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In addition to the uncertainties of measuring toxicity of traditional substances, the assessment of ENM toxicity must also consider uncertainties related to dispersion of ENMs in environmental matrices and dynamic changes that can occur to these materials during toxicity tests (e.g., dissolution, agglomeration, and interactions with materials present in test media).
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The inversion error is calculated with respect to the control law and two matrices (inertia and dynamic damping matrices) which express the deviation of the estimated matrices relative to the calculated ones (the matrices from the nonlinear dynamics of MAV׳s) in conditions of absolute stability in closed loop system by using the Lyapunov theory.
The DTW algorithm itself is used for measuring similarity between temporal sequences, based on a distance matrix and dynamic programming.
Theorem 4 provides a sufficient condition for stability but decoupling between stability matrix and dynamic matrix in (12) allows to use the parameter-dependant stability matrix X defined by (13).
We propose a hybrid circle reservoir (HCR) ESN architecture that comprises the following features: (1) built with low complexity circle reservoir; (2) partly injected with wavelet-neurons; (3) uses fixed connection weights in both input matrix and dynamic reservoir matrix.
This model has exact shape function and dynamic stiffness matrices, and dynamically consistent load vector, which can be used to analyze broadband coupled wave propagation in composite beam waveguide.
However, the coupling between stability matrix X and dynamic matrix A prevents from directly using a parameter-dependent stability matrix X cl.
It is proven that decoupling of stiffness matrices and accordingly dynamic isotropy for both kinematic arrangements are possible.
To obtain high accuracy of restored signal for NESTA, μ=10−10 is used for partial DCT sensing matrices and various dynamic range parameters.
Both heuristic information and phenomenon are described as multiple matrices and a dynamic random weighted strategy is introduced to compute selection probability.
To shed light on this paradox, we have developed a biomechanical model of the intact airway, accounting for strain-stiffening due to collagen recruitment (a large component of the extracellular matrix (ECM)), and dynamic actomyosin-driven force generation by ASM cells.
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