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   8149篇
  免费   498篇
  国内免费   722篇
林业   1458篇
农学   665篇
基础科学   258篇
  1284篇
综合类   3239篇
农作物   647篇
水产渔业   626篇
畜牧兽医   564篇
园艺   230篇
植物保护   398篇
  2024年   49篇
  2023年   169篇
  2022年   206篇
  2021年   256篇
  2020年   300篇
  2019年   373篇
  2018年   224篇
  2017年   388篇
  2016年   471篇
  2015年   362篇
  2014年   495篇
  2013年   555篇
  2012年   620篇
  2011年   669篇
  2010年   493篇
  2009年   471篇
  2008年   397篇
  2007年   426篇
  2006年   379篇
  2005年   289篇
  2004年   220篇
  2003年   165篇
  2002年   158篇
  2001年   156篇
  2000年   150篇
  1999年   132篇
  1998年   125篇
  1997年   96篇
  1996年   97篇
  1995年   91篇
  1994年   66篇
  1993年   59篇
  1992年   61篇
  1991年   48篇
  1990年   39篇
  1989年   44篇
  1988年   23篇
  1987年   21篇
  1986年   11篇
  1985年   2篇
  1984年   2篇
  1983年   3篇
  1982年   2篇
  1981年   2篇
  1980年   3篇
  1976年   1篇
排序方式: 共有9369条查询结果,搜索用时 0 毫秒
61.
采用密度泛函法(Density functional theory method,DFT)在6-31G*基组水平上对金丝桃素(Hypericin,4,4′,5,5′,7,7′-六羟基-2,2′M甲基-中位-萘骈二蒽酮,化学式为C30H16O8)的分子结构、轨道能量、电荷布居、红外图谱等进行了研究,并对分子中的不同氢键类型以及光活性的本质特性进行了讨论;同时对部分计算结果与实验数据进行了对比分析.结果表明,金丝桃素易于与生物分子发生作用从而破坏病变分子;理论计算的数据与一些已知的实验数据具有较好的吻合性,说明计算结果有效.  相似文献   
62.
采用206最优回归设计方案,研究了不同密度和播期对遵糯4号鲜穗数的影响。结果表明:在试验设置的密度和播期范围内,随二因素升高,鲜穗数先升后降。综合考虑,密度在55 500~64 500株/hm2、播期在4月12—18日水平区间内,有利于遵糯4号鲜穗数的提高。  相似文献   
63.
In a field experiment, we examined the effects of structural complexity in the form of added artificial plastic plants and shredded plastic bags on growth and abundance of juvenile brown trout (Salmo trutta). Just after emergence, the added complexity had a positive effect on the density, biomass and condition factor of young‐of‐the‐year (0+) brown trout. This difference in density was not present six weeks later. In contrast, both young‐of‐the‐year and older brown trout generally tended to be larger in the simple habitat. Hence, our data suggest that increased complexity initially is beneficial for young‐of‐the‐year individuals probably due to lower risk of predation and increased densities of prey. However, as density increases in the complex environment, it may induce negative density‐dependent effects, here reflected in smaller sized fish in the complex environment. This might force fish to redistribute to habitats with lower densities of conspecifics as they grow larger. We propose that habitat complexity can increase survival of yearlings in early phases and thereby also affect the overall population structure of brown trout in natural streams.  相似文献   
64.
为了规范烤烟栽培模式,对清香型烤烟配套栽培技术进行了试验研究,提出了适时播栽、培育壮苗、精耕细作、盖膜待栽、控制施氮、合理追肥、"膜上"栽烟、科学管水、掀(揭)膜培土、病虫防治、拔节打顶、成熟采烤等配套栽培技术。  相似文献   
65.
不同种源/家系的细叶桉苗期叶脉密度比较   总被引:1,自引:0,他引:1  
本文以3个种源、14个家系的细叶桉苗木为试验材料,研究了其种源、家系叶脉密度的差异以及各级叶脉密度之间的相关性。结果表明:种源间总叶脉密度和次级叶脉密度的差异极显著,2°主叶脉密度差异不显著,次级叶脉密度与总叶脉密度的比值在88.07%以上;种源地 China Dongmen 家系间的总叶脉密度、次级叶脉密度、2°主叶脉密度之间差异极显著,2°主叶脉密度与次级叶脉密度和总叶脉密度呈极显著负相关,次级叶脉密度与总叶脉密度呈极显著正相关;其他种源内家系间叶脉密度的差异较小。  相似文献   
66.
