When qubits become entangled, the information stored in them can be shared and processed in ways that classical computers simply cannot replicate. This is why classical biochemists cannot fathom what cells are capable of. In the tech world, this science allows quantum computers to solve specific problems exponentially faster than traditional computers.
In decentralized medicine, this science allows us to solve diseases that perplex the experts in centralized medicine.
For example, wherever there’s a buildup of electric charge from sunlight, the field around it starts to spread out, and the more charge there is, the stronger that spreading becomes. But how much it spreads also depends on the nature of space itself. This is why Nature evolved melatonin and placed it early in evolutionary history into neuroectoderm, but since the KT event, it moved its key location to mitochondria. Why?
Distribution of charge was the answer. This is why Neural Crest cells migrated all over our body over evolutionary time scales. Gauss' Law mandates it to control Coulomb forces in neuroectodermal derivatives. This is why the NCC is the motherboard of mammalian life.
In other words, the more charge you cram inside the stall, the more desperate energy is trying to get out. Melatonin is how cells confine charge. Cells moved melatonin production from the gut, brain, and pineal gland over evolutionary history to concentrate inside mitochondria as complexity grew from the Cambrian event.
People are unaware that this electroforce is involved with the biology of melatonin and the function of mitochondria, where electrons and protons are the target of this force because they are charged particles. The same thing is true of T-Regulator cells in the skin.