DNA Teleportation
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DNA Teleportation
DNA teleportation is a claim that DNA produces Electromagnetic radiation, electromagnetic signals (EMS), measurable when highly diluted in water. This signal can allegedly be recorded, transmitted electronically, and re-emitted on another distant pure water sample, where DNA can DNA replication, replicate through polymerase chain reaction despite the absence of the original DNA in the new water sample. The idea was introduced by the Nobel Prize, Nobel laureate Luc Montagnier in 2009. It is similar in principle to water memory, a concept popularised by Jacques Benveniste in 1988. No independent research has been conducted to support or refute the claim and, to this day, there is no know or plausible scientific mechanism by which it might work. Electromagnetic signals from DNA Bacterial DNA In 2009, Luc Montagnier, Montagnier and his collaborators published a paper titled "Electromagnetic signals are produced by aqueous nanostructures derived from bacterial DNA sequences" in which ...
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Electromagnetic Radiation
In physics, electromagnetic radiation (EMR) consists of waves of the electromagnetic field, electromagnetic (EM) field, which propagate through space and carry momentum and electromagnetic radiant energy. It includes radio waves, microwaves, infrared, Light, (visible) light, ultraviolet, X-rays, and gamma rays. All of these waves form part of the electromagnetic spectrum. Classical electromagnetism, Classically, electromagnetic radiation consists of electromagnetic waves, which are synchronized oscillations of electric field, electric and magnetic fields. Depending on the frequency of oscillation, different wavelengths of electromagnetic spectrum are produced. In a vacuum, electromagnetic waves travel at the speed of light, commonly denoted ''c''. In homogeneous, isotropic media, the oscillations of the two fields are perpendicular to each other and perpendicular to the direction of energy and wave propagation, forming a transverse wave. The position of an electromagnetic wave w ...
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