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Ultra-High Performance Wearable Thermoelectric Coolers with Less Materials
Ravi Kishore
, Amin Nozariasbmarz
, Bed Poudel
, Mohan Sanghadasa
, Shashank Priya
Building Technologies and Science Center
Pennsylvania State University
United States Department of the Army
Virginia Tech
Research output
:
Contribution to journal
›
Article
›
peer-review
245
Scopus Citations
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Dive into the research topics of 'Ultra-High Performance Wearable Thermoelectric Coolers with Less Materials'. Together they form a unique fingerprint.
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Engineering
Thermoelectricity
100%
Commercial Module
28%
Thermoelectric Materials
28%
Human Skin
28%
Heat Resistance
28%
Device Performance
14%
Resistive
14%
Combined Effect
14%
Material Volume
14%
Material Behavior
14%
Global Warming
14%
Cost-Benefit Analysis
14%
Body Application
14%
Ambient Air
14%
Heat Sources
14%
Actuator
14%
Physics
Thermoelectricity
100%
Thermoelectric Material
28%
Thermal Resistance
28%
Heat Sources
14%
Global Warming
14%
Ambient Air
14%
Actuator
14%
Material Science
Thermoelectrics
100%
Heat Resistance
28%
Thermoelectric Materials
28%
Materials Property
14%
Conductor
14%