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1.
《天文学进展》创刊于1983年,为中国天文学会学术期刊.被收录为中国科学引文数据库来源期刊.《天文学进展》主要刊登内容:反映国内外天文学科最新研究进展的评述性文章、高水平  相似文献   

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<正>《天文学进展》创刊于1983年,为中国天文学会学术期刊。被收录为中国科学引文数据库来源期刊。《天文学进展》主要刊登内容:反映国内外天文学科最新研究进展的评述性文章、高水平  相似文献   

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中国天文学会名词审定委员会从1985年起开始在《天文学进展》发表天文学名词的推荐译名,到2006年已公布了13批共2151个名词。现再推荐第14批129个名词,其中大多数是近年出现的天文学新词,希望读者在使用过程中对译名提出改进意见.  相似文献   

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《天文学进展》2011,(4):472
《天文学进展》是天文学类中文核心期刊。刊物为季刊,2012年本刊于2、5、8、11月中旬出版,每期定价40元,全年160元(含邮寄费和包装费)。凡需订阅2012年《天文学进展》,请到所在地邮局进行订购。  相似文献   

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《天文学进展》2012,(2):266
《天文学进展》是天文学类中文核心期刊。刊物为季刊,2012年本刊于2、5、8、11月中旬出版,每期定价40元,全年160元(含邮寄费和包装费)。凡需订阅2012年《天文学进展》,请到所在地邮局进行订购。  相似文献   

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《天文学进展》2012,(1):124
《天文学进展》是天文学类中文核心期刊。刊物为季刊,2012年本刊于2、5、8、11月中旬出版,每期定价40元,全年160元(含邮寄费和包装费)。凡需订阅2012年《天文学进展》,请到所在地邮局进行订购。  相似文献   

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<正>《天文学进展》是天文学类中文核心期刊。刊物为季刊,2014年本刊于2、5、8、11月中旬出版,每期定价40元,全年160元(含邮寄费和包装费)。凡需订阅2014年《天文学进展》,请到所在地邮局进行订购。  相似文献   

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<正>《天文学进展》创刊于1983年,为中国天文学会学术期刊。被收录为中国科学引文数据库来源期刊。《天文学进展》主要刊登内容:反映国内外天文学科最新研究进展的评述性文章、高水平的科研论文、学科前沿介绍、科研简讯、专题讲座、学术活动报道。读者对象:天文学及相关学科的科研人员、高等院校教师、研究生及具有相当天文基础知识的天文爱好者。  相似文献   

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《天文学进展》是天文学类中文核心期刊。刊物为季刊,2013年本刊于2、5、8、11月中旬出版,每期定价40元,全年160元(含邮寄费和包装费)。凡需订阅2013年《天文学进展》,请到所在地邮局进行订购。统一刊号:CN 31-1340/P邮发代号:4-819  相似文献   

10.
中国天文学名词审定委员会在《天文学进展》第3卷第4期(1985)、第7卷第2期(1989)、第9卷第2期(1991)、第12卷第2期(1994和第15卷第1期(1997)上刊登了本委员会提供的1038个天文学名词的推荐译名.现再推荐第七批149个,其中大多数是近年出现在文献上的天文学新名词.希望读者在使用过程中对译名提出改进意见.第七批新词的提供者是天文学名词审定委员会委员沈良照和李竟.##C168||^^The7thDraftfortheChinese-ThanslationofSomeAstronomicalTerms$$$$(TheAstronomicalTerminologyCommitteeoftheCAS)英文名推荐译名absolutee…  相似文献   

11.
星系团研究涉及面极广,此处仅简介光学研究的若干方面,全文分为两篇,前一篇中已知介绍了星系团表,星系团有大尺度分布,星系团的一般性质,本篇中则介绍团星系的演化,环境与星系形态,并作简要的展望。  相似文献   

12.
黄珹 《天文学进展》2001,19(2):113-120
对应用天文学涉及的领域以及国际上应用天文学的特点作了介绍,分析了我国应用天文学的研究现状,展示了我国在诮天文所依托的基础科学研究领域和应用天文学领域取得的成绩与进展,其涉及范围比较广泛,但也指出了与国际先进国家相比我国应用天文学的水平尚有差距,最后对我国应用天文发展提出了初步的构想。  相似文献   

