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Discussions on the salient features of the proposed methodology are highlighted using numerical examples.
The accuracy, efficiency, and practicality of the proposed methodology are highlighted through an application to a typical bridge structure.
After the discussion of various theoretical aspects, the time-domain responses are calculated for a three-layer sandwich beam containing viscoelastic materials and shape memory alloy wires and the main features of the modeling methodology are highlighted.
In this minireview the potential of MFA to increase the chances of success in metabolic engineering of plants is presented, recent progress related to engineering and flux analysis in central metabolism of plants is discussed, and some recent advances in flux analysis methodology are highlighted.
Discussions on the salient features of the proposed methodology are highlighted based on a set of illustrative numerical examples.
Strengths and limitations of the employed methodology are highlighted via comparisons with available experimental results, aiming at identifying some operative indications for choosing a suitable modeling approach (not much time-consuming and suitably accurate), useful for engineers facing the aerodynamic design of bridge structures.
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Application of the design and analysis methodology is highlighted through two illustrative case studies.
The methodology is highlighted using a single-stage side-stream partial nitritation/Anammox reactor as a case study.
The proposed methodology was highlighted through two DMC production processes, pressure-swing distillation and extraction distillation process.
In this paper, the methodology is highlighted through two case studies involving gasoline blends and lubricant base oils.
Through the process flowsheet for the production of Methyl Tertiary Butyl Ether, the application of the indicator based methodology is highlighted.
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