能量沉积的英文
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"能量沉积"怎么读用"能量沉积"造句
英文翻译手机版
- energy deposition
- "能量"英文翻译 energy; amount of energy
- "沉积"英文翻译 deposit; sedimentation; depo ...
- "能量沉积物" 英文翻译 : energy deposition
- "能量沉积事件" 英文翻译 : energy deposition event
- "电子束能量沉积" 英文翻译 : electron beam energy deposition
- "微量沉积" 英文翻译 : negligible deposition
- "粒子能量沉淀" 英文翻译 : particle energy deposition
- "常量沉淀" 英文翻译 : macropecipitation; macroprecipitation; macroprecipitiation
- "等量沉陷" 英文翻译 : equal settlement
- "定量沉淀" 英文翻译 : quantitative precipitation
- "容量沉淀法" 英文翻译 : volumetric precipitation method; volumetric preciptation method
- "适量沉淀" 英文翻译 : acclimatization
- "微量沉淀" 英文翻译 : microprecipitation
- "沉积" 英文翻译 : [地] deposit; sedimentation; deposition; precipitation 陆相沉积 continental deposit; 海相沉积 marine deposit; 河口沉积了淤泥。 the river deposited silt at its mouth. 尼罗河泛滥时, 在田野上沉积下一层泥。 when the nile is in flood, it deposits a layer of mud on the fields
- "能量" 英文翻译 : 1.[物理学] energy; amount of energy 能量转化 energy conversion2.(能力) capabilities; capacity; 能量不灭 conservation of energy; 能量不灭定律 law of conservation of energy; 能量交换 energy exchange; 能量均分 equipartition of energy; equipartition; 能量平衡 [生理学] energy balance (能量收支); 能量贮存 energy storage; 能量转移 energy transfer
- "当量沉降面积" 英文翻译 : equivalent area of sedimentation
- "定量沉淀反应" 英文翻译 : quantitative precipitation reaction
- "定量沉淀试验" 英文翻译 : quantitative precipitation test
- "微量沉淀试验" 英文翻译 : microprecipitation tests; microprecipitin test
- "定量沉淀素曲线" 英文翻译 : quantitative precipitin curve
- "定量沉淀素试验" 英文翻译 : quantitative precipitin test
- "沉积,沉着,沉积物" 英文翻译 : dpst
- "放射性抗原微量沉淀反应" 英文翻译 : radioactive antigen microprecipitin
- "放射性抗原微量沉淀试验" 英文翻译 : radioactive antigen micro-precipitation test; radioactive antigen microprecipitation test
- "相差微量沉淀素试验" 英文翻译 : phase contrast microprecipitin test
例句与用法
- Energy deposition of relativistic electron beam in plasmas
相对论电子束在等离子体中的能量沉积 - Simulation of energy absorbed by target with intense pulsed ion beam model
强流脉冲离子束模型及辐照靶材能量沉积的模拟研究 - Simulation calculation for the energy deposition profile and the transmission fraction of intense pulsed electron beam at various incident angles
不同入射角度下强流脉冲电子束能量沉积剖面和束流传输系数模拟计算 - The energy calibration is around 1 . 1 mev per channel for oxygen ion and iron ions when energy deposition is less than 50 mev in each detector
从重离子的能谱中我们可以看到,在半导体探测器中的能量沉积大于50mev时,将引起电荷灵敏前置放大器饱和。 - The extremely high density of deposited energy of gev heavy ion can be reached with mev cluster beams . under this conditions new phenomena should be discovered
利用mev量级能量的团簇束即可达到gev重原子离子在物质中的能量沉积密度,在这种条件下,载能团簇与物质作用将成为丰富新现象的源泉。 - Abstract : a new method for determining proximity parameters , , and in electron - beam lithography is introduced on the assumption that the point exposure spread function is composed of two gaussians . a single line is used as test pattern to determine proximity effect parameters and the normalization approach is adopted in experimental data transaction in order to eliminate the need of measuring exposure clearing dose of the resist . furthermore , the parameters acquired by this method are successfully used for proximity effect correction in electron - beam lithography on the same experimental conditions
文摘:在电子散射能量沉积为双高斯分布的前提下,提出了一种提取电子束光刻中电子散射参数,和的新方法.该方法使用单线条作为测试图形.为了避免测定光刻胶的显影阈值,在实验数据处理中使用归一化方法.此外,用此方法提取的电子散射参数被成功地用于相同实验条件下的电子束临近效应校正 - The calculated results are compared with those given by - literatures , good agreements are achieved . in the calculation of radiation shielding and single event upset ( seu ) , several mono - energy proton beams have been considered . the energy depositions in materiel by protons are calculated and compared for two cases with or without taking proton nuclear reactions into account
对于不同能量的单能质子束,计算比较了核反应对能量沉积的影响,计算结果表明,在低能质子入射情况下(能量在几十mev ) ,可以不考虑核反应对质子能量沉积的影响,而在入射质子能量达到几百mev时,核反应对质子能量沉积的影响不可忽视。 - The irradiation experimental results show that the resolution of thin detector e1 is higher than that of other thick detectors for ex - particles and protons detection . energy calibration for a - particles was completed with multiplication factor 1 / 3 . energy calibrations of a - particles in detector e1 and e1 , are 0 . 107 mev and 0 . 123 mev per channel , respectively
质子能量刻度采用1档,每道能量h约在0 . 0167mev道,但是在e _ 1探测器中的能量刻度随着能量的增加略有所下降,这是由于高能质子伴随有较多的核反应道对粒子探测产生了干扰,从而增加了在e _ 1探测器中的能量沉积道数,使得每道能量略有所下降,另一个因素可能是探测器厚度的不均匀性的影响,但这并不影响对粒子的鉴别。
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