New views contradict the current understanding of the dark story
Computer simulations of black story reading may be incorrect
A dark object is an invisible glue that holds stars together
The dark, mysterious objects that make up the galaxy's mass, including our Milky Way, also confuse scientists, with new observations of distant galaxies that contradict current understanding of its nature.
A study published this week revealed an unexpected difference between the focus of black matter on three large galaxies involving billions of stars and the computer simulations of how black matter should be distributed.
"There may be a missing ingredient in these games or we may have made a false impression about the state of the dark matter," said Yale University astronomer Priyamvada Natarajan, author of a study published in the journal Science, said Friday.
A dark object is an invisible glue that holds stars in place. It also creates an invisible scaffold that enables galaxies to form clusters. But it has very special features. It does not emit, does not absorb or emit light and does not interact with any known particles.
The bulk of the story in the universe, about 96 percent, is considered to be a dark, ordinary story - the material that makes up the stars, planets and people - only 4 percent.
The presence of black matter is known only for its strong pull on the visible object in space. It is different from the same invisible dark forces, which are considered to be the cosmos and drive the rapid growth of the earth. Dark forces were abominable. Dark objects attract gravity.
New research includes observations from the Hubble Space Telescope and the European Southern Observatory's Very Large Telescope in Chile.
When light from distant sources such as distant galaxies passes through objects such as another galaxy or their collection, light is distorted and distorted - something called "gravitational lensing," says astrophysicist and lead researcher Massimo Meneghetti of the Observatory of Astrophysics and Space Science in Bologna and National Institute for Astrophysics in Italy.
New observations have shown that the gravitational effects of galaxies that reside within large galaxies were much stronger than the current matte black


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