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1.
在2001年中国科学院科学出版基金的申请中,《发光学报》经申报、推荐和专家评定,及中国科学院审批被评为“择重”资助项目。从而获得2001~2002年度出版基金的资助,成为中国科学院科学出版基金资助出版的刊物。  相似文献   

2.
《光谱实验室》是中国科学院主管、中国科学院化工冶金研究所等单位联合主办、科学出版社出版的学术刊物。其主编是专职、持证上岗的科学工作者。刊物是自主经营、自负盈亏。编委要有献身本专业科技出版事业的精神。来稿必须理论联系实际,符合国家关于出版物的技术标准,并要达到“齐、清、定”。出版下常周期为2-6个月。  相似文献   

3.
《光谱实验室》是中国科学院主管、中国科学院化工冶金研究所等单位联合主办、科学出版社出版的中国科学核心期刊之一,是自主经营、自负盈亏的刊物。编委要有献身本专业科技出版事业的精神。来稿必须符合国关于出版物的政治标准和技术标准,出版正常周期2-6个月。“保质、高效”是本刊的主要特色。  相似文献   

4.
《光谱实验室》投稿须知(2002)   总被引:1,自引:1,他引:0  
《光谱实验室》是中国科学院主管,中国科学院化工冶金研究所等单位联合主办,科学出版社出版的中国科学核心期刊之一,是自主经营,自负盈亏的刊物,编委要有献身本专业科技出版事业的精神,来稿必须符合国家关于出版物的政治和技术标准,出版正常周期为2-6个月,“保质,高效”是本刊的主要特色。  相似文献   

5.
5月19日第三届“中国科学院公众科学日”活动开幕,中国科学院高能物理研究所此次活动的主题是“撞出物质奥秘,展现高能魅力”,正在紧张进行加速器调试的北京正负电子对撞机重大改造工程为此停机一天向公众免费开放。  相似文献   

6.
《发光学报》2005,26(1):71
《光学精密工程》是中国仪器仪表学会一级学术期刊,中国科学院长春光学精密机械与物理研主办,科学出版社出版。著名科学家王大珩等 12位中国科学院和中国工程院院士担任顾问,陈星旦士任编委会主任,青年科学家曹健林博士担任主编。《光学精密工程》坚持学术品位,集中报道国内外现代应用光学、光学工程技术、光电工程和精械、光学材料、微纳科学与技术、医用光学、先进加工制造技术、信息与控制、计算机应用以及有关交科等方面的最新理论研究、科研成果和创新技术。本刊刊发国家重大科技项目和国家自然科学基金目、“863”项目及各省、部委基…  相似文献   

7.
《发光学报》2005,26(2):252
《光学精密工程》是中国仪器仪表学会一级学术期刊,中国科学院长春光学精密机械与物理研究所主办,科学出版社出版。著名科学家王大珩等 12位中国科学院和中国工程院院士担任顾问,陈星旦院士任编委会主任,中国科学院副院长曹健林博士担任主编。《光学精密工程》坚持学术品位,集中报道国内外现代应用光学、光学工程技术、光电工程和精密机械、光学材料、微纳科学与技术、医用光学、先进加工制造技术、信息与控制、计算机应用以及有关交叉学科等方面的最新理论研究、科研成果和创新技术。本刊刊发国家重大科技项目和国家自然科学基金项目、“86…  相似文献   

8.
《光谱实验室》2001,18(1):50
邮发代号:82-863    《光谱实验室》 是中国科学院主管、科学出版社出版、 国内外公开发行的中国科学核心期刊之一,由中国科学院化工冶金研究所、北京钢铁研究总院和航空材料研究院等单位联合主办,由光谱学科上第一项中国国家发明奖获得者中的第一发明人周开亿教授(编审)担任专职主编。   《光谱实验室》主要刊登光谱学、能谱学、波谱学、质谱学、色谱学、频谱学、极谱学等谱学学科方面的学术论文。欢迎大专院校、科研院所、工矿企业、质检商检等部门从事谱学研究和理化分析的科技人员订阅,欢迎投稿。  《光谱实验室》具有“主编专职”、“主编持证上岗”、“联合办刊”、“经费自筹”、“不搞挂名编委”和“保质高效”等“求是”的特色,被卢嘉锡院士(前中国科学院院长)称为“自力更生……勇攀高峰”的刊物。   《光谱实验室》重开拓性、创造性和实用价值;在严格保证质量的前提下,把尽快发表作者的论文,视为自己的神圣职责。论文发表正常周期为2-6个月,特快稿件可0.5—1个月发表。这为作者的发明创造成果,获得“优先权”荣誉奠定了基础——发明创造成果的“优先权”通常是以出版时间为准的。   《光谱实验室》为16开版,每册132-148页(2001年),70克胶版纸印刷,定价15元(实际成本35元)。   《光谱实验室》为双月刊,每期单月25日出版;国内统一刊号:CN 11\|3157/O4, 国际标准刊号:ISSN 1004\|8138;国际刊名代码CODEN:GUSHEH;国外发行代号:DK 11013。   《光谱实验室》由北京报刊发行局发行,国内邮发代号:82\|863,欢迎您到邮局订阅。漏订者可与本刊联络(投稿)处联系订阅,地址:北京市81信箱66分箱 刘建林,电话:(010)62452937,邮政编码:100095,电子信箱E\|mail: 1) gpsysh@public.sti.ac.cn; 2) gpsys@263.net; 3) gpsys81@citiz.net; 4) gpss@chinajournal.net.cn; 5) gpsys81@hotmail.com。国外由中国出版对外贸易总公司发行。 《光谱实验室》编辑部  相似文献   

