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You throw dirt the mass of Earth into one location, there won't be
gravity. Only when heavy collisions arise and pressures, the entanglement in all directions form a gravity pressure-bubble. One observes a large volume of mass like a galaxy and rotates it. Immediately the galactic object tightens. Dark energy arises, a stronger gravity. (it was shown that as little as 10 percent of the mass is visible in our galaxy, the rest is dark matter energy). Once a galaxy rotates, the galaxy tightens (dark energy arises). Why is that? Motion adds to gravity, and gravity adds to motion. It is very important that mass is not the property of atoms, but relates to motion and pressure. The more compact the object the stronger its gravity, and that law applies to galaxies as well. In a galaxy, each object is free-falling. But when a galaxy begins rotating, each object is following the objects ahead, and the objects are falling faster, and faster, and the galaxy is rotating faster and faster, and the whole thing is compressing. And as the galaxy has a momentum toward a direction, with a faster and faster rotation the galaxy gains speed. The effect is that like trains, all spiral galaxies in the Universe are speeding up, and the effect resembles an inflation, one that is not only inflating, but accelerating in its inflation. Objects that organize on a disk, with accelerated speed strengthen the disk's gravity and tightness. These objects are not orbiting a gravitational center of the galaxy. The galaxy does not have sufficient gravity for that, but each object is gravitationally connected with the objects in its constellation. On the disk objects move at much faster speeds. From higher speed, a gravitational pressure arises, where motion adds to gravity and gravity adds to motion as the galactic object compacts with faster and faster motions (at the disk). We are moving at 220 kilometers per second on the galactic disk. This speed is slowly accelerating as the galaxy is compacting, and the whole galaxy is slowly gaining speed (along with the spiral galaxies in the whole Universe). Earth is moving around the Sun at 30 kilometers per second. From above: "The galaxy does not have sufficient gravity for that, but each object is gravitationally connected with the objects in its constellation." That is the reason why Suns organize into spiral arms in our rotating galaxy and don't fill the galaxy. There is no powerful galactic center holding the galaxy together gravitationally. The gravitational effect is local. We find that eventually our galaxy will compact into a rotating object whose center holds the galaxy together gravitationally. At that time, the spiral arms will lose their unique organization, and stars will fill the disk. At that time the gravity in the center of the galaxy will take over and a solar-system like formation will take shape. Until a galaxy reached that structure, it keeps accelerating in its rotation and Suns are gaining speed as the spiral galaxy compacts, but at the same time the faster and faster compacting rotation of spiral galaxies also add to the galaxy's speed which creates the expansion effect of the Universe. The most interesting finding is that when taking a galaxy and rotating it, it compacts as gravitational forces rise as dark energy, which is gravitational energy 9 times more powerful in our galaxy than the gravity of mass alone. To explain this, I am trying to use the model of gravity that by throwing dirt into a location in space summing the mass of Earth, there won't necessarily be gravity until huge collisions compact the dirt, and pressures that form create a gravity pressure-bubble. Gravity is not necessarily related to the mass of an atom, but to pressure and to speed, two different things. George Bajszar |
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