Satellite Visibility Geometry
v1.0
Predict satellite rise, peak, set, and visibility from current TLEs, observer coordinates, and a time window.
Cross-content topic · 15 matches
This page groups tools, debunks, and experiments that connect to the tag “Satellites”.
Interactive models, calculators, and simulations connected to “Satellites”.
v1.0
Predict satellite rise, peak, set, and visibility from current TLEs, observer coordinates, and a time window.
v1.1
Replay ISS and geostationary passes on a live globe ground track with horizon elevation and pass scrubber.
v2.0
Compute orbital period, ground speed, and horizon slant range from altitude, then see why TLE plus SGP4 pass tables repeat.
Claim-by-claim responses tied to the same topic and underlying theory.
v1.0
Satellites are fake, and communication or tracking systems are really just balloons, towers, or fabricated stories.
v1.5
GPS and GNSS are really just ground towers or fake software, so they do not prove anything about satellites or a globe.
v1.0
Home dishes point too low above the horizon, so they must be aiming at nearby towers instead of satellites.
v1.0
Predicted satellite passes do not prove orbiting objects because balloons could explain moving lights too.
v1.0
Apollo crews never walked on the Moon, the landings were filmed on Earth, often attributed to studio work or Kubrick-style productions.
v1.0
Stars, Sun, and Moon are fixed on a nearby glass-like dome or firmament shell that encloses a flat world.
v2.0
Space-station video is filmed in pools, aircraft parabolas, or wire rigs because sustained weightlessness cannot be real.
Repeatable observations you can use to test the same topic directly.
v1.1
Can you capture a satellite radio downlink with a receive-only SDR at the predicted pass time, frequency, and sky direction the way orbital geometry predicts?