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   36637篇
  免费   1066篇
  国内免费   2139篇
林业   5478篇
农学   3662篇
基础科学   1811篇
  5482篇
综合类   8341篇
农作物   3419篇
水产渔业   2753篇
畜牧兽医   3752篇
园艺   2143篇
植物保护   3001篇
  2024年   143篇
  2023年   358篇
  2022年   936篇
  2021年   1011篇
  2020年   987篇
  2019年   995篇
  2018年   3377篇
  2017年   3652篇
  2016年   2009篇
  2015年   1195篇
  2014年   1097篇
  2013年   1392篇
  2012年   2472篇
  2011年   3699篇
  2010年   3583篇
  2009年   2497篇
  2008年   2476篇
  2007年   2535篇
  2006年   878篇
  2005年   756篇
  2004年   496篇
  2003年   420篇
  2002年   375篇
  2001年   299篇
  2000年   327篇
  1999年   244篇
  1998年   210篇
  1997年   140篇
  1996年   164篇
  1995年   169篇
  1994年   169篇
  1993年   142篇
  1992年   130篇
  1991年   109篇
  1990年   73篇
  1989年   83篇
  1988年   81篇
  1987年   40篇
  1986年   18篇
  1985年   11篇
  1984年   9篇
  1983年   7篇
  1982年   6篇
  1981年   16篇
  1977年   5篇
  1968年   4篇
  1965年   4篇
  1964年   6篇
  1963年   5篇
  1956年   6篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
81.
十字花科蔬菜根肿病研究现状   总被引:7,自引:0,他引:7  
十字花科蔬菜根肿病是危害较为严重的世界性病害之一。本文对国内外十字花科根肿病的症状、病原菌、寄主及分布、病害发生规律、病原菌致病性分化、分子生物学检测、抗病育种、预测预报、综合防治策略等方面的研究概况进行了介绍  相似文献   
82.
多氯联苯对水生生物的生态毒性研究进展   总被引:3,自引:0,他引:3  
本文综述了当前对多氯联苯这种持久性有机污染物(POPs)对水生生物生态毒性的研究现状,详细论述了多氯联苯的来源、分布、污染现状,以及迁移变化、生物富集等环境行为和其降解方法。水生生物是人类最主要的食品之一,为食物链安全和生物个体的健康,有必要更深入地研究PCBs对水生生物的毒性影响并提供更详尽的基础生物学依据,同时也进一步进行深入探索。  相似文献   
83.
The numerical analysis was performed to predict the potential problem, often occurring during the manufacturing process of the disposable medical device of a great volume. The cavity filling analyses were performed for the new design of the 3cc Syringe Barrel using polypropylene(PP1), and a new nucleated polypropylene(PP2) material for better clarity. These analyses have been performed for different processing conditions as well as various wall thickness designs for both materials. With the nucleated material, only the original wall thickness design has been studied at two different processing conditions for comparison purpose. This study was conducted to investigate the optimum part design and processing condition for two different materials. The most desirable design was selected with Design 3 for material utilization and reduced flow stresses by comparing the field results. The new nucleated polypropylene provided slightly better product quality and processing.  相似文献   
84.
为了筛选防控甘蔗梢腐病的复合高效配方药剂及精准施药技术, 为甘蔗梢腐病精准高效防控提供新产品、新技术支撑, 选用多菌灵、苯菌灵、百菌清、嘧菌酯、吡唑醚菌酯、苯甲·嘧菌酯6种药剂进行田间药效试验和生产示范验证。结果表明, 3个配方药剂50%多菌灵可湿性粉剂1 500 g/hm2+75%百菌清可湿性粉剂1 500 g/hm2、50%苯菌灵可湿性粉剂1 500 g/hm2+75%百菌清可湿性粉剂 1 500 g/hm2和25%吡唑醚菌酯悬浮剂600 mL/hm2分别与磷酸二氢钾2 400 g/hm2和农用增效助剂300 mL/hm2复配后对甘蔗梢腐病均具有良好的防治效果, 其病株率均在8.62%以下, 防效均达90.73%以上, 较空白对照甘蔗实测产量平均增加15 489 kg/hm2以上, 糖分增加1.8%以上, 每公顷用药成本仅270元。本研究显示3个配方药剂是防控甘蔗梢腐病理想的复合高效配方药剂, 可在7月-8月发病初期人工和无人机飞防叶面喷施、7~10 d喷1次, 连喷2次, 可有效控制甘蔗梢腐病暴发流行。  相似文献   
85.
为提高太阳能温差发电装置的热电转换效率,该文设计聚光太阳能温差发电装置,利用槽式抛物面反射聚光镜进行聚光,经集热体转换为热能后提高温差发电器(thermoelectric generator,TEG)热端温度,冷端采用扁平热管作为传热元件,利用水冷散热,增大TEG冷热端温差,提高装置输出功率及热电转换效率。对装置建立能量转换平衡方程,通过数值计算分析不同太阳辐射强度对热损失、光热转换效率及热电转换效率的影响。为解决多个热电模块串联在一起,无法使每个模块都工作在最大功率输出状态,从而导致整体输出功率降低的问题,采用集中-分布混合式最大功率跟踪(maximum power point tracking,MPPT),试验结果表明,经过MPPT后装置能很快达到最大功率输出点,且输出功率稳定,运行30 min输出功率增加3.2 W。搭建了装置的性能测试平台,对基于槽式抛物面反射聚光与扁平热管水冷散热的聚光太阳能温差发电装置进行试验研究,结果表明,随着冷却水流量的增加装置输出功率得到提高,当冷却水流量达到8 L/min后,输出功率趋于平缓;随着温差的增大装置的最佳匹配负载逐渐增加。装置的全天性能试验表明,试验期间装置最大输出功率为30.1 W,平均输出功率27.8 W,试验期间发出电量222.4 W·h,热电转换效率最大为5.4%,装置最大效率4.1%,该装置在远程传感器供电和微功耗供电等领域具有广阔的应用前景。  相似文献   
86.
