What is the translation of " 放射性衰变 " in English?

radioactive decay
放射性衰变
radioactive decays
放射性衰变
of radioactive disintegration

Examples of using 放射性衰变 in Chinese and their translations into English

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在这个活动中,你将通过抛硬币模拟放射性衰变
In this activity, you will simulate radioactive decay by flipping coins.
第二种是87Rb放射性衰变后产生的。
And second the portion formed by radioactive decay of 87Rb.
描述放射性衰变过程。
Describe the process of radioactive decay.
碳14将在放射性衰变时都消失了。
Carbon-14 will have all disappeared by radioactive decay.
简单的例子是放射性衰变
Another example is like radioactive decay.
从即时起,14C继续减少,因为放射性衰变
From that instant onwards, 14C continue to decrease because of radioactive decay.
余热是由裂变产物的放射性衰变产生的。
The residual heat is caused from the radioactive decay of fission products.
比如说,电脑可以测量某个原子的放射性衰变
For example, the computer could measure the radioactive decay of an atom.
反应速率定律也可以用来描述放射性衰变,并确定半衰期的放射性物质。
The reaction rate lawcan also be used to describe radioactive decay, and determine the half-life of radioactive material.
年,卢瑟福和索迪宣布了他们的放射性衰变理论:原子在发出射线的同时自然衰变成新原子。
In 1902, Rutherford and Soddy announced their theory of radioactive disintegration: atoms decay spontaneously into new atoms while giving off rays.
研究还发现,自然放射性衰变和天气对于降低辐射水平比昂贵的清除核污染努力更有用。
A“new study” found that radioactive decay and weathering deserve more credit for reducing radiation levels than expensive decontamination efforts.
年,卢瑟福和索迪宣告了他们的放射性衰变理论:原子在宣告放射线的一起自发地衰变成新的原子。
In 1902, Rutherford and Soddy announced their theory of radioactive disintegration: atoms decay spontaneously into new atoms while giving off rays.
放射性衰变就是一个例子,这意味着厄兰分布完美地预测了盖革计数器的下一次提示声何时会发出。
Radioactive decay is one example, which means that the Erlang distribution perfectly models when to expect the next ticks of a Geiger counter.
研究通过放射性衰变过程在地幔中局部产生的特定元素的同位素,有助于科学家理解何时完成行星形成。
Studying isotopes of particular elements produced locally in the mantle via radioactive decay processes helps scientists understand when planet formation was complete.
几乎所有的放射性衰变产物都是电离的,因为放射性衰变的能量通常远高于电离所需的能量。
Almost all products of radioactive decay are ionizing because the energy of radioactive decay is typically far higher than that required to ionize.
在地表附近,氧气将由火星大气提供,而在地表之下更深处,氧气来自于放射性衰变
Near the surface the oxygen would be supplied by the Martian atmosphere,whereas farther below it would come from radioactive decay.
这种生物体可能已经在地下生存了几百万年,它们从正在经历放射性衰变的岩石中摄取营养物质。
It has not been in contact with the surface for potentially millions of years,and survives by siphoning nutrients from rocks undergoing radioactive decay.
早在1913,HenryMoseley发明了第一个基于放射性衰变的发电机。
In 1913,Henry Moseley invented the first power generator based on radioactive decay.
使用碳14,我们检查了一个原始样品的百分比,经历了放射性衰变到氮。
Using carbon 14,we examine the percentage of an original sample that's undergone radioactive decay to nitrogen.
据了解,地热能的最终来源是发生在地球深处的放射性衰变
It is understood that theultimate source of geothermal energy is radioactive decay occurring deep within the earth.
当一个原子衰变时,原子核中的质子总数会发生变化,在放射性衰变过程就变成另一个元素。
When an atom decays, the total number of protons in the nucleus changes,and so the radioactive decay process turns one element into another.
通常,用于成像的同位素产生的辐射在1天后通过放射性衰变和正常的身体排泄完全消除。
Typically, the radiation emitted by an isotope used forimaging vanishes completely after 1 day through radioactive decay and normal body excretion.
年,亨利·莫斯利发明了第一台基于放射性衰变的发电机。
In 1913,Henry Moseley invented the first power generator based on radioactive decay.
检测到新元素是因为一般一个原子在一个时间内通过特殊的方式进行放射性衰变
The new elements are detected, generally one atom at a time,by the characteristic way they undergo radioactive decay.
需要足够迅猛的反应,在更多的中子被打入原子核之前,没有机会发生放射性衰变
The reactions need to happen quickly enough that radioactive decay doesn't have a chance to occur before more neutrons are added to the nucleus.
这四个参数规定了所有弱核衰变如何发生,并允许我们计算不同的放射性衰变产物的概率振幅。
These four parameters dictate how all of the weak nuclear decays happen,and allow us to calculate the probability amplitudes of different radioactive decay products.
对此,最简单的解释是这一放射性衰变组合中有一种新的中介粒子。
The simplest explanation was a new, intermediate particle in the radioactive decay mix.
碳14经过放射性衰变不断流失,但是通过宇宙射线的连续生产获得平衡。
The carbon 14 is continuously lost by radioactive decay, but this is balanced by the continuous production by cosmic rays.
最终,物质本身会受到放射性衰变的影响,因为即使是最稳定的物质也会分裂成亚原子粒子。
Eventually, matter itself is expected to come under the influence of radioactive decay, as even the most stable materials break apart into subatomic particles.
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