共振吸收的英文
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"共振吸收"怎么读用"共振吸收"造句
英文翻译手机版
- resonance a orption
- resonance absorption
- resonance-absorption
- "共振"英文翻译 resonate; resonance; resound ...
- "吸收"英文翻译 absorb; suck up; soak up; as ...
- "磁共振吸收" 英文翻译 : magnetic resonance a orption; magnetic resonance absorption
- "共振吸收带" 英文翻译 : resonance absorption band
- "共振吸收能" 英文翻译 : energy of resonance
- "共振吸收谱" 英文翻译 : resonance a orption ectrum; resonance absorption spectrum
- "共振吸收器" 英文翻译 : resonance a orber; resonance absorber
- "共振吸收体" 英文翻译 : resonance absorber
- "核共振吸收" 英文翻译 : nuclear resonance absorption
- "铀共振吸收" 英文翻译 : uranium resonance absorption
- "超声共振吸收" 英文翻译 : ultrasonic resonance absorption
- "共振吸收积分" 英文翻译 : integral, resonance-absorption; resonance absorption integral
- "共振吸收截面" 英文翻译 : resonance absorption cross section
- "共振吸收能量" 英文翻译 : resonance a orption energy; resonance absorption energy
- "核磁共振吸收" 英文翻译 : nuclear magnetic resonance absorption
- "回旋共振吸收" 英文翻译 : cyclotron resonance absorption
- "顺磁共振吸收" 英文翻译 : paramagnetic resonance absorption
- "中子共振吸收" 英文翻译 : neutron resonance absorption; resonance absorption of neutron; resonancea orptionofneutron
- "自旋共振吸收" 英文翻译 : spin resonance absorption
- "不规则共振吸收" 英文翻译 : irregular resonance absorption
- "电子自旋共振吸收" 英文翻译 : electro spin resonance absorption; electron spin resonance absorption
- "动态共振吸收技术" 英文翻译 : ultra dra
- "共振吸收体效应" 英文翻译 : resonance absorber effect
- "核γ射线共振吸收" 英文翻译 : ngr; nuclear gamma-ray resonance adsorption
- "核磁共振吸收带" 英文翻译 : nmr absorption band; nmr absorption line
例句与用法
- Resonance absorption spectrum
共振吸收谱 - Resonance absorption energy
共振吸收能量 - " for his researches concerning the resonance absorption of gamma radiation and his discovery in this connection of the effect which bears his name
从事射线的共振吸收现象研究并发现了穆斯保尔效应 - On the basis of the linear theory of resonant absorption , nonlinear effect is taken into account in the wave dynamics
我们在线性共振吸收理论的基础上,对波动耗散过程中的非线性效应做了进一步的研究。 - Red shift of the plasmon absorption band was observed after gold particles were assembled into multilayer thin films , and the resulted gold films exhibited a strong surface enhanced raman scattering ( sers ) effect
金纳米粒子组装成膜之后,其表面等离子体共振吸收峰发生红移,薄膜具有明显的表面增强拉曼散射( sers )效应。 - Tem showed that ddp - modified nanoparticles had a similar size with the original nanoparticles . at the same time it had been found that the surface plasmon resonance ( spr ) absorbance of the ddp - modified gold nanoparticles had a large red shift
从表征中可以看金纳米颗粒的制备、表面改性及其光学特性的研究到,修饰前后纳米颗粒的粒径没有发生改变,但表面等离子共振吸收发生了明显的红移 - We infered that this new absorption band was associated with the effect of charge - transfer transition between adsorbates and colloidal silver particles , not the effect of the surface plasma resonance due to the silver particles aggregation which was usually attributed to in previous research work
我们将其归因于与纳米银颗粒表面间的电荷转移效应( ct ) ,而非通常所认为的因银胶凝聚而产生的表面等离子体共振吸收效应。 - 2 . using the simulation method and a lorentzian oscillator model , the influence of the deviation in experimental parameters , including the thickness of samples , the incident angle , the misalignment of the time delay line , the background noise and the laser noise is analyzed
二、首次利用模拟thz辐射脉冲入射到共振吸收的样品上的方法分析了厚度、角度、平移台错位、背景噪声及激光器噪声等对于光学常数测量产生的影响。 - The preparation of gold nanoparticles and the study of their surface plasmon resonance we had preparated gold nanoparticles of different size through two - step approach , one - step approach and seeding growth approach . uv - vis image and tem image indicated that surface plasmon resonance absorbance had a red shift with the argument of the sizeof the gold nanoparticles . 2
金纳米粒子的制备及其表面等离子共振吸收特征我们分别用两步法、一步法和晶种法三种不同的方法制备了小、中、大三种不同粒径的金纳米颗粒,用紫外可见吸收光谱和透射电子显微镜进行表征。 - The absorption characteristics was that the surface plasma absorption peak appeared around 570 nm shifted to a short wavelength and strengthened as the cu composition increased . but the maximal shift range of the absorption - edge preponderated over 500 nm , and leaded that the dipolar plasma resonance absorption peak were covered up and gradually disappeared in the absorption spectrum . we theoretically explained the mechanism of the modulating action
实验观察到cu表面等离子体共振吸收峰位在570lun附近的吸收边频移量超过了500nln .理论分析表明,吸收峰位的移动主要源于偶极共振,而峰形的宽化主要由纳米粒子的表面效应和量子尺寸效应引起
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