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   95389篇
  免费   1891篇
  国内免费   792篇
测绘学   2622篇
大气科学   7348篇
地球物理   19779篇
地质学   31884篇
海洋学   8262篇
天文学   21708篇
综合类   236篇
自然地理   6233篇
  2021年   614篇
  2020年   766篇
  2019年   881篇
  2018年   1738篇
  2017年   1669篇
  2016年   2282篇
  2015年   1493篇
  2014年   2275篇
  2013年   4681篇
  2012年   2401篇
  2011年   3433篇
  2010年   3045篇
  2009年   4295篇
  2008年   3851篇
  2007年   3624篇
  2006年   3626篇
  2005年   2933篇
  2004年   3016篇
  2003年   2827篇
  2002年   2771篇
  2001年   2482篇
  2000年   2391篇
  1999年   2083篇
  1998年   2049篇
  1997年   2057篇
  1996年   1749篇
  1995年   1663篇
  1994年   1497篇
  1993年   1380篇
  1992年   1271篇
  1991年   1155篇
  1990年   1318篇
  1989年   1205篇
  1988年   1060篇
  1987年   1275篇
  1986年   1135篇
  1985年   1386篇
  1984年   1654篇
  1983年   1506篇
  1982年   1428篇
  1981年   1342篇
  1980年   1166篇
  1979年   1134篇
  1978年   1191篇
  1977年   1069篇
  1976年   1003篇
  1975年   946篇
  1974年   937篇
  1973年   981篇
  1972年   637篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
591.
592.
593.
594.
The equivalent width calculations for the fundamental vibration rotation band lines of HeH+ have been carried out for a non-DA white dwarf model with an effective temperature of 12 000 K. BothP andR branch lines with rotational quantum numbersJ=3 to 18 were included in the calculations. A search for these lines in helium rich white dwarfs is suggested.  相似文献   
595.
596.
597.
Stimulated Raman scattering is used to prepare ensembles of aligned acetylene molecules in thev 2=1 excited vibrational level. Decay and transfer of the alignment is followed by laser induced fluorescence. Measurements of the initially excited alignment agree well with theoretical calculations. The rate constants for decay decrease as the rotational quantum numberJ of the excited level increases.  相似文献   
598.
The boundaries of the polar caps of Mars have been measured on more than 3000 photographs since 1905 from the plate collection at the Lowell Observatory. For the Earth, the polar caps have been accurately mapped only since the mid 1960's when satellites were first available to synoptically view the polar regions. The polar caps of both planets wax and wane in response to changes in the seasons, and interannual differences in polar cap behavior on Mars as well as Earth are intimately linked to global energy balance. Data on the year to year variations in the extent of the north polar caps of Mars and Earth have been assembled and compared, although only 6 years of concurrent data were available for comparison.  相似文献   
599.
600.
The modeling of thermal emission from active lava flows must account for the cooling of the lava after solidification. Models of lava cooling applied to data collected by the Galileo spacecraft have, until now, not taken this into consideration. This is a flaw as lava flows on Io are thought to be relatively thin with a range in thickness from ∼1 to 13 m. Once a flow is completely solidified (a rapid process on a geological time scale), the surface cools faster than the surface of a partially molten flow. Cooling via the base of the lava flow is also important and accelerates the solidification of the flow compared to the rate for the ‘semi-infinite’ approximation (which is only valid for very deep lava bodies). We introduce a new model which incorporates the solidification and basal cooling features. This model gives a superior reproduction of the cooling of the 1997 Pillan lava flows on Io observed by the Galileo spacecraft. We also use the new model to determine what observations are necessary to constrain lava emplacement style at Loki Patera. Flows exhibit different cooling profiles from that expected from a lava lake. We model cooling with a finite-element code and make quantitative predictions for the behavior of lava flows and other lava bodies that can be tested against observations both on Io and Earth. For example, a 10-m-thick ultramafic flow, like those emplaced at Pillan Patera in 1997, solidifies in ∼450 days (at which point the surface temperature has cooled to ∼280 K) and takes another 390 days to cool to 249 K. Observations over a sufficient period of time reveal divergent cooling trends for different lava bodies [examples: lava flows and lava lakes have different cooling trends after the flow has solidified (flows cool faster)]. Thin flows solidify and cool faster than flows of greater thickness. The model can therefore be used as a diagnostic tool for constraining possible emplacement mechanisms and compositions of bodies of lava in remote-sensing data.  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