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He said it was too complicated.
I'll put it simply.
Quantum states tend to be states that are common to multiple atoms.
For example, two electrons at rest.
Stay away from each other after internal interference.
Due to the conservation of momentum.
Both have opposite angular momentum.
I tested one.
Wouldn't it be possible to know the momentum of another in the distance?
This is the case with optical quantum transmission.
The transmitting side controls an optical quantum.
The other was changed in disguise.
Then the receiver is retested.
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In orange quantum physics, the circular land source quantum state describes the state of an isolated system and contains all the information about the system. For example, according to Born's statistical interpretation of the wave function, as long as the information about the quantum state of the system is known, the results of the measurement of the system can be given. Quantum states include pure states and mixed states.
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**The core idea of "Shuangyu Luyu" is the basic Heqing classification of matter proposed in "Shuangyu Theory", and any matter contains quantum bodies and quantum states.
The two-sidedness. Quantum state: Matter without mass, density, and volume, which behaves as entanglement under the action of energy.
For example, light and electricity are quantum states, which are a state of matter, not energy in itself, and only after the formation of the pre-Zen pure difference will there be the expression of energy.
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Quantum theory is an upgraded version of the thermal mass theory.
Thermal mass is the flow of heat, and the energy transferred by thermal mass is continuous, and the more thermal mass an object gets, the higher the temperature. The thermal mass theory cannot explain the photoelectric effect of deficit numbers.
Quanta are hot balls, quantum transfer energy is discontinuous, and the more quanta an object gets, the higher the temperature. The quantum theory successfully explains the photoelectric effect.
Blackbody radiation is similar to a football game, the pin head quantum is equivalent to a football, and the electric mu is equivalent to a football player. Reflection is when the electrons kick the quanta out directly, and radiation is when the electrons kick the quantum out after a distance. Because the foot force of the electrons is different, the amount of quantum energy kicked out is different.
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In quantum physics, a quantum state describes the state of an isolated system and contains all the information about the system. For example, according to Born's statistical interpretation of the wave function, as long as the information of the pure quantum state of the system is known, the results of measuring the Jianpei system can be given. Quantum states include pure states and mixed states. ”
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The quantum hypothesis of light was developed by Albert Einstein.
Bold assumptions made. The content is: light has the same particle properties as atoms, and light is a stream of particles moving at the speed of light, and this kind of particle is called light quanta. Same as Planck.
The energy of each light quantum is also e=h, according to the phase lead theory.
, the momentum of each photon is p=e c=h.
Brief introduction. In the years following Planck's quantum hypothesis, which did not arouse interest, Einstein saw its importance. He endorsed the energy child hypothesis and learned important lessons from it:
In existing physical theories, objects are made up of one atom at a time and are discontinuous, while light (electromagnetic waves.
but continuously.
There is a deep contradiction between the discontinuity of atoms and the continuity of light waves. In order to explain the photoelectric effect, Einstein proposed the light quantum hypothesis in 1905 on the basis of Planck's energy quantum hypothesis.
At the beginning of the 20th century, the quantum hypothesis of light was proposed, which solved the photoelectric effect that could not be explained by basic canonical physics.
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What is Light? What is Photon? How is light generated? Why is light a vibrational wave and light a cluster of particles?
1.Light is a type of electromagnetic wave (high frequency).
2.This was proposed by Albert Einstein in order to explain the photoelectric effect.
The energy of light is discontinuous, but one by one, and each part is called the light quantum, which is referred to as photon 3There are many ways to produce light.
The most common is to use a variety of light sources.
4.The essence of light is wave-particle duality, which means that light can not only produce all the phenomena of waves (e.g., reflection, diffraction, interference, Doppler effect), but also have particle properties (e.g., photoelectric effect, Compton effect).
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