等势线的英文
音标:[ děngshìxiàn ] 发音:
"等势线"怎么读用"等势线"造句
英文翻译手机版
- equal potential line
- equipotential lines
- equipotentialline
- isopiestic line
- isopiestics
- isopotential curve
- isopotential line
- line of equal potential
- potential line
- "等"英文翻译 class; grade; rank
- "势"英文翻译 power; force; influence
- "线"英文翻译 thread; string; wire
- "等势线,等位线" 英文翻译 : equipotential line
- "等势线间距" 英文翻译 : equipotential line spacing
- "等势" 英文翻译 : equinumerosity; equipotentiality; equivalence; unipotential
- "趋势线" 英文翻译 : trend line; trendline by angles; trendlines
- "等势层" 英文翻译 : equipotential layer
- "等势的" 英文翻译 : equipotential; gleichmaechtig equipotent; isopotential; unipotential
- "等势法" 英文翻译 : equipotential method
- "等势环" 英文翻译 : equipotential ring
- "等势集" 英文翻译 : equipotent set
- "等势面" 英文翻译 : equipotential plane; equipotential surface; equipotentialsurface; equiscalat surface; isopotential level; isopotential surface; level surface; surface of equal potentials
- "等势片" 英文翻译 : equipotential plate
- "等势图" 英文翻译 : potentiometric map
- "当量趋势线" 英文翻译 : equivalent trend line
- "等速度势线" 英文翻译 : equipotential curve of velocity
- "等位势线" 英文翻译 : isopotential
- "等自电势线" 英文翻译 : self-potential contour
- "基准趋势线" 英文翻译 : reference trend line
- "角度趋势线" 英文翻译 : trendline by angles
- "趋势线概化" 英文翻译 : line generalization
- "下降趋势线" 英文翻译 : downtrend line
- "线性趋势线" 英文翻译 : linear trend
- "压实趋势线" 英文翻译 : compaction trend line; line
例句与用法
- This article through studying on the solution and description of the equipotential line and power line for the static field and electrostatic shielding partial contents , comprehended recent development in modern physics teaching , as well as problems
本文通过研究静电场等势线和电力线的求解与描述以及电偶极子的电荷禁闭,领悟到了现代物理教学的新发展,但同时也发现了物理教学中存在的一些问题。 - A method of plotting the isovalue line of implicit functions by computer is introduced , the comparison of our method with traditional method of intensity scaling is given . by using of our method , some examples of isopotential and interference in college physics are displayed
通过介绍有关隐函数等值线的计算机绘制方法,与传统的物理图形强度定标法作了比较.用此方法举例模拟了大学物理课程内容中电荷等势线和波的干涉图象 - With the use of finite method we have developed computer simulation software for vacuum microtriodes with wedge - shaped and cone - shaped cathode on the basis of stduying deeply the field emission theory of vacuum microelectronics . the software included field section , grid point numbering , and the calculation of electric currents , transconductance and cathode capacitance , moreover , it can simulate the properties of vacuum microeletronic with variant structures and sizes . the relationship was studied and simulated among electic properties and device structures , sizes and cathode materials etc . the optimized design of vacuum microtiode was proposed
本文在深入研究真空微电子器件场致发射理论的基础上,根据圆锥形、楔形阴极真空微电子三极管的不同特点,分别建立了物理和数学模型,在考虑空间电荷密度影响的前提下,以有限元法为基础采用迭代的方法计算出真空微电子三极管内的电势分布情况,绘制出了等势线、电子轨迹线,并得到了器件电学性能随几何参数的变化情况。 - But due to the difficulties of the theoretical calculation and the limitation of the technique of image display , only some two - dimensional graphs of electromagnetic field of a planar set of point charges or symmetrically and uniformly charged bodies , which ignores the boundary effect , are introduced in the present electromagnetics teaching materials , which brings much incovenience for the acquaintance of the electrostatic field
然而,由于受理论计算和图象显示技术等因素的限制,目前的电磁学教材中,通常只能给出平面分布的点电荷系或具有较强对称性、忽略边界效应的带电体的电力线和等势线的二维平面图,这给静电场分布的感性认识带来了一定不便。 - The main work can be summed up as follows : firstly , we studied the thermal - field properties of vcsels , and analyzed the influences of current spreading , material parameters and operating conditions on the temperature distributions . secondly , we began with the electrode voltage and calculated the equipotential s distributions , compared the distributions of voltages and current densities in different depths of vcsels , and then studied the influences of the oxide - confining region with different position or thickness , and the different sizes of the gain - guided aperture and emitting window on the distributions of the injected current density , carrier concentration and temperature in the active region . thirdly , we realized the coupling of electricity , optical and thermal - fields , worked out the threshold voltage , calculated the distributions of the injected current density , carrier concentration and temperature under different offset voltages , and analyzed the impacts of temperature profile and carrier density on the refractive index , fermi levels and optical - field
具体工作可以概括如下:首先,研究了vcsel的热场特性,分析了电流扩展,材料参数和工作条件对于温度分布的影响;其次,从电极电压入手,计算出激光器中的等势线分布,并对不同深度处的电压和电流分布进行比较,研究了高阻区的不同位置和不同厚度、限制层和出射窗口半径的大小对电流密度、载流子浓度和温度分布的影响;再次,实现了电、光、热耦合,求出了阈值电压,计算了不同偏置电压下的电流密度分布、载流子浓度分布和热场分布,分析了温度和载流子浓度变化对折射率、费米能级和光场的影响;最后,给出了考虑n - dbr和双氧化限制层时激光器中的等势线分布,分析了n - dbr和双氧化限制层对vcsel电流密度、载流子浓度、温度和光场分布的影响。
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