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   30999篇
  免费   6645篇
  国内免费   1567篇
测绘学   554篇
大气科学   358篇
地球物理   29064篇
地质学   6442篇
海洋学   982篇
天文学   59篇
综合类   1387篇
自然地理   365篇
  2024年   159篇
  2023年   748篇
  2022年   978篇
  2021年   1149篇
  2020年   782篇
  2019年   962篇
  2018年   627篇
  2017年   614篇
  2016年   524篇
  2015年   855篇
  2014年   1398篇
  2013年   1233篇
  2012年   1554篇
  2011年   1413篇
  2010年   1400篇
  2009年   1566篇
  2008年   1550篇
  2007年   1187篇
  2006年   1258篇
  2005年   1156篇
  2004年   1148篇
  2003年   1155篇
  2002年   1293篇
  2001年   1198篇
  2000年   1093篇
  1999年   1071篇
  1998年   1046篇
  1997年   1092篇
  1996年   1167篇
  1995年   1232篇
  1994年   1115篇
  1993年   1151篇
  1992年   1163篇
  1991年   1005篇
  1990年   907篇
  1989年   627篇
  1988年   86篇
  1987年   36篇
  1986年   41篇
  1985年   38篇
  1984年   38篇
  1983年   32篇
  1982年   44篇
  1981年   37篇
  1980年   39篇
  1979年   42篇
  1977年   19篇
  1976年   18篇
  1974年   20篇
  1954年   25篇
排序方式: 共有10000条查询结果,搜索用时 875 毫秒
521.
2003年10月25日甘肃省西部发生6.1级和5.8级地震   总被引:8,自引:0,他引:8  
据中国地震台网测定 ,2 0 0 3年 1 0月 2 5日北京时间 2 0时 4 1分和 2 0时 4 8分在甘肃省西部民乐、山丹间发生 2次破坏性地震。第 1次地震为 6 .1级 (38.4°N ,1 0 1 .2°E) ;第2次地震为 5.8级 (38.4°N ,1 0 1 .1°E)。这 2次地震的震中距甘肃省张掖市 90km ,距武威市 1 4 0km。地震有感范围大 ,其中附近的张掖、酒泉、武威、金昌等城市均强烈有感 ;兰州以及邻近省份的省会西宁、银川等地也普遍有感。主震后 ,余震不断 ,当天就发生余震 30 0多次。地震灾害波及永固、民联、洪水、顺化、南丰等乡村及周边乡镇村的 1 1 1 80 4人。截至 1…  相似文献   
522.
This paper briefly reviews main progress in the research on lithospheric structure and continental geodynamics made by Chinese geophysicists during last 4 years since 22nd IUGG general assembly in July 1999. The research mainly covers the following fields: investigations on regional lithospheric structure, DSS survey of crust and upper mantle velocity structure, study on present-day inner movement and deformation of Chinese mainland by analyz-ing GPS observations, geodynamics of Qingzang plateau, geophysical survey of the Dabie-Sulu ultra-high pressure metamorphic belt and probing into its formation mechanism, geophysical observations in sedimentary basins and study on their evolution process, and plate dynamics, etc.  相似文献   
523.
524.
525.
526.
527.
Illustration All the data in this catalog are chosen from the (Preliminary Seismological Report of Chinese Seismic Stations( “Its abbreviation is "Monthly Report"). The catalog includes the events of M≥4.7 in and near China and M≥6 all over the world. The "Monthly Report" is monthly compiled by the Ninth Section of Institute of Geophysics, CSB.  相似文献   
528.
Crustal structure beneath the Songpan—Garze orogenic belt   总被引:2,自引:0,他引:2  
The Benzilan-Tangke deepseismic sounding profile in the western Sichuan region passes through the Song-pan-Garze orogenic belt with trend of NNE.Based on the travel times and the related amplitudes of phases in the record sections,the 2-D P-wave crustal structure was ascertained in this paper.The velocity structure has quite strong lateral variation along the profile.The crust is divided into 5layers,where the first,second and third layer belong to the upper crust,the forth and fifth layer belong to the lower crust.The low velocity anomaly zone gener-ally exists in the central part of the upper crust on the profile,and it integrates into the overlying low velocity basement in the area to the north of Ma‘erkang.The crustal structure in the section can be divided into 4parts:in the south of Garze-litang fault,between Garze-Litang fault and Xianshuihe fault,between Xianshuihe fault and Longriba fault and in the north of Longriba fault,which are basically coincided with the regional tectonics division.The crustal thickness decreases from southwest to northeast along the profile,that is ,from62km in the region of the Jinshajiang River to 52km in the region of the Yellow River.The Moho discontinuity does not obviously change across the Xianshuihe fault basesd on the PmP phase analysis.The crustal average velocity along the profile is lower,about 6.30 km/s.The Benzilan-Tangke profile reveals that the crust in the study area is orogenic.The Xianshuihe fault belt is located in the central part of the profile,and the velocity is positive anomaly on the upper crust,and negative anomaly on the lower crust and upper mantle.It is considered as a deep tectonhic setting in favor of strong earthquake‘s accumulation and occurrence.  相似文献   
529.
The data from two deep seismic sounding profiles was processed and studied comprehensively. The results show that crnst-mantle structures in the investigated region obviously display layered characteristics and velocity structures and tectonic features have larger distinction in different geological structure blocks. The boundary interface C between the upper and lower crust and Moho fluctuate greatly. The shallowest depths of C (30.0km) and Moho (45.5km) under Jiashi deepen sharply from Jiashi to the western Kunlun mountain areas, where the depths of C and Moho are 44.0km and 70.0km, respectively. The higher velocity structures in the Tarim massif determine its relatively “stable“ characteristics in crust tectonics. The phenomenon in the Jiashi region, where the distribution of earthquake foci mostly range from 20kin to 40kin in depth, may infer that the local uplift of C and Moho interface, anomalonsly lower velocity bodies and deep large faults control earthquake occurrence and seismogenic processes in the Jiashi strong earthquake swarm.  相似文献   
530.
Based on Coulomb static stress variation, the stress trigging action of the Mani ( Ms7.9, Nov.1997) earthquake on the West Kuulun Mountains Pass (MsS.1, Nov. 2001 ) earthquake is researched. Results of different source mechanism resolutions show that a 10_3 MPa Coulomb stress due to the Mani earthquake was added to the fracture fault of the Kunlun earthquake, and this may shift the broken date to about 10 years earlier, and infer that the stress level in the crust is not low. Comparing the relationship between strong earthquake strength and frequency and earth rotation change, it is shown that the strength‘s decrease and the variation period‘ s shortening of earth rotation are important controlling factors on strong earthquake activity. This great event with Ms = 8.1 took place probably due to a gradual strengthening background of regional stress field within the Qinghai-Xizang block in the period of acceleration of change of day‘s length and stress triggering from the Mani earthquake.  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