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The Editorial Board is now in a position to receive the TEX/LATEX files of accepted Monthly Notices papers by file transfer protocol (FTP), as an alternative to submission on floppy disk. A password-protected Monthly Notices directory has been set up on the FTP server at the publisher, Blackwell Science, for this purpose.  相似文献   

14.
We measured the frequency dependence of the pulsar pulse broadening by scattering over a wide frequency range, from 40 to 2228 MHz, based on direct measurements of this parameter using giant pulses from the pulsar PSR B0531+21 in the Crab Nebula. Our measurements were carried out at the following seven frequencies: 40, 60, and 111 MHz at the Pushchino Radio Astronomy Observatory (Astrospace Center, Lebedev Physical Institute, Russian Academy of Sciences), 406 MHz at the Medicina Observatory (Instituto di Radioastronomia, Italy), and 594, 1430, and 2228 MHz at the Kalyazin Radio Astronomy Observatory (Astrospace Center, Lebedev Physical Institute, Russian Academy of Sciences). The measured frequency dependence of the pulse broadening by scattering τSC (υ) ? υγ, where γ=?3.8±0.2, agrees with a model Gaussian distribution of interstellar inhomogeneities (γ=?4) but falls outside the error limits of correspondence to a Kolmogorov model spectrum of inhomogeneities (γ=?4.4).  相似文献   

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This article is devoted to the Pulkovo astronomer, Prof. Aleksandr Nikolaevich Deich (Deutsch) (1899-1986), on the 110-th anniversary of his birth. Deich is known as the founder of the Pulkovo program for observing stars with invisible companions, as well as for his research on the star 61 Cyg, which was suspected, in his time, of having invisible companions with the masses of planets. Astrometric observations on the long focus astrograph and searches for exoplanets of nearby stars are reviewed. Modern methods of searching for exoplanets are summarized briefly. Instrument designs proposed by astronomers at Kharkiv (Scientific Research Institute of Astronomy at Kharkiv National University, NIIA KhNU) and Kazan (Institute of Astronomy, Kazan State University, AO KGU) for use in the search for low-mass dark components of stars are discussed. Examples are given of confirmations of invisible companions of stars which were first discovered by observation. A number of theoretical results on this topic from Kharkiv National University (Scientific Research Institute of Astronomy at Kharkiv and the Dept. of Astronomy) are noted.  相似文献   

17.
In this paper the main findings are presented of a recent study made by a team of sociologists from the University of Granada on the professional astronomers currently working in Spain. Despite the peculiarities of this group – its youth, twentyfold increase in size over the last 20 years, and extremely high rate of specialization abroad – in comparison with other Spanish professionals, this is the first time that the sociological characteristics of the group have been studied discretely. The most significant results of the study are presented in the following sections. Section 1 gives a brief historical background of the development of Astronomy in Spain. Section 2 analyzes the socio-demographic profile of Spanish Astronomy professionals (sex, age, marital status, etc.). Sections 3–5 are devoted to the college education and study programs followed by Spanish astronomers, focusing on the features and evaluations of the training received, and pre- and postdoctoral study trips made to research centers abroad. The results for the latter clearly show the importance that Spanish astronomers place on having experience abroad. Special attention is paid to scientific papers published as a result of joint research projects carried out with colleagues from centers abroad as a result of these study trips. Section 6 describes the situation of Astronomy professionals within the Spanish job market, the different positions available and the time taken to find a job after graduation. Section 7 examines Astronomy as a discipline in Spain, including the astronomers' own opinions of the social status of the discipline within Spanish society. Particular attention is paid to how Spanish astronomers view the status of Astronomy in Spain in comparison with that of other European countries. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

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Astronomy is a very interesting subject for undergraduate students studying physics. In this paper, we report astronomy education for undergraduate students in the Physics Department of Guangzhou University, and how we are teaching astronomy to the students. Astrophysics has been rapidly developing since 1994, when the center for astrophysics was founded. Now, astrophysics has become a key subject in Guangdong Province, and the Astronomy Science and Technology Research Laboratory one of the key laboratories of the Department of Education of the Guangdong Province. Many undergraduate students, working under the tutorship of faculty members completed their thesis at the Center for Astrophysics in Guangzhou.  相似文献   

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