induction ratio 中文意思是什麼

induction ratio 解釋
感應比
  • induction : n 1 引入,誘發,誘導(作用)。2 【邏輯學】歸納法,歸納推理 (opp deduction)。3 就職,就職典禮;...
  • ratio : n. (pl. ratios)1. 比,比率,比值;比例;系數。2. 【經濟學】復本位制中金銀的法定比價。vt. 1. 用比例方式表達;求出…的比值;使…成比例。2. 將(相片)按比例放大或縮小。
  1. Aimed at some problems such as short spraying distance, electricity - leaking and reverse ionization among electrostatic nozzles existing in the country, a induction charging and pneumatic energy electrostatic nozzle was designed. the basic designing theories, structure and working process of this nozzles were theoretically specified in the paper. and then the atomization quality and charge performances of this nozzle and its affecting factors were studied by carrying out performance experiment and statistic analysis. result of the studies indicate : ( 1 ) some progress were made in solving the problems list above ; ( 2 ) from this nozzle, droplet were minute and uniform, and higher charge - mass ratio can be obtained under lower electrostatic voltage, thus the atomization quality and charge performance of this nozzle were both better ; ( 3 ) within the experiment extend, air pressure at 0. 2mpa, electrostatic voltage at 2400v were the most suitable parameters for the nozzle ; ( 4 ) the regression equations for describing droplet size, intensity of spray current and charge - mass ratio of this nozzle obtained from the experiment data had higher forecast precision ; ( 5 ) cross - effect of all factors were not significant, the atomization quality and charge performance were relative dependency affected by the factors

    諸試驗因素中,充電電壓和噴孔直徑對霧滴荷質比均有極顯著的影響;氣體壓力和液體流量對霧滴荷質比的影響均不顯著;影響霧滴荷質比的主要因素依次為充電電壓和噴孔直徑; ( 8 )在300v 、 600v 、 1200y 、 1800y 、 2400v 、 3000v六種充電電壓t ,霧滴荷質比先隨充電電壓的增加而增大, 2400v后荷質比減小,推測:對于所研製的噴頭可能存在一個最佳充電電壓; ( 9 )由充電電壓和噴孔直徑的不同搭配所得霧滴荷質比不同這一結果,可看出,較大充電電壓需配備較大噴孔直徑以增強霧滴荷電效果; ( 10 ) td3 . 6和td3 . 4兩噴頭的霧滴荷質比曲線趨于重合,說明噴孔直徑大於滬3
  2. Sem results showed that, microcrack induction ability of these materials was markness. in a word, the working performance, bond strength, elastic ratio, brittleness of structural adhesive modified by proper materials were improved, satisfied engineering requirement. its modifying technology was simple and convenience, has very high active extending sense and application value in structural adhesive modifying field

    採用適當的納米材料改性環氧樹脂結構膠的綜合性能優良,能滿足工程應用的要求,而且改性工藝簡單可行,在結構膠改性領域里有積極的推廣和應用價值。
  3. This thesis analyses the present situation of energy metering in bishan network and some network at home, main factors which lead to inaccuracy of energy metering are dissected and the severity degree are pointed out. the method of enhancing accuracy of metering using modern technique are put forward which including : 1 ) modernization of meter, replacing the induction watthour meter with full electronic watthour meter ; 2 ) put real time change of mutual inductor ratio of transformation into consideration, method on real - time computation are presented. 3 ) using full electronic watthour meter to measure fundamental power and harmonic power separately and discussing idea of billing on harmonic

    這些方法包括: 1 )計量儀表的現代改造,用全電子式電能表代換感應式電能表; 2 )計及互感器變比的實時變化,對互感器的變比進行實時模擬計算,並提出了實時計算的方法; 3 )用全電子式電能表對基波電能與諧波電能分別計量,並討論了對諧波電能計費的觀點。
  4. The results show that the diffuser has such advantages as larger induction ratio, low resistance and noise, relatively even air supply, no condensation, simple in structure and low in costs

    測試結果表明,該風口的誘導比大,阻力小,噪聲低,送風比較均勻,風口沒有結露現象,結構簡單,造價低。
  5. Our experiment indicates : ( 1 ) the optimal concentration of kanamycin for screening torenia fournier regenerated buds was 400 mg / l. the ideal transformation was obtained in the following conditions : the leaf discs were dipped in agrobacterium suspension that od600 was 0. 1 for 10 ~ 20 min ; subsequently cocultivated on the ms solid coculture medium containing 20umol / l acetosyringon for 7 to 8 d at 23, and the induction ratio of regenerated buds was 27. 2 %

    研究結果表明: ( 1 )篩選藍豬耳轉化芽的最適卡那黴素濃度為400mg l 。 od _ ( 600 )為0 . 1的菌液濃度菌液浸染葉盤10 20min ,固體共培養基(含20 mol l乙酰丁香酮)上23共培養7 8d可獲得理想的轉化效率,轉化芽誘導率為27 . 2 ; 16h光照, 8h黑暗是較理想的共培養光周期;莖段是較好的轉化受體。
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