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The passivity properties of the prototype robot have been analyzed.
Overall, the mechanical properties of the prototype tubes exceeded the transverse tensile values of natural arteries of similar caliber.
We investigate the thermodynamic properties of the prototype equi-atomic high entropy alloy (HEA) CoCrFeMnNi by using finite-temperature ab initio methods.
A large deformation implementation of the direct stiffness method is shown to provide good prediction of the stiffness properties of the prototype truss.
This study was done to develop a glide path preparation nickel-titanium rotary instrument by size optimization procedures and evaluate the properties of the prototype.
where we have taken into account the properties of the prototype filter (see Equations 14, 28, and 29) and the fact that it is real and, consequently, (G_{-k} = G_{k}^).
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In this research, the compressive and tensile properties of the prototypes were characterized when they were subjected to accelerated degradation.
First, the passivity property of the prototype robot is analyzed.
Unlike OQAM, when we now move to the MP case, shown in Figure 14, the WCP-COQAM can still maintain the best orthogonality, without being impaired by the time-frequency localization property of the prototype filter.
It reveals that the MP channel does not impact the orthogonality feature of the CB-FMT, and it further points out that the only impacting factor for the orthogonality of CB-FMT is the time-frequency localization property of the prototype filter which brings to our next analysis item: waveform flexibility.
The calculation results were validated successfully by measurement of the spring properties of this prototype.
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