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Survey method, survey precision,classification and statistic analysis of Jiamusi City underlying surface were described.

阐述了佳木斯市下垫面的量测方法、量测精度、分类及统计分析;对下垫面状况的改变对地表径流量、陆面蒸发量、降水入渗量、包气带土壤水蓄变量的影响进行了分析。

According to the measurement, verify the theoretical property of each station, Mach number and turbine engine efficiency.

在引擎量测方面,根据分析计算的站位结果比照实体站位所量测的数据,验证引擎理论分析架构及各站位估计的组件工作效率。

In this system, EOG signals produced by the user's eye saccade movements are recorded through electrodes placing on the face, and then the signals are reconstructed and analyzed in real time. By constantly monitoring the electrooculogram signal of the user, the eye mouse is able to recognize several intentional eye motions and in turn, control the cursor on the computer screen.

在此系统中,眼动波讯号是使用者眼睛移动、注视所产生的,而眼动波是透过贴附在脸上的电极所量测到,电极量测到的讯号再即时的经过讯号处理与分析,藉由持续性的的量测眼动波讯号,眼滑鼠系统能够辨识多种眼睛刻意移动的讯号,透过此讯号能够控制电脑上的游标来做动作。

During the process of this research, the Otto configuration and KR configuration are used to proceed the special analysis on the chlorine and Halogen-methane, and through the simulative experimental investigation into the tiny variation of dielectric constants of Halogen gas, the resonant angle and depth of absorption of the to-be-investigated gas can be accurately measured. Thus, this optical measuring system can be confirmed with high sensitivity.

研究过程中,我们使用Otto组态与KR组态分别对氯气与卤族甲烷做特别的分析研究,经由卤族气体的微小介电常数差异,透过模拟实验分析后,仍然可以准确的判断出待测气体之共振角度与吸收的深度,所以利用此光学式量测系统来量测可说是具有相当之灵敏性。

And the emeraldine salts (ES2) of polyaniline were prepared by emeraldine base form of polyaniline doped with different acid dopants at room temperature. The structure and morphology of ES1 and ES2 were characterized by Fourier transform infrared spectrometer, Ultraviolet-Visible spectrophotometer and wide angle X-ray diffactometer, respectively.

并藉由傅立叶红外线光谱仪结构之鉴定,四点导电度计体积电阻之测定,黏度法重量平均分子量之量测,元素分析仪元素掺杂比之测定,紫外线-可见光光谱分析仪吸收波长之解析,X-ray绕射分析仪分子形态之分析,低频/高频阻抗分析仪介电行为之探讨,以及同轴量测系统电磁波遮蔽效应等之量测。

FeSi nanoparticles were synthesized via thermal decomposition of iron pentacarbonyl in the solution of dioctyl ether, stabilizers oleic acid and oleylamine. The TEM images showed that FeSi nanoparticles had cubic shape, but it seemed that the composition was not uniform. According to the EDS results, the Fe:Si ratio of gray-uniform nanopaiticles was almost 1:1, and blacker FeSi nanoparticles contained more Fe atoms. Although FeSi didn't have uniform structure, it still could be proved that the incorporation of Fe and Si existed in a single nanoparticle. All possible structure, lattice, binding, morphology, surface condition would be discussed. These results indicated that perhaps FeSi2 was the main structure of the new products; however, due to incompletely combination and less synthesized time, it might still contain some part of Si and Fe structure. Besides, FeSi nanoparticles preserved the optical properties from Si atoms, but the PL intensity was much lower. The maxima PL peak appeared at 388 nm with the excitation at 300 nm. Their saturation magnetization, remanent magnetization and coercivity were measured by the SQUID, exhibiting their nearly superparamagnetic behavior.

