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991.
992.
993.
为了避免化学标准电池由于自身特点在使用中存在诸多不便,采用集成温度传感器LM334设计制作了电子标准电池,同时在设计电路中还采用了两级稳压措施以保证标准电池输出的稳定性. 相似文献
994.
YU XueCai HUANG Xue & YE YuTang School of Opto-Electrical Information University of Electronic Science Technology of China Chengdu China 《中国科学G辑(英文版)》2007,50(2):177-184
Critical temperature and condensate fraction of Bose-Einstein condensation in the optical lattice are studied. The results show that the critical temperature in optical lattices can be characterized with an equivalent critical temperature in a single lattice, which provide a fast evaluation of critical temperature and condensate fraction of Bose-Einstein condensation confined with pure optical trap. Critical temperature can be estimated with an equivalent critical temperature. It is predicted that critical temperature is proportional to q in q number lattices for superfluid state and should be equal to that in a single lattic for Mott insulate state. Required potential depth or Rabi frequency and maximum atom number in the lattices both for superfluid state and Mott state are presented based on views of thermal mechanical statistics. 相似文献
995.
利用方势阱模型对InxGa1-xN/GaN MQWs结构的光特性进行了量子力学定性理论分析.并在MO源流量恒定条件下,在570℃~640℃范围内进行了不同生长温度的多量子阱制备实验,对InxGa1-xN制备过程中的In组份掺入效率的温度依赖关系进行研究.通过对制备样品的PL谱测量分析,得到了587℃~600℃的In组份最佳掺入温度区间. 相似文献
996.
997.
The axial emitted bremsstrahlung spectra were measured on SECRAL(Superconducting ECR ion source with Advanced design in Lanzhou)using an HPGe detector.The spectral temperature T_(spe) was obtained from the linear fit of the spectra in the semi-log present.The evolution of T_(spe) with microwave power and magnetic field configuration is investigated in this paper. 相似文献
998.
��Ԥ���븨�������赲�ŵ�ת���¶ȵ��о� 总被引:1,自引:0,他引:1
用火花预电离辅助介质阻挡放电装置在大气压空气中实现了均匀的类辉光放电。通过用光谱模拟法和波尔兹曼图解法对N 2 第一负带系B2Σ→X 2Σ(0,0)带发射谱线的分析,对放电过程中N 2 的转动温度进行了诊断。研究了不同频率和放电模式下转动温度的变化规律,对由两种方法计算所得的温度进行了对比。实验结果表明,转动温度会随着外加频率的增加而缓慢的增加;当放电从类辉光模式变到丝状放电模式时,转动温度会有70K左右的升高。 相似文献
999.
A. V. Kukhto É. É. Kolesnik A. L. Gurskii E. V. Lutsenko K. A. Osipov V. N. Pavlosvskii Yu. V. Grazulyavichyus A. Nedelcheva I. K. Grabchev 《Journal of Applied Spectroscopy》2007,74(6):915-920
We have studied the effect of the intensity of the exciting radiation and the temperature on the emission properties of two
kinds of thin-film samples based on blends of two types of organic electroactive materials: polyfluorene + iridium triphenylpyridinate
and polyepoxypropylcarbazole + zero-th order PAMAM dendrimer with eosin. We have shown that an increase in the excitation
intensity leads to an increase in the intensity of the luminescence of the polymer matrices and the iridium complex up to
a power density of 300 kW/cm2, and the emission of the dendrimer is rapidly saturated and does not return to the initial value when the excitation level
decreases. Heating up to 170°C followed by cooling causes an increase in the intensity for all the components except the dendrimer.
The data obtained show that annealing is an important method for improving the emission efficiency of the proposed thin-film
structures, due to a change in the packing of the activator molecules in the polymer matrix leading to more efficient transfer
of the excitation energy. Molecules of the studied dendrimer are not stable when exposed to optical radiation and temperature.
__________
Translated from Zhurnal Prikladnoi Spektroskopii, Vol. 74, No. 6, pp. 820–825, November–December, 2007. 相似文献
1000.
When the stagnation temperature of a perfect gas increases, the specific heats and their ratio do not remain constant any
more and start to vary with this temperature. The gas remains perfect and its state equation always remains valid, except
it will be called a calorically imperfect gas. The aim of this research is to develop the relations of the necessary thermodynamics
and geometrical ratios and to study the supersonic flow at high temperature (lower than the threshold of dissociation). The
results are found by the resolution of nonlinear algebraic equations and integration of complex analytical functions where
the exact calculation is impossible. The dichotomy method is used to solve the nonlinear equation, and the Simpson algorithm
is used for the numerical integration of the found integrals. A condensation of the nodes is used, since the functions to
be integrated have a high gradient at the extremity of the interval of integration. A comparison is made with a calorifcally
perfect gas to determine the error of this. An application is made for air in a supersonic nozzle.
The text was submitted by the authors in English. 相似文献