学生既操作离散元件,例如有电阻、电容、二极体和电晶体,又操作积体元件,例如有运算放大器。
They work both with discrete components such as resistors, capacitors, diodes, and transistors as well as with integrated components such as operational amplifiers.
你即将操作离散元件,例如有电阻、电容、二极体和电晶体,又操作积体元件,例如有运算放大器。
You will work both with discrete components such as resistors, capacitors, diodes, and transistors as well as with integrated components such as operational amplifiers.
考虑一均匀各向同性薄板结构,在其上下表面离散分布着压电执行元件。
An uniform distribution, isotropic thin plate, on which both surface there are discrete distribution piezoelectric actuators, is considered.
考虑一均匀各向同性薄板结构,在板面内受面力作用,且在板的上下表面离散分布着压电执行元件。
A homogeneous isotropic thin plate, on which the surface force ACTS and there are many actuators of discrete distribution, is considered.
基于反渗透膜元件指标的离散性,提出了膜元件在系统流程中安装位置优化的概念。
According to the discrete properties of ro element indexes, the concept of installing position optimization in the technological flow with ro elements was put forward in this paper.
所有元件可以离散配置或者至少部分地以集成电路形式配置。
All elements could be arranged discrete or at least partly in an integrated circuit manner.
压电元件是离散颗粒、压电纤维、纤丝、换能器和致动器的形式。
The piezoelectric elements are in the form of discrete particles, piezoelectric fibers, filaments, transducers, and actuators.
基于膜元件三大指标的离散性,强调了离线膜清洗时元件出厂测试指标对于污染评价的意义。
Based on the dispersing of RO-membrane performance, significance of tested indexes of new elements in fouling-estimating was emphasized.
该方法克服了传统刀口扫描法的缺陷, 消除了由于离散型光学元件的离散性产生的空间非平移不变性的影响,减小了测量误差,提高了精确度。
The method avoids the influence of non-isoplanantic result from the dispersancy position between the edge and the array for measured MTF, and its precision was improved accordingly.
在此基础上,用类似粘弹性三元件固体模型的形式去拟合离散的数值结果,得到了松弛模量更简单的解析表达式。
On base of those, effective relaxation moduli could be curve-fitted by the function form of the three-parameter solid model.
在此基础上,用类似粘弹性三元件固体模型的形式去拟合离散的数值结果,得到了松弛模量更简单的解析表达式。
On base of those, effective relaxation moduli could be curve-fitted by the function form of the three-parameter solid model.
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