The photoelectric effect is a crucial concept in quantum mechanics.
光电效应是量子力学中的一个重要概念。
The intensifier tubes use the photoelectric effect.
无源像增强管使用光电效应.
The photoelectric effect was discovered by Alexandre E.
1839年,亚历山大·E·贝克勒尔发现了光电效应.
Einstein also explained a baffling feature of the photoelectric effect.
爱因斯坦也解释了光电效应里一个令人困扰的现象.
The most visible application of the photoelectric effect is in solar, or photovoltaic, cells.
光电效应最明显的应用是在太阳能电池(或光电电池)里.
Instead Einstein receives it for the first of his miracle year papers, which describes the photoelectric effect.
相反,爱因斯坦收到的是第一个奇迹年的描述光电效应的论文。
The emission of electrons from an object when electromagnetic radiation is incident upon it is known as the photoelectric effect.
一个被电磁辐射照射的物体会发出电子,这就是光电效应。
Their idea, originally intended for electronic memory, takes advantage of the photoelectric effect, which was discovered by Albert Einstein and won him the Nobel in 1921.
这个想法起初的目的是应用于电子存储器,运用光电效应,光电效应是被爱因斯坦(AlbertEinstein)发现的,他曾在1921年获得诺贝尔奖。
Cuprous oxide is one of the first materials known to display the photoelectric effect , in which light causes electricity to flow in a material.
氧化亚铜是第一个已知的材料显示光电效应,在这种轻的原因电力流动的物质。
The photoelectric effect is responsible for early video cameras, digital cameras, solar cells, night vision goggles and Albert Einstein’s Nobel Prize in Physics.
光电效应被应用于早期摄像机,数码相机,太阳能电池,夜视镜,并且使阿尔伯特·爱因斯坦获得了诺贝尔物理学奖。

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