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target plasma
相关语句
  靶等离子体
     STUDY ON THE VACUUM ULTRAVIOLET SPECTRA FROM A TARGET PLASMA
     靶等离子体真空紫外光谱研究
短句来源
     The measurement of vacuum ultraviolet spectra (500-2000A) from a target plasma device is described.
     本文叙述了在靶等离子体实验装置上做的真空紫外区(500—2000)光谱实验。
短句来源
     The time dependent TRANSP code is used to model the realistic reversed magnetic shear (RS) operation in the HL-2A tokamak. With 2.5~3.0 MW neutral beam injected into a target plasma with gradually peaking density profile, RS configurations are formed.
     利用 TRANSP code 模拟 HL-2A 托卡马克的反磁剪切运行,将2.5 MW 的中性束注入到密度分布逐渐峰化的靶等离子体中,随着等离子体 β 值的增高,形成了持续的反磁剪切位形。
短句来源
     By using these methods and the newly developed LARED\|H code,the two\|dimensional simulations for the laser\|irradiated gold disk and ring target are preformed. The reasonable two\|dimensional behaviors of the target plasma are obtained. [
     应用这些方法和新近发展的LARED H程序 ,对激光辐照金(Au)圆盘和圆环靶进行了二维模拟 ,给出了靶等离子体的合理的二维行为特征 .
短句来源
  “target plasma”译为未确定词的双语例句
     those between BIS, AEPindex and the target plasma concentration of propofol were -0.932,-0.888 and -0.920,-0.923 (P<0.001).
     与异丙酚靶控浓度的相关系数分别为-0.932,-0.888和-0.920,-0.923(P<0.001)。
短句来源
     Tracheal intubation was performed with scopolamine 0.3 mg,midazolam 0.05 mg/kg,fentanyl 2 μg/kg,vecuronium 0.08 mg/kg bromide and propofol at a fixed target plasma concentration of 8 μg/ml.
     D组:为对照组,无任何表面麻醉。 诱导方法:东莨菪碱0.3mg、咪达唑仑(咪唑安定)0.05mg/kg,芬太尼2μg/kg、维库溴铵0.08mg/kg、丙泊酚采用血浆靶控8μg/ml输注。
短句来源
     The coefficient of correlation(r) between AAI and the target plasma concentration of propofol was-0.923(P<0.001).
     AAI与丙泊酚靶控浓度的相关系数为-0.923(P<0.001)。
短句来源
     The propofol was maintained at a target plasma concentration of 3 μg/ml.
     丙泊酚血浆靶浓度均为3μg/ml,与舒芬太尼同时靶控输注,直至气管插管后5min停止输注。
短句来源
     Results The measured concentrations (Cm) of remifentanil were significantly lower than the target plasma concentration (Cp) at5, 10, 20 min of TCI in both groups ( P < 0.05) .
     结果在TCI 5、10、20 min时,两组瑞芬太尼Cm均低于Cp(P<0.05)。
短句来源
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  相似匹配句对
     plasma;
     血浆游离DNA ;
短句来源
     N TARGET
     命中目标
短句来源
     ENERGY LOSSES OF HEAVY ION BEAMS IN PLASMA TARGET
     重离子束在等离子体靶中的能量损失
短句来源
     Introduces the High Target Utilization Plasma Sputtering Technology.
     详细描述一种等离子体高效溅射系统及应用工艺。
短句来源
     Target:KONGO!
     目标-金刚
短句来源
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  target plasma
The C60-fullerenes can form a compact plasma slug which can be accelerated to hyper-velocity (~50 km/s) allowing for deep penetration into the tokamak target plasma.
      
It has demonstrated both high β, and robustness in translation and compression that is demanded for the target plasma.
      
The presence of the magnetic field in the target plasma suppresses the thermal transport to the confining shell, thus lowering the imploding power needed to compress the target to fusion conditions.
      
Momentum flux for imploding a target plasma in magnetized target fusion (MTF) may be delivered by an array of plasma guns launching plasma jets that would merge to form an imploding plasma shell (liner).
      
The target plasma temperature is about 200 eV at the beam-injection position and falls to 5 eV or less in the end region.
      
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The measurement of vacuum ultraviolet spectra (500-2000A) from a target plasma device is described. The plasma spectra, impurities, impurity sources and radiation mechanism of plasma gun are analysed.

本文叙述了在靶等离子体实验装置上做的真空紫外区(500—2000)光谱实验。分析和研究了等离子体光谱,杂质成分、杂质来源和等离子体喷枪的发射机制。

An important application of an Intense Relativistic Electron Beam(IREB)is to heat a fusion target. The mechanism of heating and the anomalous effect in the interaction of IREB with fusion target plasma are investigated in this paper. With the collisionless model, the two stream instability growth rate is obtained by using Vlasov equation. Furthermore, with the collision effect taking into account the growth rate with collision correction is obtained. The critical condition for two stream instability is...

An important application of an Intense Relativistic Electron Beam(IREB)is to heat a fusion target. The mechanism of heating and the anomalous effect in the interaction of IREB with fusion target plasma are investigated in this paper. With the collisionless model, the two stream instability growth rate is obtained by using Vlasov equation. Furthermore, with the collision effect taking into account the growth rate with collision correction is obtained. The critical condition for two stream instability is given, and the problem of energy transform between IREB and target plasma is discussed.

本文对强流相对论性电子束与靶等离子体相互作用的反常吸收效应进行了理论研究。从符拉索夫方程出发,导出了强流相对论性电子束双流不稳定性效应解,并进行了弱碰撞修正,得到了相应的等离子体波增长率,对不同情况下出现反常效应的条件及机制进行了研究和讨论。

The plasma condition and the gain coefficient of a carbon fiber target,which is irradiated by oblique incident laser light were calculated. The refraction of laser and the resonance absorption of P polarization laser were considered. The gain coefficient value of H like C, n =2,3 comparing with vertical incident is higher,however the gain region becomes narrower and the gian region towards to the outer layer of the fiber target plasma.

用斜入射方法并考虑了激光被折射和P极化激光的共振吸收,计算了碳纤维靶的等离子体状态和激光增益。激光斜入射获得的类H-碳的n=2、3跃迁的激光增益系数,比按垂直入射的计算的值略大,但是,增益系数的空间分布变得更窄。激光增益发生在更靠近靶的外表层。

 
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