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   64136篇
  免费   14106篇
  国内免费   20025篇
测绘学   10119篇
大气科学   8731篇
地球物理   12068篇
地质学   39971篇
海洋学   11204篇
天文学   2405篇
综合类   4865篇
自然地理   8904篇
  2024年   353篇
  2023年   1264篇
  2022年   3588篇
  2021年   4429篇
  2020年   3614篇
  2019年   4081篇
  2018年   4038篇
  2017年   3756篇
  2016年   3846篇
  2015年   4167篇
  2014年   4243篇
  2013年   5155篇
  2012年   5741篇
  2011年   5782篇
  2010年   5631篇
  2009年   5294篇
  2008年   5117篇
  2007年   4870篇
  2006年   4731篇
  2005年   3609篇
  2004年   2716篇
  2003年   2053篇
  2002年   2135篇
  2001年   2039篇
  2000年   1597篇
  1999年   899篇
  1998年   457篇
  1997年   416篇
  1996年   333篇
  1995年   306篇
  1994年   270篇
  1993年   228篇
  1992年   226篇
  1991年   122篇
  1990年   119篇
  1989年   120篇
  1988年   95篇
  1987年   86篇
  1986年   93篇
  1985年   66篇
  1984年   76篇
  1983年   60篇
  1982年   56篇
  1981年   31篇
  1980年   25篇
  1979年   60篇
  1978年   24篇
  1975年   30篇
  1973年   23篇
  1954年   31篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
991.
992.
Elpasolite, K2NaAlF6, has been found for the first time in a pegmatite related to peralkaline foid syenite at Mt. Koashva, Khibiny alkaline pluton, Kola Peninsula, Russia, as pale pink octahedral crystals up to 2 mm in size within cavities in the natrolite core of pegmatite in association with amicite, sodalite, aegirine, pectolite, catapleiite, sitinakite, lemmleinite-K, and vinogradovite. The chemical composition determined with an electron microprobe is as follows, wt %: 31.53 K; 9.22 Na; 11.20 Al; 47.21 F; total is 99.16. The empirical formula is K1.96Na0.98Al1.01F6.05. The infrared spectrum is given. The crystal structure has been refined to R = 0.030, space group Fm $ \bar 3 Elpasolite, K2NaAlF6, has been found for the first time in a pegmatite related to peralkaline foid syenite at Mt. Koashva, Khibiny alkaline pluton, Kola Peninsula, Russia, as pale pink octahedral crystals up to 2 mm in size within cavities in the natrolite core of pegmatite in association with amicite, sodalite, aegirine, pectolite, catapleiite, sitinakite, lemmleinite-K, and vinogradovite. The chemical composition determined with an electron microprobe is as follows, wt %: 31.53 K; 9.22 Na; 11.20 Al; 47.21 F; total is 99.16. The empirical formula is K1.96Na0.98Al1.01F6.05. The infrared spectrum is given. The crystal structure has been refined to R = 0.030, space group Fm m, a = 8.092 ?. The result of a special X-ray powder diffraction study confirmed the suggestion made by Morss (1974) that reflections violating space group Fm m in some published X-ray powder patterns of natural elpasolite are Kβ-lines. Original Russian Text ? I.V. Pekov, N.V. Chukanov, N.N. Kononkova, N.V. Zubkova, M.Kh. Rabadanov, D.Yu. Pushcharovsky, 2007, published in Zapiski Rossiiskogo Mineralogicheskogo Obshchestva, 2007, No. 6, pp. 76–84.  相似文献   
993.
Agates are natural hierarchicalal structural assemblies composed largely of silica minerals: chalcedony, quartz, and quartzine. Microstructural heterogeneities, most typical of those of agate-forming minerals, are characterized by variations in periods of helicoidal twisting of chalcedony and by micrometric rhythmic alternation of zones with a low refractive index within the matrix of normal chalcedony, quartz, and quartzine. A study of the degree of crystallization of chalcedony using the Barsanova-Yakovleva method showed that neither helicoidal twisting nor refractive index zoning brought about any significant disturbance in the chalcedony structure. Helicoidal twisting is a result of the stresses caused by substitution of Si4+ for Al3+ asymmetric with respect to chalcedony crystal. It is suggested that layering by the refractive index developed due to accumulation of small portions of gel consisting of high silica polymers at the front of crystal growth.  相似文献   
994.
Climatic changes in southeastern Transbaikalia in the Middle and Late Holocene and their influence on alluvial sedimentation environments are reconstructed from the results of study of the Ilya floodplain sediments (Alkhanai National Park). At the beginning of the Subboreal period, the regional climate became more arid, which led to a significant increase in steppe species communities in the landscapes. Intense climate aridization also took place at the beginning and at the end of the Subatlantic period of the Holocene. The alluvial-sedimentation rate increased during the weakening of aridization and decreased during cooling and the intensification of aridization. The obtained regional data are compared with data on the adjacent areas and the global climatic changes in the Northern Hemisphere.  相似文献   
995.
The methods of celestial mechanics can be used to construct a mathematical model for the perturbed rotational motions of the deformable Earth that can adequately describe the astrometric measurements of the International Earth Rotation Service (IERS). This model describes the gravitational and tidal influences of the Sun and Moon. Fine resonant interactions of long-period zonal tides (annual, semiannual, monthly, and biweekly) with the diurnal and semidiurnal tides are revealed. These interactions can be reliably confirmed via a spectral analysis of the IERS data. Numerical modeling of tidal irregularities of the Earth’s axial rotation was carried out, focusing on the analysis and forecasting of variations of the day length occurring within short time intervals of a year or shorter (intrayear variations).  相似文献   
996.
997.
结合WebGIS框架,对民勤绿洲生态预警信息系统的结构、功能进行了总体设计,提出了基于B/S和C/S结构相结合的分布式Web系统框架,并阐述了保证系统数据和操作安全的关键技术,不但使系统在Web开放式环境下高级别数据得到安全存储管理,而且还保证了基础数据的共享性和可操作性,为民勤绿洲生态问题的解决提供支持。  相似文献   
998.
针对目前常规水准测量在山区公路高程控制测量中的局限性,本文提出了一种三角高程与常规水准测量相结合的混合构网方法,并通过实例得出,这种方法充分利用了两者的优势,在保证成果的可靠性和精度的同时,大大提高了工作效率,缩短了生产周期。  相似文献   
999.
1000.
基于GPS测量数据的GIS数据库更新算法研究   总被引:2,自引:0,他引:2  
为了解决土地利用GIS数据库更新中多源数据存在不一致的问题,使土地利用GIS数据库的更新更高效、科学、合理并且美观,从地理信息系统空间数据的更新方式和土地利用数据更新的实际需求出发,以GPS测量数据为更新源,建立GPS测量数据的误差模型,借助地图匹配的算法思想,提出一种GPS/GIS数据融合匹配的方法,在GPS点误差范围内建立误差缓冲区,按照距离最近、走向最接近的原则,把GPS点与GIS数据进行融合匹配,参与GIS数据的拓扑重构,达到GIS数据库的局部区域的快速更新。实验结果证明,本算法能使GPS点匹配简便快捷,提升更新效率。  相似文献   
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