electron temperature信息详情
[物]电子温度
electron───n.电子
temperature───n.温度;体温;气温;发烧
outermost electron───最外层电子
electron shell───[物]电子壳层;[物]电子壳;[物]电子层
visa electron───visa electron卡
electron configuration───电子构型;[物化][电子]电子组态;电子排布;电子构型,电子组态
critical temperature───[物][电子]临界温度;n.临界温度
unpaired electron───孤电子;[电子]不成对电子;未配对电子
temperature outside───室外温度
measurements for the electron temperature of flame using the Langmuir probe are explored.───本文探索了用朗谬尔探针测量火焰电子温度的方法。
The electron temperature and plasma potential show the same tendencies with respect to the ion density.───电子温度、等离子体空间电位变化与等离子体密度呈相同趋势。
Both the plasma density and the electron temperature increase as the coil current increases.───当线圈电流增大时,等离子体密度和电子温度都随着增大。
Electron temperature was obtained by Boltzmann plot method in the PPT, never changing with increasing the main capacitor discharge energy.───并且利用图表法获得电子温度,基本上不随主电容放电能量的增加而发生变化。
The increase of luminous efficiency is a result of the decreased cell voltage and electron temperature in discharge.───当气体放电于较低电压的情况下,电子温度较低并可以提高发光要率。
The results show that the ECR plasma source may generate stable, high density plasma with low electron temperature.───实验证明,ECR等离子体源能够稳定地产生电子温度较低的高密度等离子体。
The influence of laser pulse energy on the electron temperature and the temporal evolution of electron temperature were studied.───研究了激光脉冲能量对等离子体电子温度的影响和等离子体电子温度的时间演化特性。
And the plasma density and electron temperature fall quickly along the axial line.───且等离子体密度和电子温度沿轴线方向衰减很快。
Particle Simulation Study for the Electron Temperature Gradient Instability in Tokamak Toroidal Plasmas───托卡马克等离子体中电子温度梯度不稳定性的粒子模拟研究
The radiated power of impurity ions varying with time and electron temperature for given the profiles of electron temperature and density is calculated, and the corresponding physics is discussed.
Thomson scattering diagnostic system with multi-pulse Nd glass laser is described for measuring time-space evolution of electron temperature on the HL-1M tokamak.
The radar reveals a number of poleward-moving regions in which the electron temperature is elevated by a factor of 1.5.
The system is designed and will be made to diagnose electron temperature and density in major plasma region, divertor region and x point on the international thermonuclear experimental reactor (ITER).
It was shown that the ion density is higher and the electron temperature is lower in the vicinity of inductively coupled plasma sheath according to the ionic line and atomic line.
Using this model, evolution profile of electron temperature with heating time in ionospheric D/E region, heating and cooling time scale, are calculated in this paper.
The solutions of rate equations give the electron temperature, electron density from which the mercury visible spectrum line luminance is obtained.
The diagnostic results show that the characteristics of electron temperature and electron density distributions depend strongly on the target structure.
The soft X-ray PHA diagnostic measures the line-integrated emission, which the spectrum used to derive the electron temperature is not a local emission.
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