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The plug flow evolution as a function of time is described using DPIV.
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Autonomous, deterministic, and time continuous systems are unambiguously described by the flow in phase (or state) space, which provides a quantitative description of a system's evolution as a function of its current state (see Figure 2).
Microstructures and magnetic properties evolution as a function of annealing current were studied and interpreted with different techniques.
The proposed model predicts G′ evolution as a function of temperature, and considers the final torque (Γf) of the sheared stage as an inductor of molecular flow alignment.
The damage mode and damage evolution as a function of fatigue deformation are identified.
Figure 2 Evolution as a function of strain rate.
Figure 1 Evolution as a function of mean grain size.
Figure 8 Global mean signal power evolution as a function of longitude.
The microstructural evolution as a function of sintering temperatures was shown in Figure 4.
Figure 9 Au droplet evolution as a function of the DA.
Evolution of the mass flow rates as a function of heat flux in steady state condition are presented and compared to a numerical model that have been developed to assist the design of such a cooling scheme.
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