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- As a new technique of surface crystallography, Low Energy Position Diffraction (LEPD) has many advantages over LEED. 作為一種新的表面結構分析工具,低能正電子衍射(LEPD)有許多LEED不具備的優(yōu)點(diǎn)。
- The surface structures of oxygen adsorbed on Mo(110) was studied by low energy electron diffraction (LEED) and scanning tunneling microscopy (STM). 以低能量電子繞射儀(LEED)和掃描穿隧顯微儀(STM)研究鉬(110)面上的氧吸附結構。
- Rotational quenching of LiH by Ne at low energy[J]. 引用該論文 黃武英;鳳爾銀;崔執鳳;張為俊.
- In recent years, there are many developments in low energy electron diffraction(LEED),and LEED has become a more and more impertant and sophisticated tool in surface science. 低能電子衍射(LEED)在近年得到很大的發(fā)展,并已成為表面科學(xué)中越來(lái)越重要和成熟的一種工具。
- Low energy cost is only weakly related to energy efficiency. 但最低能耗費用與能效只有微弱的聯(lián)系。
- Low energy monochromator with high resolution and flux. 高分辨和高流強的低能單色器。
- A high quality beam has low emittance and low energy dispersion. 良好的束流軌道可以獲得低發(fā)射度、低能散的高品質(zhì)束流。
- Design of passive and low energy housing; thermal building physics. 被動(dòng)式節能及低耗能住宅設計;建筑熱工物理。
- Belite cement gets attention because of its low energy consumption. 貝利特水泥由于能耗低而逐漸引起人們的關(guān)注。
- Low energy and emergency ESWL have obtained satisfactory results. 作低能及急診ESWL治療療效滿(mǎn)意。
- Investigation of Biostimulation Mechanism with Low Energy Laser[J]. 引用該論文 楊玉東;梁勇.
- X-ray diffraction (XRD), scanning electron microscopy (SEM), atomic force microscopy (AFM) and reflection high energy diffraction (RHEED) were used to characterize the structures and the morphologies of the samples. 利用X射線(xiàn)衍射(XRD)、掃描電子顯微術(shù)(SEM)、原子力顯微術(shù)(AFM)、反射式高能電子衍射(RHEED)等手段測試,對樣品結構和表面形貌進(jìn)行表征。
- The 6 achievements on Ion Beam Bio-engineering of Low Energy were outlined. 摘要簡(jiǎn)述了低能離子束生物技術(shù)在6個(gè)主要方面的研究成果。
- LDD ultra shallow junction can be reachec by low energy and high dose implant. 可以通過(guò)低能量,高劑量的等離子注入來(lái)實(shí)現LDD超淺結(ultra shallow junction)。
- The distribution was skewed toward the lower energy values. 這種正整分布向較低的能量偏移。
- LEED(low energy electron diffraction) 低能電子密度
- low energy electron diffraction(LEED) 低能電子衍射
- Lower energy consumable, small investment and easy operation. 能耗低,設備投資小,操作簡(jiǎn)便。
- This solution has a tinily lower energy than that of $d+id$ state. 討論三維簡(jiǎn)單立方格子 和面心立方格子可能存在的超導序。
- The lowest energy transition detected for triethylamine is at about 195nm. 測得三乙胺最低能量的躍遷大約是195nm。