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Besides, the productivity is affected by and has a positive correlation with the length and conductivity of fracture, namely that it becomes lower as the length and conductivity of fracture decreasing.
[11] followed 753 patients for 10 years after hip fracture and reported that the proportion of patients living at home was 84% before fracture, decreasing to 60% at 120 days after fracture but improving to 81% at 1 year, and then remaining stable at approximately 86% until 10 years later.
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The resistance to impact-induced fracture decreases as the film thickness increases.
Engineering stress, true stress, and work of fracture decreased as displacement rate and sample flatness are increased.
In the hydrogen-charged specimen, the elongation at the fracture decreased with increasing hydrogen content due to the suppressed and localized plastic deformation.
The 1D model also shows how the tension forces that open the fracture decreases as the gradient of the pore pressure decreases.
However, it is found that the work of fracture decreases with increasing hydrogen content, which is an indication of hydrogen induced bond weakening in the material.
The tip of the fracture looks sharper and the maximum width of the fracture decreases a little.
They also found that the tensile strength and the elongation at fracture decreased if the CNTs possessed vacancy defects [65, 66].
The risk of fracture decreased rapidly after cessation of treatment.
According to Warensjo et al. (2011), population attributable risk of hip fracture decreased by 3.34% with every 300 mg increase in calcium intake [ 4].
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