9.
马艺文  秦晓宇  成蒙 《物理》2023,(3):216-217
<正>博学而笃志,切问而近思,仁在其中矣。——《子张》为了贯彻落实习近平总书记关于“科技创新、科学普及是实现创新发展的两翼,要把科学普及放在与科技创新同等重要的位置”的重要指示精神,深入实施创新驱动发展战略,2023年2月21日晚,由中国科学院科学传播局、科学技术部人才与科普司、中国科技新闻学会科普工作委员会支持,中国科学院物理研究所承办的第60期科学咖啡馆活动成功举行。本次活动的主持人为中国科学院科学传播局局长周德进,主讲嘉宾为中国科学院科学传播研究中心副主任邱成利。  相似文献   

10.
让课程内容反映最新的科学成就,是目前教学改革的主要趋向。作为绪论课,我们把中国科学院理论物理研究所向国内公布的“开放课题指南”共14个大  相似文献   

11.
主编的话     
Happy New Year! As many of you are aware that Chinese science is at the crucial stage of development. We are now seeing more and more high quality works being produced by Chinese scientists working in China. However, high quality scientific works are rarely published in Chinese scientific journals so far. Therefore, the development of scientific journals publishing in China now becomes a more and more important indication of the science development in China. In the development of the chemical physics research field in China, the Chinese Journal of Chemical Physics (CJCP) has made significant contributions in the past 18 years. Since CJCP is primarily a Journal published in Chinese previously, its impact in the international scientific community has been quite limited. At this moment, we believe CJCP should increase its impact in the international community. We believe that making CJCP an English journal is a crucial step to increase its in°uence internationally. Therefore, upon the recommendation of senior editorial members, we now change CJCP into an full English journal from this issue on. We have also formed a high quality editorial board to help the editorial matters in CJCP, and a prestigious advisory board to advise us of the future development. I am very honored to be selected as the new Editor-in-Chief for the next four years. I hope by the end of my term, the impact of this journal is significantly improved through the efforts of our editorial team. Building a high quality scientific journal is not an easy task. I hope that every member of our chemical physics community can provide strong support to this journal by sending your high quality research papers in the future. We are also thinking about adding new sections of this journal to attract more readers. With the support of our community, I am confident that we can make this journal a more successful one. Here, I want to take this opportunity to thank the great leadership provided by the Editor-in-Chief since the foundation of this journal, Professor Nan-quan Lou, who has just become a senior advisory board member of this journal. I also want to thank the senior associate editor, Prof. Shu-qin Yu, who has made great contributions to the development of CJCP. Many thanks also go to the other senior associate editors, Profs. Die-yan Chen, Hai-lung Dai, Xing-xiao Ma, Han-qing Wang, Hou-wen Xin, Cun-hao Zhang and Qi-he Zhu, who have made important contributions to CJCP in the past 18 years. We plan that CJCP will soon become available online so that members of our community can access this journal easily through internet. This will also help us to provide greater visibility of this journal in the international research community. Xue-ming Yang Editor-in-Chief February 12, 2006  相似文献   

12.
李杰  郭晓宏  姜亢 《应用声学》2014,33(3):274-282
为了解世界声学研究总体产出和分布情况。运用文献计量学的方法,对SCI收录的31种期刊数据从文献语言、类型分布、发文时间趋势以及研究时间及空间分布等方面进行了分类统计分析。结果表明:声学文献的主要是以英文为主的Article类型文献,声学文献整体上呈直线增长的趋势;美国、英国、法国、中国、日本、加拿大以及德国是世界声学研究的主要产出国,且在时间序列上美国在声学上独具优势;进一步的机构分析显示了美国海军声学研究机构、俄罗斯科学院、英国南安普敦大学以及美国宾夕法尼亚大学在声学研究上具有绝对优势,而机构论文产出的时间分布得到俄罗斯科学院在近20年声学研究上独具优势。就我国而言香港理工大学、中国科学院以及上海交通大学等机构在声学研究上表现突出,但与国际重要研究机构仍然存在差距。  相似文献   

