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In the secondary when I physical Electrical very interested in, so I would like to e-learning professionals.

在中学的时候我就对物理的电学很感兴趣,所以我很想学电子专业。

Good Health Digital Therapeutic Equipment is a new generation healthcare product developed in accordance with theory of Traditional Chinese Meridians and Vessels, electrobiology, physics and modern microelectronic technology and in combination with abundant clinical practices.

健康宝'数码物理治疗仪是根据中医经络学、生物电学、物理学及现代微电子技术,并给合大量临床实践而研制开发出的新一代保健精品。

In combination with theory of Traditional Chinese Meridians and Vessels, modern electrobiology, physics, the method of lowering blood pressure dropping automatically release the high bioelectric currents in ear back channel at regular time and in fixed quantity by directly utilizing bioelectronics of body itself and through natural Therapeutical methods.

健康宝'数码物理治疗仪的降压功能是根据中医经络学理论,结合现代生物电学、物理学原理,以自然疗法刺激患者耳背的降压沟穴、通透'神门穴',来调控大脑中枢神经指挥交感神经和迷走神经平衡工作,从而达到舒经活血、平?

Mechanics and electrology both play dominant roles in the physics course in middle schools, but electrical concepts, more abstract than mechanical ones, are not only the difficulty of learning, but also the focus and difficulty of teaching.

物理概念是物理科学知识体系中最基本的部分,在中学物理课程中,力学和电学占据着主要地位,其中电学概念相对力学概念更抽象,是学生学习的难点,同时也是教师教学的重点和难点。

Then, the electric properties and magnetic properties of troilite were studied. The study results discover that troilite could be used as a kind of magnetic semiconductor.

对合成出的陨硫铁样品进行了电学和磁学等物理性能的研究,研究结果发现陨硫铁可以成为一种软磁性半导体材料,可望在今后得到应用。

It is well known that the physical and chemical properties of semiconductor nanomaterials highly depend on their size and shape, including optical, electrical, magnetic and catalytical properties.

中文摘要半导体纳米材料的光学、电学、磁学和催化等物理和化学性质不但与其大小有关,而且还与其形貌息息相关。

This article carried on the reading related activity and the physical question design and in the solution literature foundation to the related concept connotation and the related theory has combed with summarizes, proposed based on the active junior middle school physics question and the solution principle and the method, and has carried on nine grade electrophysics based on the active question design teaching practice, has formed four typical cases: Series circuit characteristic case, electric radiator electric current thermal reaction case, Electricity review class case and practice simple circuit design case, has obtained the positive result.

本文在阅读有关活动及物理问题设计与解决的文献基础上对相关概念内涵及有关理论进行了梳理与综述,提出了基于活动的初中物理问题与解决的原则与方法,并进行了九年级物理电学基于活动的问题设计教学实践,形成了四个典型的案例:串联电路特点案例、电热器电流的热效应案例、电学复习课案例和实践活动简单电路设计案例,取得了积极的结果。

As a try of this mode, this paper dilates the evolutive process of a simulantelectrical laboratory. The necessary subjective and objective conditions for the developing of this software, the softwares present developing situation and feasibilityof researching in the future are put forward.

作为对这种新型实验教学模式的一种探索,本文详细介绍了仿真物理实验室电学部分的开发过程,分析了开发这种新型软件所必需的各种主客观条件,软件开发目前已达到的实际水平、将来的发展方向、大规模开发的可行性及其应用前景。

The interdigitated SOI DTMOSFET's, and SOI DTMOS-based invertors and ring oscillators are also designed. By fabricating these experimental devices and circuits, a set of submicron thin film SOI CMOS and SOI DTMOS process technology, which can meet the aerospace application requirements, has been developed.

为满足航天用微电子电路的抗辐射、高速、低功耗、高可靠的要求,开展了适于超低压工作的SOI DTMOSFET的研究工作,对DTMOS器件的微观工作机理进行了分析和讨论,揭示了SOI DTMOS器件电学性能优于常规SOI MOS器件的物理本质,以及DTMOS器件与电路在航天领域的巨大应用潜力。

Diamond has many outstanding physical, chemical, optical, mechanical, and electrical properties such as the highest thermal conductivity, the extreme chemical inertness, the highest known hardness, the lowest compressibility of known material, high in Young's modulus, low in friction coefficient, wide in band gap, and a wide optical transparency bandwidth.

中文摘要钻石拥有许多优异的物理、化学、光学、力学与电学特性,例如它拥有最高的热传导系数、具化学惰性、具有最高硬度、高杨氏系数与低摩擦系数、具有宽能隙与宽的光学穿透频域。

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。

There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.

双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。