How Galactic Mystery Matter On The Dark Side

Norwegian Christian Birkeland, who heralded a new era of the universe, predicted that the universe would likely be composed of exotic components later called dark matter. His comments on this subject appeared in the description of the Norwegian Aurora Polaris Expedition (1902-1903). The idea of ​​the Birkeland expedition was announced in the year of fate in 1913, with the rise of two key elements of the Communist Declaration: the Socialist Federal Reserve System and the US income tax. The evolutionary process was happening in all areas. Economics, politics, science, and the minds and minds of men and women were balanced, but relativism, not truth, dominated modern imagination. Cosmology will suffer from the same "evolutionary" thinking, and Birkeland writes in the same way: 

 "We hypothesized that all evolutionary star systems emit electrical particles into the universe. It seems reasonable to believe that most of the material in the universe is in "empty" space, not in the solar system or stars. 

 Thus, Birkeland is more likely to find most matter in the "evolved" universe in "empty" space than can be observed in stellar objects. Currently, only 4% of the universe is considered to be this common visible type of star. In addition, about a quarter of the universe is made up of ubiquitous dark matter, and the rest of the universe is filled with even more bizarre dark energy. It was Fritz Zwicky, a Swiss astrophysicist who worked at the California Institute of Technology, who advanced the concept of dark matter with the support of the Virial theorem. 

 This mathematical relationship is an equation that limits the energy of a set of particles. In another dark year of steady evolution to slavery since 1933, Zwicky used the Virial theorem to test the hypothesis of dark matter when gold was removed from the accounts of American citizens. He turned his attention to the cluster of galaxies, and his analysis provided a prima facie confirmation of the presence of dark matter. By assessing the extent of movement of these galaxies around the cluster of galaxies, he was able to roughly infer all the material contained therein. 

 He was surprised to find that this total mass deviated from the individually calculated estimates. Other values ​​were obtained by analyzing the total number of galaxies and the brightness of the Kaminokeza galaxy cluster. Comparing this value with the peripheral calculation, we found that there was a deviation of at least 400 times. The galaxy was not large enough to cause the calculated orbital velocity, so we need another mechanism to explain this phenomenon. This conundrum has become a large number of problems missing in the scientific glossary. Zwicky has established the need for the existence of an invisible, previously unknown mass source to supply them.

Therefore, it is a fact of the current state of cosmology that the greatest evidence of dark matter comes from the gravitational data of these galaxies. Scientists have even created a galaxy curve that represents the rotational characteristics of a star relative to its distance from the galactic center. Plotting gravity data reveals that only a small portion of the observed velocities can be explained by classical calculations. In other words, the observed galaxies lack visible mass to attribute the sum of the gravitational effects to visible stars, planets, and galaxies. Therefore, the easiest way to explain this galaxy's mystery of inadequate mass is to assume an undetectable type of mass known as dark matter that can cause gravitational effects. 

 As more data is collected on these and other aspects of the universe, formulas and cosmological assumptions are established to explain the results thus obtained. Meeting the requirements of the above aspects will lead some scientists to suggest several different types of dark matter. The four main types of dark matter are called 1 baryon dark matter. 2 Warm Dark Matter; 3 cold dark matter and 4 hot dark matter. Dark matter can range from known to predicted, from black holes to brown dwarfs, giant compact halo objects (MACHO), neutrinos, axions, WIMPS, or weakly interacting giant particles and esoteric neutralinos. is. However, there is another explanation for the gravitational effect that originally created the concept of dark matter. 

 If the photograph contains an incomplete understanding of gravity, it can be argued that the interpretation of dark matter is incorrect, as another cause causes these phenomena. Several different competing theories have been developed to explain the observed galaxy data. In particular, one of the most important competing explanations is provided by the scalar tensor theory, which seeks to combine the doctrine of quantum mechanics with gravity. The amplification of these ideas leads to a number of exotic ideas that challenge the most basic concepts of physics and astronomy. Other concepts went a step further and were of interest to astronomers like Dr. Riccardo Scarpa enables cosmology without the mysterious dark matter. 

 Dr. Scarpa works at the European Southern Observatory in Santiago Chile using the Very Large Telescope Array at Paranal. With all of his experience in this field, it is interesting to note some of his most recent comments on the superfluous dark matter: 

 “Dark matter is the craziest idea we`ve ever had in astronomy. It can appear when you need it, it can do what you like, be distributed in any way you like. It is the fairy tale of astronomy.” 

 In view of these comments one should ask if another scientific idea might be on the verge of collapsing. Indeed, astronomers are routinely using these other theoretical principles on a daily basis in infrared observatories around the world. Therefore, we are very likely to be simply wrong about everything

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