首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   1363篇
  免费   23篇
  国内免费   15篇
测绘学   16篇
大气科学   136篇
地球物理   370篇
地质学   546篇
海洋学   113篇
天文学   160篇
综合类   3篇
自然地理   57篇
  2021年   12篇
  2018年   25篇
  2017年   14篇
  2016年   25篇
  2015年   18篇
  2014年   35篇
  2013年   41篇
  2012年   33篇
  2011年   53篇
  2010年   37篇
  2009年   49篇
  2008年   54篇
  2007年   36篇
  2006年   48篇
  2005年   39篇
  2004年   34篇
  2003年   31篇
  2002年   47篇
  2001年   19篇
  2000年   21篇
  1999年   16篇
  1998年   27篇
  1997年   16篇
  1996年   19篇
  1995年   23篇
  1994年   12篇
  1993年   19篇
  1991年   11篇
  1990年   16篇
  1989年   14篇
  1987年   14篇
  1986年   12篇
  1985年   24篇
  1984年   21篇
  1983年   26篇
  1982年   18篇
  1981年   17篇
  1980年   14篇
  1979年   21篇
  1978年   18篇
  1977年   17篇
  1976年   15篇
  1975年   11篇
  1974年   11篇
  1973年   17篇
  1970年   11篇
  1959年   15篇
  1956年   11篇
  1954年   12篇
  1948年   13篇
排序方式: 共有1401条查询结果,搜索用时 31 毫秒
31.
32.
33.
Seven impact melts from various places in the Nördlinger Ries were dated by 40Ar‐39Ar step‐heating. The aim of these measurements was to increase the age data base for Ries impact glasses directly from the Ries crater, because there is only one Ar‐Ar step‐heating spectrum available in the literature. Almost all samples display saddle‐shaped age spectra, indicating the presence of excess argon in most Ries glass samples, most probably inherited argon from incompletely degassed melt and possibly also excess argon incorporated during cooling from adjacent phases. In contrast, moldavites usually contain no inherited argon, probably due to their different formation process implying solidification during ballistic transport. The plateau age of the only flat spectrum is 14.60 ± 0.16 (0.20) Ma (2σ), while the total age of this sample is 14.86 ± 0.20 (0.22) Ma (isochron age: 14.72 ± 0.18 [0.22] Ma [2σ]), proofing the chronological relationship of the Ries impact and moldavites. The total ages of the other samples range between 15.77 ± 0.52 and 20.4 ± 1.0 Ma (2σ), implying approximately 2–40% excess 40Ar (compared to the nominal age of the Ries crater) in respective samples. Thus, the age of 14.60 ± 0.16 (0.20) (2σ) (14.75 ± 0.16 [0.20 Ma] [2σ], calculated using the most recent suggestions for the K decay constants) can be considered as reliable and is within uncertainties indistinguishable from the most recent compilation for the age of the moldavite tektites.  相似文献   
34.
35.
Abstract— We have measured excess Ir and depletion of 14C, two independent indicators of cosmic material, in peat cores from the central Tunguska impact site. Both Ir and 14C show pronounced anomalies in the same stratigraphical depth interval. We have estimated an integral deposition of nonradioactive cosmogenic C of 6.8 ± 1.0 mg C cm?2, and an integrated Ir deposition of 5.9 ± 1.2 pg Ir cm?2. The very high C/Ir ratio and a deduced δ13C value of +55 ± 10% relative to V Pee Dee Belemnite (VPDB) of the impactor material found in this study points towards a cometary type impactor, rather than a chondritic or achondritic asteroidal type impactor.  相似文献   
36.
Hans Josef Schober 《Icarus》1976,28(3):415-420
The minor planet 79 Eurynome was observed during the 1974 opposition for four nights in November, using a photoelectric photometer attached to the 60 cm telescope at the Observatoire de Haute Provence, France. A synodic period of Psyn = 5h 58m46s ± 6s m.e. was derived. The total amplitude of the lightcurve is only 0.05 mag. The lightcurve shows a double maximum and double minimum. Both minima appear to be at the same level. Observations were carried out in an instrumental filter system (UBV)' Results are shown only for V′, but U′ and B′ measurements supplement the conclusions concerning the rotation. The phase angle α, covered by the observations, ranges from 3 to 5°. The present results for 79 Eurynome rule out the longer period of 0d.49830 derived by F. Scaltriti and V. Zappalà in favor of their possible period of 0d.24915.  相似文献   
37.
The April 1984 special issue of Marine Policy included an overview article on international marine research in the post-UNCLOS era: ‘Marine science: organizing the study of the oceans’ by Henry Charnock. We sent a galley proof of the article to Dr Hans Tambs-Lyche, formerly of ICES, for comment and we are pleased to publish his remarks.  相似文献   
38.
39.
40.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号