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   1321413篇
  免费   28709篇
  国内免费   7730篇
化学   655961篇
晶体学   20217篇
力学   74438篇
综合类   103篇
数学   240070篇
物理学   367063篇
  2021年   13486篇
  2020年   15911篇
  2019年   16032篇
  2018年   12274篇
  2016年   27702篇
  2015年   20694篇
  2014年   30376篇
  2013年   74266篇
  2012年   36894篇
  2011年   33115篇
  2010年   36483篇
  2009年   39002篇
  2008年   32782篇
  2007年   28190篇
  2006年   34942篇
  2005年   27306篇
  2004年   28875篇
  2003年   27401篇
  2002年   28567篇
  2001年   27512篇
  2000年   24215篇
  1999年   22280篇
  1998年   20925篇
  1997年   20940篇
  1996年   21076篇
  1995年   19195篇
  1994年   18598篇
  1993年   18154篇
  1992年   17964篇
  1991年   18330篇
  1990年   17489篇
  1989年   17535篇
  1988年   17056篇
  1987年   17079篇
  1986年   15970篇
  1985年   22428篇
  1984年   23695篇
  1983年   19903篇
  1982年   21618篇
  1981年   20840篇
  1980年   20169篇
  1979年   20317篇
  1978年   21630篇
  1977年   21216篇
  1976年   20939篇
  1975年   19607篇
  1974年   19242篇
  1973年   19728篇
  1972年   14245篇
  1967年   12454篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
991.
992.
993.
It is well known that F. G. Tricomi (1923) is the originator of the theoryof boundary value problems for mixed type equations by establishing the Thicomi equation: y·uxx+uyy=0 which is hyperbolic for y < 0, elliptic for y=0. and parabolic for y= 0 and then applied it in the theory of transonic flows.Then A.V.Bitsadze together with M. A . Lavrent′ev (1950) established the Bitsadze Lavre nt′ev equation: sgn( y ) ·uxx+uyy=0 where sgn(y) = 1 for y > 0, = -1 for y<0, 0 for y=0 with the discontinuous coefficient sgn( y ) of uxx, while in the case of Tricomi equation the corre sponding coefficient y is continuous. In this paper we establish the mixed Bitsadze Lavrent′ev Tricomi equation. Lu=K(y)·uxx+sgn(x) ·uyy+r(x,y)·u=f(x,y), where the coefficient K=K(y) of uxx is increasing continuous and coefficient M=sgn(x) of uyy discontinuous, r=r(x,y) is once continuously differentiable, f=f(x,y) continuous. Finally we prove the uniqueness of quasi regular solutions and observe that these new results can bbe applied in fluid dynamics.  相似文献   
994.
995.
In this paper the performances of inhomogeneous dielectric slabs as solar light collectors for both illumination and solar energy applications are analysed.  相似文献   
996.
The diffusion constant and the diagonal conductivity for non-interacting electrons in a two-dimensional, disordered system are studied. A homogeneous magnetic field perpendicular to the electron system is assumed. For weak short-range random potentials and high fields the Landau quantum numbern can be used as expansion parameter. In the limit of high Landau levels the system shows metallic behaviour. Corrections for finiten decrease the conductivity and indicate localized states in the whole energy band. A breakdown of the expansion and stronger localization are observed only for the lowest Landau levels if the typical experimental length scale of the quantized Hall effect is used.  相似文献   
997.
Metal/insulator/semiconductor junctions are prepared on degeneratep-type InAs substrates with hole concentrations ranging from 2.3×1017 cm–3 to 2.7×1018 cm–3. The low work function of the top metal Yb, Al, or Au and charged interface states influence a two-dimensional (2D) electron inversion layer at the InAs surface. The insulator barrier that is formed by thermal oxidation is designed sufficiently thin, so that the bias voltage applied at the metal electrode mainly drops across the depletion layer separating the electron channel from the bulk. The current-voltage (I–V) characteristics exhibit strong negative differential conductance due to interband, tunneling from the 2D subband into the 3D valence band with peak-to-valley current ratios up to 3.1, 18, and 32 at 300 K, 77 K, and 4.2 K, respectively. In agreement with a theoretical model based on coherentelastic tunneling, the form of the I–V curves resembles those of double-barrier resonant tunnel devices rather than those of 3D Esaki diodes. The series resistance is obtained from the saturation of the differential conductance dI/dV at high forward bias and from the shift of structures in d2 I/dV 2 arising from phonon assisted tunneling.Dedicated to G. Lautz on the occasion of his 65th birthday  相似文献   
998.
Calculations are performed, using a basis of two-center functions described previously, for excited states of the following three-and four-electron compounds: H2 , He2 +, He2, Li2 +2. High efficiency is demonstrated for the frozen ionic core approximation and the nonorthogonal orbital method in such calculations. For four-electron systems the practical feasibility of the frozen hybrid core approximation is demonstrated.Translated from Izvestiya Vysshikh Uchebnykh Zavedenii, Fizika, No. 8, pp. 53–56, August, 1987.  相似文献   
999.
Compact, time‐harmonic, acoustic sources produce waves that decay too slowly to be square‐integrable on a line away from the sources. We introduce an inner product, arising directly from Green's second theorem, to form a Hilbert space of these waves and present examples of its computation.1 © 2005 Wiley Periodicals, Inc.  相似文献   
1000.
We present here a methodology for searching a robust pore size distribution (PSD) for adsorbent materials. The method is based on a combination of individual adsorption isotherms, obtained from Grand Canonical Monte Carlo simulations, a regularization procedure to invert the adsorption integral equation (Tikhonov regularization solved by singular value decomposition), and the needed experimental adsorption isotherm. The selection of several parameters from the available choices to start the procedure are discussed here: the size of the kernel (number of individual pores and number of experimental adsorption points to be included), the fulfillment of the Discrete Picard condition, and the L-curve criteria, all leading to find a reliable and robust PSD. The procedure is applied to plugged hexagonal templated silicas (PHTS), synthesized, and characterized in our laboratory.  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