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1)  magnetized liquor
磁酒
1.
Objective: To observe the effects of magnetized liquor on the content of superoxide dismutase(SOD), malon-dialdehyde(MDA), nitric oxide(NO)and cholesterol in the brain of mice.
结果:与对照组相比,磁酒组MDA含量显著提高(p<0。
2.
Objective:To observe the effects of magnetized liquor on the content of superoxide dismutase(SOD),malon-dialde-hyde(MDA),nitric oxide(NO)and cholesterol in the heart of mice.
结果:与对照组相比,磁酒组SOD活力显著提高(P<0。
3.
Objective: To observe the effects of magnetized liquor on the content of superoxide dismutase (SOD), malon-dialdehyde (MDA), nitric oxide (NO) and cholesterol in the kidney of mice.
结果:与对照组相比,磁酒组和白酒组SOD活力均显著提高(P<0。
2)  magnetic-field-treated liquor
磁处理酒
1.
Effect of magnetic-field-treated liquor on cholesterol of HDL subconstituent in serum;
磁处理酒对血清高密度脂蛋白亚组分胆固醇的影响
3)  alcohol enamel
酒精磁漆
4)  Wine [英][waɪn]  [美][waɪn]
1.
DW-Spectrophotometric Determination of Methanol in Wine with Reagent 5-Br-PADAP;
5-Br-PADAP双波长分光光度法测定酒样中甲醇
2.
HPLC-Fluorimetric Determination and Mass Spectrometric Detection of Fatty Aldehydes in Wine;
高效液相色谱-荧光光度测定及质谱鉴定酒中脂肪醛
3.
Catalytic spectrophotometry with enzyme for determination of formaldehyde in wine;
酶催化光度法测定酒中微量甲醛的研究
5)  alcoholic drink
1.
Mechanism and application of various clarifiers in alcoholic drink;
不同酒类澄清剂的澄清机理与应用
2.
Objective:To study the relationship between the decrease of viscosity in alcoholic drink treated by magnetic field and the changes of viscosity of alcohol and tapwater in the alcoholic drink.
目的 :探讨白酒经磁处理后粘度下降与白酒中乙醇及自来水粘度变化的关系。
3.
An ion chromatographic method for the simultaneous analysis of organic acids and inorganic anions in Dongjiu (alcoholic drink) was developed.
研究了用离子色谱法同时分析董酒中可离解性有机酸和无机阴离子。
6)  liquor [英]['lɪkə(r)]  [美]['lɪkɚ]
1.
Study on sorghum liquor brewed by "fermentation with uncooked materials and two kinds of starters";
“双曲生料发酵”酿制高粱烧酒的研究
2.
Liquor and Aesthetic in the Novel Shui Hu zhuan;
《水浒传》中的酒与美学特质
补充资料:磁铅石型旋磁铁氧体
分子式:
CAS号:

性质:晶体结构和天然磁铅石Pb(Fe7.5Mn3.5A10.5Ti0.5)19类似的铁氧体称为磁铅石型铁氧体。其结构对称性较尖晶石型的为低。其中晶体具有各向异性大、矫顽力高的六角晶系铁氧体,称为磁铅石型微波铁氧体。主要有M型(BaFe12O19)和W型(BaM2+2Fel6O27),M为锰、钴、镍、锌、镁等二价金属离子。通过离子代换部分Ba2+,可获得BaO-MO-Fe2O3三元系的磁铅石型复合铁氧体,并可使各向异性场在一定范围内变化。制造方法可用一般磁性瓷生产工艺,热压烧结或气氛烧结制成。用于微波频段,可制成隔离器、相移器、调制器、环行器等线性器件和倍频器、限幅器、振荡器、混频器、参量放大器等非线性器件。是发展现代微波技术的重要材料。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条