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   28094篇
  免费   5119篇
  国内免费   4091篇
化学   20595篇
晶体学   287篇
力学   1860篇
综合类   338篇
数学   3417篇
物理学   10807篇
  2024年   22篇
  2023年   531篇
  2022年   566篇
  2021年   807篇
  2020年   1070篇
  2019年   1063篇
  2018年   859篇
  2017年   827篇
  2016年   1284篇
  2015年   1256篇
  2014年   1502篇
  2013年   2083篇
  2012年   2460篇
  2011年   2697篇
  2010年   1982篇
  2009年   1924篇
  2008年   2172篇
  2007年   1929篇
  2006年   1846篇
  2005年   1469篇
  2004年   1215篇
  2003年   1065篇
  2002年   933篇
  2001年   763篇
  2000年   638篇
  1999年   595篇
  1998年   531篇
  1997年   445篇
  1996年   457篇
  1995年   391篇
  1994年   330篇
  1993年   294篇
  1992年   247篇
  1991年   192篇
  1990年   198篇
  1989年   138篇
  1988年   115篇
  1987年   102篇
  1986年   80篇
  1985年   65篇
  1984年   37篇
  1983年   36篇
  1982年   31篇
  1981年   13篇
  1980年   14篇
  1979年   4篇
  1977年   5篇
  1973年   3篇
  1970年   3篇
  1957年   3篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
61.
62.
We investigate the statistics of polymer capture by a nanopore using Brownian dynamics simulations. It is found that when the velocity flux is greater than a critical velocity flux, the capture picture is a random selection process, otherwise it tends to a statistical process governed by energetic considerations. In addition, the chain ends capture probability decreases as the chain length increases and satisfies a power-law scaling of P0(N)~N-0.8.  相似文献   
63.
目的 了解鄞州区0~6月龄婴儿发育性髋关节异常(developmental dysplasia of hip,DDH)的流行病学特征,探讨DDH 的临床管理模式。方法 由鄞州区妇幼保健机构社区医师和鄞州区第二医院围生医生共同负责完成DDH 的临床初筛工作,可疑或异常者转儿科进一步检查,并予B 超筛查,对不同人群分别进行早期干预、复查、随访及骨盆正位X 线片检查,必要时转小儿骨科治疗。结果 2012 年5 月至2013 年5 月,共6 890 例0~6月龄婴儿进行髋关节B 超筛查,初筛阳性率5.73%(395/6 890),复查阳性率0.59%(34/5729);月龄越小筛查阳性率越高,差异有统计学意义(P<0.05)。新生儿及1~3月龄婴儿初筛阳性率高,但复查阳性率明显降低,差异有统计学意义(P<0.05);4~6月龄婴儿初筛及复查阳性率差异无统计学意义(P >0.05)。结论 鄞州区采取的社区门诊检查- 区医院儿科复查-B 超筛查及转诊治疗的管理模式,可作为基层推进DDH 的早发现和早治疗的有效手段。  相似文献   
64.
We propose a system of time-division multiplexing(TDM) and spatial frequency-division multiplexing(SFDM). Extrinsic Fabry–Perot interferometric sensors are applied to detect weak acoustic signals. The broadband source is employed, the light from it is modulated by a pulse signal sequence and is efficiently amplified by semiconductor optical amplifiers. Experimental results show that the equivalent noise pressure spectrum level is-97.2 d B re 1 rad/√Hz below 1250 Hz, and the cross talk between two sensors in one TDM channel is-32.7 d B with a cavity length difference of 60 μm. The number of sensors in this multiplexing system can theoretically reach 160.  相似文献   
65.
Thermoresponsive block copolymers are of interest for delivery vehicles in the body. Often an interior domain is designed for the active agent and the exterior domain provides stability in the bloodstream, and may carry a targeting ligand. There is still much to learn about how block sequence and chain end identity affect micelle structure, size, and cloud points. Here, hydrophilic oligo(ethylene glycol) methyl ether acrylate and more hydrophobic di(ethylene glycol) methyl ether methacrylate monomers were polymerized to give amphiphilic block copolymers with amphiphilic chain ends. The block sequence and chain end identity were both controlled by appropriate choice of RAFT chain transfer agents to study the effect of ‘matched’ and ‘mismatched’ chain end polarity with amphiphilic block sequence. The affect of matching or mismatching chain end polarity and block sequence was studied on the hydrodynamic diameter, cloud point, and temperature range of the chain collapse on linear di‐ and triblock copolymers and star diblock polymers. The affects of matching or mismatching chain end polarity were significant with linear diblock copolymers but more complex with triblock and star copolymers. Explanations of these results may help guide others in designing thermoresponsive block copolymers. © 2015 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2015 , 53, 2838–2848  相似文献   
66.
67.
68.
69.
The chemical properties of carbide‐cluster metallofullerenes (CCMFs) remain largely unexplored, although several new members of CCMFs have been discovered recently. Herein, we report the reaction between Sc2C2@C3v(8)‐C82, which is viewed as a prototypical CCMF because of its high abundance, and 3‐triphenylmethyl‐5‐oxazolidinone ( 1 ) to afford the corresponding pyrrolidino derivative Sc2C2@C3v(8)‐C82(CH2)2NTrt ( 2 ; Trt=triphenylmethyl). Single‐crystal X‐ray crystallography studies of 2 revealed that the reaction takes place at a [6,6]‐bond junction, which is directly over the encapsulated C2 unit and is far from either of the two scandium atoms. On the basis of theoretical calculations and by considering previously reports, we have found that a hexagonal carbon ring on the cage of Sc2C2@C3v(8)‐C82 is highly reactive toward different reagents due to the overlap of high p‐orbital axis vector (POAV) angles and large LUMO coefficients. We propose that this highly concentrated area of reactivity is generated by the encapsulation of the Sc2C2 cluster because this region is absent from the empty fullerene C3v(8)‐C82. Moreover, the absorption and electrochemical results confirm that derivative 2 is more stable than pristine Sc2C2@C3v(8)‐C82, thus illuminating its potential applications.  相似文献   
70.
In quantum mechanics, the expectation value of an operator can be measured by using the projective measurement, ifthe coupling between the measured system and pointer is strong enough. However in the weak coupling regime, the pointercan not show all the eigenvalue of the physical quantity directly due to the overlapping among the pointer states, whichmakes the measurement of the expectation value difficult. In this paper, we propose an expectation value measurementmethod in the weak coupling regime inspired by the weak measurement scheme. Compared to the projective measurement,our scheme has two obvious advantages. Experimentally we use the internal state and motional state of a single trapped40Ca+ to establish the measurement scheme and realize the proof of principle demonstration of the scheme.  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