利用热裂解系统可成功将研磨矽奈米粒子及五羰铁结合,制备出铁矽奈米粒子;从穿透式显微镜照片可知其粒子呈现立方体型态,但颜色深浅及组成不均,EDS结果则显示颜色均匀之粒子铁与矽之组成大致为1:1,颜色较深之粒子则含有较高量的铁元素;尽管组成比例并不统一,但单颗粒子同时含有矽与铁两种元素,初步说明铁矽奈米粒子之形成;进行多种结构与表面分析并探讨所有可能之键结、结构及表面元素后,推测铁矽奈米粒子可能以FeSi2之结构形成,并同时包含未重组完成的矽及铁之结构;利用PL分析得知铁矽奈米粒子确实保留矽之放光特性,并在300 nm激发光源下,於波长388 nm处有一最强放光特性峰,但整体发光效益不及研磨矽奈米粒子之结果;最后,利用超导量子干涉磁化仪量测其饱和磁化量、残留磁化量、与矫顽磁力,发现磁滞现象并不明显而几乎呈超顺磁性。

From existing literature, we understand that the nano Superconducting Quantum Interference Device has the ability to detect tens or hundreds of electron spin. In addition, it has a high capacity for nano-particle coupling as well as an extremely high sensitivity to detect flux. This study analyzes the characteristics of the nanoSQUID, uses the Focused ion Beam system to create nanoSQUIDs ranging in size and in thickness of the niobium thin film, and examines the physical properties of nanoSQUIDs.

中文摘要从文献中我们了解到nanoSQUID是有能力侦测到数十或是数百个电子自旋的能力,而且对於奈米粒子耦合的程度很高,并且量测到的磁通会有很高的灵敏度,所以本篇论文主要是探讨并分析nanoSQUID的性质与特性以及使用聚焦离子束系统来制作不同逼近尺度以及不同深度铌薄膜的nanoSQUID并量测其物理性质。

However, the mechanics of soft tissue is the critical in influencing the whole plantar pressure. We use an instrument to measure the load and displacement relationship of heel pad that development by our laboratory to measure mechanics of soft tissue in order to approach approximately to the experiment data. Then make use of the curve fitting to obtain material parameter that necessary of analysis. Finally, the result and experiment will be verified.

而软组织的力学性质是影响整体足压大小的关键,为了使研究的分析结果更接近实验数值,软组织力学性质量测利用实验室所开发的软组织力量位移量测器取得,再利用曲线模拟的方式得知分析所需材料参数,最后将分析所得结果与实验进行验证。

As to verified experiment, this research in addition to explore the subjective evaluation and four items of objective shooting performance (operating posture angle, the degree of muscular activity, stability and accuracy), collect the critical data by extremities angle analyzer, EMG recorder and pressure acquisition analysis system to give human factor performance evaluation simultaneously in order to regard as the reference of the design and measured model construction for follow-up 90 mm pistols.

就实证实验而言,本研究除了探讨主观评比及四项客观射击绩效(射击操作姿势角度、肌肉活动度、稳定性及准确度),并利用肢体角度分析系统、EMG量测仪及压力撷取分析系统等同步搜集数据,进行人因绩效评估,以作为后续90mm手枪设计及量测模式建置之参考。

During the experiment, we choose Toyota Corona 1600cc as a test car and measure its maximal acceleration value by means of palm vibration noise analyzer, on conditions of the same tire pressure, speed, load, and road section and measure fuel consumption in a fixed speed and mileage. In addition, by using tire pressure gauge and infrared thermometer, measure after-driving tire pressure and tire temperature to make a comparative analysis. Finally, we use 185/60 R-14 Goodyear tire to measure tire sinkage in an empty car and a loaded car and obtain tire compression ratio to explain the difference of riding comfort and economical consideration of fuel consumption between nitrogen-filled tires and compressed air tires.

在实验时,采用丰田Corona 1600cc轿车,在相同的胎压、车速、负载、路段等条件下,透过掌上型振动噪音分析仪,撷取车辆行驶之最大峰值加速度;并在稳定车速及固定里程下量测汽油之消耗量,再以胎压表和红外线温度计,量取行驶后之胎压和胎温值来作比较分析,最后,再使用185/60 R-14 Goodyear 轮胎,在车上量测空车及负载下轮胎的下沉量,并求得轮胎的压缩率变化值,来说明氮气轮胎与一般压缩空气轮胎,在乘坐舒适性及燃油经济性上的差异原因。

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