Examples of using
电子可以
in Chinese and their translations into English
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这些电子可以帮助光子相互作用得更强烈。
These electrons can help the photons to interact much more strongly.
要清楚,研究人员并不是说电子可以分解。
To be clear, the researchers are not saying that the electron can be broken apart.
电子可以像其他任何来源的电力一样流动。
The electrons can then flow similar to any other source of electricity.
在这一点上,电子可以像其他任何来源的电力一样流动。
Then, the electrons can flow like other sources of electricity.
举个例子,电子可以有两个方向相反的自旋。
For instance, two electrons may have opposite spins.
电子可以通过,因而这里显示灰色。
Will be some electrons can pass through, so showing the gray color here.
这是两个电子可以相互作用的最简单的方式,但是我们必须考虑所有可能的历史。
That is the simplest way in which two electrons can interact electromagnetically, but we must consider all possible histories.
就像波浪一样,电子可以在岔道处分裂并同时在两条道路上流动。
Like a wave, the electrons can split at the fork and flow on both roads simultaneously.
例如,这可以产生离子,然后电子可以移开或被别处捕获。
This can make an ion, for example, and the electron can then move away or be captured elsewhere.
电子可以通过吸收或释放能量从一个能级跃迁到另一个能级。
The electrons can move from one energy level to another by absorbing or releasing energy.
如果条件合适,入射电子可以被散射回来,并脱离样品表面,保持其高能量。
If the conditions are just right, the incident electron can be scattered back and emerge on the surface of the sample, preserving its high energy.
这种机制与这些材料的电子传导性以及电子可以穿过材料的电导带的容易程度有关。
This mechanism is related to the electronic conductance of these materials andthe ease of which electrons can traverse through the material's conductance band.
电子和质子的混合模糊性意味着电子可以在该区域的任何地方,包括质子内部。
The combined fuzziness of the electron and proton means that the electron can be anywhere inside that region- including inside the proton.
由于海森堡不确定性原理,有最小尺寸盒子其中电子可以被白矮星的重力挤压。
Because of the Heisenberg uncertainty principle, there is a minimum-sized“box” in which an electron can be squeezed by the gravity of a white dwarf.
电子可以漂移出晶体管并通过绝缘体,随着时间的推移有效地擦除EEPROM。
Electrons can drift out of the transistors and through the insulator, effectively erasing the EEPROM over time.
在“通过壁垒”模型中,一个质子或电子可以隧穿过活化能壁垒。
In"through the barrier" models, a proton or an electron can tunnel through activation barriers.
因为它遵循量子力学的规则,所以电子可以同时占据所有这些位置。
Because it follows the rules of quantum mechanics, an electron can occupy all of those positions at once.
这些电子可以转化为电,实现照明和为电冰箱提供能量等目的。
These electrons can be converted into electricity, lighting and provide energy for the realization of the refrigerator and other purposes.
单一波段表示材料电子可以具有的一系列能量。
A single band represents a range of energies that a material's electrons can have.
由于自由电子可以相互作用,这些相互作用可以影响粒子的隧穿时间。
Because freed electrons can interact with each other, those interactions can affect particles' tunneling times.
制作线基晶体管(见图1)需要采用碳纳米管涂覆亚麻线,碳纳米管创造出一个半导体表面,让电子可以通过。
Making a TBT(see Figure 1) involves coating a linen thread with carbon nanotubes,which create a semiconductor surface through which electrons can travel.
我们的研究发现了一种新的机制,通过钯氢化物的催化剂,电子可以更有效地使用。
Our research discovered a new mechanism whereby electrons can be more efficiently used via the catalyst of palladium hydride.
实现这一点的一种方法是开发染料,在带隙内引入能量水平,电子可以upconvert到传导波段。
One way of accomplishing this is by developingdyes that introduce energy levels within the bandgap, from which electrons can upconvert into the conduction band.
当物理学家操作第一个粒子加速器时,他们发现电子可以产生光子,而且不会发生碰撞。
When physicists were operating the first particle accelerators,they discovered that electrons can produce photons without colliding at all.
纳米级气隙宽度小于空气中电子的平均自由路径,因此电子可以在室温下穿过空气而不会散射。
The nanoscale air gap is less than the mean-free path of electrons in air,hence electrons can travel through air under room temperature without scattering.
大自然抛弃了这种可能性,但却允许两个电子可以在上面「迭」有两种状态。
Nature leaves open the possibility, however, that two electrons can have both states“superimposed” over each of them.
制作TBT(参见图1)涉及用碳纳米管涂覆亚麻线,这产生了电子可以穿过的半导体表面。
Making a TBT(see Figure 1) involves coating a linen thread with carbon nanotubes,which create a semiconductor surface through which electrons can travel.
去年,两组独立的研究团队设计出了名为“二维反铁磁体”的晶体,其电子可以集体模仿希格斯玻色子。
Last year, two independent research groups designed crystals,known as two-dimensional antiferromagnets, whose electrons can collectively imitate the Higgs boson.
如果电子可以做同样的事情并按照一定的规则有序地移动,那么在传输过程中能量损失将大大减少。
If electrons could act the same and move in a certain order, energy loss would be significantly reduced during transmission.
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