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Top AI Repos tracks AI repositories on GitHub and answers two different questions about each one: is it moving right now, and would you bet a product on it.
Top AI Repos tracks AI repositories on GitHub and answers two different questions about each one: is it moving right now, and would you bet a product on it.
Next generation High-Power Rocketry 6-DOF Trajectory Simulation
| Date | Stars |
|---|---|
| 2026-07-24 | 1026 |
| 2026-07-25 | 1026 |
| 2026-07-28 | 1032 |
| 2026-07-30 | 1032 |
| 2026-08-06 | 1032 |
Today
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35.0
growth rate 0.00%/day
<picture> <source media="(prefers-color-scheme: dark)" srcset="https://raw.githubusercontent.com/RocketPy-Team/RocketPy/master/docs/static/RocketPy_Logo_white.png"> <source media="(prefers-color-scheme: light)" srcset="https://raw.githubusercontent.com/RocketPy-Team/RocketPy/master/docs/static/RocketPy_Logo_black.png"> <img alt="RocketPy Logo" src="https://raw.githubusercontent.com/RocketPy-Team/RocketPy/master/docs/static/RocketPy_Logo_black.png"> </picture> <br> [](https://colab.research.google.com/github/RocketPy-Team/rocketpy/blob/master/docs/notebooks/getting_started_colab.ipynb) [](https://docs.rocketpy.org/en/latest/?badge=latest) [](https://pypi.org/project/rocketpy/)  [](https://codecov.io/gh/RocketPy-Team/RocketPy) [](https://github.com/psf/black) [](https://github.com/RocketPy-Team/RocketPy/graphs/contributors) [](https://github.com/sponsors/RocketPy-Team) [](https://discord.gg/b6xYnNh) [](https://www.instagram.com/rocketpyteam) [](https://www.linkedin.com/company/rocketpy) [](http://dx.doi.org/10.1061/%28ASCE%29AS.1943-5525.0001331) [](https://deepwiki.com/RocketPy-Team/RocketPy) # RocketPy RocketPy is the next-generation trajectory simulation solution for High-Power Rocketry. The code is written as a [Python](http://www.python.org) library and allows for a complete 6 degrees of freedom simulation of a rocket's flight trajectory, including high-fidelity variable mass effects as well as descent under parachutes. Weather conditions, such as wind profiles, can be imported from sophisticated datasets, allowing for realistic scenarios. Furthermore, the implementation facilitates complex simulations, such as multi-stage rockets, design and trajectory optimization and dispersion analysis. ## Main features 1. **Nonlinear 6 Degrees of Freedom Simulations** - Rigorous treatment of mass variation effects - Efficiently solved using LSODA with adjustable error tolerances - Highly optimized for fast performance 2. **Accurate Weather Modeling** - Supports International Standard Atmosphere (1976) - Custom atmospheric profiles and Soundings (Wyoming) - Weather forecasts, reanalysis, and ensembles for realistic scenarios 3. **Aerodynamic Models** - Optional Barrowman equations for lift coefficients - Easy import of drag coefficients from other sources (e.g., CFD simulations) 4. **Parachutes with External Trigger Functions** - Test the exact code that will fly - Sensor data augmentation with noise for comprehensive parachute simulations 5. **Solid, Hybrid, and Liquid Motors Models** - Burn rate and mass variation properties from the thrust curve - Define custom rocket tanks based on flux data - Support for CSV and ENG file formats 6. **Monte Carlo Simulations** - Conduct dispersion analysis and global sensitivity analysis 7. **Flexible and Modular** - Perform straightforward engineering analysis (e.g., apogee
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Would you bet a product on this? Bounded 0–100 and slow moving.
matched fp:e174c613343fa850, topic:simulation