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   159191篇
  免费   12069篇
  国内免费   5870篇
电工技术   8336篇
技术理论   15篇
综合类   9372篇
化学工业   26395篇
金属工艺   8737篇
机械仪表   9725篇
建筑科学   12144篇
矿业工程   4684篇
能源动力   4643篇
轻工业   10095篇
水利工程   2504篇
石油天然气   9594篇
武器工业   1077篇
无线电   19151篇
一般工业技术   19761篇
冶金工业   8493篇
原子能技术   1846篇
自动化技术   20558篇
  2024年   285篇
  2023年   2373篇
  2022年   3370篇
  2021年   5684篇
  2020年   4447篇
  2019年   3785篇
  2018年   4407篇
  2017年   4898篇
  2016年   4322篇
  2015年   5748篇
  2014年   7379篇
  2013年   9145篇
  2012年   9621篇
  2011年   10567篇
  2010年   9268篇
  2009年   8892篇
  2008年   8809篇
  2007年   8347篇
  2006年   8776篇
  2005年   7777篇
  2004年   5164篇
  2003年   4476篇
  2002年   4077篇
  2001年   3678篇
  2000年   3947篇
  1999年   4711篇
  1998年   3964篇
  1997年   3442篇
  1996年   3177篇
  1995年   2743篇
  1994年   2191篇
  1993年   1646篇
  1992年   1306篇
  1991年   1003篇
  1990年   816篇
  1989年   677篇
  1988年   548篇
  1987年   386篇
  1986年   282篇
  1985年   222篇
  1984年   144篇
  1983年   111篇
  1982年   117篇
  1981年   84篇
  1980年   61篇
  1979年   38篇
  1978年   31篇
  1977年   35篇
  1976年   54篇
  1973年   14篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
2.
3.

Cr doped ZnAl2O4 spinel samples were prepared by the traditional solid state reaction and co-precipitation synthetic route, and the results suggest that the co-precipitation method has some superiority in contrast to the solid state reaction method. XRD, FT-IR, and XPS spectra confirmed that the well-crystallized spinel cubic phase of ZnAl2O4: Cr3+ samples were successfully formed. The morphology of the samples was investigated by FE-SEM and FE-TEM, and the results show that the samples by the co-precipitation route can generate a smaller size of particles compared to the solid state reaction. Photoluminescence excitation spectra monitored at 686 nm are comprised of two broad excitation bands near 530 nm and 395 nm, and the emission spectra show emissions ranging from 640 to 780 nm, due to the 2E?→?4A2 spin-forbidden transition of Cr3+ ions in spinel lattices. The optimized concentration monitored at 686 nm is 1%, while at 693 nm is 3.5%. Compared with the samples by solid state reaction method, the samples by co-precipitation method show preferable luminescent properties, such as the higher photoluminescence intensity and higher quantum efficiency. Several phosphor-converted LEDs were to investigate the applicability of the prepared samples. The results confirm that the phosphor has potential applications in plant growth and supplementing the red region in white-LEDs and the phosphors prepared by co-precipitation are more suitable to be used in phosphor-converted LED devices due to their preferable luminescent properties.

  相似文献   
4.
This study was conducted to evaluate the effect of red-wine grape pomaces on the quality and sensory attributes of beef hamburger patties. Both phenolic content and antioxidant activity were assessed using Syrah, Merlot and Cabernet Sauvignon pomaces. Following the assessment, hamburger patties were prepared with Merlot pomace at 0%, 2% and 4% for the patty quality and sensory attributes. Grape seeds possessed significantly higher phenolics and antioxidant activities over the seedless pomace (P < 0.05), whereas no significant difference was found for phenolics and antioxidant activities within the seeds and seedless pomaces. The patty pH decreased as the pomace was added for 2% and 4%. Colour values (L*, a* and b*) of patties lowered as the pomace was added. Allo-Kramer shear force and hardness values increased while cooking yield decreased (P < 0.05) with the addition of pomace. No significant difference between control and Merlot patties was found for flavour, juiciness and colour, whereas lower sensory attributes were observed for texture, taste and overall acceptability. It is observed that the addition of fermented red-wine grape pomace provides hamburger patties with health promoting factors such as antioxidant and other functional components, but it also provided darker, sourer and lower cooking yield.  相似文献   
5.
文章着重研究子集模拟中马尔可夫链蒙特卡洛(MCMC)抽样算法的抽样效率与计算精度。首先,阐述可靠度子集模拟的基本原理与中间状态样本生成的各种MCMC抽样算法,在稳态马尔可夫链构造基础上提出延迟拒绝MMH(Modified Metropolis Hasting)算法,通过在MMH算法上增加备选样本的延迟拒绝步提高MMH算法的抽样效率;阐述基于随机游走与基于扩散方程MCMC方法中建议分布的差异,进一步对备选样本接受率为1的preconditioned Crank-Nicolson(pCN)算法和条件抽样(Conditional sampling, CS)算法开展研究,证明两种算法的等价性;推导有效样本量的计算方法,提出采用有效样本量与总样本量的比值定义MCMC方法的抽样效率。通过复杂目标分布的样本生成研究不同MCMC抽样算法建议分布及其参数对备选样本接受率与抽样效率的影响,最后通过计算实例研究子集模拟过程采用不同MCMC抽样算法得到失效概率的相对误差及其变异性,揭示不同MCMC抽样算法对失效概率计算精度的影响。研究表明:不同MCMC抽样算法生成备选样本的接受率及其自相关性受建议分布及其参数影响较大,对于复杂的目标分布,pCN算法和CS算法的抽样效率较高,延迟拒绝MMH算法次之;采用CS算法和延迟拒绝MMH算法进行子集模拟得到的失效概率精度较高且变异性较低;增加子集模拟中间状态样本量可以提高失效概率计算精度并降低其变异性。  相似文献   
6.
7.
Hydrogen peroxide (H2O2) has been listed as one of the 100 most important chemicals in the world. However, huge amount of residual H2O2 is hard to timely decomposed into O2 and H2O under acidic condition, easily resulting in explosion hazard. Here, we reported a core–shell structure catalyst, that is graphene with Co N structure encapsulated Co nanoparticles. Co N graphene shell serves as the active site for the H2O2 decomposition, and Co core further enhance this decomposition. Benefiting from it, the H2O2 decomposition were close to 100% after 6 cycles without pH adjustment, which increased 6 orders of magnitude compared with no catalyst. At the same time, the O2 generation reached 99.67% in 2 h with little metal leaching, and ·OH has been greatly inhibited to only 0.08%. This work can cleanly remove H2O2 with little deep oxidation and protect the process of H2O2 utilization to achieve a safer world.  相似文献   
8.
9.
Wu  Zheng  Meng  Xuan  Shi  Li  Liu  Naiwang 《Journal of Porous Materials》2022,29(2):493-500
Journal of Porous Materials - In this work, a trifluoromethanesulfonic acid (TFOH) modified clay (TFOH-Clay) was developed for the removal of trace olefins in heavy naphtha. 5%TFOH-Clay can...  相似文献   
10.
陈尊凤  肖雄  黄伟健  吴超  王洳锦 《广东化工》2022,49(1):121-122,143
以消费者、行业专家、各品牌商以及全球各个美妆相关行业对纯净美妆的认识为依据,从配方设计、关键的原料筛选、生产过程、包材选择以及测试评估等方面,对如何实现纯净美妆产品进行了较为详细的阐述,无疑为纯净美妆的标准建立和定义提供很好的参考.  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