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The Newton method for search direction calculation is presented, and Marquardt's modification is discussed.
A mechanism of crystalline phase modification is discussed in terms of transverse crystallographic slip.
After briefly introducing the fundamentals of photocatalysis, TiO2 photocatalyst modification is discussed both on a morphological and an electronic level from the perspective of gas phase applications.
Since the prediction based on classical NIEL model cannot fit low energy incident well, low energy particles induced displacement damage mechanism, defect generation, recombination and effective NIEL modification is discussed by molecular dynamics (MD) model.
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Possible mechanisms of modification are discussed.
Corresponding soundness verification and dynamic modification are discussed accordingly based on the new modelling method.
In the second part, various processes, such as growth, reduction, dissolution, and modification are discussed.
The relationships of structure property performance by carbon modification were discussed.
Various methods of mesoporous material preparation and modification are discussed as controlled synthesis of these molecular sieves has great impact on their properties and applications.
The corresponding synergetic anti-adhesion and friction reduction mechanisms of surface pattern and chemical modification were discussed and clarified with emphasis.
The effect of the volume fraction of the SMA, type of the composite substrate, pre-tension of wires and the direction of the distribution of SMA wires, on snap instability modification are discussed in details.
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