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Black Hole PSO J030947.49+271757.31 Aimed Directly At Earth

A planet closer to a black hole would possibly have more toxic and aggressive species of plants that in order to survive the plants would have to consume other plants for nutrients they lacked. Nutrients that would go towards the Bathochromic Effect.

Planets further away would possibly have have less toxic and aggressive species of plants that would thrive under reduced direct R & B shift due to the R & B shift being absorbed by other factors as such gas giants and atmospheres such as Earths. Earth would receive reaction light from distant black hole R & B shift and not direct R & B shift from being close to the black hole.
More gibberish!
 
And here he is!

Gibberish said:
blue shift red shift green shift bull shift orange shift night shift puce shift
black hole white hole glory hole gopher hole cake hole bung hole
bathochromic bathetic chromatic Tiamat

Hey? Who's talking about me?
 
https://arxiv.org/abs/1910.00669

We consider an observer who moves under the horizon of the Schwarzschild black hole and absorbs a photon. There are two qualitatively different situations when (i) a photon comes from infinity, (ii) it is emitted by another observer near the past (illusory) horizon. We analyze the frequency change for absorption near the event horizon and near the singularity. In general, the result depends strongly on the angular momenta of an observer and a photon. For pure radial motion, radiation inside the horizon experiences ubounded redshift in case (ii) and, moreover, near the singularity this is valid also for case (i). For nonzero momenta, it has a finite frequency or experiences the unbounded blueshift. There is scenario in which the ubounded redshift in the intermediate region inside the horizon changes to the unbounded blueshift when an observer approaches the singularity.


http://theconversation.com/why-star...-from-black-hole-at-heart-of-milky-way-100864

Therefore if we can light that has red or blue shifted as result of a black hole then said light will traveled x number of light years reaching the Earth, which in turn that red and blue shift light would be part of the process for plants to develop their defensive measures from.
 
BBC article on imaging of one of the jets of another blazar* (3C 279) by the Event Horizon Telescope team using VLBI.

One year on from publishing the first ever image of a black hole, the team behind that historic breakthrough is back with a new picture.

This time we're being shown the base of a colossal jet of excited gas, or plasma, screaming away from another black hole at near light-speed.

https://www.bbc.com/news/science-environment-52204614

The physics of how such jets extract energy from the black hole is not well understood. Images such as these should help to refine and choose between theories.

* A blazar is a type of quasar where one of the two relativistic jets of the active galactic nucleus (AGN) happens to be directed in the general direction of earth.
 
:
Therefore if we can light that has red or blue shifted as result of a black hole then said light will traveled x number of light years reaching the Earth, which in turn that red and blue shift light would be part of the process for plants to develop their defensive measures from.


I am reminded of the words of the physicist Wolfgang Pauli, who said: "Das ist nicht nur nicht richtig, es ist nicht einmal falsch!"

(“That is not only not right, it is not even wrong!”)
 
Although you could watch it fall apart as you delve into the definitions of the word stack being used and find them not fitting at all.
 
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