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For very high surface area oxides (180 m2/g) electrochemically reversible behaviour was achieved at 150 instead of 230°C for the lower surface area oxides.
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Despite a reduction in weight of 32% in the front end, excellent crash behaviour was achieved.
Some server behaviour was achieved using code written in Java or PHP.
Once improvements in the first behaviour were achieved, changes in the second behaviour were introduced.
The equilibrium was achieved at 24 h.
Statistical significance was achieved at p≤0.05.
This implies that, for near-equiatomic NiTi alloys, the pseudoelastic behaviour, which is achieved at low annealing temperatures, is less affected by the stabilisation effect than the shape-memory effect, which is optimised by annealing at high annealing temperatures.
It is also illustrated that for beds of different particle sizes, a typical bubbling behaviour can be achieved at a specific gas velocity, this velocity coincides with the point of equality in hydrodynamic force ratios Fd/W, Fip/W and Eip/Fd.
The importance of their effects on individual behaviour was reflected in the expectations and arguments with respect to what can be achieved at the PHC level.
Significance is achieved at P<0.05.
The efficiency of the produced MPC system is illustrated through a number of simulations, which show that a successful dynamic closed-loop behaviour can be achieved, while at the same time the consumption of hydrogen is minimized.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com