<?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/Civil-and-Environmental-Engineering/index.htm"><title>MIT OpenCourseWare: New Courses in Civil and Environmental Engineering</title><description>New courses in Civil and Environmental Engineering</description><link>http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/index.htm</link><dc:date>2009-07-02</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/Civil-and-Environmental-Engineering/1-061Fall-2008/CourseHome/index.htm" /><rdf:li rdf:resource="1-61Fall2008" /><rdf:li rdf:resource="1-825JFall2007" /><rdf:li rdf:resource="1-825JFall2008" /><rdf:li rdf:resource="http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-782Fall-2007-Spring-2008/CourseHome/index.htm" /><rdf:li rdf:resource="http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-010Fall-2008/CourseHome/index.htm" /></rdf:Seq></items></channel><item rdf:about="http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-061Fall-2008/CourseHome/index.htm"><title>1.061 Transport Processes in the Environment (MIT)</title><description>Introduction to momentum and scalar transport in environmental flows, with emphasis given to river and lake systems. Derivation and solutions to the differential form of mass conservation equations. Topics include: molecular and turbulent diffusion, boundary layers, dissolution, phase partitioning, bed-water exchange, air-water exchange, settling and coagulation, buoyancy-driven flows, and stratification in lakes.</description><link>http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-061Fall-2008/CourseHome/index.htm</link><dc:creator>Nepf, Heidi</dc:creator><dc:date>2009-06-23T04:15:58-04:00</dc:date><dc:relation>1.061</dc:relation><dc:relation>1.61</dc:relation><dc:language>en-US</dc:language><dc:subject>Civil and Environmental Engineering</dc:subject><dc:subject>Civil engineering -- Environmental aspects</dc:subject><dc:subject>Engineering Science</dc:subject><dc:subject>water flow</dc:subject><dc:subject>turbulence</dc:subject><dc:subject>transport</dc:subject><dc:subject>scaling</dc:subject><dc:subject>rivers</dc:subject><dc:subject>particle transport</dc:subject><dc:subject>transport</dc:subject><dc:subject>mass</dc:subject><dc:subject>lakes</dc:subject><dc:subject>instantaneous point source</dc:subject><dc:subject>environmental flows</dc:subject><dc:subject>dispersion</dc:subject><dc:subject>Diffusion</dc:subject><dc:subject>derivation</dc:subject><dc:subject>conservation of mass</dc:subject><dc:subject>aquatic systems</dc:subject><dc:subject>advection</dc:subject><dc:subject>boundary layers</dc:subject><dc:subject>dissolution</dc:subject><dc:subject>bed-water exchange</dc:subject><dc:subject>air-water exchange</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. 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></item><item rdf:about="1-61Fall2008"><title>1.61 Transport Processes in the Environment (MIT)</title><description>Introduction to momentum and scalar transport in environmental flows, with emphasis given to river and lake systems. Derivation and solutions to the differential form of mass conservation equations. Topics include: molecular and turbulent diffusion, boundary layers, dissolution, phase partitioning, bed-water exchange, air-water exchange, settling and coagulation, buoyancy-driven flows, and stratification in lakes.</description><link>http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-061Fall-2008/CourseHome/index.htm</link><dc:creator>Nepf, Heidi</dc:creator><dc:date>2009-06-23T04:15:58-04:00</dc:date><dc:relation>1.061</dc:relation><dc:relation>1.61</dc:relation><dc:language>en-US</dc:language><dc:subject>Civil and Environmental Engineering</dc:subject><dc:subject>Civil engineering -- Environmental aspects</dc:subject><dc:subject>Engineering Science</dc:subject><dc:subject>water flow</dc:subject><dc:subject>turbulence</dc:subject><dc:subject>transport</dc:subject><dc:subject>scaling</dc:subject><dc:subject>rivers</dc:subject><dc:subject>particle transport</dc:subject><dc:subject>transport</dc:subject><dc:subject>mass</dc:subject><dc:subject>lakes</dc:subject><dc:subject>instantaneous point source</dc:subject><dc:subject>environmental flows</dc:subject><dc:subject>dispersion</dc:subject><dc:subject>Diffusion</dc:subject><dc:subject>derivation</dc:subject><dc:subject>conservation of mass</dc:subject><dc:subject>aquatic systems</dc:subject><dc:subject>advection</dc:subject><dc:subject>boundary layers</dc:subject><dc:subject>dissolution</dc:subject><dc:subject>bed-water exchange</dc:subject><dc:subject>air-water exchange</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. 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></item><item rdf:about="1-825JFall2007"><title>1.825J Regional Socioeconomic Impact Analyses and Modeling (MIT)</title><description>Reviews regional economic theories and models and provides students with experience in using alternative economic impact assessment models on microcomputers. Problem sets are oriented around infrastructure, housing, energy, and environmental issues. Students work with a client generally in Boston and make a presentation to the client. Emphasis on written and oral presentation skills.