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81.
传统手动读数据方法和现代数据采集器传感器结合计算机自动测量方法分别对铜电阻、正温度系数热敏电阻和负温度系数热敏电阻进行数据测量,并且作曲线图。让学生掌握传统和现代测量方法、不同类型仪器使用方法、不同种类热敏电阻随温度变化的规律、非平衡电桥原理以及误差分析。  相似文献   
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光热治疗基于光热药剂在激光照射下产生热量,进而高温杀死肿瘤细胞,因而实时监测光热过程中微观温度变化对于优化治疗效果具有十分重要的作用。稀土Eu~(3+)配合物的发光具有线谱、长荧光寿命以及对温度高度敏感的特点,利用Eu~(3+)配合物的温敏特性可检测光热过程中的温度变化,整合温度监测功能和光热特性的纳米体系在光热治疗领域具有很好的应用前景。本文制备了一种内部封装温度敏感探针Eu~(3+)配合物且表面复合金纳米球的功能纳米颗粒,将该功能纳米颗粒分散液置于不同的温度环境中,发现其荧光性能对温度具有高的响应灵敏度,即Eu~(3+)的特征发射峰(615 nm)强度随温度升高降低52.7%,表明该稀土荧光温度纳米传感器具有高的温度敏感性。在激光辐照下,功能纳米颗粒可以产生良好的光热现象,基于自身的温敏特性可实时对光热特性进行温度监控。  相似文献   
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Based on the photothermal detuning technique, the three linear relations among reflectance (or trans- mittance), temperature rise, and pump beam power are studied to achieve the absolute measurement of absorption loss. The relation between temperature and reflectance and the calculation accuracy of tem- perature rise on sample surface have great impacts on the measured result. The influences of parameters involved in the method and the relation between temperature and reflectance and the temperature model of sample surface are also studied. The results show that the absolute absorption loss of optical coatings can be achieved by the proposed method. The measurement accuracy depends on the temperature model and the relation between temperature and reflectance. The linear relation between reflectance and temper- ature rise has largest slope when probe beam wavelength is 632.8 nm and incident angle is 28°. The linear relation slope between temperature rise and pump beam power decreases with the growing of beam size and modulation frequency. The results provide theoretical and experimental supports for the perfection and further application of the photothermal detuning technique.  相似文献   
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In this letter, we discuss the increase in the average cluster size by lowering the stagnation temperature of the methane (CH4) gas. The Coulomb explosion experiments are conducted to estimate the cluster size and the size distribution. The average CH4 cluster sizes Nay of 6 230 and 6 580 are acquired with the source conditions of 30 bars at 240 K and 60 bars at 296 K, respectively. Empirical estimation suggests a five-fold increase in the average size of the CH4 clusters at 240 K compared with that at room temperature under a backing pressure of 30 bars. A strong nonlinear Hagena parameter relation (Г^*∝ T0^-3.3) for the CH4 clusters is revealed. The results may be favorable for the production of large-sized clusters by using gases at low temperature and high back pressures.  相似文献   
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The garnet-type Li7La3Zr2O12 ceramic is a promising solid electrolyte for all-solid-state secondary lithium batteries. However, it faces the problem of lithium volatilization during sintering, which may cause low density and deterioration of ionic conductivity. In this work, the effects of sintering temperature and addition on the density as well as the lithium ion conductivity of Li7-xLa3Zr2-xTaxO12 (LLZTO, x=0.25) ceramics prepared by solid state reaction have been studied. It is found that optimization of the sintering temperature leads to a minor increase in the ceramic density, yielding an optimum ionic conductivity of 2.9×10-4 S·cm-1 at 25℃. Introduction of Li 3 PO 4 addition in an appropriate concentration can obviously increase the density, leading to an optimum ionic conductivity of 7.2×10-4 S·cm-1 at 25℃. This value is superior to the conductivity data in most recent reports on the LLZTO ceramics.  相似文献   
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The effects of clouds, sea surface temperature, and its diurnal variation on precipitation efficiency are investigated using grid-scale data from nine equilibrium sensitivity cloud-resolving model experiments driven without large-scale vertical velocity. The precipitation efficiencies are respectively defined in surface rainfall, cloud, and rain microphysical budgets. We mathematically and physically demonstrate the relationship between these precipitation efficiencies. The 2℃ increases in spatiotemporal invariant sea surface temperature (SST) from 27℃ to 29℃ and from 29℃ to 31℃, and the inclusion of diurnal SST difference 1℃ and the 1℃ increase in diurnal SST difference generate opposite changes in the precipitation efficiency by changing ice cloud-radiation interactions. The radiative and microphysical processes of ice clouds have opposite effects on the precipitation efficiency because of the rainfall increase associated with the reduction in the saturation mixing ratio caused by the exclusion of radiative effects and the decrease in rainfall related to the reduction in net condensation caused by the exclusion of deposition processes. The radiative effects of water clouds on the precipitation efficiency are statistically insensitive to the radiative effects of ice clouds.  相似文献   
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N型隧穿氧化层钝化接触(Tunnel Oxide Passivating Contacts,TOPCon)太阳能电池完成印刷烧结后,再经过光注入,效率有明显提升,主要表现在Voc(开路电压)及FF(填充因子)的提升。其机理在于通过温度和光照强度调节费米能级变化,控制H总量及价态来提高钝化性能。钝化膜层的质量、硅基体掺杂浓度、光注入退火时的工艺温度等对光注入退火工艺提升效率有很大影响。实验证明转换效率越低的电池片经过光注入后效率提升幅度越大;转换效率越高的电池片缺陷会更小,经过光注入退火工艺后几乎无增益。另外同心圆在经过光注入退火工艺后会明显消除。本文主要研究温度、光强、基体电阻率、正表面金属接触面积大小、poly-Si(多晶硅)厚度对光注入退火工艺增效的影响。  相似文献   
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