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   893篇
  免费   145篇
  国内免费   235篇
测绘学   78篇
大气科学   40篇
地球物理   195篇
地质学   617篇
海洋学   73篇
天文学   17篇
综合类   72篇
自然地理   181篇
  2024年   1篇
  2023年   8篇
  2022年   53篇
  2021年   72篇
  2020年   56篇
  2019年   65篇
  2018年   52篇
  2017年   71篇
  2016年   89篇
  2015年   73篇
  2014年   98篇
  2013年   121篇
  2012年   173篇
  2011年   49篇
  2010年   34篇
  2009年   30篇
  2008年   25篇
  2007年   22篇
  2006年   33篇
  2005年   22篇
  2004年   16篇
  2003年   13篇
  2002年   16篇
  2001年   11篇
  2000年   16篇
  1999年   13篇
  1998年   8篇
  1997年   3篇
  1996年   4篇
  1995年   6篇
  1994年   3篇
  1993年   3篇
  1992年   3篇
  1990年   2篇
  1989年   1篇
  1988年   2篇
  1986年   2篇
  1985年   1篇
  1984年   1篇
  1983年   1篇
  1977年   1篇
排序方式: 共有1273条查询结果,搜索用时 15 毫秒
1.
The Asian monsoon is an important component of the global climate system. Seasonal variations in wind, rainfall, and temperature associated with the Asian monsoon systems affect a vast expanse of tropical and subtropical Asia. Speleothem-derived summer monsoon variation in East Asia was previously found to be closely associated with millennial-scale change in temperature in the North Atlantic region between 75 and 10 ka. New evidence recovered from East Asia, however, suggests that the teleconnection between summer monsoon in East Asia and temperature change in the North Atlantic region may have significantly reduced during 120 to ~ 110 ka, a period directly after the full last interglaciation and corresponding roughly to marine oxygen isotope stage 5d. This reduction may be due to the low ice volume in the North Hemisphere at that time, which makes the millennial-scale change in temperature in the North Atlantic region less effective in influencing the Asian summer monsoon. This is important for investigating the mechanisms controlling the Asian summer monsoon and the paleoclimatic teleconnection between East Asia and the North Atlantic region, and for predicting monsoon-associated precipitation in East Asia under a global-warming trend.  相似文献   
2.
This is a critical assessment of the paper by Oszczypko et al. (2004: Cretaceous Research 25, 89–113), in which they tried to prove a mid-Cretaceous age for the Szlachtowa (“black flysch”) and Opaleniec Formations, in the Pieniny Klippen Belt, West Carpathians, both of which had previously been shown to be of Jurassic age. We argue that the mid-Cretaceous age assignment is a misinterpretation, primarily resulting from their field samples having been collected from some Cretaceous lithostratigraphic units, tectonically associated with the Jurassic formations, and/or from tectonic contact-breccias involving Jurassic and Cretaceous strata. In addition, we suggest that they have overlooked a number of significant palaeontological papers, published since 1962, which record the presence of in situ ammonites, aptychi, belemnites, thin-shelled bivalves (Bositra), gryphaeids, foraminifera, and ostracod assemblages, all indicating a Jurassic (mainly Aalenian), and not a Cretaceous, age for the Szlachtowa Formation, and also the in situ Jurassic (Bajocian) ammonites and thin-shelled bivalves (Bositra), Bositra-microfacies, and age-diagnostic foraminiferal assemblages of the Opaleniec Formation.Our presentation here of recently published dinocyst data from well-preserved assemblages further supports the Jurassic ages for the Szlachtowa (“black flysch”) and Opaleniec Formations.  相似文献   
3.
X射线衍射数据分析系统评价   总被引:4,自引:1,他引:3  
以贵州省高灰、高污染组分煤中矿物质的分析为例,应用Bruker AXS D8 Advance衍射仪测得煤中矿物相的X射线衍射图谱,分别应用数据分析系统EVA 12.0、X’Pert HighScore 2.0和MDI Jade 5.0对矿物物相组成的原始测试数据进行定性分析,通过对比分析过程和结果的差异比较了三款软件系统之间的异同和优劣。  相似文献   
4.
