首页 | 官方网站   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   266680篇
  免费   4379篇
  国内免费   3492篇
地球科学   274551篇
  2021年   2292篇
  2020年   2656篇
  2019年   2889篇
  2018年   4322篇
  2017年   3914篇
  2016年   6189篇
  2015年   4307篇
  2014年   7019篇
  2013年   14338篇
  2012年   6850篇
  2011年   8564篇
  2010年   7439篇
  2009年   10114篇
  2008年   8978篇
  2007年   8477篇
  2006年   9836篇
  2005年   7965篇
  2004年   7897篇
  2003年   7388篇
  2002年   6953篇
  2001年   6151篇
  2000年   6045篇
  1999年   5232篇
  1998年   5271篇
  1997年   5085篇
  1996年   4722篇
  1995年   4469篇
  1994年   4148篇
  1993年   3897篇
  1992年   3684篇
  1991年   3617篇
  1990年   3787篇
  1989年   3541篇
  1988年   3321篇
  1987年   3878篇
  1986年   3434篇
  1985年   4271篇
  1984年   4767篇
  1983年   4435篇
  1982年   4347篇
  1981年   3948篇
  1980年   3661篇
  1979年   3518篇
  1978年   3496篇
  1977年   3294篇
  1976年   3065篇
  1975年   2967篇
  1974年   2928篇
  1973年   3087篇
  1972年   2031篇
排序方式: 共有10000条查询结果,搜索用时 0 毫秒
61.
An elastoplastic model for sands is presented in this paper, which can describe stress–strain behaviour dependent on mean effective stress level and void ratio. The main features of the proposed model are: (a) a new state parameter, which is dependent on the initial void ratio and initial mean stress, is proposed and applied to the yield function in order to predict the plastic deformation for very loose sands; and (b) another new state parameter, which is used to determine the peak strength and describe the critical state behaviour of sands during shearing, is proposed in order to predict simply negative/positive dilatancy and the hardening/softening behaviour of medium or dense sands. In addition, the proposed model can also predict the stress–strain behaviour of sands under three-dimensional stress conditions by using a transformed stress tensor instead of ordinary stress tensor. Copyright © 2004 John Wiley & Sons, Ltd.  相似文献   
62.
In the frame of 2D-static problems one approaches the problem of elastic-NRT (not-resisting tension) semi-plane loaded on its limit line. This problem is intended to model the stress situation induced in the soil by a foundation structure. The solution, in terms of activated stress field, is searched for in the class of stress fields satisfying equilibrium and admissibility conditions, by applying an energy approach. Copyright © 2004 John Wiley & Sons, Ltd.  相似文献   
63.
64.
Two spectrophotometric scans of comet Levy (1990c) have been analysed to estimate Haser model column densities and production rates of CN andC 2 molecules.  相似文献   
65.
66.
67.
68.
ABSTRACT With increasing temperature during prograde metamorphism reactions will occur first at the lithological contacts of mixed pelite and calcsilicate terranes. At these interfaces, a fluid of lower chemical potential of H2O and CO2 than that required to produce a fluid in either layer can be produced whether reaction is caused by fluid infiltration or is initially fluid absent. If the interface region does not allow fluid transport then as temperature increases, a fluid pressure greater than lithostatic can develop. At some degree of over-pressure relative to rock pressure, the fluid hydraulically fractures the rock and a gradient in fluid composition away from the contact can be produced. These phenomena occur at the compositional interfaces whenever univariant reactions in the differing layers cross on a temperature vs. mole fraction of CO2 diagram with slopes of opposite sign. The first occurrence of these reaction products at lithological contacts delineates an isograd that defines temperature as well as the mole fraction of CO2 at constant pressure in systems open to fluid transport. These isograds can be contrasted with fluid-producing isograds in closed systems. As an illustration of possible effects, the reactions quartz + clinozoisite + muscovite = anorthite + K-feldspar + H2O and phlogopite + quartz + calcite = tremolite + K-feldspar + H2O + CO2 at 4 kbar are analysed and equations for fluid production and transport are developed.  相似文献   
69.
70.
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-23

京公网安备 11010802026262号