Engineering
Fisico-esoterical considerations
To achieve much,
You have to give up a lot.
Many remember the expectations of the end of 2012, the fear of unknownness, the wave of cataclysms, the end of the world, which frightened us. In fact, the event itself happened, but not as expected.
Problems began when a group of physics working under the leadership of Randolf Pohl (Randolf Pohl) from the Max Plank Quantum Optics Institute spoke of their measurements.
Elementary particle accelerators have bombed hydrogen atoms by meoons. As a result, these unstable elementary particles, which are twice as severe as electrons and also have negative charges, displaced the electrons by taking their seats. Because of the larger mass, the meon is moving much closer to the proton and more sensitive to its diameter. Therefore, measurements based on this interaction should be much more precise.
In 2010, Paul and his colleagues first published a refined proton of 0,8418 femtometers. In normal life, the difference of 0.3 millimetres is almost impractical, but not in quantum physics, where error usually does not exceed interest.
Two years later, the same team of researchers re-examined. According to an article published in the Science magazine, scientists also received meon hydrogen atoms, but this time, with lasers, they transferred heavy negative particles to other orbits to make calculations based on a new set of energy levels.
They argue that recent measurements were more accurate than in 2010. However, the proton ' s diameter was 0.8408 femtometers, which was almost entirely consistent with the previous result.
At the same time, each robbed the field has its " drilling " programme. Opening is done in New Mexico, USA, 27 Radio Telescope Very Array (VLA), g.