通过室内培养试验研究了重庆市植烟区不同肥力植烟土壤氮素矿化规律,求得土壤氮素矿化参数,并探讨了氮素矿化潜势(N0)、有机质、全氮、pH、碱解氮之间的关系。结果表明,在35℃条件下培养,一级动力学方程能够很好的拟合氮素的矿化过程,相关系数均达到显著水平(r高肥力土=0.976、r中肥力土=0.986、r低肥力土=0.996),不同肥力土壤氮素矿化量存在显著差异。矿化潜势(N0)为:高肥力土(25.0mg?kg-1±0.60)﹥中肥力土(21.5mg?kg-1±0.61)﹥低肥力土(19.7mg?kg-1±1.14);矿化速率(k)为:低肥力土(0.1596mg?kg-1?d-1±0.0104)﹥中肥力土(0.1492mg?kg-1?d-1±0.0155)﹥高肥力土(0.1029mg?kg-1?d-1±0.0071)。矿化潜势(N0)与全氮、有机质呈正相关,相关系数分别为0.9799和0.9788,与pH之间呈负相关(R=-0.9784)。表明不同肥力植烟土壤的供氮能力存在差异,在肥料管理上要因土、因时施肥。  相似文献   
87.
The olive fruit fly, Bactrocera oleae (Rossi), is the major olive pest in the Mediterranean Basin, being responsible for high losses in olive production. The objective of this work was to study the influence of B. oleae infestation on the pomological parameters and nutritive value (lipids, proteins, carbohydrates and ash) of eight olive cultivars (Abani, Aellah, Blanquette de Guelma, Chemlal, Ferkani, Limli, Rougette de Mitidja and Souidi) from Algeria. The results displayed different degrees of susceptibility of the studied cultivars to this pest. Fruit size (weight) and the Fruit weight / stone weight ratio are significantly correlated with the attack. The statistical treatment of the results (PCA and HAC) highlighted different behaviors from the cultivars, concerning the attack. There are some cultivars more susceptible, being the nutritional value also affected. The lipid and protein contents were positively correlated with the attack and the carbohydrates negatively, suggesting a careful choice by the B. oleae. Ovipositional preference of olive fruit fly females and the success of larval development in different olive cultivars are crucial to establishing new approaches in Integrated Pest Management (IPM) against this pest.  相似文献   
88.
Frequent windthrow in the strict reserves of spruce in the Kopaonik National Park provides much material favorable for the development of Ips typographus (L.) and Pityogenes chalcographus (L.) (Coleoptera, Scolytidae). Therefore it was assumed that the abundance of these bark beetles in the reserves was high and that they dispersed to the surrounding spruce forests. To verify this opinion, their population levels were monitored in the strict reserve Jankove Bare and the adjoining spruce forests over the period 2006–2008. I. typographus parasitoids were identified and the parasitism percent was determined in spruce forests around the reserves. Throughout the monitoring period, the abundance of I. typographus and P. chalcographus was found to be lower in the reserve than in the surrounding spruce forests. Five species of I. typographus parasitoids and a low parasitization percent were identified in spruce forests surrounding the reserve.  相似文献   
89.
DNA sequences of nuclear gene Got2 was studied in 60 accessions of Aegilops tauschii, 29 of subsp. tauschii and 31 of subsp. strangulata. It was found that Got2 allozyme polymorphism in Ae. tauschii is due to a single, unique, mutation which led to replacement of glutamic acid by isoleucine in residue 256 of the enzyme molecule, encoded by Got2. As revealed by Got2 DNA sequences variation, initially in its history Ae. tauschii was presented by subsp. strangulata, and among phylogenetic lineages of subsp. strangulata, the lineage “t-91s” (TauL3) is the most ancient, a relict one. Subspecies tauschii is relatively “young”. Initially it was presented by the lineage marked by combination of allozyme alleles Got2 105 and Acph1 100. In the past it inhabited the Continental area from Caucasia to Pakistan, but later on it was forced out by newly originated, now—a major lineage of subsp. tauschii, marked by Got2 100. This lineage extended the Continental area of the species up to Kirgizstan, but actually failed to penetrate into pre-Caspian area, occupied by subsp. strangulata. These results essentially differ from those obtained previously, using chloroplast DNA (cpDNA) sequences polymorphism. As revealed by cpDNA, the major, “usual”, subsp. strangulata (TauL2) is “younger” than subsp. tauschii, which resided on phylogenetic tree between relict lineage “t-91s”of subsp. strangulata—and major subsp. strangulata. But both cpDNA and Got2 DNA sequences indicate that the level of genetic variation in subsp. tauschii is much lower than in subsp. strangulata. According to Got2 DNA sequences variation, it was Ae. tauschii subsp. strangulata lineage “k-109″ which donated genome D to Triticum aestivum L. This lineage includes accessions: k-109 from South-Eastern Precaspian Azerbaijan; KU-2105, KU-2159 from Western Precaspian Iran; KU-2080 from Eastern Precaspian Iran.  相似文献   
90.
朱立  储蓉  孙超 《种子》2009,28(8)
根据科学研究与种植实践经验系统论述了十大功劳繁殖、产地环境选择、种植技术、收获与加工等方面,为十大功劳生产技术标准和提高其商品质量提供依据.  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