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On Quadratric Rotational Curved Surface
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作者 马国强 朱振兴 《Chinese Quarterly Journal of Mathematics》 CSCD 1993年第4期77-82,共6页
In this paper,a deterministic theorem is proposed for quadratic rotational curved surface.The relationship between invariants for quadratic rotational curved surface is established.In addition we give each type of equ... In this paper,a deterministic theorem is proposed for quadratic rotational curved surface.The relationship between invariants for quadratic rotational curved surface is established.In addition we give each type of equitions for rotational curved surface using the invariant. 展开更多
关键词 rotational ellipsoidal surface of revolution HYPERBOLOID parabolic surface
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The influence of isotope substitution of neon atom on the integral cross sections of rotational excitation in Ne-Na2 collisions
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作者 Zang Hua-Ping Li Wen-Feng +2 位作者 Linghu Rong-Feng Cheng Xin-Lu Yang Xiang-Dong 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第2期1-6,共6页
This paper applies the multiple ellipsoid model to the 16Ne (20Ne, 28Ne, 34Ne)-Na2 collision systems, and calcu- lates integral cross sections for rotational excitation at the incident energy of 190 meV. It can be s... This paper applies the multiple ellipsoid model to the 16Ne (20Ne, 28Ne, 34Ne)-Na2 collision systems, and calcu- lates integral cross sections for rotational excitation at the incident energy of 190 meV. It can be seen that the accuracy of the integral cross sections can be improved by increasing the number of equipotential ellipsoid surfaces. Moreover, by analysing the differences of these integral cross sections, it obtains the change rules of the integral cross sections with the increase of rotational angular quantum number j', and with the change of the mass of isotope substitution neon atom. Finally, the contribution of different regions of the potential to inelastic cross sections for 20Ne-Na2 collision system is investigated at relative incident energy of 190 meV. 展开更多
关键词 multiple hard-ellipsoid model Ne isotopic atoms integral cross sections ellipsoid equipotential surface
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Entropy Correction for Kerr Black Hole
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作者 ZHAO Ren ZHANG Sheng-Li 《Communications in Theoretical Physics》 SCIE CAS CSCD 2005年第6X期1037-1040,共4页
In this paper, we discuss leading-order corrections to the entropy of Kerr black hole due to thermal fluctuations in the finite cavity. Then temperature is constant, the solution of the black hole is obtained within a... In this paper, we discuss leading-order corrections to the entropy of Kerr black hole due to thermal fluctuations in the finite cavity. Then temperature is constant, the solution of the black hole is obtained within a cavity, that is, the solution of the spacetime after considering the radiation of the black hole. Therefore, we derive that the location of the black hole horizon and specific heat are the functions of temperature and the radius of the cavity.Corrections to entropy also are related to the radius of the cavity. Through calculation, we obtain conditions of taking the value of the cavity's radius. We provide a new way for studying the corrections of complicated spacetimes. 展开更多
关键词 entropy correction entropy of Kerr black hole ellipsoid surface
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Profile error compensation in precision grinding of ellipsoid optical surface 被引量:3
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作者 Shimeng YU Jiahao ZHU +1 位作者 Peng YAO Chuanzhen HUANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2021年第4期115-123,共9页
Optical glass elements with the ellipsoidal surface are used in many critical aerospace instruments,such as satellites,telescope and cameras.Their optical performance is mainly affected by profile accuracy and surface... Optical glass elements with the ellipsoidal surface are used in many critical aerospace instruments,such as satellites,telescope and cameras.Their optical performance is mainly affected by profile accuracy and surface quality.In this paper,a rectangular ellipsoid surface is precisely ground on a BK7 optical glass blank by grating scanning grinding path with a three-axis CNC precision surface grinder.A profile error compensation procedure for ellipsoidal grinding is proposed based on the error analysis about the primary error sources in the XY and YZ projection planes during the grinding process.The mathematical prediction models of the wheel arc profile error,the measurement and wear error of the grinding wheel radiuses are established.By applying the proposed error compensation procedure,the profile accuracy of the ellipsoidal surface was improved from 4 lm to 2 lm in the XY plane,and improved from 15 lm to 5 lm in the YZ plane. 展开更多
关键词 Aspheric lens Ellipsoid surface Error compensation Grinding wheel truing Precision grinding
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New form of geodetic coordinate system taking two length quantity as coordinate parameters
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作者 Yimin SHI Ziyang ZHU Yeming FAN 《Frontiers of Structural and Civil Engineering》 SCIE EI 2009年第1期105-110,共6页
A new form of geodetic coordinate system based on geodesic coordinates instead of geodetic longitude and latitude was proposed.The vertical and horizontal geodesic coordinates measured with length were defined as coor... A new form of geodetic coordinate system based on geodesic coordinates instead of geodetic longitude and latitude was proposed.The vertical and horizontal geodesic coordinates measured with length were defined as coordinate parameters,but the two families of coordinate curves were still meridians and parallel circles.The first fundamental form on the ellipsoidal surface and its three coefficients were deduced by the geodesic coordinate.The formula for the latitudinal scale factor of length for geodetic parallel lines was derived,by which the obtained result conformed to that standard value calculated from geodetic latitude,and it is applicable in the range of 400 km from north to south.Therefore,it lays the foundation for establishing the differential equation and differential relationship based on this type of coordinate parameters;and consequently,it is convenient and accurate enough to operate on the ellipsoidal surface in this new form of geodetic coordinate system. 展开更多
关键词 geodetic coordinate system meridian and parallel circle coordinate parameter the first fundamental form on the ellipsoidal surface latitudinal scale factor of length
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