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It was experimentally proved that the fatigue strength increases as increasing the amount of adhesive.
The electrical conductivity linearly increases as increasing temperatures from 200° to 850°C.
The glass transition temperature of the copolymers increases as increasing the molar composition of ethere sulphone units containing biphenyl moiety.
Results show that the removal of RB235 dye increases as increasing the immobilized RMINP concentration and contact time and decreases with increase in the initial concentration of RB235 dye.
As shown in Fig. 5a, it is observed that the sheet resistance increases as increasing the rotational speed because the number of Ag NWs clinging on the surface of PET decreases, resulting in the decline of conductivity.
The photocatalytic performance for degradation of gaseous benzene increases as increasing TiO2 loading amounts, and then become to steady, suggesting that the optimum TiO2 loading concentration (1.0 g/L) can allow the best utilizations of TiO2 particles on porous cement surface.
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The variation of pressure gradient around wellbore increases as increased heterogeneity degree determined by different permeability of different plate models.
The capacity increased as increasing temperature.
The temperature differences could increase as increasing the thickness of glass.
The crystallite size of TiO2 NBs increased as increasing calcination temperature except for 650 °C.
Interestingly, the activity and selectivity of the complexes increased as increasing polymerization temperature.
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CEO of Professional Science Editing for Scientists @ prosciediting.com