and it is denser the closer you are to the water, casing the light to bend away and making it impossible to view an object through it. Also, an object at extreme distance no matter how large will disappear bottom up, because there is a more acute viewing
Post by twetch#16771
Which causes the visual data to compress the closer it is to the “horizon“. Here is a video using a crappy little model that can demonstrate atmospheric lensing...
https://youtu.be/s-PhStb6mTQ
What the chain says
- Block
- 624 818
- Time
- 2020-03-05T00:47:45Z
- Signer
- 19LkpkNNHP7kAyk43gUdn13WyS2r5affDu
- App
- twetch
- Type
- post
- Content type
- text/plain
- Name in tx
- twetch#16771
Fields the transaction did not carry are omitted. Open the payload to see the bytes as stored.
Signed by
19LkpkNNHP7kAyk43gUdn13WyS2r5affDu VerifiedReposted by (1)
Replies (1)
And here is a video proving that the math of our supposed sphere does not come anywhere close to adding up to what we see. If the math is wrong, the model is wrong.
https://youtu.be/dmJ7-hVeNPY