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The fourth of these principles, the principle of maximum power efficiency, takes central place in the analysis and synthesis of ecological systems. The fourth principle suggests that the most evolutionarily advantageous system function occurs when the environmental load matches the internal resistance of the system. The further the environmental load is from matching the internal resistance, the further the system is away from its sustainable steady state. Therefore, the systems ecologist engages in a task of resistance and impedance matching in ecological engineering, just as the electronic engineer would do.
 
The fourth of these principles, the principle of maximum power efficiency, takes central place in the analysis and synthesis of ecological systems. The fourth principle suggests that the most evolutionarily advantageous system function occurs when the environmental load matches the internal resistance of the system. The further the environmental load is from matching the internal resistance, the further the system is away from its sustainable steady state. Therefore, the systems ecologist engages in a task of resistance and impedance matching in ecological engineering, just as the electronic engineer would do.
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这些原则中的第四条,即最大功率效率原则,在生态系统的分析和综合中占据中心地位。第四个原则认为,当环境负荷与系统内部阻力相匹配时,系统功能发生最有利于进化的变化。环境负荷与内阻的匹配越小,系统离可持续稳定状态越远。因此,系统生态学家像电子工程师一样,在生态工程中从事抵抗和阻抗匹配的任务。
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原理中的第四条,'''<font color="#ff8000">最大功率效率原则 Principle of maximum power efficiency</font>''',在生态系统的分析和综合体中占据中心地位。第四个原则认为,当环境负荷与系统内部阻力相匹配时,系统功能将发生于进化最有利的改变。环境负荷与内阻的匹配越小,系统离可持续稳定状态越远。因此,系统生态学家像'''<font color="#ff8000">电子工程师 electronic engineer</font>'''一样,在生态工程中从事匹配电阻和阻抗的任务。
    
==Closely related fields==
 
==Closely related fields==
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