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1)  magnetic response
磁反应,磁响应
2)  magnetic property
磁响应性
1.
Objective:To improve the method of synthesizing magnetic particles , which have good magnetic property and small size , to be used in contrast agent for abdomen MRI.
目的:制备出磁响应性强、粒径小且分布均匀的纳米磁性微粒,为磁共振造影提供一种新型材料。
2.
The method of synthesizing magnetic particles has been improved by ultrasonic coprecipitation to produce new nanoparticles,which have good magnetic property and small size.
文章利用微粉化处理、悬浮稳定制备出了一种磁响应性强、粒径小且分布均匀的纳米磁性微粒,为磁共振造影提供了一种新型材料。
3.
Objective: To prepare a kind of synthesizing magnetic particles which have good magnetic property,small size,and coating suspending agents on the surface,which to be used in contrast agent for abdomen magnetic resonance imaging(MRI).
目的:制备出磁响应性强、粒径小、分布均匀、且表面包覆一层助悬剂的磁性纳米微粒,为腹部磁共振造影提供一种新型材料。
3)  magnetic responsibility
磁响应性
1.
The microspheres have proportionable diameter and good magnetic responsibility.
用该微球作为种子,采用分散聚合法,以乙二醇/水为分散介质,聚乙二醇为分散剂,甲苯为制孔剂,进行二乙烯苯—丙烯酸—苯乙烯三元共聚物的合成,最终合成了粒径大小均匀、具有强磁响应性的多孔聚苯乙烯磁性微球。
2.
The MHP have proportionable diameter and good magnetic responsibility.
以该微球为种子,采用分散聚合法,以乙二醇/水为分散介质、聚乙二醇为分散剂、甲苯为制孔剂,进行苯乙烯—丙烯酸—二乙烯苯的三元共聚物的合成,最终合成出粒径分布均匀、磁响应性强的磁性多孔聚苯乙烯微球。
3.
On the one hand,Magnetic Polymer Microsphere could covalent active materials—enzymes,cells and antibodies;on the other hand,they could show strong magnetic responsibility for their directional movement in the magnetic field.
一方面磁性聚合物微球可通过共价键来结合酶、细胞和抗体等生物活性物质;另一方面因其具有“在外界磁场存在下能定向运动”这一特殊性能,可对外加磁场表现出强烈的磁响应性,因此它被用作酶、细胞、药物等的载体,广泛地应用到生物医学、细胞学和生物工程等领域。
4)  magnetic responsiveness
磁响应性
1.
Temperature,stirring rate,PVA amount and HCl amount are estimated through comparing the magnetic responsiveness and the diameter of magnetic polymer microspheres.
通过对比磁性微球的磁响应性及粒径,研究了反应温度、搅拌速度、聚乙烯醇用量、盐酸用量等操作因素对磁性微球性质的影响。
2.
The magnetic responsiveness of IAMM was better than iron oxide agarose magnetic microsphere.
采用反相悬浮包埋法制备了以纳米铁粉为磁核、琼脂糖为壳层的铁琼脂糖磁性微球,其磁响应性比以四氧化三铁为磁核的琼脂糖磁性微球好得多;并对不同粒径的琼脂糖磁性微球表面的活性基团进行了测定,粒径为8。
3.
The magnetic immoblized cellulases were prepared by immobilized cellulases on magnetic chitosan microspheres using the physical adsorp-tion method, and their magnetic responsiveness was investigated.
以酶活力为考察指标,研究了不同工艺条件对制备固定化酶的影响,及其在外加磁场下的磁响应性的变化。
5)  electromagnetic response
电磁响应
1.
Hybrid FEM-BEM for simulation of electromagnetic response;
有限元-边界元法计算电磁响应(英文)
2.
Reciprocity of electromagnetic response and its application in sensitivity calculation.;
电磁响应的互换原理及其在响应灵敏度计算中的应用
3.
Laboratory research work on characteristics of electromagnetic response of outbursts prone coal was conducted by use of an experimental system composed of a ΔP instrument and an electromagnetic field generator.
根据煤屑瓦斯放散理论 ,分析了实验现象的机理 ,应用突出煤体电磁响应特征 ,提出了关于突出机理和突出防治的新见解。
6)  magnetic response
磁响应
1.
We derived the curves of, J(T,B) ,ln E \|ln J and thermal excited potential U\-0(T,B) , and analyzed the magnetic response of this sample, especially the influence of field sweep rates to the second peak.
对YBa2 Cu3O7-δ熔融织构样品在不同温度、不同磁场 不同外场扫描速率下进行了磁滞回线测量 ,获得了电流密度J(T ,B) ,lnE lnJ曲线以及热激活能U0 (T ,B)随温度、磁场的变化关系 ,从而分析了该样品磁响应特性 ,特别是第二峰 (简称峰 )受外场扫描速率的影响 ,探讨了峰形成的真正原因 ,以及影响峰位置、大小的各种因
补充资料:连续性与非连续性(见间断性与不间断性)


连续性与非连续性(见间断性与不间断性)
continuity and discontinuity

11an父ux泊g四f“山。麻以角g、.连续性与非连续性(c。nt,n琳t:nuity一)_见间断性与不间断性。and diseo红ti-
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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