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   电路器件 在 物理学 分类中 的翻译结果: 查询用时:0.524秒
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电路器件
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  circuit element
    The result shows that the quantum fluctuations of the voltage and current of each branch are related with parameter of the circuit element, quantum states, and decay according to exponent along with time.
    结果表明,各支路电流电压的量子涨落均与电路器件的固有参数及所选量子态有关。
短句来源
    The result shows that the quantum fluctuations of the voltage and current of each branch are related with parameter of the circuit element, and decay with time.
    结果表明,各支路电流电压的量子涨落均与电路器件的参数有关,且随时间衰减
短句来源
    The result shows that the quantum fluctuations of the voltage and current of each branch are related with parameter of the circuit element,and also related with temperature,and decay with time.
    结果表明,各支路电流电压的量子涨落均与电路器件的参数以及温度有关,且随时间衰减.
短句来源
    The result shows that the quantum fluctuations of the voltage and current of each branch are related with parameter of the circuit element, and also related with temperature and decayed with time.
    结果表明,各支路电流电压的量子涨落均与电路器件的参数以及温度有关.
短句来源
    The result shows that the quantum fluctuations of the voltage and current of each branch relate with parameter of the circuit element,temperature,and decay according to exponent along with time.
    结果表明,各支路电流电压的量子涨落不仅与电路器件的参数有关,还与温度有关,而且随时间按指数规律衰减.
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  “电路器件”译为未确定词的双语例句
    It is shown that the quantum fluctuations of a mesoscopic LC circuit depend on not only the circuit component parameters,but also the temperature.
    结果表明,有限温度下介观LC电路中的量子涨落不仅与电路器件参数有关,而且与温度也有关。
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  circuit element
Physical Principles of Laser Simulation for the Transient Radiation Response of Semiconductor Structures, Active Circuit Element
      
Physical principles of laser simulation for the transient radiation response of semiconductor structures, active circuit element
      
The limiter comprises a seriesconnected dc circuit element immersed in liquid nitrogen.
      
It is shown that the properties of such a circuit element differ greatly from those of a conventional MIM diode.
      
Current can be transferred to the load of an inductive energy storage device by rapidly increasing the inductance of a circuit element connected in parallel with the load.
      
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Mesoscopic dissipative parallel LC circuit is quantized by the method of damped harmonic oscillator quantization. We studied quantum fluctuations of the voltage and current of each branch in Fock state and squeezed vacuum state. The result shows that the quantum fluctuations of the voltage and current of each branch are related with parameter of the circuit element, quantum states, and decay according to exponent along with time.

对介观耗散LC并联电路作阻尼谐振子处理,将其量子化。在此基础上,研究了Fock态及压缩真空态下,介观耗散LC并联电路中各支路电流和电压的量子涨落。结果表明,各支路电流电压的量子涨落均与电路器件的固有参数及所选量子态有关。

Mesoscopic series-parallel connected RLC circuit is quantized using the idea of damped harmonic oscillator operation. Quantum fluctuations of the voltage and current of each branch in vacuum state are studied with this basic theory. The result shows that the quantum fluctuations of the voltage and current of each branch are related with parameter of the circuit element, and decay with time.

借鉴阻尼谐振子的量子力学处理的研究思想,将介观RLC串并联电路量子化.在此基础上,研究了真空态下各支路电流和电压的量子涨落.结果表明,各支路电流电压的量子涨落均与电路器件的参数有关,且随时间衰减

By the method of damped harmonic oscillator quantization, mesoscopic series-parallel connection RLC circuit is quantized. On this basic theory,we studied quantum fluctiuations of the voltage and current of each branch in thermal vacuum state. The result shows that the quantum fluctuations of the voltage and current of each branch are related with parameter of the circuit element,and also related with temperature,and decay with time.

利用阻尼谐振子量子化方法,将介观RLC串并联电路量子化,在此基础上,研究了热真空态下,各支路电流和电压的量子涨落.结果表明,各支路电流电压的量子涨落均与电路器件的参数以及温度有关,且随时间衰减.

 
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