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It is concluded that, under serviceability state of RC test specimens, one-time static load has little effect on corrosion behavior of uncoated and epoxy-coated reinforcing bars in specimens; while reduction of corrosion resistance of reinforcing bars is presented in test specimens subjected to fatigue load.
The wet specimens showed slight reduction of glass transition temperature (Tg) due to plasticization of epoxy networks by absorbed water, while the re-dried specimens showed small increase of Tg.
Previous work on post-mortem ALS brain and spinal cord specimens indicates a reduction of HDAC11 mRNA and increased HDAC2 levels.
The study showed that the influence of orientations on mechanical properties of the micro-sized specimens was magnified with reduction of the number of grains inside a sample.
The percentage reduction ranged from 53-78%, with D0 unstimulated specimens showing an average reduction of 56%, D1 69%, D3 and D5 67%, and D7 61%.
Unidirectional specimens showed a decreasing tensile strength with increasing specimen size, with a reduction of 14% over a factor of 8 change in linear dimension.
Results on macerated bone specimens showed no statistically significant reduction of the maximum tilting moment in specimens with osteoporotic bone density compared to normal bone, neither for threaded nor for the press-fit cups.
Neither for threaded cups nor for press-fit cups did the results of this study on macerated bone specimens show any statistically significant reduction of the maximal tilting moments of osteoporotic specimens when compared to normal bone.
It was found that one or more crucially localized pits of a specimen leading to the reduction of fatigue strength had an important influence on its fatigue life.
The effect of not excluding study participants if more than four days had elapsed between symptom onset and specimen collection was a reduction of the adjusted VE point estimates between 7% and 15% in 2007 and between 5% and 35% in 2008.
The conditioned specimens showed the maximum strength reduction of 24%.
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CEO of Professional Science Editing for Scientists @ prosciediting.com