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This paper evaluates the predictive validity of the functional build approach by utilizing a design of experiment to examine the effect of two factors build fixture and method of attachment in constructing functional build preproduction assemblies of stamped sheet metal components.
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The directional growth experiments of graphite-like structured MoS2 crystallites have been conducted by utilizing a designed sample cell assembly under high pressure (2.0 and 5.0 GPa) and high temperature (700 °C).
By utilizing a novel design of an electronic device with microfabricated through-etched slits for transmission electron microscopy (TEM), single-walled carbon nanotubes (SWNTs) suspended over two metal electrodes were successfully characterized.
Using data collected from 835 low-income ethnically diverse community women, this study extends previous research by utilizing a longitudinal design, considering men's and women's alcohol use, and examining multiple forms of abuse.
These limitations limit us from making any causal conclusion, and these limitations can be improved in future studies by utilizing a longitudinal design with multiple data sources.
These parameters and lot-to-lot variability in raw material were then evaluated by process characterization utilizing a design of experiments approach consisting of a face-centered central composite design integrated with a full factorial design.
Then, by utilizing a specially designed factorization algorithm, the researchers identified characteristic muscle synergies in both the stroke-affected and unaffected arms.
By utilizing a specially designed AFM/nano stage setup, nano experiments were performed for various AFM tip engaging depths.
Outputs of the photodiodes are combined in a differential amplifier, which can extract error signal (noise) and significantly improve the S/N ratio by utilizing a specially designed feedback circuit.
In the present study, for the purpose of establishment of a new robust basement for heterogeneous metal catalysts, a SAM of the alkanethiolate terminated with NHC rhodium(I) complex moiety was prepared by utilizing a newly designed disulfide molecule bearing NHC metal complex terminals.
By utilizing a newly designed constant volume combustion bomb (CVCB), turbulent flame combustion phenomena are investigated using hydrogen air mixture under the initial pressures of 1 bar, 2 bar and 3 bar, including flame acceleration, turbulent flame propagation and flame shock interaction with pressure oscillations.
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