Abstract
The issues of modeling the processes of self-organization and self-assembly in complex nanoelectromechanicalsystems (NEMS) with binary-conjugated functional elements of sub-systems are considered, and the emergence of the effect of self-organization in them is investi-gated. On the basis of the proposed modeling principles, the possibility of creating NEMS products with the combination of operating harmoniously technical and natural functional el-ements (for example, complex multi-element systems of nonlinearly connected molecular mo-tors of different structures) is established.
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