血液吸收光譜 的英文怎麼說

中文拼音 [xiěshōuguāng]
血液吸收光譜 英文
absorption spectra of blood
  • : 血名詞(血液 多用於口語) blood:吐血 spit (up) blood; 血的教訓 a lesson paid for [written] in b...
  • : 名詞(液體) liquid; fluid; juice
  • : 動詞1 (把液體、氣體等引入體內) inhale; breathe in; draw 2 (吸收) absorb; suck up 3 (吸引) a...
  • : Ⅰ動詞1 (把攤開的或分散的事物聚集、合攏) put away; take in 2 (收取) collect 3 (收割) harvest...
  • : Ⅰ名詞1 (照耀在物體上、使人能看見物體的一種物質) light; ray 2 (景物) scenery 3 (光彩; 榮譽) ...
  • : Ⅰ名詞[書面語]1 (按類別或系統編成的書或冊子等) table; chart; register 2 (指導練習的格式或圖形)...
  • 血液 : blood; sanguis
  1. Based on the theoretical analysis and experimental researches, it is presented that the wider spectra are resulted from the many fluorophores with large numbers of vibrational energy levels on the ground level in the blood cells, and the reduction of the spectral intensity is due to the reabsorption of the blood cells and the energy transfer of the collisions between the fluorophore and another one or other macromolecule. on the other hand, when the concentration of the blood cells is increased, the reabsorption of the blood cells, the secondary fluorescence due to the reabsorption and the influence of the concentration on the energy levels of fluorophores are all the factors of the red - shifted spectral peaks

    在進行理論分析和研究的基礎上,提出了因細胞中存在多種熒團,且這些熒團的電子能級上又存在大量的不同的振動能級,從而導致被激發的熒團發出較寬的熒細胞濃度的增大,熒團以及其他大分子之間的距離變小,造成它們之間因碰撞的能量轉移概率加大,因而易產生熒猝滅,結果導致熒強度的變小;細胞溶中重所導致的熒猝滅和二次熒發射,以及細胞濃度的變化對其中熒團能級系統的影響都是導致熒峰值波長「紅移」的原因;進而研究了led誘導細胞產生熒的機理。
  2. Using the new technique, the zero, the first and the second differential pas of some persons " blood was measured, the result shows : the new technique is more sensitive than the common pas technique. the pas of many persons " blood has absorption peak around the wavelength of 637nm and 664nm

    並用導數技術測量了各種人的零階,一階,二階導數,實驗表明:導數技術比普通技術具有更高的檢測靈敏度;許多人的在637nm和664nm附近有峰。
  3. Thirty - five lead operators were selected and their blood was drawn twice, before and after the chinese new year break, and measured for lead concentration using an atomic absorption spectrometer

    我們利用農歷年前及年假結束后,分別抽取35名鉛作業員工前、后兩次檢體,以原子儀分析鉛濃度。
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