Примери за използване на Strong nuclear force на Английски и техните преводи на Български
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The weak nuclear force and the strong nuclear force.
The strong nuclear force explains what holds the nucleus together.
Each is made up of two‘up' quarks andone‘down' quark bound by the strong nuclear force.
The strong nuclear force is one of the strongest forces in the entire universe.
At 10-35 s and a temperature of 1027 K the strong nuclear force separated from the electro-weak force. .
The strong nuclear force, which binds quarks together inside atomic nuclei; and gravity.
The rest comes from protons and neutrons,which get almost all their mass from the strong nuclear force.
The strong force, the strong nuclear force, which sticks nuclei together, gets weaker.
Physicists invented this theoretical particle to solve some problems with our quantum understanding of the strong nuclear force.
The strong nuclear force separated from the combined weak nuclear force and the electromagnetic forces. .
The huge uranium nucleus splits into two because the strong nuclear force loses its battle to hold the nucleus together.
The strong nuclear force has a property called“containment” which puts particles into a structure having no color.
Finally came a quantum treatment of the strong nuclear force using“quantum chromodynamics”(QCD) in the 1960s and 1970s.
The strong nuclear force, whose power is unleashed in nuclear weapons, and the weak nuclear force that triggers radioactive decay.
A decade later, physicists devised a theory for the strong nuclear force, which binds protons and neutrons in the atomic nucleus.
If were too big,small atomic nuclei could not exist, because the electrical repulsion of their protons would overwhelm the strong nuclear force binding them together.
Finally, a quantum treatment of the strong nuclear force emerged using“quantum chromodynamics”(QCD) in the 1960s and 1970s.
The success of the unification of the electromagnetic andweak nuclear forces led to a number of attempts to combine these two forces with the strong nuclear force into what is called a grand unified theory(or GUT).
For neutron stars, the strong nuclear force and the electromagnetic force create what is fundamentally a quantum mechanical problem,” Huber said.
Compared to the other physical forces, such as the electromagnetic force holding atoms together or the strong nuclear force holding nuclei together, gravity is incredibly weak.
There's a strong nuclear force that holds atoms together, the weak nuclear force that also has to do with holding together particles and atoms, and gravity, with which we are all familiar, and then electromagnetism is the fourth.
But the reason I don't weigh that much is because the strong nuclear force is only felt down at a distance of a trillionth of a millimetre.
At high energies, electromagnetism and the weak force merge into a single'electroweak' force; and, at even higher energies,some as yet untested theories known as supersymmetry combine the electroweak and strong nuclear force.
The vast number of collisions at the LHC occur through the interaction of the strong nuclear force, which is(by far) the strongest of the subatomic forces and is responsible for holding the nucleus of atoms together.
The strong force, the strong nuclear force, which sticks nuclei together, gets weaker. And what you see is the standard model-- you can calculate how these change-- is the forces, the three forces, other than gravity, almost seem to come together at one point.
At even higher energies, like the ones found in the first moments of the Big Bang,we think that the strong nuclear force merges with the electroweak, and at still higher energies, gravity joins the party into a single unified force. .
Gravity A is what is currently being labeled as the Strong Nuclear Force in mainstream physics, and Gravity A is the wave that you need to access and amplify to enable you to cause space-time distortion for interstellar travel.
A similar effect, due to the relationship between angular momentum and the strong nuclear force, occurs for protons and neutrons moving inside the nucleus, leading to a shift in their energy levels in the nucleus shell model.
At the smallest end of the scale are the two nuclear forces- the strong nuclear force is what holds atomic nuclei in place, and the weak nuclear force enables certain atoms to undergo radioactive decay.
At this temperature protons andneutrons would no longer have sufficient energy to escape the attraction of the strong nuclear force, and would have started to combine together to produce nuclei of atoms of deuterium(heavy hydrogen), which contain one proton and one neutron.