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Similarly, the incorporation of CNTs into polymer matrices improves the percolation threshold and the electrical and tribological properties of the material.
Moreover, the basicity of the matrices improved the chemisorption of CO2 and promoted the gasification of deposited coke on the catalyst.
Adapting the Kalman filter matrices improves the estimation results and makes the filter universally deployable when measuring cardiorespiratory signals.
With the exception of polydextrose edible films stored at 25 °C the presence of prebiotics in the plasticised matrices improved the storage stability of L. rhamnosus GG (Table 2).
This indicates that including the simulated QTL in the marker set to calculate genomic relationship matrices improved the ability of the model to capture all the genetic variance present in the reference population, probably because the QTL can capture the effects without depending on LD between marker and QTL.
Additional design considerations such as bracketing and matrixing improve the efficiency of stability evaluation of vaccines.
The enhanced interactions between CNTs and the polymer matrix improve the load transfer from the polymer to the nanotubes.
The appropriate pore structures and crystallized Y zeolite component on this new matrix improve the cracking ability of FCC catalysts.
Furthermore, strong interfacial interactions due to the insertion of GO nanofillers into the Nafion matrix improve the thermal and mechanical properties of the material.
The incorporation of hydroxyapatite into collagen matrix improved the mechanical modulus of the scaffold significantly.
The introduction of g-TiO2 into PLA matrix improved the crystallinity of the composites.
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