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Search Publications by: Robert D Chirico (Assoc)

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Displaying 126 - 150 of 188

High-Energy Components of Designer Gasoline and Designer Diesel Fuel I. Heat Capacaties, Enthalpy Increments, Vapor Pressures, Critical Properties, and Derived Thermodynamic Functions for Bicyclopentyl Between the Temperatures 10 K and 600 K.

October 16, 2008
Author(s)
Robert D. Chirico
Measurements leading to the calculation of the standard thermodynamic properties for gaseous bicyclopentyl (Chemical Abstracts registry number [1636-39-1] are reported. Experimental methods include adiabatic heat-capacity calorimetry, comparative

STANDARDIZATION AND SOFTWARE INFRASTRUCTURE FOR GAS HYDRATE DATA COMMUNICATIONS

July 28, 2008
Author(s)
Kenneth G. Kroenlein, Ralf Loewner, Willa Wang, Vladimir Diky, Thomas Smith, Chris D. Muzny, Robert D. Chirico, Andrei F. Kazakov, E. D. Sloan, Michael D. Frenkel
Gas Hydrates Markup Language (GHML) has been under development since 2003 by CODATA Task Group Data for Natural Gas Hydrates as an international standard for data storage and transfer in the gas hydrates community. We will describe the final development of

Web Thermo Tables an On-Line Version of the TRC Thermodynamic Tables

July 14, 2008
Author(s)
Andrei F. Kazakov, Chris D. Muzny, Robert D. Chirico, Vladimir Diky, Michael D. Frenkel
It has long been understood that availability of thermophysical and thermochemical property data is vital to scientific research and industrial design. For over 65 years, the Thermodynamics Research Center (TRC) has been publishing tables of critically

Guided Data Capture (GDC) 5.0

September 17, 2007
Author(s)
Vladimir Diky, Robert D. Chirico, Robert N. Goldberg, Michael D. Frenkel
Guided Data Capture (GDC) 5.0 includes capture capabilities for biochemical substances and selected biothermodynamic properties. A key characteristic of data capture for much biothermodynamic data arises from the need to fully specify relatively complex

ILThermo: A Free-Access Web Database for Thermodynamic Properties of Ionic Liquids

July 15, 2007
Author(s)
Qian Dong, Chris D. Muzny, Andrei F. Kazakov, Vladimir Diky, Joe W. Magee, Jason A. Widegren, Robert D. Chirico, Kenneth N. Marsh, Michael D. Frenkel
The development, scope, and functionality of the web-based ionic liquids database, ILThermo, are described. The database is available free to the public, and aims to provide users worldwide with up-to-date information from publications of experimental

NIST/TRC Web Thermo Tables - Lite Edition NIST Standard Reference Subscription Database 2

July 9, 2007
Author(s)
Andrei F. Kazakov, Chris Muzny, Robert D. Chirico, Vladimir Diky, Becky A. Stevenson, Michael D. Frenkel
WTT - Lite Edition, a Web version of the TRC Thermodynamic Tables, represents a collection of critically evaluated thermodynamic property data for 150 commonly-used (primarily organic) pure compounds. References to experimental data sources and information

ThermoData Engine (TDE): Software Implementation of the Dynamic Data Evaluation Concept. 2: Equations of State On-Demand and Dynamic Updates over the Web

May 23, 2007
Author(s)
Vladimir Diky, Chris D. Muzny, Eric W. Lemmon, Robert D. Chirico, Michael D. Frenkel
ThermoData Engine (TDE) is the first full-scale software implementation of the dynamic data evaluation concept, as reported recently in this journal. The present paper describes two major software enhancements to TDE: (1) generation of equation of state

Thermodynamic properties of methylquinolines: Experimental results for 2,6-dimethylquinoline and mutual validation between experiments and computational methods for methylquinolines

May 1, 2007
Author(s)
Robert D. Chirico, Russell D. Johnson III, William Steele
Measurements leading to the calculation of the standard thermodynamic properties for gaseous 2,6-dimethylquinoline (Chemical Abstracts registry number [877-43-0]) are reported. Experimental methods included adiabatic heat-capacity calorimetry, vibrating

New Global Communication Process in Thermodynamics: Impact on Quality of Published Experimental Data

October 11, 2006
Author(s)
Michael D. Frenkel, Robert D. Chirico, Vladimir Diky, Chris D. Muzny, Qian Dong, K N. Marsh, John H. Dymond, William A. Wakeham, Stephen E. Stein, Erich Koenigsberger, Anthony R. Goodwin, Joe W. Magee, Michiel Thijssen, William M. Haynes, Suphat Watanasiri, Marco Satyro, Martin Schmidt, Andrew I. Johns, Gary R. Hardin
Thermodynamic data often represent a key resource in the search for new relationships between properties of chemical systems that constitutes the basis of the scientific discovery process. In addition, thermodynamic information is critical for development