Publications by authors named "Aashish John"

Article Synopsis
  • * Results showed that lower duty cycles improved roughness metrics significantly, with areal roughness improving from 0.348 to 0.195 µm and surface roughness from 0.779 to 0.245 µm.
  • * The findings suggest that grain size increases with duty cycle changes, affecting hardness, where higher duty cycles led to larger grain sizes and decreased nanohardness from 4.21 to 3.07 GPa, indicating potential for improved coatings in industrial applications.
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Hemorrhagic shock (HS), a major cause of early death from trauma, accounts for around 40% of mortality, with 33-56% of these deaths occurring before the patient reaches a medical facility. Intravenous fluid therapy and blood transfusions are the cornerstone of treating HS. However, these options may not be available soon after the injury, resulting in death or a poorer quality of survival.

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