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锰离子的英文

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"锰离子"怎么读用"锰离子"造句

英文翻译手机手机版

  • manganese ion
  • "锰"英文翻译    manganese
  • "离子"英文翻译    ion
  • "离子" 英文翻译 :    [物理学] ion 氩离子 argon ion; 阳离子 cation; 阴离子 anion; 离子泵 [电子学] ion pump; 离子波 [等离子] ion wave; 离子捕集 ion trapping; 离子层 [电子学] sheath; 离子传导 [化学] ionic conduction; 离子抽运 ionic pumping; 离子催化剂 ionic catalyst; 离子当量电导 [物理化学] ionic equivalent conductance; 离子导电体 ionic conductor; 离子电导 [物理化学] ionic conductance; 离子电导率 [化学] ionic conductivity; 离子电荷 [物理学] ionic charge; 离子电流 [电子学] ionic current; gas current; 离子发动机 [航空] ion engine; 离子发射 [物理学] ion emission; 离子反射板 repeller; 离子反射器 ion repeller; 离子反应 ionic reaction; 离子放大管 ion amplifying tube; 离子辐射 [物理学] ion irradiation; 离子浮选 [化学] ion flotation; 离子共振 ion resonance; 离子共振现象 synionism; syniony;离子光电池gas cell; 离子光电管 gas-filled phototube; 离子光学 ion optics; 离子轰击 ion bombardment; ion bombarding; 离子化(作用) ionization; electrolytic dissociation; 离子化合物 [化学] ionic compound; 离子回旋波 [等离子] ion cyclotron wave; 离子回旋共振加热 [等离子] ion cyclotron resonance heating; 离子回旋加速器 ion cyclotron; 离子活度 ionic activity; 离子火箭(发动机) [航空] ion rocket; 离子激发发光 ionoluminescence; 离子激光器 [光学] ion laser; 离子计 ionometer; iontoquantimeter; 离子计数管 ion counter; 离子继电器 gas-filled relay; ionic relay; 离子加热 [电子学] ionic heating; 离子加速器 [核物理] ion accelerator; ionic accelerator; 离子间距 interionic distance; 离子检测器 [分析化学] ion detector; 离子溅射泵 [工业] getter pump; getter-ion pump; sputter-ion pump; 离子晶体 ionic crystal; 离子晶体半导体 ionic crystal semiconductor; 离子聚合物 ionomer; 离子聚束 ion bunch; ion bunching; 离子离心机 ionic centrifuge; 离子离子碰撞 ion-ion collision; 离子理论 [化学] ionic theory; 离子密度 [物理学] ion concentration; ion density; ionic density; 离子膜 [化学工业] ionic membrane; 离子frequency of ion; 离子谱 ionic spectrum; 离子谱法 [分析化学] ionography; 离子气体激光器 ion gas laser; 离子枪 ion gun; 离子强度 [物理化学] ionic strength; 离子鞘 ion sheath; 离子三聚体 ion triplet; 离子色谱法 [化学] chromatography of ions; 离子筛 ion sieve; 离子渗氮炉 ion-nitriding furnace; 离子蚀刻机 ion etching machine; 离子势垒 [半] ion barrier; 离子收集极[器] ion collector; 离子速度 [化学] ion velocity; 离子探测 ion detection; 离子探测器 ion detector; 离子透射法 ion transmission technique; 离子推进 [航空] ion propulsion; 离子推力室 ion thrustor;离子温度 [等离子] ion temperature; 离子雾 [化学] ion-atmosphere; 离子吸泵 ion-sorption pump; 离子显微镜 ion microscope; 离子消除器 iontron; 离子压力计 ion gage; 离子扬声器 ionophone; 离子引发聚合作用 [化学] ionic polymerization; 离子荧光 ion fluorescence; 离子-原子碰撞 ion-atom collision; 离子源 ion gun; ion source; [电子学] ionization source; 离子云 [地球物理] ion cloud; 离子载体 ionophore; 离子再生塔 ion regenerator; 离子折射 ionic refraction; 离子振荡 ion oscillation; 离子质谱仪 ion mass-spectrometer
  • "初离子;原离子" 英文翻译 :    primary ion
  • "离子-离子发射" 英文翻译 :    ion-ion emission
  • "离子偶,离子对" 英文翻译 :    ion-pair
  • "离子氤;离子云" 英文翻译 :    ionic atmosphere
  • "络离子,配离子" 英文翻译 :    complex ion
  • "阳离子,正离子" 英文翻译 :    kation
  • "阴离子,负离子" 英文翻译 :    anion; negative ion
  • "正离子;阳离子" 英文翻译 :    positive ion
  • "伴离子" 英文翻译 :    co-ion
  • "钡离子" 英文翻译 :    barium ion
  • "铂离子" 英文翻译 :    platinum ion
  • "伯离子" 英文翻译 :    primary iron
  • "场离子" 英文翻译 :    field ion
  • "除离子" 英文翻译 :    deionization
  • "磁离子" 英文翻译 :    magnetoionic
  • "簇离子" 英文翻译 :    cluster ion
  • "错离子" 英文翻译 :    complexing ion
  • "大离子" 英文翻译 :    heavy ion; langevin ion
  • "等离子" 英文翻译 :    plasma
  • "钒离子" 英文翻译 :    vanadium ion
  • "反离子" 英文翻译 :    antiparticle; contra ion; contra-ion; counter ion; counterion; countra ion; gegenion; opposite ion
  • "非离子" 英文翻译 :    nonionic

