temperature band

英 [ˈtemprətʃə(r) bænd] 美 [ˈtemprətʃər bænd]

网络  温度带

化学



双语例句

  1. The thermal noise of resistance could be overcome by reducing the physical temperature, choosing appropriate working frequency band low noise elements, etc.
    可通过降低电路的物理温度、择合适的工作频带及低噪声元件等措施,克服电阻热噪声。
  2. A Comparison of the Algorithms of Land Surface Temperature Retrieval from Landsat TM Thermal Band
    基于LANDSATTM热红外波段反演地表温度的算法对比分析
  3. Several suggestions about temperature late poured band in basement structure seamless design
    地下室结构无缝设计中温度后浇带的几点建议
  4. Temperature dependence of band gap of CdSe colloidal nanocrystals
    CdSe纳米晶带隙随温度变化的研究
  5. The Effect of Temperature on Energy Band with Exchange Interaction
    温度对于交换作用下的能带劈裂的影响
  6. It is not always suitable to use Planck's law or Stefan-Boltzmann's law to describe the relation between brightness temperature and radiance for a wide band sensor.
    对于宽波段传感器,不一定能直接由普朗克定律或者斯蒂芬玻尔兹曼定律建立温度与辐射亮度的关系。
  7. The results show that the temperature of shear band increases with the increase of the average strain rate(γ_0).
    结果表明,随着平均应变速率的增加,剪切带中的温度逐渐增高。
  8. Several vital problems such as high temperature, narrow band of the transmission channel in the operation environments of Downhole Video ( DHV) system are discussed at first.
    首先结合井下电视的实际工作环境,讨论了在设计时需要考虑的一些问题,如高温、传输信道窄等。
  9. An integral solution of temperature caused by moving intermittent band heat source
    断续带状移动热源温度场的积分解
  10. The complex formation reaction in aqueous medium is very rapid at room temperature. The Soret band of the complex lies at 472 nm.
    络合物形成反应在室温下可迅速进行,它的Soret带在472nm。
  11. Absorption spectra of Nd~ ( 3+): KGW crystal for the three crystallographic axes were investigated at room temperature. The absorption band intensities distinctly revealed the anisotropy of Nd~ ( 3+): KGW.
    在室温下测量了掺钕钨酸钾钆(Nd3+∶KGW)晶体三个晶轴方向的吸收光谱,其吸收谱带强度明显显示各向异性。
  12. Fiber-optic temperature sensor based on semiconductor band edge absorption
    谱带吸收式光纤温度传感器
  13. EPR was measured at room temperature in X-band.
    在室温X波段对煤标样作了EPR研究。
  14. Calculation of sky temperature at 3 mm band
    3mm波段天空亮温的计算
  15. And then using the image by ASTER the five thermal wave bands to retrieval the brightness temperature images, using the band 13 brightness temperature image to nearly express the surface temperature image.
    对Terra卫星所搭载的ASTER传感器TIR子系统五个热红外波段的图像进行了亮温图像的反演,并用十三波段的亮温图像近似代替真实温度图像。
  16. The occurrence of dynamic recrystallization in adiabatic shear band showed that adiabatic temperature rise in the shear band was very high, whose softening effect gave rise to steel cylinder fracturing preferentially along the adiabatic shear bands.
    带内发生动态再结晶表明绝热温升已经很高,它的软化作用使其成为钢管破碎时的断裂通道。
  17. The prediction values of shear strain and temperature in shear band based on gradient-dependent plasticity are higher than those by use of classical elastoplastic theory.
    由于微结构效应,基于梯度塑性理论的剪切带内部的最大塑性剪切应变及最高温度的预测值高于经典理论的预测值。
  18. Further increasing the substrate temperature broadens the band tail width of the films because the hydrogen content is too low to passivate the dangling bonds at the NC silicon grain surface.
    对应更高的衬底温度,因薄膜中的氢不能完全中止纳米晶粒界面的悬键,使薄膜能带带尾加宽。
  19. As one of the candidate materials, ZnO with the hexagonal wurtzite structure is hardly hot excited and possesses the necessary condition for short-wavelength emission at room temperature due to its large band gap ( 3.37 eV) and large exciton binding energy ( 60 meV).
    作为候选材料之一的ZnO为纤锌矿六方结构直接带隙半导体,室温下禁带宽度为3.37eV,激子结合能为60meV,室温下不易被热激发,具备了室温下发射短波长光的必要条件。
  20. At room temperature, the absorption band attributed to interstitial oxygen broadened due to the generation of oxygen precipitates.
    由于高温退火过程中氧沉淀的生成,辐照样品的常温红外光谱中间隙氧吸收峰向低频端宽化。
  21. Based on gradient-dependent plasticity where an internal length parameter is included to consider the microstructural effect, the distributions of shear deformation, shear strain and temperature in adiabatic shear band were derived considering the slow and sharp decrease of load-carrying capacity beyond the peak shear stress.
    采用梯度塑性理论,考虑了峰值剪切应力之后的材料承载能力缓慢降低的过程及承载能力快速降低的过程,推导了剪切带内部的剪切变形、应变及温度分布的公式。
  22. Photoluminescence spectra that were excited by Xe laser at room temperature showed a blue band emission with great intensity.
    其氤灯激光PL谱表明样品具有很强的蓝色发光。
  23. Photorefractive gratings are promising to be applied to wavelength division multiplexing ( WDM) systems and electro-optic integration due to the advantages of small size, simple structure, easy erasing, high diffraction efficiency, low temperature sensitivity, narrow band filtering and so on.
    光折变光栅具有体积小、制作简单、易擦除、可以实时处理、衍射效率高、温度响应小、可以进行窄带滤波等优点,其在波分复用系统和光集成方面有着潜在的应用前景。
  24. Studying temperature field of band steel in the course of rolling has important significance on improving cooling system.
    研究轧制过程带钢的温度场对改进冷却制度有重要的意义。
  25. Considering ECU had to work under the harsh environment of engine compartment for life time, it must fulfill to survive environmental stress such as high temperature, sine and broad band vibration, heat humidity, salt mist, corrosion, and so on.
    发动机控制器常年工作在发动机舱严苛的工作环境下,须承受高温、振动、湿热、盐雾、腐蚀和老化等环境应力负载。
  26. Although the effect of correlation between NDVI and brightness temperature from the thermal infrared band of TM imagery was unobvious relatively on urban scale, on built-up area scale which affected intensively by human activity, it showed a significant negative correlation.
    全市尺度上NDVI与基于热红外波段计算的亮温值的相关性较差,但在受人类活动强烈影响的中心城区,考虑水体因素的影响,NDVI与亮温之间表现为显著的负相关关系。
  27. In the design of the light circuit, it researches the band scope of temperature measuring system; the band avoids the influence of environment on the measurement results, and improves the system temperature measurement precision.
    在光路部分的设计中,研究了测温系统工作波段的范围,该波段避免了环境对测量结果的影响,提高了系统测温精度。
  28. The experimental results such as temperature dependence of the optical band gap ( OBG) energy can provide the information about the electron-phonon interactions and optical excitation process.
    光学禁带与温度依赖关系等实验结果可以提供电子-声子相互作用和光激发过程等信息。
  29. As the deposition temperature increases, the band gap gradually become small. 3.
    随着温度升高带隙变小。