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   9576篇
  免费   944篇
  国内免费   896篇
化学   3636篇
晶体学   33篇
力学   254篇
综合类   53篇
数学   78篇
物理学   2881篇
综合类   4481篇
  2024年   26篇
  2023年   102篇
  2022年   269篇
  2021年   294篇
  2020年   325篇
  2019年   266篇
  2018年   230篇
  2017年   381篇
  2016年   453篇
  2015年   449篇
  2014年   641篇
  2013年   614篇
  2012年   771篇
  2011年   697篇
  2010年   521篇
  2009年   555篇
  2008年   580篇
  2007年   632篇
  2006年   551篇
  2005年   441篇
  2004年   420篇
  2003年   309篇
  2002年   281篇
  2001年   214篇
  2000年   204篇
  1999年   200篇
  1998年   166篇
  1997年   172篇
  1996年   125篇
  1995年   107篇
  1994年   83篇
  1993年   69篇
  1992年   62篇
  1991年   50篇
  1990年   59篇
  1989年   29篇
  1988年   27篇
  1987年   20篇
  1986年   9篇
  1985年   7篇
  1984年   1篇
  1982年   1篇
  1981年   1篇
  1974年   1篇
  1955年   1篇
排序方式: 共有10000条查询结果,搜索用时 0 毫秒
1.
针对从含噪原始信号中提取位置以及速度信息,经典跟踪微分器存在不能很好兼顾相位滞后和噪声放大问题、参数多,调试复杂等不足.在跟踪微分器等效线性分析基础上,提出复合形式跟踪微分器,用于电容式位移传感器位置信号跟踪以及速度信号估计,通过MATLAB\SIMULINK仿真以及实验平台测试,结果表明:在跟踪频率1 Hz、幅值1含噪声正弦信号中,复合跟踪微分器能光滑逼近原始位置信号,且能有效进行速度估计,相较于经典跟踪微分器,复合跟踪微分器跟踪相位滞后小0.03 rad,能更好兼顾跟踪信号相位滞后及速度信号噪声放大.  相似文献   
2.
Dopamine is an important neurotransmitter,and nonenzyme electrochemical sensor of dopamine detection based on highly active material is urgently demanded.In this work,an electrochemical sensor with high sensitivity and selectivity based on self-rolled TiO_2microscroll/graphene composite was developed and validated for dopamine sensing.The device exhibited a superior performance for dopamine detection with a detection limit of 4.25×10~(-9)mol L~(-1),and in the dopamine concentration range of 0.06–90μmol L~(-1),the oxidation currents increased linearly with the concentration.The remarkable performance enhancement was mainly ascribed to the increased surface area due to the porous surface of the TiO_2nanomembrane and highly conductive graphene therein.In addition,we have demonstrated that the sensor could be effectively used on detecting dopamine concentrations in urine samples.Our work demonstrates that the current microscroll-based device is promising in the field of real-time health monitoring for future human community.  相似文献   
3.
就标准厚度卡片在霍尔传感器的定标方面的应用作了有益的探讨。在纵向测量微小长度时,霍尔片处于磁场边缘位置,其对磁场的梯度更大,即灵敏度更高,且靠中心位置的线性更好。  相似文献   
4.
为了减少能量空洞和延长网络生命周期,在无线传感网中采用移动 Sink 的方式收集节点采集的数据是解决能 量效率问题的有效措施.采集路径的规划问题类似于旅行商问题,无法得到多项式时间的解.提出了将人工免疫算法和粒子群算法相结合,针对移动 sink 数据收集的路径规划问题寻求近似最优解,仿真结果表明: 与其他算法进行性能比较,所提出的优化算法能够有效减少能耗和缩短遍历路径.  相似文献   
5.
Copper oxide decorated multi‐walled carbon nanotube (MWCNT) modified glassy carbon electrode (GCE) was prepared for determination of isoniazid (INZ) in various matrices. The electrochemical behavior of INZ was tested with the aid of Cyclic Voltammetry (CV) and quantitative experiments were performed by using Linear Sweep Voltammetry (LSV). Morphological and structural characterization of the modified electrode was performed by utilizing Scanning Electron Microscopy (SEM), X‐Ray Photoelectron Spectroscopy (XPS) while electrochemical characterization was performed by using CV and Electrochemical Impedance spectroscopy (EIS). The proposed sensor exhibited well defined anodic peak at 0.30 V for INZ at pH 6.0 medium. Under the optimum conditions, a linear relation between INZ concentration and peak current was observed in the range of 2.0×10?7 to 5.0×10?5 M. Limit of detection was calculated as 1.0×10?8 M and repeatability and accuracy was found as 5.60 % and 91.0 % for 5.0 10?7 M INZ by using 3 successive measurement, respectively. Then, the analytic performance of the electrode developed was tested by analyzing commercial tablets, artificial human serum and urine samples. The results indicated that satisfactory recoveries was observed for all issue.  相似文献   
6.
发动机传感器的测试是进行控制和诊断的基础,故有必要对传感器输出信号的性质、特征及电路加以阐述.  相似文献   
7.
介绍了AWM720P1新型气体流量传感器的工作原理、性能、特点.针对呼吸机的工作特点,分析了IPPV的流速模型、流速的测量方法、传感器的校正数据处理方法.  相似文献   
8.
Fiber-optic reflex sensor for in-line production measurement   总被引:1,自引:0,他引:1  
The paper describes experiments concerning distance measurement with fiber-optic sensor and improvement of the measurement principle. The sensor probe was well-designed with a small structure and multi-function. The novel optical fiber probe arrangement as well as the possibilities of use for complex measurement problems are explained using the measurement of an internal screw thread as an example. The experimental results show that the measurement uncertainty of the thread minor diameter can reach ±10 μm, and the stability of the measurement system is better than 0.07%.  相似文献   
9.
本介绍了用ADS90自组数字温度计实验,说明了实验步骤和数据处理等过程。  相似文献   
10.
During the course of our investigation of the electron transfer properties of some redox species through highly hydrophobic long chain alkanethiol molecules on gold in aqueous and non-aqueous solvents, we obtained some intriguing results such as unusually low interfacial capacitance, very high values of impedance and film resistance, all of which pointed to the possible existence of a nanometer size interfacial gap between the hydrophobic monolayer and aqueous electrolyte. We explain this phenomenon by a model for the alkanethiol monolayer—aqueous electrolyte interface, in which the extremely hydrophobic alkanethiol film repels water molecules adjacent to it and in the process creates a shield between the monolayer film and water. This effectively increases the overall thickness of the dielectric layer that is manifested as an abnormally low value of interfacial capacitance. This behaviour is very much akin to the ‘drying transition’ proposed by Lum, Chandler and Weeks in their theory of length scale dependent hydrophobicity. For small hydrophobic units consisting of apolar solutes, the water molecules can reorganize around them without sacrificing their hydrogen bonds. Since for an extended hydrophobic unit, the existence of hydrogen bonded water structure close to it is geometrically unfavourable, there is a net depletion of water molecules in the vicinity leading to the possible creation of a hydrophobic interfacial gap.  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