杨红霞  刘崴  李冰 《岩矿测试》2008,27(6):405-408
建立了碱消解-高效液相色谱-电感耦合等离子体质谱联用系统测定生物样品中甲基汞(MeHg)与乙基汞(EtHg)的分析方法。为提高灵敏度,选用微流量的PFA雾化器,在优化的检测条件下,MeHg及EtHg检出限可达到0.036μg/L和0.03μg/L;线性范围达到4个数量级,两条工作曲线线性相关系数为1。对1.78μg/L MeHg、1.65μg/L EtHg的混合标准溶液重复测定7次,色谱峰面积的相对标准偏差(RSD)分别为1.79%和1.44%。对标准物质BCR 464(金枪鱼)的分析结果表明,测定值与标准值基本吻合,但略低于标准值;甲基汞和乙基汞的加标回收率分别为85.9%和84.5%。高效液相色谱与质谱联用技术的高灵敏度和低检出限能够满足生物样品中汞形态定量分析的要求。  相似文献   
5.
微波消解在环境样品分析中的应用   总被引:1,自引:0,他引:1       下载免费PDF全文
微波消解是近年来兴起的一种样品分析手段,具有快速、高效、试剂用量少、样品不易被沾污、节约能源等优点。对当前微波消解技术在环境样品分析领域的应用和研究现状进行了综述,介绍了微波消解技术的基本原理、特点和设备,尤其对它在环境样品分析中的应用作了较为详细的介绍,并对该技术的应用前景进行了展望。  相似文献   
6.
In Savoy, the Grands-Moulins recent fault scarps, previously interpreted as seismic fault ruptures, are in fact part of a major Sackung (deep seated gravitational spreading) of the French Alps (9 km long). We mapped more than 60 sackung scarps, some of them reaching 1330 m long and 30 m high. These antislope scarps stop the active screes and offset relict Dryassic rock glaciers by 16 m. We present geomorphologic observations attesting for their gravitational origin. This Sackung is primarily due to glacial debuttressing, while seismic shaking could be a triggering mechanism. To cite this article: J.-C. Hippolyte et al., C. R. Geoscience 338 (2006).  相似文献   
7.
8.
鲁青庆 《岩矿测试》2005,24(4):314-316
采用微波消解-硼酸络合-火焰原子吸收光谱法测定石英砂中的氧化钙和氧化镁。样品在MK-Ⅲ型实验室微波炉上消解,消解压力为2.0 MPa、消解时间为5 m in,以硼酸络合消除氢氟酸的影响。方法已用于实际样品的测定,7次测定的相对标准偏差(RSD)小于5%,加标回收率为95.0%~104.2%。  相似文献   
9.
Seismic profiles and well data from the Doukkala basin unravel the structure of the Palaeozoic basement and suggest that this coastal zone of western Morocco was affected by a compressive phase during the Frasnian. This resulted in the formation of upright, plurikilometric folds associated with reverse faults (North Doukkala), and of asymmetrical folds associated with mostly west verging ramps (South Doukkala). Folding involved all pre-Upper Frasnian formations and caused partial or total hiatus of Upper Frasnian–Strunian strata. This event can be correlated with the orogenic phase reported from more internal domains of the Morocco Hercynian belt, where it is referred to as the ‘Bretonne’ or ‘Eovariscan’ phase. To cite this article: H. Echarfaoui et al., C. R. Geoscience 334 (2002) 13–20  相似文献   
10.
研究表明微波密闭消解法对重油凝肢色谱制各样品的前处理,不造成易挥发有机金属化合物的损失,对样品无污染。采用消解前定容,配合石墨炉二次进样富集样品,可以测定样品中低至10^—9级的镍。方法应用于镍在渣油中随相对分子质量分布分析中,标准样品对照数据吻合好,相对标准偏差(RSD,n=11)为8%。  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