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- Sorption studies are carried out with P K Cu Mn Zn S and B. 这些养分包括磷、钾、铜、锰、锌、硫和硼。
- Firstly, Co ferrite nanoparticles were prepared with the method of solid-state reaction. 首先采用低热固相法制备了球形磁性纳米粒子钴铁氧体。
- In addition, we respectively added nitrate of Cu、Mn、 Zn、Y、La to cerous nitrate and obtained doping nano-CeO2 system. 除此之外,分别在沉淀过程中参杂Cu、Mn、 Zn、Y、La的硝酸盐,也得到了分散均匀的CeO2参杂体系。
- The multilayered composite of Ni Zn ferrite composite paint, PZT paint, tetrapod like Zinc Oxide whisker paint with Ni based paint have been studied in this paper. 涂层结构及厚度直接影响所制备涂料的屏蔽效能。
- Development in magnetic ferrite nanoparticles 铁氧体磁性纳米微粒
- Co0.5Ni0.5Fe2O4 ferrite nanoparticles Co0.;5Ni0
- Study indicates NiZnCu ferrites nanoparticles about 10nm can be prepared by microwave assisted soft chemical processing method in 15min. 研究表明,通过15min的微波辅助加热,可制得粒径在10nm左右的NiZnCu铁氧体纳米晶。
- Keywords Zn ferrites;nanoparticles;silicon dioxide;APS;acid resistance; 铁酸锌;纳米;二氧化硅;APS;耐酸性;
- Cobalt Ferrite Nanoparticles: Coprecipitation Synthesis and Magnetic Properties 铁酸钴纳米微粒的共沉淀法制备和磁性质
- This method is able to measure Mn,Cu,Pb,Zn,Co,Ni and P quickly. 该方法也可同时用于:Mn、Cu、Pb、Zn、Co、N i、P等杂质元素的快速测定。
- Preparing cobalt ferrite nanoparticles by spray coprecipitation and its sensing characteristics 喷射共沉淀法制备纳米铁酸钴及气敏性能表征
- SYNTHESIS OF COBALT FERRITE NANOPARTICLES IN HIGH STATIC MAGNETIC FIELD BY COPRECIPITATION-PHASE TRANSFORMATION WAY 强磁场下共沉淀-相转化法制备纳米鈷铁氧体颗粒
- Mn - Zn ferrites Nn-Zn铁氧体
- CCE 3 opposes the changes of Ca,Mg,S,Mn,Zn and P in the bone of the OVX rats. 尼尔雌醇可使去卵巢大鼠降低的骨Ca、Mg、S、Mn、Zn含量显著回升 ,骨P含量显著回降。
- Co - Zn ferrite films 钴锌铁氧体薄膜
- Zn ferrite 锌铁氧体
- Ni - Zn ferrite 镍锌铁氧体
- cobalt ferrite nanoparticles 钴铁氧体纳米颗粒
- Mn,O. K.. How much does it come up to? 行,多少钱?
- Mn-Zn ferrite nanoparticles 纳米Mn-Zn铁氧体微粒