Remember u, right? That's our system energy.
还记得u吗?这是系统的能量。
Still going to be proportional to the total system energy.
,仍然正比于,系统的总能量。
An incredibly tiny fractional variation in the system energy.
极小的变化部分,对于系统能量是一个。
And then the system energy would simply be the total number of molecules times that.
那么系统能量仅仅,是这个平均值乘以总分子数。
The software achieves the system energy saving objective by optimizing each module.
通过对各子模块的优化,来实现整个系统节能的目标;
The power module changes 5v input power into 3.3v and 1.8v, for supply the system energy.
电源模块的作用是将5v的输入电压转化为3.3 V和1.8 V输出,为系统供电。
The research is important to guide air conditioning system energy saving and optimization design in large space building.
同时表明该模拟研究对高大空间建筑空调系统节能与优化设计具有重要的指导意义。
Secondary regulation system with the purpose of high efficiency and energy saving can recycle and reuse the system energy.
二次调节系统以高利用率和节能为目的,对系统能量进行回收再利用。
Energy Study and HVAC Suggestions, the application of green concept into projects, double-skin facade system energy analysis.
能耗研究和空调系统优化建议,绿色概念应用,双层幕墙系统能耗哦分析。
Using the model and calculation formula, one can evaluate the system energy consumption and find out the energy loss factors.
该能量转换分析模型和计算公式可判断系统的用能水平,寻找系统的用能薄弱环节。
Energy saving technology research and development and use of the hvac system, construction is the foundation of system energy saving.
节能技术的研究开发和运用是暖通空调系统、建筑系统节能的基础。
Thus, reducing energy consumption in memory subsystems becomes one of the most efficient ways to decrease the system energy consumption.
降低存储子系统能耗已经成为降低整个系统能耗的有效手段。
Variable voltage processors, if used properly in designing real-time embedded systems, can dramatically reduce system energy consumption.
在设计实时嵌入式系统时,如果能够善于利用可变电压处理器,可以极大减少系统的能耗。
Thus by means of this chart for analyzing the process of medium-sized ammonia plants, the key to lower the system energy loss can be found.
并进一步根据所推出的公式,绘制成含氨混合气的有效能图。应用该图对中型氨厂流程进行分析,能很快地找到降低系统能耗的关键所在。
The paper studies methods of utility system energy synthesis and optimum design by using mathematic programming, which is an effective tool.
本文采用数学规划这一强有力的工具对公用工程系统能量综合和最优设计方法进行研究。
As it gradually increases, the discontinuous border of the system function appears, and the jump of the system energy at it also becomes bigger.
随着保护区逐渐增大,系统函数的不连续边界出现,而且系统在此边界处的能量跳跃也逐渐增大。
The synthesis of Heat Exchanger Network (HEN), aimed at reclaiming maximum system energy by means of pinch theory, often results in closed match loops.
依据夹点理论通常会产生以最大限度地回收系统能量为综合目标的换热网络综合,同时会产生一些闭合的匹配回路。
The surface relaxation and reconstruction are reproduced in the NEMD computational approach, which leads to the increase of system energy during simulation.
晶体的表面弛豫和表面重构现象导致了MD模拟中体系总内能的升高。
And if you have a countable number of molecules in your system, then if one molecule suddenly captures a lot of energy, then the whole system energy will go up a lot.
如果系统中只有少数分子,要是某个分子突然得到了大量能量,系统能量也会有显著的升高。
This paper addresses the effect of non-isothermal mixing on system energy target in heat integrated water networks, and proposes the concept of "split temperature".
本文讨论了能量集成水网络中非等温混合对系统能量目标的影响,提出了分割温度的概念。
From energy point of view, a bounded damping feedback control method is proposed to achieve chaos control by reducing system energy for a class of nonlinear system.
从能量角度提出了有界阻尼反馈控制方法,通过减少系统能量实现一类非线性系统的混沌控制。
The system composite curve, general composite curve and balanced composite curve were gained by using authorized formally software UMIST to calculate the target of system energy.
使用英国U MIST正式授权的计算软件对系统能量目标进行了计算,得到了系统组合曲线图和总组合曲线图及平衡组合曲线图。
The dynamic equations were derived from the system energy equations, and vehicle-human system vibration simulation in time domain as well as experiment verification was carried out.
模型中引入了四轮相关路面激励和人体模型,以能量方程推导出系统的动力学方程,进而对系统的振动过程进行了时域模拟和试验验证。
The system produced enough energy to heat several thousand homes.
系统产生的能量足以给几千户人家供暖。
In areas where the wind dies down, backup electricity from a utility company or from an energy storage system becomes necessary.
在风能不稳定的一些地区,需要供电事业公司或者能量储存系统来提供备用电能。
They are the radius of the orbit, the energy of the system and the velocity of the electron, and I am just going to present you the solutions.
它们是轨道的半径,系统的能量以及电子的速度,我接下来给你们展示解法。
Plants can't run away from danger, so investing energy in a body system which recognizes a threat and can feel pain would be a very poor evolutionary strategy, according to the article.
根据这篇文章的观点,由于植物无法逃离危险,所以将能量投入到能够识别威胁并感知疼痛的身体系统中,是一个非常糟糕的进化策略。
Plants can't run away from danger, so investing energy in a body system which recognizes a threat and can feel pain would be a very poor evolutionary strategy, according to the article.
根据这篇文章的观点,由于植物无法逃离危险,所以将能量投入到能够识别威胁并感知疼痛的身体系统中,是一个非常糟糕的进化策略。
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