Examples of using Quantized in English and their translations into Turkish
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Of all quantized fields of the universe.
Einstein resolved this problem in 1906 by proposing that atomic motion is quantized.
It takes on quantized values, because the number of atoms is finite.
If the energy densityis larger than can be held by the quantized spacetime, it is thought to bounce back.
Quantized energy levels result from the relation between a particle's energy and its wavelength.
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Physical forces arising from a quantized field moving objects through pressure.
In the quantized version of the obtained classical field theory, the quanta of the gauge field A(x) are called gauge bosons.
This would automatically predict the quantized nature and values of all elementary particle charges.
James Franck and GustavHertz's electron collision experiment shows that energy absorption by mercury atoms is quantized.
When such a theory is quantized, the quanta of the gauge fields are called gauge bosons.
Einstein later proposed that electromagnetic radiation itself is quantized, not the energy of radiating atoms.
After finding the quantized character of charge, in 1891 George Stoney proposed the unit'electron' for this fundamental unit of electrical charge.
In quantum field theory, the Casimir effect and the Casimir-Polder force are physical forces arising from a quantized field.
The condition becomes:n λ 2 L{\displaystyle n\lambda =2L\,} so that the quantized momenta are: p n h 2 L{\displaystyle p={\frac{nh}{2L}}} reproducing the old quantum energy levels.
The photoelectric effect: Einstein explained this in 1905(and later received a Nobel prize for it) using the concept of photons, particles of light with quantized energy.
This series was qualitatively explained in 1913 by NielsBohr with his semiclassical model of the hydrogen atom in which quantized values of angular momentum lead to the observed discrete energy levels.
While Planck hadsolved the ultraviolet catastrophe by using atoms and a quantized electromagnetic field, most contemporary physicists agreed that Planck's"light quanta" represented only flaws in his model.
Max Planck introduced the zero point energy andArnold Sommerfeld semiclassically quantized the relativistic hydrogen atom.
This is because the third quantum numbermℓ(which can be thought of loosely as the quantized projection of the angular momentum vector on the z-axis) runs from-ℓ to ℓ in integer units, and so there are 2ℓ+ 1 possible states.
It was Einstein who laterproposed that it is the electromagnetic radiation itself that is quantized, and not the energy of radiating atoms.
Examples include experiments that have demonstrated interference between condensates due to wave-particle duality,the study of superfluidity and quantized vortices, the creation of bright matter wave solitons from Bose condensates confined to one dimension, and the slowing of light pulses to very low speeds using electromagnetically induced transparency.
For example, quantizing classical electrodynamics gives quantum electrodynamics.
On the other hand, in quantizing gravity there are, in perturbation theory, infinitely many independent parameters(counterterm coefficients) needed to define the theory.
If you consider adding faster-than-light particles- Quantize time. like tachyons, then I suppose you could… Although.
Although, like tachyons,then I suppose you could… if you consider adding faster-than-light particles- Quantize time.