guide n. 1.引導(dǎo),指導(dǎo)。 2.領(lǐng)路人,導(dǎo)游者,向?qū)?;指?dǎo)者,指揮者。 3.【軍事】向?qū)?;〔pl.〕基準(zhǔn)兵,標(biāo)兵。 4.〔英國(guó)〕女童子軍。 5.規(guī)準(zhǔn),指針。 6.(旅行、游覽)指南;入門書;路標(biāo)。 7.【機(jī)械工程】導(dǎo)軌,導(dǎo)溝,導(dǎo)桿;【電學(xué)】導(dǎo)路;導(dǎo)體;導(dǎo)引物;【自動(dòng)化】波導(dǎo),導(dǎo)向裝置;【醫(yī)學(xué)】導(dǎo)子,標(biāo)。 a guide fossil 標(biāo)準(zhǔn)化石。 A G- To English Grammar 《英語(yǔ)語(yǔ)法入門》。 G- center! 【軍事】向中看齊〔向中央基準(zhǔn)兵看齊〕! G- left [right]! 【軍事】向左[右]看齊! vt. 1.引導(dǎo)。 2.指導(dǎo),指揮;支配(思想感情等),左右(人的行為);管理;指示。 3.教導(dǎo),輔導(dǎo)。 guide him in his studies 輔導(dǎo)他學(xué)習(xí)。 guide the state 治理國(guó)家。 be guided by one's sense of duty 在責(zé)任感支配下。
Optimum design of suspension guide mechanism based on adams 的懸架導(dǎo)向機(jī)構(gòu)優(yōu)化設(shè)計(jì)
On the benefit guiding mechanism of family planning 計(jì)劃生育利益導(dǎo)向機(jī)制探討
Us government's guiding mechanism of higher education and the enlightenment g ained for the reform of higher learning system in china 美國(guó)聯(lián)邦政府對(duì)高等教育的引導(dǎo)機(jī)制及對(duì)我國(guó)高教體制改革的啟示
It is the culture guide mechanism based on culture demand that determines the direction of cultural drive for world trade . as a result, this leads to the sameness inclination of culture endowment in every country 國(guó)際貿(mào)易文化驅(qū)動(dòng)的方向,受文化需求基礎(chǔ)上的文化導(dǎo)向機(jī)制的制約,文化導(dǎo)向機(jī)制作用的結(jié)果,是文化稟賦趨同。
And a guiding mechanism in fnn combines case-reasoning and rule-reasoning powerfully . the adoption of multi-pattern diagnosis and their inner integration reach our diagnosis expectation of integrating system 模糊神經(jīng)網(wǎng)絡(luò)的引導(dǎo)機(jī)制把基于實(shí)例與基于規(guī)則推理有力地結(jié)合在一起,系統(tǒng)集成多種診斷模式,并從內(nèi)部診斷推理機(jī)制上相融合,達(dá)到系統(tǒng)集成診斷的目的。
This paper believes that, in order to guarantee the smooth development of community tourism in china, we should establish the framework from 6 aspects, including : the guide mechanism, the decision-making mechanism, strategy implementation mechanism, benefit sharing 本文認(rèn)為應(yīng)該從6個(gè)方面構(gòu)建社區(qū)旅游發(fā)展框架,包括:引導(dǎo)機(jī)制、決策機(jī)制、戰(zhàn)略實(shí)施機(jī)制、利益分享機(jī)制、評(píng)估監(jiān)控機(jī)制、責(zé)任分擔(dān)機(jī)制,保障我國(guó)社區(qū)旅游發(fā)展順利進(jìn)行。
We study the photonicband structure of the mof cladding with triangular and honeycomb air holes lattices . then the guided mechanisms of mofs are demonstrated . the guided properties such as waveguide dispersion, effective modal area and nonlinearity for both index-guided mof and photonic bandgap mof are presented 從研究微結(jié)構(gòu)光纖的傳導(dǎo)機(jī)制和傳導(dǎo)模式出發(fā),分析不同結(jié)構(gòu)的光子晶體包層的能帶結(jié)構(gòu),研究折射率傳導(dǎo)和光子帶隙傳導(dǎo)兩種機(jī)制下光纖的傳導(dǎo)模式及色散、損耗和有效模場(chǎng)面積等基本特性。
The guided mechanisms and some fundamental properties of microstructured optical fibers ( mofs ) are numerical investigated using the full-vectorial plane-wave expansion method and finite element method . moreover, the applications of active and passive devices based on mofs are explored in this dissertation . especially, the fiber laser devices based on mofs, including yb3 +-doped double-cladding mof laser and mof raman amplifier, are theoretically and experimentally investigated 本文在對(duì)微結(jié)構(gòu)光纖傳輸機(jī)制和基本特性進(jìn)行研究的基礎(chǔ)上,探索了微結(jié)構(gòu)光纖在一些光電子功能器件方面的應(yīng)用,并對(duì)基于微結(jié)構(gòu)光纖作為增益介質(zhì)的光纖激光器件進(jìn)行了設(shè)計(jì)分析和初步的理論與實(shí)驗(yàn)研究。
Firstly, we study the photonic band structure of the pcf cladding with triangular and honeycomb air holes lattices . then the guided mechanisms of pcfs are demonstrated . the waveguide dispersion, leaky loss and effective modal area for both index-induce pcf and pbgf are presented 首先對(duì)三角形、蜂窩形柵格空氣孔包層結(jié)構(gòu)的光子能帶進(jìn)行了研究,在此基礎(chǔ)上闡述了光子晶體光纖的傳導(dǎo)機(jī)制,對(duì)折射率引導(dǎo)和光子帶隙引導(dǎo)光子晶體光纖的波導(dǎo)色散、泄漏損耗和有效模場(chǎng)面積進(jìn)行了研究。
Then the guided mechanisms of mfs are demonstrated, and waveguide dispersion, leaky loss and effective modal area for both index-induce mf and pbgf are calculated . 2 . on the basis of studying fundamental properties of mfs, the birefringence properties of form-induced and stress-induced hibi-mfs are investigated 2、在基于對(duì)微結(jié)構(gòu)光纖基本性質(zhì)的研究基礎(chǔ)之上,對(duì)結(jié)構(gòu)不對(duì)稱導(dǎo)致高雙折射光子晶體光纖和應(yīng)力區(qū)導(dǎo)致高雙折射光子晶體光纖的雙折射特性進(jìn)行了研究。