Ví dụ về việc sử dụng Atoms can trong Tiếng anh và bản dịch của chúng sang Tiếng việt
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The electrons from two atoms can be arranged so that they produce temporary(instantaneous) electric dipoles.
CsF chains with a thickness as small as one or two atoms can be grown inside carbon nanotubes.[5].
Those same atoms can aggregate back into another rock, but the atoms are still atoms. .
Matter can be divided into atoms, and the behavior of individual atoms can be studied.
Due to this, a higher percentage of the atoms can interact with other matter, e.g. with the matrix of resins.
This typically happens in gas that is very hot(10000 degrees Celsius)and where atoms can easily lose their electrons.
Atoms can give up their electrons, surrendering them to other atoms, or they can share electrons.
Scientists have discovered a new state of physical matter in which atoms can exist as both solid and liquid simultaneously.
The electron shells of atoms can overlap each other and do so by different distances, depending on the circumstances.
In most of the multiverse, dark energy is so strong that the universe gets torn apart,or the Higgs field is so weak that no atoms can form.
To understand this effect, it helps to know that atoms can move and change direction when the photons they absorb cause a shift in their momentum.
To break the constraint of the accumulated layers of these lead sulfate crystals, it is necessary to improve the energy levels of atoms to a certain extent,so that the outer electrons of the atoms can be activated to the next higher energy band, thus releasing the bondage between the atoms. .
Physicists in Germany and Austria have shown that individual atoms can move forwards and backwards at the same time, thanks to photon emission and a carefully placed mirror.
The law of conservation of mass states that no atoms can be created or destroyed in a chemical reaction, so the number of atoms that are present in the reactants has to balance the number of atoms that are present in the products.
However, their indirect effects,such as small changes in the electron orbits in atoms, can be measured and agree with the theoretical predictions to a remarkable degree of accuracy.
His explanation included the ideas that atoms exist separately from one another,that there are an infinite quantity of atoms, that atoms can move, which they can combine with each other to create matter but don't merge to be a new atom, and they cannot be divided.
Atom can do it.
Because Atom can do things no other bot has ever done.
The Atom can fly.
While an atom can gain or lose neutrons and electrons, its identity is tied to the number of protons.
As it turns out,the K type X-ray is the highest energy X-ray an atom can emit.
Atom can split the interface into many windows so you can compare and write code side by side.
This view prevailed until the discovery of radio-activity,when it was found that atoms could disintegrate.
Only time will tell if future versions of Atom can address these issues.
An atomic nucleus, which is about 100,000 times smaller than an atom, could provide such a device5.
However, compared to the wavelength of sound, the atom can be much larger, which means that its properties can be better controlled.
Kanada also put forward the idea that atoms could be combined in various ways to produce chemical changes in presence of other factors such as heat.
In the case of carbon, an atom can either accept 4 electrons to fill its orbital or(less often) donate the four outer electrons.
By controlling electrons, that atom can modulate the flow of information and so be the foundation of a new kind of ultrafast, ultracompact computer.
In DeWitt's view, any interaction between two quantum entities,say a photon of light bouncing off an atom, can produce alternative outcomes and therefore parallel universes.