1)  GSM/CDMA
GSM/CDMA
1.
Design and realization of the substation real-time short message sending system based on GSM/CDMA;
基于GSM/CDMA的变电站实时信息短信发送系统的设计与实现
2)  GS
GS
1.
Experrimental Study on Cardiomyocyto-like Cells Induced by AS, GS and PNS in Vitro from Bone Marrow Mesenchyma Stem Cells;
AS、GS和PNS诱导MSCs分化为心肌样细胞的研究
2.
Methods The glutamate levels in the striatum of SD rats were detected by high performance liquid chromatography(HPLC),the expression of glutamate tansporter mRNA and proteins were detected by RT-PCR and Western blotting and the activity of glutamine synthetase was determined by using GS detect kit.
2mg/kg鱼藤酮染毒大鼠纹状体Glu浓度明显升高,谷氨酸/天冬氨酸转运体(glutamate/aspartate transporter,GLAST)基因和蛋白表达均显著降低,而谷氨酸转运体-1(gluta-mate transporter-1,GLT-1)蛋白表达升高,谷氨酰胺合成酶(glutamine synthetase,GS)活性明显增强。
3.
By sandy cultivation and with normal nitrogen supply, this experiment determined the active of the proteolytic enzymes and the glutamine synthetase(GS) in blades and the active of glutamate z-oxoglutarate aminotransferase(GOGAT) in pods at different time during the later growing period,as well as determining the content of dissociated amino acid and L-Glutamine in the juice of phloem.
采用砂培试验,在正常供氮条件下测定油菜花后不同时期叶片蛋白水解酶、谷氨酰胺合成酶(gluta-mine synthetase,GS)和籽粒谷氨酸合酶(glutamate:z-oxoglutarate aminotransferase,即glutamate synthase,GOGAT)活性以及韧皮部汁液游离氨基酸和L-谷氨酰胺含量。
3)  GS+
GS+
1.
Based on the soil sample of the Linyi county and GS++ software,the spatial variation characteristics of the soil nutrients were studied.
根据临猗县实地采集的土壤样品,应用GS+软件对该地区土壤养分的空间变异特征进行研究,采用地统计学方法分析了土壤有机质与大量元素的空间变异。
4)  GSⅡ
GSⅡ
1.
[Methods] We used numerical taxonomy, 16S rDNA PCR-Restriction fragment length polymorphism(RFLP), sequences analysis of 16S rDNA and Glutamine synthetaseⅡ(GSⅡ)genes.
【方法】采用了数值分类、16S rDNA PCR-RFLP、16S rDNA和GSⅡ序列分析方法。
5)  HMW-GS
HMW-GS
1.
Changes of HMW-GS in Wheat Flour during Storage;
小麦粉贮存过程中HMW-GS变化研究初报
2.
Quality Analysis of Different HMW-GS Wheat Varieties Planted in Different Ecological Regions;
不同HMW-GS小麦品种在不同生态区种植品质分析
3.
Identification of Wheat Cultivars with Same HMW-GS and Their Quality Analysis;
相同HMW-GS组合小麦品种主要品质指标分析
6)  GS-I-B 4
GS-I-B4
参考词条
补充资料:8GS
分子式:C17H12Cl2N8Na2O9S2
分子质量:653.336
中文名称:活性嫩黄
英文名称:C.I.Reactive Yellow 86;Reactive Light Yellow X-7G;Mikacion Yellow 8GN;8GS;Procion Yellow MX-8G;M-8G
性状描述:淡黄色粉状,在水中的溶解度(50℃)为140g/L,水溶液呈淡黄色,加1N氢氧化钠溶液为黄色,再加保险粉并温热,成淡黄色,继加过硼酸钠成无色。在浓硫酸中呈黄色,稀释后转淡黄色;在浓硝酸中呈黄色,稀释后转淡黄色。染色时遇铜转红暗,遇铁无变化。属含二氯均三嗪活性基的单偶氮吡啶酮类活性染料。
生产方法:由间苯二胺双磺酸钠与三聚氯氰缩合,经重氮化后,与N-甲基-3-氨甲酰基-4-甲基-6-羟基-2-吡啶酮进行偶合,再经盐析;过滤及干燥而得。原料消耗(折100%强度,kg/t)三聚氯氰(95%) 225间苯二胺双磺酸(58.3%) 405亚硝酸钠(98%) 60盐酸(30%) 260N-甲基-3-氨甲酰基-4-甲基-6-羟基-2-吡啶酮(76.2%) 220纯碱(95%) 320尿素(工业) 10
用途:主要用于棉;粘胶纤维织物的染色的印花。本品色光带绿,为黄色中娇嫩品种一,尤其是浅色的气候牢度及氯浸牢度均较活性嫩黄X-6G好。有较好的日本牢度而无光脆现象,可代替还原黄GCN。本品可与活性艳红X-B;活性艳蓝X-BR组成三原色,拼染各种浅色。该品染色后经树脂整理,日本牢度及色光基本不变。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。