Also, he has expererince of creating and employing HIPAA-compliant infrastructures to guidance different scientific reports with economical individual’s recruitment, collected sample’s information management, and integration with electronic healthcare information (e.g., EPIC, NextGen). His lab at Rutgers (IFH & RWJMS) is pushed towards the event of clever health and fitness systems that systematically integrate genomic and metabolomic facts into scientific take care of mainstream precision medicine.
device Finding out enabled discovery of application dependent design concepts for 2-dimensional components
Design principles for dendrite suppression with porous polymer/aqueous Remedy hybrid electrolyte for Zn steel anodes
knowledge the result of lead iodide excess on the general performance of methylammonium guide iodide perovskite solar cells
Quantification of uncertainty in initial-concepts predicted mechanical Qualities of solids: Application to good ion conductors
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Improved strength and temperature dependence of mechanical Homes of Li at small scales and its implications for Li metallic anodes
device Studying enabled computational screening of inorganic strong electrolytes for suppression of dendrite formation in lithium metal anodes
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Localized recrystallization of a lithium-metal anode through fast stripping in higher-activity liquid electrolytes
Universal chemomechanical layout procedures for stable-ion conductors to avoid dendrite formation in lithium steel batteries
Biography Dr. Ahmad's investigation is focused on the design of practical components and interfaces for Power storage and conversion. The investigation aims to progress renewable Electrical power and electrify transportation through initial principles being familiar with and design of elements for batteries and photo voltaic photovoltaics.
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