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Despite the oxidation degree of the sample decreased, the hydroxyl content of the sample increases with the annealing time.
The result indicated that wetability of the sample decreased by surface-modification using n-butanol.
Compared with the untreated Al alloy, the wear rate of the coated sample decreased 65% after 24 h nitriding treatment.
Upon annealing, the microhardness of the UFG sample decreased gradually, while a hardening peak appeared for the CG sample.
After 5 frost-defrost cycles, the maximum capacity of the wavy sample decreased by 26%, the air pressure drop increased by 69%, the frosting time decreased by 35%.
The Carex peat sample decreased the Cu concentration by 80% at pH 4 and by 95% at pH 8 and for Sphagnum peat a decrease of 85% was maintained in the pH range investigated.
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With an increase of temperature, total emittance of the powdered sample decreases to a minimum value around 1200 K.
The Rs of the 400°C sample decreases from 9,564 to 8,572 Ω/sq, that of the 600°C sample decreases from 1,864 to 1,032 Ω/sq, that of the 800°C sample decreases from 346 to 282 Ω/sq, and that of the 1,000°C sample decreases from 262 to 208 Ω/sq.
After 10 cycles, the discharge specific capacity of bare urchin-like MnO2 sample decreases to below 200 mAh g−1.
Acid and base activation of MLR sample decreases the ash content and leaves a number of tiny pores (Table 1).
EC of the soil sample decreases with decrease in % age organic matter (see Table 1).
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