principles to design, analyze, and manufacture mechanical systems. While both roles require a strong understanding of physics, Physics Simulation Python emphasizes coding and simulation, whereas Mechanical Engineering involves practical design and application in physical systems.

What are the key skills and qualifications needed to thrive as a Physics Simulation Python Developer, and why are they important?

To excel as a Physics Simulation Python Developer, you need a strong background in physics, mathematics, and proficiency in Python programming, often supported by a degree in physics, engineering, or computer science. Familiarity with simulation libraries (such as NumPy, SciPy, PyBullet, or SimPy), version control systems like Git, and experience with visualization tools are commonly required. Analytical thinking, problem-solving abilities, and effective collaboration are standout soft skills in this role. These skills enable the development of accurate, efficient simulations and foster productive teamwork in research or engineering projects.

What are some common challenges faced by professionals working in Physics Simulation with Python, and how can they be addressed?

Professionals in Physics Simulation with Python often encounter challenges such as optimizing simulation performance, ensuring numerical accuracy, and integrating complex libraries (e.g., NumPy, SciPy, PyBullet) into larger workflows. Addressing these issues typically involves using efficient coding practices, leveraging vectorized operations, and validating results with analytical solutions or experimental data. Collaboration with domain experts and regular code reviews can also help maintain code reliability and project scalability. Staying updated with the latest simulation frameworks and actively participating in open-source communities are excellent ways to overcome technical hurdles.

What is a Physics Simulation Python developer?

A Physics Simulation Python developer is a professional who uses the Python programming language to design, implement, and analyze simulations that model physical systems and phenomena. These simulations can range from simple particle motion to complex fluid dynamics or electromagnetic fields, and are widely used in research, engineering, gaming, and education. The developer typically utilizes scientific libraries such as NumPy, SciPy, and PyBullet, and may also work with visualization tools to present simulation results. Their work helps in understanding real-world physics problems, testing hypotheses, or creating realistic interactive environments.
What job categories do people searching Physics Simulation Python jobs in Arlington, TX look for? The top searched job categories for Physics Simulation Python jobs in Arlington, TX are:
What cities near Arlington, TX are hiring for Physics Simulation Python jobs? Cities near Arlington, TX with the most Physics Simulation Python job openings:
Infographic showing various Physics Simulation Python job openings in Arlington, TX as of May 2026, with employment types broken down into 84% Full Time, and 16% Contract. Highlights an 80% In-person, and 20% Remote job distribution, with an average salary of $60,837 per year, or $29.2 per hour.
Associate Software Engineer (Open3D) - Remote

Associate Software Engineer (Open3D) - Remote

micro1 AI

Dallas, TX • Remote

$20 - $120/hr

Part-time

Posted 7 days ago


Job description

Job Title: Junior Software Engineer (Open 3D Engine)


Job Type: Contractor


Location: Remote


Job Summary: Join our client's team as a Junior Software Engineer (Open 3D Engine) and play a pivotal role in training next-generation AI systems for 3D environments. You will leverage your O3DE expertise, spanning the Component Entity System, Atom Renderer, and physics simulations, to generate high quality, synthetic data, enabling AI models to learn, reason, and construct high performance, AAA quality digital worlds.


Key Responsibilities:

  1. Design, develop, and implement interactive 3D scenes and simulations using Open 3D Engine (O3DE) for AI training purposes.
  2. Leverage the full suite of O3DE tools—including Atom Renderer, Component Entity System, Gems, and Asset Processor—to create high-fidelity, effective environments.
  3. Collaborate with the customer’s team to transform conceptual ideas into finished AI training workflows and simulations.
  4. Integrate Python and C++ scripts for enhanced functionality and automation within O3DE projects.
  5. Utilize AWS services to support robust, scalable 3D simulation deployment and asset management.
  6. Document processes and communicate progress clearly through strong written and verbal updates.
  7. Troubleshoot and optimize simulation performance, ensuring accuracy and efficiency for AI training objectives.


Required Skills and Qualifications:

  1. Hands-on experience with O3DE (Open 3D Engine), including a deep understanding of core tools and asset workflows.
  2. Proficiency in Python and C++ for 3D scene development and automation.
  3. Experience building interactive 3D environments from concept to completion, tailored for simulation and AI training.
  4. Familiarity with Atom Renderer, Component Entity System, Gems, and Asset Processor within O3DE.
  5. Strong written and verbal communication skills, with the ability to clearly document and present technical concepts.
  6. Basic knowledge of AWS infrastructure and its application for cloud-based development and deployment.
  7. Background in game development, simulation, or real-time graphics projects.


Preferred Qualifications:

  1. Previous experience working directly on AI training or simulation projects within O3DE.
  2. Exposure to asset management pipelines and collaborative development environments.
  3. Demonstrated initiative in adopting new O3DE tools and staying current with engine updates.