<?xml version="1.0" encoding="utf-8"?> <?xml-stylesheet title="XSL_formatting" type="text/xsl" href="../../style/rss10.xsl"?> <rdf:RDF xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns="http://purl.org/rss/1.0/" xmlns:dc="http://purl.org/dc/elements/1.1/"> <channel rdf:about="http://ocw.mit.edu/OcwWeb/web/courses/courses/index.htm"> <title>MIT OpenCourseWare: All Courses</title> <description>All courses in all departments from MIT OpenCourseWare, provider of free and open MIT course materials.</description> <link>http://ocw.mit.edu/OcwWeb/web/courses/courses/index.htm</link> <dc:date>2009-02-06</dc:date> <dc:publisher>MIT OpenCourseWare http://ocw.mit.edu</dc:publisher> <dc:language>en-US</dc:language> <dc:rights>Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/OcwWeb/web/terms/terms/index.htm</dc:rights> <items> <rdf:Seq> <rdf:li rdf:resource="http://ocw.mit.edu/OcwWeb/Chemistry/5-60Spring-2008/CourseHome/index.htm" /> <rdf:li rdf:resource="http://ocw.mit.edu/OcwWeb/Mathematics/18-950Fall-2008/CourseHome/index.htm" /> <rdf:li rdf:resource="http://ocw.mit.edu/OcwWeb/Health-Sciences-and-Technology/HST-939Spring-2008/CourseHome/index.htm" /> ... </items> </channel> <item rdf:about="http://ocw.mit.edu/OcwWeb/Chemistry/5-60Spring-2008/CourseHome/index.htm"> <title>5.60 Thermodynamics & Kinetics, Spring 2008 (MIT)</title> <description>This subject deals primarily with equilibrium properties of macroscopic systems, ... .</description> <link>http://ocw.mit.edu/OcwWeb/Chemistry/5-60Spring-2008/CourseHome/index.htm</link> <dc:creator>Nelson, Keith</dc:creator> <dc:creator>Bawendi, Moungi</dc:creator> <dc:date>2009-02-05T05:45:16-05:00</dc:date> <dc:relation>5.60</dc:relation> <dc:language>en-US</dc:language> <dc:subject>Chemistry</dc:subject> <dc:subject>Physical and Theoretical Chemistry</dc:subject> <dc:subject>carnot cycle</dc:subject> <dc:subject>autocatalysis</dc:subject> <dc:subject>oscillators</dc:subject> <dc:subject>catalysis</dc:subject> <dc:subject>Hemholtz</dc:subject> <dc:subject>adiabatic</dc:subject> <dc:subject>clausius</dc:subject> <dc:subject>enthalpy</dc:subject> <dc:subject>clapeyron</dc:subject> <dc:subject>reaction rates</dc:subject> <dc:subject>Gibbs function</dc:subject> <dc:subject>entropy</dc:subject> <dc:subject>law of thermodynamics</dc:subject> <dc:subject>state variables</dc:subject> <dc:subject>macroscopic systems</dc:subject> <dc:subject>equilibrium</dc:subject> <dc:subject>kinetics</dc:subject> <dc:subject>thermodynamics</dc:subject> <dc:publisher>MIT OpenCourseWare http://ocw.mit.edu</dc:publisher> <dc:rights>Content within individual OCW courses is (c) by the individual authors unless otherwise noted. ...</dc:rights> </item> ... </rdf:RDF>