2)  Microfluorescent monitor
					 
	
					
				
				 
	
					
				显微荧光监测
			
					3)  micro monitoring system
					 
	
					
				
				 
	
					
				显微监测系统
				1.
					According to the relationship between turning tools\' wear and work-piece texture,a micro monitoring system is researched and designed.
						
						根据车刀磨损与工件表面纹理内在关系,研究和设计了显微监测系统。
					
					5)  microscopy
					[英][mai'krɔskəpi]  [美]['maɪkrə,skopɪ]
					 
	
					
				
				 
	
					
				显微观测
				1.
					The possibility of wheat straw treated with water and alkali solution used as bio-briquette binder was studied by orthogonal experimental method,then the briquetting mechanism of bio-briquette was studied by FTIR and microscopy.
						
						通过正交实验研究了小麦秸秆经"水浸-碱煮"处理制备生物质型煤黏结剂的可能性,在此基础上,利用红外光谱仪和显微观测系统研究了生物质型煤的成型原理。
					2.
					Maize stalk and bio-briquette binder made from it were studied comparatively by FTIR,and the microstructure of bio-briquette were observed and analyzed by microscopy.
						
						采用红外光谱对玉米秸秆原料与其经处理制得的生物质型煤黏结剂进行了对比研究,并借助显微观测系统对生物质型煤的微观结构进行了观察分析。
					
					6)  microthermometry
					 
	
					
				
				 
	
					
				显微测温
				1.
					By the microthermometry of melting inclusion,daughter crystal of halitebearing inclusion,three-phase of CO2 inclusion and twophase of H2O inclusion in Guojialing intrusive in Jiaodong gold mineralization field.
						
						通过对胶东金成矿区郭家岭岩体中熔融包裹体、含石盐子晶包裹体、CO2三相包裹体和H2O两相包裹体的显微测温,结果表明,该岩体在岩浆结晶晚期发生过高盐度流体与硅酸盐熔体的不混熔过程。
					2.
					In order to discuss the reliability of the decrepitation technique,microthermometry is applied to determine the decrepitation temperature of fluid inclusions in quartz samples collected from Dajish.
						
						为了讨论爆裂法测温技术的可靠性,在前人研究的基础上,利用冷热台对大吉山钨矿含矿石英脉中的包裹体爆裂温度进行了显微测温,分析了包裹体个体大小对爆裂温度的影响,发现两者之间存在着明显的反相关性;同时,对数据的进一步分析发现爆裂法测温曲线反映的爆裂峰是2期3类包裹体爆裂叠加的结果,但是实验测得的爆裂温度区间与爆裂法测温结果基本上是吻合的,这说明爆裂法测温技术虽然有较多的影响因素,但是在一定程度上是可靠的,尤其是在找矿勘探方面其潜力很大,值得推广应用。
					补充资料:高分辨电子显微镜(见高分辨电子显微术)
		高分辨电子显微镜(见高分辨电子显微术)
high resolution electron microscope
高分辨电子显微镜high resolution eleetronmieroseope见高分辫电子显微术。
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