Soil compaction impacts growing conditions for plants: it increases the mechanical resistance to root growth and modifies the soil pore system and consequently the supply of water and oxygen to the roots. The least limiting water range (LLWR) defines a range of soil water contents within which root growth is minimally limited with regard to water supply, aeration and penetration resistance. The LLWR is a function of soil bulk density (BD), and hence directly affected by soil compaction. In this paper, we present a new model, ‘SoilFlex‐LLWR’, which combines a soil compaction model with the LLWR concept. We simulated the changes in LLWR due to wheeling with a self‐propelled forage harvester on a Swiss clay loam soil (Gleyic Cambisol) using the new SoilFlex‐LLWR model, and compared measurements of the LLWR components as a function of BD with model estimations. SoilFlex‐LLWR allows for predictions of changes in LLWR due to compaction caused by agricultural field traffic and therefore provides a quantitative link between impact of soil loading and soil physical conditions for root growth.  相似文献   
67.
The response of the soil food web structure to soil quality changes during long-term anthropogenic disturbance due to farming practices has not been well studied. We evaluated the effects of three tillage systems: moldboard plow/rotary harrow (MP), rotary cultivator (RC), and no-tillage (NT), three winter cover-crop types (fallow, FL; rye, RY; and hairy vetch, HV), and two nitrogen fertilization rates (0 and 100 kg N ha−1 for upland rice, and 0 and 20 kg N ha−1 for soybean production) on changes in nematode community structure. Sixty-nine taxa were counted, total nematode abundance (ALL), bacterial feeders (BAC), predators (PRD), omnivores (OMN), and obligatory root feeders (ORF) were more abundant in NT than in MP and RC, but fungal feeders and facultative root feeders (FFR) were more abundant in RC than in NT and MP. Cover crop also influenced nematode community structure; rye and hairy vetch were always higher in ALL, BAC, FFR, ORF, and OMN than fallow. Seasonal changes in nematode community structure were also significant; in particular, as soil carbon increased, nematode abundance also increased. The relationship between nematode indices and soil carbon was significant only in NT, but not in MP and RC. In NT, with increasing soil carbon, enrichment index and structure index (SI) were positive and significant and channel index was negative. Bulk density was significantly negatively correlated with FFR and ORF. Seasonal difference in nematode community between summer and autumn was larger in an upland rice rotation than in a soybean rotation. Over the nine-year experiment, SI increased not only in NT but also in MP and RC, suggesting that repeated similar tillage inversions in agroecosystems may develop nematode community structures adapted to specific soil environmental conditions. Because NT showed the highest values of both SI and soil carbon, the increase of soil carbon in NT is expected to have a great impact on developing a more diverse nematode community structure.  相似文献   
68.
Aquaculture production relies on controlled management of gametogenesis, especially in species where assisted reproduction is needed for obtaining gametes in captivity. The present study used human chorionic gonadotropin (hCG) treatments to induce and sustain spermatogenesis in European eel (Anguilla anguilla). The aim was to evaluate effects of strip-spawning timing (12 vs. 24 hr) after weekly administration of hCG and the necessity of a primer dose (in addition to weekly hormonal treatment) prior to strip spawning (primer vs. no-primer) on sperm quality parameters. Sperm parameters included milt production (weight), density and sperm kinematics at Week 9, 11 and 13 after onset of treatment. Spermiation commenced in 11.5% of males in Week 5 and by Week 9, and all males produced milt. Male weight, milt production, sperm density and spermatocrit did not differ among hormonal treatments during the experimental period. Overall, male weight decreased from 106.3 to 93.0 g, milt weight increased from 3.5 to 5.4 g, sperm density counts decreased from 11.7 × 109 to 10.5 × 109 cells/ml, and spermatocrit decreased from 46.5% to 40.5%. Furthermore, spermatocrit was positively related to haemocytometer counts (R2 = .86, p < .001), providing a reliable indicator of sperm density. Differences in sperm kinematics were observed depending on strip-spawning timing after hormonal injection (12 vs. 24 hr) but with no consistent pattern. These sperm quality parameters also did not consistently differ between the no-primer and primer treatments. Considering that each male may be stripped 4–5 times over the 2–3 months spawning season, omitting the primer would reduce animal handling, material costs and labour intensity, while sustaining high-quality sperm production.  相似文献   
69.
70.
通过田间试验,就制种玉米密度对土壤水分、农艺性状、产量构成及产量的影响进行了研究分析。结果表明:1在拔节期以前,低密组的土壤含水量比高密组的高;在拔节期到灌浆期,高密组的比低密组的高。在整个生育期,拔节期前土壤含水量比较高,而后逐渐降低,吐丝期达到最低,然后又逐步上升。2在一定密度范围内,制种玉米株高、亩产量随着密度的增大而增加单株产量产量相反;叶长、穗粗、穗粒数先随着密度的增大而减小,后随着密度的增大而增大;叶宽、穗长、百粒重、出籽率先随着密度的增大而增加,后随着密度的增大而减小;叶面积、茎粗、穗位先随着密度的增大而减小,后随着密度的增大而增加,然后又随着密度的增大而减小,秃顶变化规律相反。  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