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E^2PROM在实际中的应用非常广泛。本文介绍了E^2PROM的特点和工作条件,并重点分析了以E^2PROM2817为核心的霓虹灯自动控制系统的设计方案和实现方法。 相似文献
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G. Murtaza S. IqbalM.A. Ameen A. Iqbal 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008
We have used the technique of expansion in Empirical Orthogonal Functions (EOFs) to develop regional models of the critical frequencies of E and F2 layers (foE, foF2), peak height (hmF2), and semi-thickness of F2 layer (YmF2) over Pakistan. In the present study levels of solar activity specified by Smoothed Sunspot Number (R) from 10 to 200 are taken into account. The magnetic dip angle for the model ranges from 30° to 60°. We have compared the regional model and the International Reference Ionosphere (IRI) with measurements of three ionosondes in Pakistan. The model parameters foE and foF2 are found overall comparable to the observed hourly median values during daytime at Karachi (geographic latitude = 24.95°N, longitude = 67.13°E, magnetic inclination = 37°), Multan (30.18°N, 71.48°E, 45°) and Islamabad (33.75°N, 73.13°E, 51.5°) during the years 1988, 1996 and 2000. For hmF2 the computed values by regional and IRI model for the year 1995 are found close to each other. However, for YmF2the results are better during daytime as compared to nighttime. 相似文献
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对于有限可重组合问题 ,通常用母函数方法[1] 作解答 ,但当数据比较大时 ,母函数方法就不太方便。更重要的是 ,母函数方法很难在计算机中实现。本文对几种有限可重组合问题给出了公式型解法 相似文献
968.
为了改善固体推进剂中高氯酸铵(AP)热分解性能,降低其热分解温度,利用SEM,XRD,FT-IR对原位制备的g-C3N4/Fe2O3复合催化剂的形貌和结构进行了表征,通过差示扫描量热法(DSC)考察了催化剂对AP 热分解的催化效果。结果表明:g-C3N4/Fe2O3复合结构完整,Fe2O3颗粒紧密负载在g-C3N4上;加入不同质量分数的复合催化剂,AP的低温分解峰和高温分解峰都明显降低,且随着催化剂加入量的增加催化效果增强;加入复合催化剂质量分数5%时,高温分解峰和低温分解峰分别降低到348.1℃和281.7℃,表明g-C3N4/Fe2O3复合催化剂可有效降低AP的热分解温度,改善其热分解性能。 相似文献
969.
Yue Wang Shijie Xu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2013
The J2 problem is an important problem in celestial mechanics, orbital dynamics and orbital design of spacecraft, as non-spherical mass distribution of the celestial body is taken into account. In this paper, the J2 problem is generalized to the motion of a rigid body in a J2 gravitational field. The relative equilibria are studied by using geometric mechanics. A Poisson reduction process is carried out by means of the symmetry. Non-canonical Hamiltonian structure and equations of motion of the reduced system are obtained. The basic geometrical properties of the relative equilibria are given through some analyses on the equilibrium conditions. Then we restrict to the zeroth and second-order approximations of the gravitational potential. Under these approximations, the existence and detailed properties of the relative equilibria are investigated. The orbit–rotation coupling of the rigid body is discussed. It is found that under the second-order approximation, there exists a classical type of relative equilibria except when the rigid body is near the surface of the central body and the central body is very elongated. Another non-classical type of relative equilibria can exist when the central body is elongated enough and has a low average density. The non-classical type of relative equilibria in our paper is distinct from the non-Lagrangian relative equilibria in the spherically-simplified Full Two Body Problem, which cannot exist under the second-order approximation. Our results also extend the previous results on the classical type of relative equilibria in the spherically-simplified Full Two Body Problem by taking into account the oblateness of the primary body. The results on relative equilibria are useful for studies on the motion of many natural satellites, whose motion are close to the relative equilibria. 相似文献
970.
Szu-Pyng Kao Yuh-Min Tu Shengyue Ji Wu Chen Zhenjie Wang Duojie Weng Xiaoli Ding Ting Hu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2013
The ionosphere is an important part of the atmosphere and it is the largest error source of GNSS positioning for single-frequency users. So establishing a precise ionosphere model is one of the critical steps for satellite navigation and also for ionospheric research. 相似文献