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In this paper, based on the derived RST synchronization mechanism, we develop a new robust image watermarking that is resilient to RST.
To evaluate the performance of the proposed mechanism, we develop an analytic model to estimate reliable and accurate bandwidth of the AP and demonstrate through testbed measurement with various experimental study methods.
Based on a combination of inertial effects due to phonon drag and this observed bypass mechanism, we develop a temperature dependent critical resolved shear stress (CRSS) model, which is in excellent agreement with long-standing measurements of the CRSS temperature dependence of Cu Co alloys, and those obtained from MD simulation.
To gain better understanding of the interplay of transport mechanism, we develop numerical model for micro-mixing in micro-channel T-junction with wavy structure; the model considers single phase mixing of laminar Newtonian miscible fluid and it solves for conservation of mass, momentum and species.
To address the inevitable randomness in the intrinsic apoptosis mechanism, we develop a theoretical and computational modeling framework of intrinsic apoptosis pathway at single-cell level, accounting for both deterministic and stochastic behavior.
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Based on the above presented behavioral mechanism, we developed an agent-based model to simulate the formation of cooperation in the use of irrigation system in a village.
In order to access the initial kinetics and the mechanism, we developed a reactor that provides information under non-steady state conditions.
According to this mechanism, we developed a smart interface management, insertion of a monolayer-thin strain-neutral GaAs, to avoid diffused interfaces and morphology degradation.
To understand this toxic RNA gain-of-function mechanism we developed a Drosophila model expressing 60 pure and 480 interrupted CUG repeats in the context of a non-translatable RNA.
To further dissect this mechanism, we developed a Drosophila tissue culture assay.
DOI: http://dx.doi.org/10.7554/eLife.02758.018 To test this hypothetical mechanism, we developed a 'diffusion-binding' model ('Materials and methods') that was constrained by experimentally-determined parameters (Table 2) to best reflect the in vivo situation.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com