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In the two classes of system discussed in this section, logical considerations lead to the construction of theories in which "familiar" parts of the world look quite different.
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For these two classes of systems, we also provide an alternative stability proof via the construction of a novel Lyapunov functional.
Two classes of systems are considered: (1) the saturation nonlinearity is additive to the quadratic nonlinearity; (2) the saturation nonlinearity is multiplicative of a state-dependent matrix.
It examines two classes of systems, centralized and distributed, and describes the key features of the two current MAC specifications for UWB systems, the Certified WUSB specification, and the WiMedia Distributed MAC specification.
In this paper, we apply DFT and MBPT to the calculation of the structural, electronic and optical properties of two classes of systems: pure and alloyed Si/Ge nanocrystals (NCs) embedded in wide band gap SiO2 matrices, and free-standing SiGe mixed nanowires (NWs).
Indeed, although the RMS are not often considered as a type of TAS, this seems to be due more to tradition than to a true, fundamental difference between the two classes of systems [ 3].
Three classes of systems are considered.
The use of this notion is demonstrated for three classes of systems.
The parametric Lyapunov equation based approach is utilized to design stabilization controllers for these three classes of systems.
We compare four classes of systems: pure serial lines, pure parallel lines, short serial lines arranged in parallel, and short serial lines arranged in parallel with the ability to move products between the lines (i.e., with crossover).
After surveying the various processing methods and key deformation mechanisms, we systematically address the current state of the art in terms of plastic localization, damage, static and fatigue cracking, for three classes of systems: (1) bulk ultra-fine grained and nanocrystalline metals, (2) thin metallic films on substrates, and (3) 1D and 2D freestanding micro and nanoscale systems.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com