1)  pharmaceutical e-government
医药电子政务
1.
China s pharmaceutical e-government administration has made great progress and growth in the last two decades.
我国医药电子政务经过20年的发展,取得了很大的进步与成长。
2)  medicine
医药
1.
Pondering on the Acceleration of High-Tech Medicine Industry Development;
加快医药高新技术产业发展的思考
2.
Protection of Intellectual Property and Establishment of Technological Intermediaries in Medicine;
医药知识产权的保护与医药科技中介机构的建立
3.
Chemical modification of D-glucosamine and its application in biology and medicine;
D-氨基葡萄糖的化学修饰及其在生物医药领域的应用
3)  pharmaceutical
医药
1.
Research on Industrial organization of pharmaceutical industry in China;
我国医药产业的产业组织分析
2.
Research on and analyse of the pharmaceutical market structure of China;
对我国医药行业市场结构的分析与研究
3.
Development of The Application of Soy Isoflavones in Health Foods and Pharmaceutical;
大豆异黄酮在保健食品和医药中应用的研究进展
4)  pharmaceuticals
医药
1.
Ethylene glycol phenyl ether is mainly used in solvent, pharmaceuticals and commodity chemicals.
目前 ,全球乙二醇苯醚的生产能力约为 17万t/a,装置开工率在 80 %~ 90 % ,产品的主要应用领域有溶剂、医药、日用化学品等。
2.
The characters and new development of enzymatic catalysts,some recent applications of biocatalysts in the pharmaceuticals industry, such as enzymatic synthesis of antibiotics, chiral drugs, aspartame and chiral pharmaceutical intermediates were presented.
介绍了近年来酶催化工艺在医药领域中 ,如酶法合成半合成抗生素、手性药物及中间体等生产中的一些应用及酶催化剂的一些特点和新发展 ,并对酶催化工艺用于制药工业的研究和发展进一步作了评
3.
Dibromoaniline is an important organic intermediate for synthesis of pharmaceuticals, alkaloid and ferromagnetics.
2 ,6 二溴苯胺是重要的有机合成中间体 ,可用于合成医药、生物碱和铁磁体等。
5)  medical
医药
1.
Design of Medical Storage Management System Based on Control Configuration Art;
基于组态技术的医药仓储管理系统设计
2.
In order to understand freshmen’ condition of occupational career design in medical higher vocational education,all freshmen were surveyed in Vocational College of Liaoning University of Traditional Chinese Medicine so as to direct their job-finding.
为了解高职医药类新生职业生涯设计状况,从而有针对性的开展就业指导工作,对辽宁中医药大学职业技术学院2005级大学新生进行职业生涯设计问卷调查,结果显示:大多数新生还未接受过系统的职业生涯规划指导,大多数学生希望能得到相关指导。
6)  drug
医药
参考词条
补充资料:电子-电子双共振
      在垂直静磁场H的方向,施加两个微波电磁场:①较弱的微波电磁场,激发电子从能级2向能级3跃迁,不致于饱和;②强的微波电磁场,激发电子从能级1向能级4跃迁,使达到饱和,从而导致能级4的电子转移至能级3,以观察反映2→3跃迁的电子自旋共振信号强度的变化,故称为电子-电子双共振。它与电子-核双共振不同之处是不涉及核的跃迁,并且观察的与电子自旋共振有关的能级和未观察的跃迁能级之间无共享的公共能级。
  

说明:补充资料仅用于学习参考,请勿用于其它任何用途。