emissive

英[ɪ'mɪsɪv] 美[ɪ'mɪsɪv]
  • adj. 发射的;放射性的
1. There are four colors: Ambient, Emissive, Diffuse, and Specular.
其中四种是颜色:环境光色、发射光色、漫射光色和反射光色。

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2. A common electrode is formed on the organic emissive layer.
公共电极形成在有机发射层上。

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3. Emissive light: an object can send out light to imitate glowing objects.
放射光:一个像炽热的物体那样发射光线的对象。

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4. This pass also adds any lightmaps, ambient and emissive lighting from the shader.
此通道还负责渲染着色器中的光照贴图,环境光和自发光。

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5. Present a design of the Emissive Microwave Power Control used for the UHF RFID Reader.
介绍一种用于适用于超高频段以上的射频读写器功率控制方案。

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6. One type of emissive display that already exists is based on organic light-emitting diodes (OLEDs).
目前现有的一种放射性显示屏是基于有机的发光二极管。

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7. The SCP of backscattering signals approach the emissive center frequency with increase of ages.
随年龄的增大,质心位置越接近于发射超声的中心频率。

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8. In my work, I try to resolve emissive mechanisms of these objects with an inhomogeneous jet model.
在本人的工作中,我试图用一个非均匀喷流模型来解决这些天体的辐射机制。

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9. The error produced in measuring 15n abundance by emissive optical spectrometry is analyzed in detail.
针对发射光谱法测量1 5n同位数原子丰度产生误差的原因进行了详细分析。

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10. An "emissive" display that emits light directly could therefore be five to ten times more energy-efficient.
因此,直接发光的“放射性”显示屏能达到5 -10倍的节能效果。

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11. Emissive displays showed progress and great promise at SID 2004, but there was also some retrenchment.
各种发射型显示器在SID 2004上表现了进步和美好的前程,但也有一些不尽人意的方面。

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12. A light emissive device structure and a method for forming a light emissive device structure are provided.
提供一种光线发射器件结构和一种用来形成光线发射器件结构的方法。

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13. The fluorescence quenching of these emissive compounds in solution by halogen anions was studied carefully.
研究了它们在溶液中的荧光被卤素离子猝灭的问题。

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14. Experiments and methods for measuring plasma potential with emissive probe and capacity probe are described.
本文给出了发射探针和电容探针测量等离子体电位的实验和方法。

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15. The diffuse material component creates a matte surface, while the emissive component creates a glowing effect.
漫反射材质组件会造成一种不光滑的表面,而放射光组件则制造出一种发光效果。

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16. Compared with the temperature without the trained emissive rate, the temperature is more accurate through training.
与未训练发射率样本得出的温度相比,训练后的温度值更为精确。

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17. The BP neural network is trained through the input picture samples, the output temperature samples and the suitable emissive rate.
通过输入图像样本,输出温度样本和合适的发射率样本训练网络。

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18. This paper describes an effective improvement of the emissive properties of the Ag-O-Cs photocathode by repeating evaporation silver.
本文叙述了复蒸银对银氧铯阴极发射性质的改进。

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19. This paper analyses the harms made by video frequency interrupt in the performance of TV emissive device and the preventing measures.
简要分析电视发射机运行中视频中断产生的危害,以及具体的预防、保护措施。

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20. This paper describes an effective improvement for the emissive properties of the Ag-O-Cs photocathode by repeated evaporation of silver.
叙述了复蒸银对银氧铯阴极发射性质的重大改进。

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21. It is shown that the beam quality in the far field depends on the initial field distribution, and is degraded with increasing emissive power.
结果表明,远场光束质量与初始场的空间分布有关,且随发射功率增大而变差。

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22. Inorganic electroluminescent (el) display is an emissive type of flat panel display technology with great potential for broader areas of application.
无机电致发光(EL)平板显示是一项有着广泛应用前景的自发光型平板显示技术。

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23. Near: Contains indirect illumination from lights marked as Auto, full illumination from lights marked as Bake Only, emissive materials and sky lights.
近:包含标记为自动模式的灯光所产生的的间接照明,和标记为仅烘焙模式的灯光,发光材质和天光的所有照明。

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24. A space is located between the front substrate and the rear substrate and includes an emissive area (a) and a non-emissive area (b) about emissive area.
在前基板和后基板之间存在空间,并且该空间包括发射区和发射区周围的非发射区。

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25. The paper analyzed volumetric 3D display's theory model and developed a rotating planar screen based volumetric 3D display system by emissive LED screen.
本文从体三维显示技术的理论模型出发,利用主动发光式器件LED制成的旋转屏幕,成功研制了基于平面屏旋转的体积扫掠型体三维显示系统。

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26. For thermally-activated delayed fluorescence to work effectively, they show that the emissive and nonemissive states have to be as close as possible in energy.
该团队表示,为了使热活化延迟荧光更加有效的工作,激发态和非激发态在能量上要尽可能的接近。

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27. For thermally-activated delayed fluorescence to work effectively, they show that the emissive and nonemissive states have to be as close as possible in energy.
该团队表示,为了使热活化延迟荧光更加有效的工作,激发态和非激发态在能量上要尽可能的接近。

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