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The film thickness gradually reduced with increasing tensile strain and the maximum reduction increased up to 69% in 2.6 μm-thick film.
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Thermal analyses of polystyrene-layered silicate nanocomposites compared with virgin PS indicate that the onset degradation temperature ca. 25 °C increased and the maximum reduction in coefficient of thermal expansion (CTE) is ca. 40% for the C20 POSS/clay nanocomposite.
Natural frequencies of fundamental modes decreased with the increase of acceleration amplitude, with the maximum reduction of 8 10% of natural frequencies observed during the peak wind speed.
Maximum reduction of tumour volume was reached at ~day 14, after which the tumours increased in size again.
It appeared that the reduction of COD increased alongside the phycoremediation period to 21 days, where the maximum reduction ranged from 71.22 to 85.47%, while it was 10.4% in the control (without inoculum).
The maximum reduction of elastic modulus is less than 10% even when the size of the defect increases notably to almost half of the diameter of the segment.
Experimental results show that these windowed tubes have enhanced crushing performance over the conventional tube, with 63% as the maximum reduction in the initial peak load and 54% as the maximum increase in the specific energy absorption.
An increase of 37.5% of the air flow rate (at constant sprayed water) leads to a maximum reduction of the heat transfer rate of 50%.
The maximum reduction on the waiting time is five months.
The maximum reduction was 4 °C.
The maximum reduction is only ~4%.
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