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全同粒子 meaning in Chinese

identical particles

Examples

  1. The extension to systems of more than two identical particles is quite straightforward .
    把上述结论推广到含有多于两个全同粒子的系统中去是十分容易的。
  2. In my thesis , i studied a simpler two - particle system ; it is composed of two spinless one - dimensional ( 1d ) particles of masses m _ ( 1 ) = m _ ( 2 ) = m _ ( 2 )
    本文中我们研究了比较简单的二粒子系统,系统由一维无限深势阱中质量为m . = mz二m的两个无自旋的全同粒子构成。
  3. The essay give the conditions that we can distinguish the two ( or more ) identical principles and the method of distinguish the identical particles , sogive more operational identity principle
    摘要给出可以区分两个(或两个以上)全同粒子的情况和区分方法,从而给出更具有操作性的全同性原理。
  4. The knowledge of these initial collision is crucial for any theoretical treat - ment of a possible parton - hadron phase transition , the detection of which being the ultimate aim of all the efforts of co1liding heavy ions at very high energies . the parton model allows to calculate inclusive cross sections as a convolution of any elementary cross section with parton distribution functions , assuming that factorization works . the disadvantage is that tlle first interaction is coilsidered quite differently from the subsequent ones in case of multiple scattering
    其它的弦模型在计算几率时,忽略了入射能量在pomeron之间的分配,破坏了能量守恒,而且把pomeron作为全同粒子处理,即pomeron之间是不可区分的;然而在处理粒子产生时,这些模型虽然考虑了能量守恒,但是第一个pomeron的粒子产生与其它的pomeron很不一样? ? pomeron在粒子产生时不是全同的。

Related Words

  1. 粒子粒子相关
  2. 夹杂粒子
  3. 粒子定时器
  4. 簿粒子
  5. 粒子线
  6. 激活粒子
  7. 粒子工艺学
  8. 可变形粒子
  9. 流动粒子淬火
  10. 二维粒子
  11. 全同立构链
  12. 全同立构型
  13. 全同粒子的不可分辨性
  14. 全同门
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