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The system dynamic is described by a linear, time-invariant model deduced from the Saint-Venant equations.
The nature of solar irradiance and its geographic dynamic is described, and various solar collector architectures and plant topologies are presented, including hybridization of solar with storage and alternative thermal resources, and the cogeneration possibilities of diverse applications including industrial and distributed generation scenarios.
Assume that each vertex dynamic is described by a feedback interconnection of a linear block and a nonlinear element.
The behavior of the leader's dynamic is described as follows: dot{x}_{i}(t)=Ax_{i}(t),quad i=M+1, ldots,N, (30) where (x_{i}(t)) is the ith leader's position, A is a constant matrix.
Suppose that we have a system whose dynamic is described by a stochastic differential equation as follows: for ((t,x in[0,T]times mathbf{R}^{m}), textstylebegin{cases} X_{s}^{t,x}= x+ int_{t}^{s} sigma u,X_{u}^{t,x}),dB_{u},quad sin [t,T ] ; X_{s}^{t,x}= x,quad sin[0,t].
On the other hand, in many applications the dynamic is described by a differential operator also depending on the state variable, like (a(x)x')' for some sufficiently regular function a(x), which can be everywhere positive [non-negative] (as in the diffusion [degenerate] processes), or a changing sign function, as in the diffusion-aggregation models (see [7], [11 13]).
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Ocean's Twelve earned $362 million worldwide, and Pitt and Clooney's dynamic was described by CNN's Paul Clinton as "the best male chemistry since Paul Newman and Robert Redford".
A similar dynamic was described for the Tillamook Bay estuary (Oregon, USA), for which elevated estuarine flushing rates produced by high river discharge limited nutrient uptake by phyto- and bacterioplankton, resulting in enhanced nutrient delivery to the coastal ocean [32].
A practical method for the determination of the dynamic random response of an indeterministic structure excited by a random stationary dynamic load is described.
The electronic architecture and dynamic signal processing capabilities of an artificial dendritic tree that can be used to process and classify dynamic signals is described.
The uncertainty in the dynamic system is described by a relative entropy constraint.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com