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Remote Physics Simulation Jobs in Lilburn, GA (NOW HIRING)

Robotics Perception Engineer

Atlanta, GA · On-site +1

  • Medical

  • Dental

  • Vision

Background in Gazebo or other physics simulation for sensor modeling Remote Work Requirements This role can be filled remotely. Remote team members are expected to have reliable high-speed internet ...

Remote Physics Simulation information

See Lilburn, GA salary details

$10.1K

$62.1K

$111.5K

How much do remote physics simulation jobs pay per year?

As of Aug 13, 2026, the average yearly pay for remote physics simulation in Lilburn, GA is $62,055.00, according to ZipRecruiter salary data. Most workers in this role earn between $40,400.00 and $73,000.00 per year, depending on experience, location, and employer.

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

AspectRemote Physics SimulationRemote Mechanical Engineer
Required credentialsPhysics or related degrees, simulation software proficiencyMechanical engineering degree, CAD and design software skills
Work environmentPrimarily software-based, research-focusedDesign, analysis, and testing of mechanical systems
Industry usageResearch labs, simulation firms, aerospace, gamingManufacturing, automotive, robotics, product design
Common search intentSimulation jobs, physics modeling rolesMechanical design jobs, product development roles

Remote Physics Simulation roles focus on developing and running physics-based models using specialized software, often in research or simulation companies. Remote Mechanical Engineer positions involve designing and analyzing mechanical systems, frequently using CAD tools. While both roles require engineering knowledge, Physics Simulation emphasizes computational modeling, whereas Mechanical Engineering centers on physical product development.

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

To thrive as a Remote Physics Simulation Engineer, you need a strong background in physics, mathematics, and computational modeling, typically supported by a relevant degree such as physics, engineering, or computer science. Proficiency with simulation software (like ANSYS, COMSOL, or MATLAB), programming languages (such as Python or C++), and experience in high-performance computing environments are often required. Excellent problem-solving abilities, communication skills, and self-motivation are vital soft skills for collaborating effectively in a remote setting. These skills ensure accurate simulations, efficient workflows, and successful teamwork on complex, distributed projects.

What are some common challenges faced when collaborating remotely on physics simulation projects?

Collaborating remotely on physics simulation projects often involves coordinating across different time zones, ensuring consistent communication, and managing access to high-performance computing resources. Team members need to share complex codebases, large datasets, and simulation results efficiently, which requires robust version control and cloud-based tools. Regular virtual meetings and clear documentation help maintain project alignment, while effective issue tracking tools can address bugs or discrepancies in simulation outcomes. Building strong remote collaboration skills is key to overcoming these challenges and delivering successful simulation results.

What is a remote physics simulation?

A Remote Physics Simulation job involves using computer software to model and analyze physical systems from a remote location, rather than in a traditional laboratory or office setting. Professionals in this field create simulations that help predict how objects or systems behave under various conditions, supporting research, engineering, or educational projects. These roles often require strong skills in physics, mathematics, and programming, as well as experience with simulation tools and software. Remote work in this area allows professionals to collaborate with teams and contribute to projects from anywhere in the world.

What job categories do people searching Remote Physics Simulation jobs in Lilburn, GA look for?

The top searched job categories for Remote Physics Simulation jobs in Lilburn, GA are:

Robotics Perception Engineer

Slip Robotics

Atlanta, GA • On-site, Remote

Full-time

Medical, Dental, Vision

Re-posted 28 days ago


Job description

About Slip Robotics
Slip Robotics is transforming freight logistics with autonomous robotic systems that load and unload trailers faster, safer, and more reliably than traditional methods. Our robots operate in demanding real-world environments alongside people and heavy cargo every day. We are a small, high-impact team based in Atlanta building products that are already deployed in production.
The Role
We are looking for a Robotics Perception Engineer to own the sensing and perception stack on our autonomous mobile robots. You will work across LiDAR, cameras, IMUs, and other sensor modalities to give our robots a reliable understanding of their environment-including trailers, pallets, dock infrastructure, and people. This is a hands-on role where your work ships to production robots operating in live freight facilities.
We need someone who has shipped software on real robots at real customer sites. You should have experience deploying perception systems that work reliably in unstructured or semi-structured environments, and you should be comfortable debugging sensor issues on physical hardware.
Key Responsibilities
  • Design, implement, and maintain the perception pipeline for autonomous mobile robots, including object detection, segmentation, localization, and mapping
  • Integrate and calibrate LiDAR, depth cameras, and other sensors on production robot platforms
  • Develop robust point cloud processing and filtering for reliable operation
  • Build and maintain sensor fusion systems that combine multiple modalities for accurate environment understanding
  • Create and manage datasets for perception model training, validation, and regression testing
  • Collaborate closely with navigation, controls, and hardware teams to ensure perception outputs meet downstream requirements
  • Debug and resolve perception failures on deployed robots using logs, recorded sensor data, and on-site investigation
  • Contribute to CI/CD pipelines for perception software testing and deployment

Requirements
  • 5+ years of professional experience building perception systems for physical robots at a robotics or autonomous vehicle company
  • Strong proficiency in C++ and Python
  • Deep experience with LiDAR processing (point cloud filtering, clustering, registration, SLAM)
  • Hands-on experience with camera-based perception
  • Production experience with ROS or ROS 2
  • Experience with sensor calibration (intrinsic, extrinsic, multi-sensor)
  • Familiarity with machine learning frameworks (PyTorch, TensorFlow) for perception tasks
  • Track record of deploying perception software to real robots in real environments-not just simulation
  • Strong debugging skills and comfort working with physical hardware
  • Excellent communication skills and ability to work in a small, fast-moving team
Nice to Have
  • Master's degree or higher in Computer Science, Robotics, or a related field
  • Experience with AWS IoT, Greengrass, or similar edge-cloud architectures
  • Experience in logistics, warehousing, or freight environments
  • Background in Gazebo or other physics simulation for sensor modeling
Remote Work Requirements
This role can be filled remotely. Remote team members are expected to have reliable high-speed internet access and a dedicated workspace. You will need to travel to our Atlanta facility periodically for hardware integration and testing. A company laptop and necessary peripherals will be provided.
Benefits
  • Competitive salary and equity in an early-stage robotics company
  • Comprehensive benefits including health, dental, and vision
  • Permissive time off policy
  • A small team where your work has direct, visible impact on shipped products
  • The chance to work on robots that are operating in production today-not a research project