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Astrophyzix Digital Observatory

Trusted for Asteroid News, Research, Data & Analysis

Delivering unpaywalled, evidence-driven analysis, public research tools, real-time datasets and monitoring and tracking of all PHA/NEO asteroids, comets and solar system objects.

Every tracking console is designed and engineered here. Systems directly ingest multiple NASA datasets covering over 1.57 million objects, then run live, verifiable probabilistic orbital analysis and deliver an instant deterministic summary of close approaches. Used by students, educators, researchers, and the public. Data provenance is traceable, verifiable and transparent. Original research papers are published on Astrophyzix.academia.edu, registered with official DOIs via Zenodo and academically indexed by OpenAIRE.

  • NASA API'S
  • ✅ CNEOS Scout
  • ✅ JPL CAD
  • ✅ NeoWs
  • ✅ SBDB
  • ✅ Horizons
  • ✅ Sentry
Showing posts with label academic research. Show all posts
Showing posts with label academic research. Show all posts

Astrophyzix Planetary Impact Engine: The Most Technically Advanced Academic Module Engineered into a Legacy CMS, Ever. Impossible Made Possible

Introducing the Advanced Multi-Planetary Impact and Airburst Engine


📌 Cited by Cyber-Amber Tech News | 📌 Cited by Aviation Today News



Astrophyzix Impact Engine Screenshot


The Most Technically Advanced, Fully Functioning Academic Module Engineered into a Legacy CMS, Ever

Asteroid and comet impacts are among the most energetic natural processes in the Solar System. From the formation of planetary crusts to the extinction-level events that have reshaped life on Earth, impact physics sits at the intersection of planetary science, geophysics, and atmospheric dynamics. At Astrophyzix, we are introducing a new tool designed to bring this complex, multidisciplinary science into a coherent, interactive framework: the Advanced Multi-Planetary Impact and Airburst Engine.

This system is not a simplified toy model. It is a physics-driven simulation environment grounded in peer-reviewed literature, incorporating validated scaling laws, atmospheric entry models, and planetary datasets sourced from leading scientific institutions. Its purpose is to bridge the gap between abstract equations and intuitive understanding—allowing users to explore impact scenarios across multiple worlds with scientifically credible outputs.


ℹ️ Sources / Technical / Mathematical / Scientific / Academic / Integrators / Methods
Sources
  • NASA APIs
  • CNEOS Scout
  • JPL CAD
  • NeoWs
  • SBDB
  • Horizons
  • Sentry
Stack
  • IEEE-754 Float64
  • RKN4
  • Yoshida-4
  • Dormand–Prince / DOPRI5
  • DOPRI8 /DOP853
  • Verlet
  • N-Body
  • Einstein–Infeld–Hoffmann
  • DE441
  • ΛCDM
  • J2
  • Meeus
  • Yarkovsky
  • Schwarzschild GR
  • Simon 1994
  • Holsapple–Schmidt
  • Collins / Pierazzo / Ward–Asphaug
  • AIS-Wide
  • Abyssal 4 km
  • WebGPU
  • DOI Registered
  • Academia.edu
  • Zenodo
  • OpenAIRE
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