Also, he has expererince of planning and implementing HIPAA-compliant infrastructures to support several scientific experiments with economical affected individual’s recruitment, collected sample’s knowledge administration, and integration with Digital healthcare records (e.g., EPIC, NextGen). His lab at Rutgers (IFH & RWJMS) is pushed to the event of smart health and fitness devices that systematically incorporate genomic and metabolomic information into medical take care of mainstream precision drugs.
equipment Mastering enabled discovery of software dependent layout principles for 2-dimensional components
Design concepts for dendrite suppression with porous polymer/aqueous Alternative hybrid electrolyte for Zn metal anodes
knowledge the result of lead iodide excessive within the overall performance of methylammonium guide iodide perovskite photo voltaic cells
Quantification of uncertainty in initially-rules predicted website mechanical Homes of solids: Application to stable ion conductors
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Increased toughness and temperature dependence of mechanical Homes of Li at little scales and its implications for Li metallic anodes
equipment Studying enabled computational screening of inorganic strong electrolytes for suppression of dendrite formation in lithium steel anodes
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Localized recrystallization of the lithium-steel anode for the duration of rapid stripping in superior-exercise liquid electrolytes
common chemomechanical style policies for good-ion conductors to forestall dendrite formation in lithium metal batteries
Biography Dr. Ahmad's study is centered on the design of useful resources and interfaces for Strength storage and conversion. The research aims to advance renewable Strength and electrify transportation by to start with principles comprehending and layout of resources for batteries and photo voltaic photovoltaics.
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