ZEESHAN@AYAN338 OPTIONS

zeeshan@ayan338 Options

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Moreover, he has expererince of planning and implementing HIPAA-compliant infrastructures to help a variety of scientific experiments with efficient affected person’s recruitment, gathered sample’s details management, and integration with electronic Health care records (e.g., EPIC, NextGen). His lab at Rutgers (IFH & RWJMS) is driven in the direction of the event of smart health programs that systematically integrate genomic and metabolomic knowledge into medical care for mainstream precision medication.

device Studying enabled discovery of application dependent style and design principles for two-dimensional resources

layout concepts for dendrite suppression with porous polymer/aqueous Option hybrid electrolyte for Zn metal anodes

being familiar with the outcome of lead iodide excess within the performance of methylammonium lead iodide perovskite solar cells

Quantification of uncertainty in first-principles predicted mechanical Homes of solids: software to solid ion conductors

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Enhanced toughness and temperature dependence of mechanical properties of Li at tiny scales and its implications for Li metallic anodes

Machine learning enabled computational screening of inorganic strong electrolytes for suppression of dendrite formation in lithium metallic anodes

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Localized recrystallization of a lithium-metallic anode for the duration of quick stripping in higher-activity liquid electrolytes

Universal chemomechanical style regulations for sound-ion conductors to avoid dendrite formation in lithium metal batteries

Biography Dr. Ahmad's investigate is focused on the look of useful elements and interfaces for Electricity storage and conversion. The investigation aims to advance renewable Strength and electrify transportation by way zeeshan@ayan338 of 1st ideas understanding and structure of products for batteries and photo voltaic photovoltaics.

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