This is a matter of taking Newtonian theory a few levels deeper. Newton's theory of gravity holds well enough for small objects on a flat surface, but Einstein's theory of relativity was very different and included what, in effect, is a fourth dimension. His theory stretches to explain the movements of large objects, such as planets, and therefore includes space and time within his theory and ...
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This is a theory still being developed in physics that attempts to take account of both quantum mechanics and general relativity. If a successful description of quantum gravity could be achieved, then this might amount to a 'theory of everything' - no small matter!
Quantum gravity is an overall term for such combinational theories, ie attempts to unify gravity with the ...
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Gravitational waves differ from gravity waves. Gravitational waves are ripples in space-time that travel outward from a source. In the twentieth century the existence of gravitation waves was proved, but not directly observed. The theory explains that a massive object like Earth distorts space-time around it The larger the object, the more space-time is distorted as a direct result of that ...
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An electron neutrino is a particle. This particle, though, that does not have an electric charge. The reason how an electron neutrino is different from an electron is based upon the lepton. Leptons are the particles that only spin half an integer. A normal neutrino is related to the leptons because it is also an elementary particle. It spins an half integer like the lepton. However, it is a ...
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Electron bubbles are the area around an electron. This area is empty and the electron is free. These electrons are found in cryogenic gas or liquid. Examples of cryogenic gas is helium and examples of cryogenic liquid is neon. Electrons are known for moving freely about. The kinetic theory explains how this is possible for electrons to do this. This only occurs at room temperature.
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Lamb waves are similar to antisymmetric wave patterns because they are considered to be elastic waves. Elastic waves fall under the category of linear elasticity and they can cause earthquakes. The reason why electrons have antisymmetric waves in quantum fields is because first electrons first act as waves. When the waves function, they are called fermions.
These fermions ...
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Vacuum tubes must be used in order for cathode rays to work. Cathode rays involve electrons. When the electrons are placed in the vacuum tubes, this causes the cathode rays. The way in which the cathode ray tubes work is that the electrons are in the vacuum tubes and the electrons are negatively charged. Since they are negatively charged, they repel or turn away from the cathode because it is ...
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Welding is a way of bringing two metals together. If you want to bring two pieces of metal together for a piece of furniture, you want the pieces to stay in place. That is where welding comes into play. They are fused together using a high amount of heat with a blow torch. The welder must wear a mask because he or she should not be looking at the fire when welding.
There ...
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Donald William Kerst was a physicist who was known for his study of particle accelerators. He developed and became famous for the betatron. This is how Donald Kerst was able to accelerate electrons. The betatron was a machine that accelerated the particles. It was made with vacuum tubes. There were also many coils that would increase the electrons by sending them through the vacuum tube ...
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X-rays are also called X-radiation. Specifically, it is an electromagnetic radiation. There are certain wavelengths for certain X-rays. However, many of the common x-rays found at doctor’s and dentist’s offices us a low range of a wavelength which is between 0.01 and 10 nanometers. The frequency usually has a range of thirty petahertz to thirty exahertz.
The way ...
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