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- low energy C ion 低能C离子
- The 6 achievements on Ion Beam Bio-engineering of Low Energy were outlined. 摘要简述了低能离子束生物技术在6个主要方面的研究成果。
- Rotational quenching of LiH by Ne at low energy[J]. 引用该论文 黄武英;凤尔银;崔执凤;张为俊.
- Therefore, it is thought that low energy N(superscript +) ion implantation can improve the budding and survival rate of Portulaca oleracea L. 由此可见,一定剂量范围内的低能N(上标+)注入会提高马齿苋种子的发芽率和成活率。
- However, the effect of low energy ion implantation on the length of bough, the side-bough, the divarication and the size of peanut were very weak. 而花生主枝长,侧枝长,分枝数和荚果大小等性状除个别剂量外影响较小,变化规律性较弱。
- Diamond like carbon (DLC) films on single crystal silicon and other substrats were produced by low energy ion beam deposition. 研究了利用低能离子束技术,在单晶硅片等多种基体表面形成类金刚石薄膜(DLC膜)。
- Depth profileof direct bombardment mode SNMS may use low energy primary ion as bom-barding source to avoid cascade effect and obtain highest depth resolution. 直接轰击模式的SNMS作深度剖析可用能量很低的一次离子轰击源以避免级联混合效应,从而获得极高的深度分辨率。
- Low energy cost is only weakly related to energy efficiency. 但最低能耗费用与能效只有微弱的联系。
- Low energy monochromator with high resolution and flux. 高分辨和高流强的低能单色器。
- A high quality beam has low emittance and low energy dispersion. 良好的束流轨道可以获得低发射度、低能散的高品质束流。
- Design of passive and low energy housing; thermal building physics. 被动式节能及低耗能住宅设计;建筑热工物理。
- Belite cement gets attention because of its low energy consumption. 贝利特水泥由于能耗低而逐渐引起人们的关注。
- Low energy and emergency ESWL have obtained satisfactory results. 作低能及急诊ESWL治疗疗效满意。
- The initial oxidation of uranium and uranium samples which were overlapped energy ion-implanted with C ions was studied respectively by Auger electron spectroscopy(AES). 用俄歇电子能谱(AES)分别对高真空室中铀样品及多能量叠加离子注入碳铀样品与氧气吸附及初始氧化过程进行了研究。
- Investigation of Biostimulation Mechanism with Low Energy Laser[J]. 引用该论文 杨玉东;梁勇.
- The distribution was skewed toward the lower energy values. 这种正整分布向较低的能量偏移。
- However, cellulose acetate breaks down at high temperatures, is pH sensitive (can only operate between pH 3 to 6), and is broken down by C ions. 然而,纤维素醋酸酯在高温时降解,对pH值敏感(只能在pH值为3至6之间操作),也可被碳离子降解。
- LDD ultra shallow junction can be reachec by low energy and high dose implant. 可以通过低能量,高剂量的等离子注入来实现LDD超浅结(ultra shallow junction)。
- Lower energy consumable, small investment and easy operation. 能耗低,设备投资小,操作简便。
- This solution has a tinily lower energy than that of $d+id$ state. 讨论三维简单立方格子 和面心立方格子可能存在的超导序。