虚粒子
- virtual particle
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当能量恢复时虚粒子湮灭。
When energy recovery at the virtual particle annihilation .
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相对论虚粒子力学是相对论量子力学的另一种等价表述。
Relativistic virtual particle mechanics is a new equivalent theory of relativistic quantum mechanics .
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在虚粒子力学基础上,进一步建立了相对论虚粒子力学,证明了相对论虚粒子力学与Klein-Gordon方程的等价性。
Relativistic virtual particle mechanics is established on the basis of virtual particle mechanics . It is proved that relativistic virtual particle mechanics is equivalent to Klein-Gordon equation .
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从计算精度、拉伸不稳定性、虚粒子方法、初始光滑长度和非均匀粒子间距界面等五个方面讨论了SPH方法数值计算相关问题。
Five problems related with numerical simulations , such as the computational accuracy , tensile instability , ghost particle method , initial smoothing length and material interface made by different particle spacing , are studied .
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虚粒子方法是处理固壁边界的一种有效方法。
The ghost particle method is an effective method to deal with the rigid boundary condition .
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由于它们的存在这样的短暂,他们经常被称作虚粒子。
Since their existence is so fleeting , they are usually referred to as virtual particles .
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以虚粒子为特征的阴性物质能量的释放&人类可利用的新能源之探索
The Release of the Energy of Negative Material Characterized by Virtual Particles & A Probe into the New Energy Sources Utilizable by Human Beings
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探索以虚粒子为特征的阴性物质能量释放的条件,是解决人类可利用的新能源的当务之急。
To probe into the release conditions of the energy of negative material characterized by virtual particles is , therefore , one of the urgent affairs to find new utilizable energy sources for human beings .
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引入虚粒子概念,并在两个公设基础上建立了虚粒子力学,证明了虚粒子力学与量子力学的等价性。
A new concept , virtual particle is presented , and a new mechanics , virtual particle mechanics is established on two postulates . It is proved that this new mechanics is equivalent to quantum mechanics .
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首先在单次散射模型基础上,研究了偏振光多次散射矢量传输模型,然后将大气视作分层介质,提出了虚粒子的概念,形成了偏振光子的多层大气散射模型。
Firstly , we study a multiple scattering vector transmission model of polarized photons based on the single scattering model . Then we take atmosphere as a multilayer medium , and propose the concept " virtual particles " to establish the scattering model of polarized photons in the multilayered atmosphere .