The Reason Scientists Can Calculate the Distance and Velocity of Galaxies and Stars

Scientists understand the immense distance between galaxies and stars because of American astronomer Edwin Hubble’s theory of the expanding universe, as it is now understood that galaxies drift from the observer proportional to their distance, meaning the further a star is, the faster it continues to move away from the observer. This phenomenon is referred to as “Hubble–Lemaître’s Law”. Astronomers can calculate how fast a star is moving away from the Earth by observing the Doppler shift of the light it projects, as yellow light becomes red light as a star moves away and yellow light becomes blue light as it approaches closer. A formulae is then used to calculate the distance from the source point. Redshift is observed throughout the universe which confirms that the universe is indeed expanding at a phenomenal rate of speed

The “Soulmate” Quality of Quantum Non-Locality and Photons

 

When a photon, a particle with no mass which is effectively a quantum packet of light, divides due to some external force, its energy is split and it emerges as 2 photons. These new photons are forever intrinsically tied together, able to communicate instantaneously despite their great distances as the universe expands. This should not be possible as light cannot travel faster than 299,792,458 kilometers per second. Regardless of how far apart these particles travel, their profound bond is unbreakable as they will always remain connected regardless of circumstance. This can be thought of as the ancient Greek philosopher Plato’s understanding of love, with a single being split into 2 beings with the new beings becoming soulmates who search for eachother eternally. For as long as the soulmates, or photons, exist, they will be intrinsically tied to each other as the one and only soulmate, or particle, which has the capability to do this with its pair. This long distance relationship between all elementary particles has been on going since the beginning of the universe, a fidelity which lasts for as long as the universe exists. The simple act of observant measurement is all that is required to sever this tremendous commitment between particles. If the spin of one particle is measured, a seemingly innocuous act by a third party observer, the bond between each particle is forever severed, never to return to its previous state. It’s unclear how these particles communicate which includes the break up message sent between them when the integer spin of one of the pair is observed