高温下氘和氚的核聚变释放巨大的能量。
Nuclear fusion of deuterium and tritium at high temperatures releases enormous amounts of energy.
它使用两种类型,或称同位素,的氢——氘和氚。
Two types, or isotopes, of hydrogen are used - deuterium and tritium.
最好的核聚变材料有两种,即氢的同位素——氘和氚。
The best fuels for fusion are two types, or isotopes, of hydrogen - deuterium and tritium.
在这个设定中,氢不再是稳定的,但是其更重些的同位素氘和氚却是稳定的。
In this scenario, hydrogen would no longer be stable, but its slightly heavier isotopes deuterium or tritium could be.
以氚产生、氘通量在钯中引发的核嬗变和热流为例介绍凝聚态核科学(冷聚变)研究动态。
Tritium production and the nuclear transmutation induced by deuterium flux inside Pd are described in order to illustrate the condensed matter nuclear science.
以氚产生、氘通量在钯中引发的核嬗变和热流为例介绍凝聚态核科学(冷聚变)研究动态。
Tritium production and the nuclear transmutation induced by deuterium flux inside Pd are described in order to illustrate the condensed matter nuclear science.
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