13.
This is an English translation of a paper by Pascual Jordan, Juergen Ehlers and Rainer Sachs, first published in 1961 in the proceedings of the Academy of Sciences and Literature in Mainz (Germany). The original paper was part 2 of a five-part series of articles containing the first summary of knowledge about exact solutions of Einstein’s equations found until then. (Parts 1 and 4 of the series have already been reprinted, parts 3 and 5 will be printed as Golden Oldies in near future.) This second paper discusses the geometry of geodesic null congruences, the algebraic classification of the Weyl tensor by spinor methods, and applies these to a study of the propagation of gravitational and electromagnetic radiation. It has been selected by the Editors of General Relativity and Gravitation for republication in the Golden Oldies series of the journal. The republication is accompanied by an editorial note written by Malcolm A. H. MacCallum and Wolfgang Kundt.  相似文献   

14.
In 2003, the Andreev Acoustics Institute celebrated its 50th birthday. The formation of the institute in the framework of the Academy of Sciences of the USSR, which occurred in 1953, lead to the appearance of the Akusticheskii Zhurnal (Acoustical Physics). This journal always reflected the main achievements of the scientists from the Acoustics Institute. The leading scientists of the institute, in their turn, always took an active part in the work of the editorial board of the journal. In the present paper, the history of the Acoustics Institute is briefly reviewed and its current areas of research are outlined. The role of the institute in the development of acoustical research in Russia is discussed.  相似文献   

15.
《光学学报》2015,(3):419-419
7/12-7/15 Nanjing,China Conference General Chairs:Prof.Zunqi Lin Member of Chinese Academy of Science.Shanghai Institute of Optics and Fine Mechanics,ChinaProf.shining zhu Member of Chinese Academy of Sciences:Nanjing University,China Prof.Eli Yablonovitch Member of the National Academy of Sciences and National Academy of Engineening:University of Califomia,Berkeley,USA  相似文献   

16.


This article has been retracted at the request of the Editor-in-Chief, in accordance with our policy on publishing ethics.

The article is largely a duplicate publication of a paper already published by the same authors in Physical Review Special Topics –Accelerators and Beams as "High power test of an injector linac for heavy ion cancer therapy facilities" (Phys. Rev. ST Accel. Beams 18, 111002, DOI 10.1103/PhysRevSTAB.18.111002). The main results and much of the text are identical. The lead author, Dr Liang Lu, submitted this article to Chinese Physics C while the Phys. Rev. ST Accel. Beams article was still in the peer review process. Each journal then accepted the respective submissions, with the article published in Phys. Rev. ST Accel. Beams before Chinese Physics C. During submission, authors explicitly declare that the work is original and is not published or under consideration for publication elsewhere. This publication is therefore a serious breach of scientific publishing ethics. The Editorial Board of Chinese Physics C treats such matters extremely seriously, and hereby retracts this article. 
Dr Liang Lu takes full responsibility for this matter, and apologises for his behaviour. The Editors apologise to our readers that this was not detected earlier in the publication process.
  相似文献   

17.
Summary statistical data on the journal Kvantovaya Élektronika (English translation — Soviet Journal of Quantum Electronics) for the first 15 years of its publication from 1974 through 1988. They include the number of articles published, their distribution by subject, statistics on the authors of the papers, questions dealing with the size of the journal and with the effective utilization of the paper. Relative estimates are made of the contributions of different journals to the common flow of information. The shares of different topics in the sum total of the articles are given.Translated from Preprint No. 166 of the Lebedev Physics Institute, Academy of Sciences of the USSR, Moscow, 1990.  相似文献   

18.
超灵敏小型回旋加速器质谱计的研制已按预定目标完成,其研究水平居国际领先地位.本文介绍其研制意义和背景,概述设计思想和总体方案,并就其创新学术思想和独特技术路线、以及进一步研究任务,作了扼要介绍. The paper reviews the recent achievement of developing a mini-cyclotron mass spectrometer (AMS) for 14C dating, a key project supported by National Natural Science Foundation of China and Chinese Academy of Sciences. The background and significance of the project are briefed. Features of the novel machine, the criteria of its design, the new ideas and unique technical approaches in developing the system are described. Further efforts are being made to improve the mini-cyclotron AMS.  相似文献   

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