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   5309篇
  免费   1041篇
  国内免费   1760篇
测绘学   1074篇
大气科学   991篇
地球物理   980篇
地质学   2967篇
海洋学   802篇
天文学   70篇
综合类   463篇
自然地理   763篇
  2024年   60篇
  2023年   136篇
  2022年   304篇
  2021年   349篇
  2020年   323篇
  2019年   327篇
  2018年   321篇
  2017年   276篇
  2016年   325篇
  2015年   375篇
  2014年   351篇
  2013年   423篇
  2012年   391篇
  2011年   386篇
  2010年   417篇
  2009年   406篇
  2008年   437篇
  2007年   429篇
  2006年   355篇
  2005年   291篇
  2004年   247篇
  2003年   192篇
  2002年   239篇
  2001年   196篇
  2000年   158篇
  1999年   110篇
  1998年   63篇
  1997年   48篇
  1996年   33篇
  1995年   39篇
  1994年   24篇
  1993年   21篇
  1992年   17篇
  1991年   10篇
  1990年   6篇
  1989年   4篇
  1988年   4篇
  1986年   2篇
  1985年   4篇
  1983年   1篇
  1982年   1篇
  1979年   3篇
  1958年   2篇
  1957年   1篇
  1954年   2篇
  1942年   1篇
排序方式: 共有8110条查询结果,搜索用时 857 毫秒
101.
赵明  王庆  陈昕  鞠建荣  张凤梅 《现代测绘》2004,27(5):44-45,48
对矢量地图生产过程中常见的图形拓扑、数据冗余问题进行分析和研究;在此基础上结合生产实践,提出了相应的解决办法。研制了基于AutoCAD2000平台的相关程序。  相似文献   
102.
This paper presents the detailed results and analyses on the ecological footprints and bio-capacities of the individual cities and the province as a whole for the year 2001, providing a clear picture of sustainability for the province. Results show that the ecological footprints of most cities in Liaoning exceeded their respective bio-capacities, incurring high ecological deficits. The ecological deficit of the province as a whole was 1.31 ha/cap. Those cities with resources extraction and/or primary material-making as their major industries constitute the "ecologically black band", whose ecological deficits ranged from 2.45 to 5.23 ha/cap, the highest of all cities in the province. Fossil energy consumption was the major source of footprint amounting to 1.63 ha/cap at the provincial level, taking up 67.3% of the total. For cropland, modest ecological surpluses occurred in Jinzhou, Tieling, Huludao, and Panjin while modest ecological deficits in Dalian, Benxi, Fushun, and Dandong, resulting in an overall surplus for the province. Liaoning had a certain level of surplus in fishing ground (water area), mainly distributed in the coastal cities of Dalian, Panjin, Huludao, Yingkou, Jinzhou, and Dandong. Most cities had a small ecological deficit in pasture and all had a small ecological surplus in forest. The eco-efficiency, expressed as GDP value per hectare of footprint, exhibits high variations among the cities, with the highest (Shenyang) more than 10 times the lowest (Fuxin). Cities with manufacture, high-tech, and better developed service industries had high eco-efficiency, while those with resources extraction, primary material-making, and less developed service industries had low eco-efficiency. Based on the components and geographical distribution of ecological footprint, strategic policy implications are outlined for Liaoning's development toward a sustainable future.  相似文献   
103.
2004年齐河县小麦全生育期气象条件分析   总被引:1,自引:0,他引:1  
朱保美  周清 《山东气象》2005,25(4):40-40,42
通过对2003-2004年齐河县冬小麦全生育期的气象条件分析,发现有利的气象条件和合理灌溉、科学施肥是小麦高产的主要因素,评价了气象条件对小麦生长和产量的影响.  相似文献   
104.
The chemical forms, spatial distribution and sources of As, Hg, Cd, Pb and Zn in sediments of the Miyun reservoir were studied. The results of sequential extraction demonstrate that most of As, Pb and Zn were bound to the residual fraction, Hg was associated with the sulfide fraction while Cd was associated with the carbonate fraction and the residual fraction. On the vertical profiles the concentrations of the heavy metals in total and each fractions mostly decreased with increasing depths in sediments, suggesting that the heavy metals input from the upstream watershed increases yearly. Summation of the residual fraction, the sulfide fraction and the carbonate fraction accounts for 60.03%―85.60% of the total heavy metal contents in the sediments, which represent the geochemical background values of the elements and relate closely to soil erosion. Results of the main factor analysis show that most sediments of the reservoir come from the upstream soil erosion, the point source pollution and domestic waste. Moreover, the microbial activities taking place on the sediment-water interface are also one of the major factors to cause the increasing content of the organic matter fraction and the iron-manganese oxide fraction. Environmental change of the reservoir water could make the removability of the heavy metals increase, leading to the increase of their concentrations in pore water in sediments, and imperiling water quality of the reservoir.  相似文献   
105.
