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1)  Dyract AP Cem
DyractAP复合体
1.
Methods 486 teeth in 150 cases with wedge-shaped defects were randomly divided into three groups which were restored with GC Fuji Ⅱ glass-ionomer,Dyract AP Cem and sandwich technique(GC Fuji Ⅱglass-ionomer and Charisma light-cared composite resin)respectively.
方法150例患者的486颗患牙随机分为3组,分别用GCFujiⅡ型玻璃离子、DyractAP复合体和夹层技术修复深型楔状缺损,修复后1、2年复查,观察临床疗效。
2)  Dyract AP compomer
DyractAP光固化复合体
1.
Objective:To evaluate the clinical effect of wedged- shaped defects by Dyract AP compomer.
目的:评价DyractAP光固化复合体修复楔状缺损的临床疗效。
3)  replication complex
复制复合体
1.
Some viral proteins, host proteins and RNA virus composethe viral replication complex, which guides viral RNA synthesis rapidly andefficiently.
一些病毒蛋白和宿主蛋白以及病毒的RNA一起组成病毒复制复合体,高效迅速地指导病毒核酸的合成。
4)  composite bulk material
复合块体
1.
Ni-Co nanocomposite bulk materials were obtained by adopting high frequency pulse electroforming.
采用高频脉冲电铸工艺制备出了镍钴纳米复合块体材料,利用场发射扫描电镜、能谱和X射线衍射的方法,重点研究了复合块体沉积层的表面形貌、相结构和结晶取向。
5)  composite support
复合载体
1.
Application of TiO_2-Al_2O_3 composite support on ultra deep hydrodesulfurization;
负载型TiO_2-Al_2O_3复合载体在超深度加氢脱硫中的应用
2.
A series of SiO2-Al2O3 composite supports were prepared by simple hydrolysis and deposition of Na2SiO3·9H2O on macropore Al2O3.
以硅酸钠为原料,以大孔Al2O3为基载体,采用水解沉积法制备了SiO2-Al2O3复合载体。
3.
The impregnation-precipitation method was adopted to prepare the nano-sized ZrO2/Al2O3 composite supports.
采用浸渍-沉淀法制备了负载型纳米ZrO2/Al2O3复合载体。
6)  compound system
复合体系
1.
Study on the ternary compound system of foundry used sand,waste mulching film and soil adhered on it;
铸造废砂/废地膜/粘附土三元复合体系的研究
2.
The compound system was analyzed with electrical resistivity,the structure of pore,X-ray diffraction(XRD) and DSC-TG.
用电阻率、孔结构、XRD以及DSC-TG对普通水泥-特种水泥复合体系进行研究,结果表明:加入一定量的特种水泥,改变了早期水化产物的组成,大幅度缩短了普通水泥的凝结时间,复合体系28d强度未出现倒缩,但水化3d浆体有害孔数量增加。
3.
We have studied the effect of Na_2CO_3/Surfactant/Polymer compound systems containing tetradecyl benzene, hexadecyl benzene and octadecyl benzene sulfonate respectively on the characteristics of oil-water interfacial tension in Oil Recovery Plant No.
结果表明 ,在研究范围内 ,十四、十六烷基苯磺酸盐和弱碱的复合体系对油水界面张力降到最低值的速度快 ,但回升速度也快 ;十八烷基苯磺酸盐复合体系对油水界面张力降到最低值的速度相对较慢 ,且达到最低值后基本不再变化 ;适合该厂油水的弱碱复合驱体系的烷基苯磺酸盐当量应在 43 0左右 。
补充资料:染色体结合复合体
分子式:
CAS号:

性质:一种细胞器,出现于减数分裂过程中,染色体同源区域间居间的密切的成双配对。

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