例句与用法

  • Water quality - determination of dissolved li , na , nh 4 , k , mn 2 , ca 2 , mg 2 , sr 2 and ba 2 using ion chromatography - method for water and waste water
    水质.用离子色谱法测定锂离子钠离子铵离子钾离子锰离子钙离子镁离子锶离子和钡离子含量.适用于水和废水的方法
  • Compared with limn2o4 , li2mn2o4 has lower reversible capacity , in that the net charge of lithium ion increases , accordingly interactions between lithium ion and oxygen one strengthen , leading to difficulty for lithium ion to deintercalate
    Li2mn2o4与limn2o4相比,锰离子的净电荷几乎不变,表明锰离子与氧离子的相互作用变化不大,大部分锂离子和氧离子的相互作用增强,锂离子脱出较为困难,可逆容量降低。
  • The results show that the composition of these precursors are identified to be limn2l ( ac ) 2 ( or ltmn2c10h11o11 ) , in which l represents citric acid radical and ac is acetic acid radical . the sintering temperature and sintering time have remarkable effects on the microstructures of limn2o4 samples
    结果表明通过低热固相反应法可在全固相条件下得到锂离子与锰离子达到分子级混合水平的前驱体,其组成基本上与分子式limn _ 2c _ ( 10 ) h _ ( 11 ) o _ ( 11 )相吻合。
  • It revealed that hexagonal structure was easily synthesized in the neutral medium , and lamellar structure was inclined to prepare under basic condition , and from the cooperative charge density matching mechanism and function of manganese iron and template molecular , the alkalescence influence on the structure was explained , and appropriate neutral hexadecylamine ( hda ) availed to synthesis of mesophase with more ordered degree for the mediation of packing parameter
    通过水热合成方法对锰氧有序相的合成进行初步研究,探讨合成工艺对有序结构的影响:在中性的条件下,易合成六方有序结构产物;在碱性条件下,更易合成层状结构产物。并从电荷匹配的原则及锰离子与模板剂间键合作用解释了碱量的多少对合成产物结构的影响。
  • The effort of manganese removal was studied and the kinetics of manganese removal was tried to establish . the factors of dissolved oxygen concentration , fe2 + concentration , ph , p concentration and closing of the filter were studied to evaluate their effort for biological manganese removal , and the correlation of residual manganese and oxidation - reduction potential was also discussed . as the iron content of water was high , experiment results showed that the reaction was zero order , as the iron content of water was low , the reaction was first order . the time needed for the cultivation of biological manganese removal was 60 70 days . the filter operated at the filtration rate of 8 10m / h , silica sand of effective size 0 . 95 1 . 25mm filled the filter to a depth of 1200mm
    试验结果表明,成熟后滤砂表面滤膜的x射线衍射图谱与mno _ x ? 5h _ 2o ( x = 1 . 86 )的x射线衍射图谱一样,滤膜成熟后的结构在进水物质不发生变化的情况下不发生变化;合适的碳磷比对生物除锰有明显的促进作用,试验条件下的投磷量不会对出水造成二次污染;生物除锰需要亚铁的参与,亚铁的存在除了能够促进微生物分泌胞外酶并刺激其活性外,还通过铁离子的变价传递电子,催化锰离子的氧化反应,从而促进对二价锰的降解。
  • Partial substitution of manganese in lixmn204 by cobalt or lithium can reduce the fermi energy , increase the . net charge of lithium ion , and diminish the value band width , corresponding to the drop of the discharge voltage , the loss of the reversible capacity , and the improvement of the cycling performance due to increasing structural stability , respectively
    在limn2o4中掺入钴和用锂离子代替16d位锰离子将使材料的费米能减小,放电电压降低;掺杂态中部分锂离子的净电荷增大,锂离子与氧离子的相互作用增强,可逆容量降低;掺杂态的价带宽度变窄,结构的稳定性增加,从而改善循环性能。
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