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- And the resonance absorption band from 460nm to600nm becomes weak, too. 在pH4.;0 NaAc-HAc的緩沖溶液中,人血清白蛋白(HSA)在209nm處有一個(gè)吸收峰,在350nm處有一個(gè)熒光峰,其同步散射較弱。
- The absorbing structure made of an aluminum fiberboard and a cavity on its back has clear resonance absorption characteristics. 鋁纖維板與背后空腔組成的吸聲結構具有明顯的共振吸聲特性。
- Research on surface plasma resonance absorption peak showed that electrostatic forces and hydrophilic forces is one of main forces between serum albumin and silver nanoparticles. 表面等離子共振吸收峰的研究表明,靜電力和親水力是血清白蛋白與銀納米粒子之間的主要作用力;
- And simultaneously, the doping ions, to a certain extent, can restrain the surface plasmon resonance absorption and minish the size of Ag nanoparticles. 在光吸收性能方面,鑭和鋁的引入都會(huì )在一定程度上抑制銀粒子的表面等離子共振吸收,同時(shí)細化銀納米粒子。
- In summary, FIR ( Far infrared ) has three main characteristics which namely are radiation, permeation and resonance absorption to form the energy of activation to benefit the health of human body. 整體來(lái)說(shuō),遠紅外線(xiàn)具有三個(gè)主要特性,亦即放射,滲透力以及共i鳴吸收,以致形成活性化能量,有益身體健康。
- Nuclear magnetic resonance is a subject which studies the phenomenon of resonance absorption when nucleus was placed in the stationary magnetic field and act with applied high frequency fields. 核磁共振是原子核的磁矩在恒定磁場(chǎng)和高頻磁場(chǎng)同時(shí)作用,且滿(mǎn)足一定條件時(shí)所發(fā)生的共振吸收現象,是一種利用原子核在磁場(chǎng)中的能量變化來(lái)獲得關(guān)于核信息的技術(shù)。
- Nuclear gamma ray resonance absorption 核射線(xiàn)共振吸收
- paramagnetic resonance absorption 順磁共振吸收,順磁性諧振吸收
- laser paramagnetic resonance absorption [化] 激光順磁共振吸收
- surface plasma resonance absorption 表面等離子體共振吸收
- nuclear magnetic resonance absorption 核磁共振吸收
- resonance absorption cross section 共振吸收截面
- High Altitude Resonance Absorption Calculation 高空共鳴吸收計算
- High-Altitude Resonance Absorption Calculation 高空諧振吸收計算
- nuclear magnetic resonance absorption method 核磁共振吸收法
- miniature resonance absorption spectrometer 小型共振吸收譜儀
- ferromagnetic resonance absorption 鐵磁共振吸收
- Resonant absorption structure provides an effective method for designing and manufacturing microbridge resistor arrary with less power consumption and larger array. 共振吸收結構為微橋電阻陣列的進(jìn)一步低功耗、大面陣化提供了有效的設計和制作途徑。
- surface plasmon resonance absorption 表面等離子共振吸收
- slow neutron resonance absorption 慢中子共振吸收