万永革 《山西地震》2005,(B09):29-29
采用Okada(1992)计算地震产生的静态应变场的解析表达式,对云南禄劝地震的15次余震,计算了主震在余震节面上产生的正应力和静态库仑破裂应力。分析了正应力和静态库仑破裂应力是否对余震有触发作用。结果表明,主震产生的正应力和库仑破裂应力变化并没有明显的证据“有利于”余震的发生。另外,还比较了运用与主震相同的余震机制和反演得到的余震机制在库仑破裂模型中计算结果的差异。使用反演的余震机制得出的结果稍优于假定余震与主震有相同震源机制得到的结果。  相似文献   
106.
杨娅娜  李晴 《福建地理》2005,20(4):55-58
地理新课程改革是基础教育课程改革的重要内容之一.随着地理课程的全方位变革,新教师培训也是一个不容忽视的问题.地理新课程教师培训模式从不同的方面划分有不同的类型,每种模式既有优越性,也有局限性.要更好地推进地理新课程改革,必须对地理新课程教师培训模式进行不断的修正、补充和完善.  相似文献   
107.
本文根据理论上灰岩中36Cl的5个来源,论述了36Cl在灰岩深度剖面上的4个分布特征,描述了36Cl的采样方法和AMS的分析技术。计算出北京石花洞地区奥陶纪(O2)灰岩的表面侵蚀速度(ε=17.40μm/a)。  相似文献   
108.
The Himalayan Foreland Basin in the Ganga Valley is key to assessing the pre‐collision relationship between cratonic India and the Himalaya – the world's largest mountain chain. The subsurface Ganga Supergroup, representing the sedimentary basement of the Ganga Valley, has been interpreted as a northern extension of the Proterozoic Vindhyan Supergroup in cratonic India. This interpretation is contentious because the depositional age of the Ganga Supergroup is not resolved: whereas the lower Ganga Supergroup is widely regarded as Proterozoic, the upper Ganga Supergroup has been variously inferred to include Neoproterozoic, lower Palaeozoic, or Cretaceous strata. Here, we integrate biostratigraphic and detrital zircon data from drill cores to show that the entire Ganga Supergroup is likely Proterozoic and can be correlated with Proterozoic successions on the northern Indian craton and in the Lesser Himalaya. This helps redefine the first‐order stratigraphic architecture and indicates broad depositional continuity along the northern Indian margin during the Proterozoic.  相似文献   
109.
110.
To investigate the sources of particulate organic matter (POM) and the impact of Three Gorges Dam (TGD), two large lakes and erosion processes on determining the composition and flux of POM in low water discharge periods along the middle and lower Changjiang, suspended particulate samples were collected along the middle and lower reaches of the Changjiang (Yangtze River) in January 2008. Organic geochemistry of bulk sediment (particulate organic carbon, organic carbon to nitrogen molar ratio (C/N), stable carbon isotope (δ13C) and grain size) and biomarker of bulk sediment (lignin phenols) were measured to trace the sources of POM. The range of C/N ratios (6.4–8.9), δ13C (?24.3‰ – ?26.2‰) and lignin phenols concentration Λ8 (0.45 mg/100 mg OC‐2.00 mg/100 mg OC) of POM suggested that POM originated from the mixture of soil, plant tissue and autochthonous organic matter (OM) during the dry season. POM from lakes contained a higher portion of terrestrial OM than the mainstream, which was related to sand mining and hydropower erosion processes. A three end‐member model based on δ13C and Λ8 was performed. The results indicated that soil contributed approximately 50% of OM to the POM, which is the dominant OM source in most stations. POM composition was affected by total suspended matter (TSM) and grain size composition, and the direct OM input from two lakes and channel erosion induced OM. The lower TSM concentration in January 2008 was mainly caused by seasonal variations; the impact from the TGD in the dry season was relatively small. A box model indicated that more than 90% of the terrestrial OM transported by the Changjiang in January 2008 was from the middle and lower drainage basins. Channel erosion induced OM, and contributions from Poyang Lake were the major terrestrial OM sources in the dry season. Copyright © 2012 John Wiley & Sons, Ltd.  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