水位痕 的英文怎麼說

中文拼音 [shuǐwèihén]
水位痕 英文
water-level mark
  • : 名詞1 (由兩個氫原子和一個氧原子結合而成的液體) water 2 (河流) river 3 (指江、河、湖、海、洋...
  • : Ⅰ名詞1 (所在或所佔的地方) place; location 2 (職位; 地位) position; post; status 3 (特指皇帝...
  • : 名詞(痕跡) mark; trace
  • 水位 : stage; water level
  1. The factory is an advanced unit in jiangsu quality control, a " good credit standing of contract and honor " unit judged in continuous 8 years, one and only factory under authority with city quality control office in the sane area. our company specially manufactures various kinds of washing equipment such as water cleaning, dry cleaning, ironing, stone - scrubbing, sand - scrubbing, dyeing. they are widely used in various fields such as hostel, restaurant, hospital, train, schools and launeries. especially the automatic speed controlled by frequency conversion washing and dehydrating machine gained the gold reward on ' 97 shanghai international washing and ironing machine exhibition, new model wide ribbon no pressing tracks ironing, leading the advanced level in the same area in china

    公司所屬廠系江蘇省質量管理先進單,連續八年被評為市「重合同守信用單」 ,是泰州市同行業中唯一受市質檢所監制的廠家,專業生產各類洗、乾洗、整燙、石磨、沙洗、染色、噴砂等系列設備,廣泛用於紡織、印染、絲綢、服裝、化工、賓館、飯店、醫院、列車段、院校等各種行業,其中全自動變頻懸浮洗脫兩用機獲97年上海國際洗整機械設備及用品博覽會金獎,新型變頻調速無壓燙平機在國內同行業中具有領先平。
  2. The redox of v ( ) / v ( ), v ( ) / v ( ) couple on the graphite displayed one electron quasi - reversibility. it is proved that trace in3 +, sb3 + can inhibit cathodic hydrogen evolution during the charge process by increasing the hydro - gen overvoltage in addition that sb3 + is a stabilizing / kinetic enhancing ion. during the charge / discharge process, cross - mix and self - discharge rarely happened. the maximal energy density of the lab - level vanadium battery is 21 wh / kg. the capacity efficiency of the lab - level vanadium battery is as high as 94. 7 %

    釩電池充電末期,會發生的電解反應,量銦離子的加入提高了析氫過電,抑制了充電過程中負極氫氣的析出;銻離子的加入不僅可以抑制氫氣的析出,還提高了正極反應速率,增強了正極表面的穩定性。實驗中得到的最高質量比能量為21wh / kg ,充放電過程中僅有極少的交叉混合和自放電發生,自製釩電池的容量效率可高達94 . 7 %
  3. Since many important microstructural components of bone have dimensions of only a few microns or less, the nanoidentation can be used to investigate the mechanical properties of ostional, interstitial, and trabecular lamellar bone at the largely unexplored micro and submicron level

    因為有許多重要的骨組織微結構成分只有幾微米甚至更小,所以在用傳統機械測試方法無法滿足需要時,可以用納米壓儀在微米及亞微米平上廣泛的研究骨單,骨間組織,小梁骨的機械性能。
分享友人