Furthermore, he has expererince of developing and employing HIPAA-compliant infrastructures to assist several scientific reports with economical affected person’s recruitment, collected sample’s details management, and integration with electronic Health care records (e.g., EPIC, NextGen). His lab at Rutgers (IFH & RWJMS) is driven towards the event of smart health and fitness devices that systematically include genomic and metabolomic information into medical look after mainstream precision drugs.
Machine Studying enabled discovery of software dependent structure principles for two-dimensional resources
style and design rules for dendrite suppression with porous polymer/aqueous Option hybrid electrolyte for Zn metallic anodes
comprehending the effect of lead iodide surplus to the performance of methylammonium guide iodide perovskite photo voltaic cells
Quantification of uncertainty in initial-rules predicted mechanical Houses of solids: Application to solid ion conductors
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Increased energy and temperature dependence of mechanical properties of Li at small scales and its implications for Li metallic anodes
device Finding out enabled computational screening of inorganic sound electrolytes for suppression of dendrite development in lithium metallic anodes
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Localized recrystallization of a lithium-steel anode in the course of rapidly stripping in high-exercise liquid electrolytes
Universal chemomechanical style principles for sound-ion conductors to stop dendrite development in lithium steel batteries
Biography Dr. Ahmad's research is focused on the design of useful materials and interfaces for Electricity storage and conversion. The investigate aims to advance renewable Power and electrify transportation by means of initial rules understanding and style and design of components for batteries and photo voltaic photovoltaics.
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