A Cost-Effective Wireless Sensor Network System for Indoor Air Quality Monitoring Applications (open access)

A Cost-Effective Wireless Sensor Network System for Indoor Air Quality Monitoring Applications

This paper from the 9th International Conference on Future Networks and Communications, FNC 2014 conference proceedings presents a low-cost indoor air quality monitoring wireless sensor network system developed using Arduino, XBee modules, and micro gas sensors.
Date: August 15, 2014
Creator: Abraham, Sherin & Li, Xinrong
Object Type: Paper
System: The UNT Digital Library
Wireless Sensor Network System Design using Raspberry Pi and Arduino for Environmental Monitoring Applications (open access)

Wireless Sensor Network System Design using Raspberry Pi and Arduino for Environmental Monitoring Applications

This paper from the 9th International Conference on Future Networks and Communications, FNC 2014 conference proceedings describes a wireless sensor network system developed using open-source hardware platforms, Arduino and Raspberry Pi.
Date: August 15, 2014
Creator: Ferdoush, Sheikh & Li, Xinrong
Object Type: Paper
System: The UNT Digital Library
Identifying Emotional and Informational Support in Online Health Communities (open access)

Identifying Emotional and Informational Support in Online Health Communities

This paper analyses user messages on an online cancer support community, Cancer Survivors Network (CSN), to identify the two types of social support present: emotional support and informational support.
Date: August 2014
Creator: Biyani, Prakhar; Caragea, Cornelia; Mitra, Prasenjit & Yen, John
Object Type: Paper
System: The UNT Digital Library
Development and application of a novel precession electron diffraction technique to quantify and map deformation structures in highly deformed materials—as applied to ultrafine-grained titanium (open access)

Development and application of a novel precession electron diffraction technique to quantify and map deformation structures in highly deformed materials—as applied to ultrafine-grained titanium

Article describes precession electron diffraction (PED), which makes possible the very accurate and automated quantitative characterization of technically interesting materials that historically have been difficult to analyze due to their dimensions and/or degree of deformation, including specifically ultrafine-grained metallic structures with high dislocation densities.
Date: August 13, 2014
Creator: Ghamarian, Iman; Liu, Yue; Samimi, Peyman & Collins, Peter
Object Type: Article
System: The UNT Digital Library
Effect of Impregnated Inorganic Nanoparticles on the Properties of the Kenaf Bast Fibers (open access)

Effect of Impregnated Inorganic Nanoparticles on the Properties of the Kenaf Bast Fibers

This article evaluates the properties of the chemically retted kenaf bast fiber impregnated with the inorganic nanoparticles.
Date: August 22, 2014
Creator: Liang, Kaiwen; Shi, Sheldon Q. & Wang, Ge
Object Type: Article
System: The UNT Digital Library