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The analysis uses an assessment approach for material flow and carbon flow of the forestry and wood products chain according to [36].
This chapter presents a systematic approach for material characterization, analysis, and design of all-fiber-reinforced polymer or plastic (FRP) composite structures.
These results confirm the accuracy of the developed approach for material parameter identification, which can be used also in combination with in-situ tests for assessing existing structures.
Using a systematic and multipronged approach for material characterization and employing critical biological endpoints, we determined the impact of the physicochemical properties of fullerenes on cellular interactions.
This work presents an alternative approach for material screening, aiming at investigating under high throughput (HT) conditions key features like kinetic and thermodynamic parameters in catalysis and gas adsorption.
The study has successfully demonstrated that non-linear regression technique based optimization for targeted material design of heterogeneous composites with multiple performance goals may prove to be a sound and viable engineering approach for material designers.
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In this study, a generic approach for material-supply-driven project planning and control optimization is adapted into an application framework for scheduling the spool fabrication operations.
Remarkable improvements have been made using bio-inspired approach for materials synthesis due to possible control of physico-chemical properties.
Rapid solidification has been and continues to remain an important processing approach for materials.
Much less established is the composition spread approach for materials development [IBM J. Res. Develop. 13 (1969) 696; J. Mat. Sci. 5 (1970) 964].
Recently, a wide range of nanotechnologies has been approached for material modification by realizing the fact that the extracellular matrix (ECM) consists of nanoscale components and exhibits nanoscale architectures.
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