</description><link>http://ocw.mit.edu/OcwWeb/Urban-Studies-and-Planning/11-482JFall-2007/CourseHome/index.htm</link><dc:creator>Polenske, Karen</dc:creator><dc:date>2009-06-19T04:21:02-04:00</dc:date><dc:relation>11.482J</dc:relation><dc:relation>ESD.193J</dc:relation><dc:relation>1.825J</dc:relation><dc:language>en-US</dc:language><dc:subject>Civil and Environmental Engineering</dc:subject><dc:subject>City/Urban, Community and Regional Planning</dc:subject><dc:subject>Boston Redevelopment Authority</dc:subject><dc:subject>REMI</dc:subject><dc:subject>investment</dc:subject><dc:subject>regional-development issues</dc:subject><dc:subject>local economy</dc:subject><dc:subject>economic impact</dc:subject><dc:subject>international employment outsourcing</dc:subject><dc:subject>regional input-output accounts and tables</dc:subject><dc:subject>national and regional economic structures</dc:subject><dc:subject>policies</dc:subject><dc:subject>accounts</dc:subject><dc:subject>theories</dc:subject><dc:subject>linkages</dc:subject><dc:subject>urban planning</dc:subject><dc:subject>economics</dc:subject><dc:subject>theoretical modeling</dc:subject><dc:subject>alternative socioeconomic impact assessment models</dc:subject><dc:subject>regional economic theories</dc:subject><dc:subject>Urban Studies and Planning</dc:subject><dc:subject>Engineering Systems Division</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. 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></item><item rdf:about="1-825JFall2008"><title>1.825J Regional Socioeconomic Impact Analyses and Modeling (MIT)</title><description>Reviews regional economic theories and models and provides students with experience in using alternative economic impact assessment models on microcomputers. Problem sets are oriented around infrastructure, housing, energy, and environmental issues. Students work with a client generally in Boston and make a presentation to the client. Emphasis on written and oral presentation skills.</description><link>http://ocw.mit.edu/OcwWeb/Urban-Studies-and-Planning/11-482JFall-2008/CourseHome/index.htm</link><dc:creator>Polenske, Karen</dc:creator><dc:date>2009-06-19T04:20:48-04:00</dc:date><dc:relation>11.482J</dc:relation><dc:relation>ESD.193J</dc:relation><dc:relation>1.825J</dc:relation><dc:language>en-US</dc:language><dc:subject>Civil and Environmental Engineering</dc:subject><dc:subject>Investments and Securities</dc:subject><dc:subject>Boston Redevelopment Authority</dc:subject><dc:subject>REMI</dc:subject><dc:subject>investment</dc:subject><dc:subject>regional-development issues</dc:subject><dc:subject>local economy</dc:subject><dc:subject>economic impact</dc:subject><dc:subject>international employment outsourcing</dc:subject><dc:subject>regional input-output accounts and tables</dc:subject><dc:subject>national and regional economic structures</dc:subject><dc:subject>policies</dc:subject><dc:subject>accounts</dc:subject><dc:subject>theories</dc:subject><dc:subject>linkages</dc:subject><dc:subject>urban planning</dc:subject><dc:subject>economics</dc:subject><dc:subject>theoretical modeling</dc:subject><dc:subject>alternative socioeconomic impact assessment models</dc:subject><dc:subject>regional economic theories</dc:subject><dc:subject>Urban Studies and Planning</dc:subject><dc:subject>Engineering Systems Division</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. 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></item><item rdf:about="http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-782Fall-2007-Spring-2008/CourseHome/index.htm"><title>1.782 Environmental Engineering Masters of Engineering Project (MIT)</title><description>Core requirements for Environmental M.Eng. program. Designed to teach about environmental engineering through the use of case studies, computer software tools, and seminars from industrial experts. Case studies provide basis for group project as well as individual thesis. Past case studies have included the MMR Superfund site on Cape Cod; restoration of the Florida Everglades; dredging of Boston Harbor; local watershed trading programs; appropriate wastewater treatment technology for Brazil; point-of-use water treatment for Nepal, Brownfields Development in Providence, RI, and water resource planning for the island of Cyprus. Students must register for 1.782 for Fall term, IAP, and Spring term.</description><link>http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-782Fall-2007-Spring-2008/CourseHome/index.htm</link><dc:creator>Adams, Eric</dc:creator><dc:date>2009-06-12T03:26:23-04:00</dc:date><dc:relation>1.782</dc:relation><dc:language>en-US</dc:language><dc:subject>Civil and Environmental Engineering</dc:subject><dc:subject>Civil Engineering, Other</dc:subject><dc:subject>horizontal roughing filter</dc:subject><dc:subject>biosand filter</dc:subject><dc:subject>guinea worm</dc:subject><dc:subject>water filtration</dc:subject><dc:subject>sanitation</dc:subject><dc:subject>refugee camp</dc:subject><dc:subject>drinking water</dc:subject><dc:subject>contaminants</dc:subject><dc:subject>pollution</dc:subject><dc:subject>Honduras</dc:subject><dc:subject>Thailand</dc:subject><dc:subject>Ghana</dc:subject><dc:subject>hydrology</dc:subject><dc:subject>groundwater</dc:subject><dc:subject>aquifer</dc:subject><dc:subject>water treatment</dc:subject><dc:subject>request for proposal</dc:subject><dc:subject>proposal</dc:subject><dc:subject>thesis</dc:subject><dc:subject>methodology</dc:subject><dc:subject>professional practice</dc:subject><dc:subject>environmental engineering</dc:subject><dc:subject>civil engineering</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. 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></item><item rdf:about="http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-010Fall-2008/CourseHome/index.htm"><title>1.010 Uncertainty in Engineering (MIT)</title><description>This course provides an introduction to probability and statistics, with emphasis on engineering applications. Course topics include events and their probability, the Total Probability and Bayes' Theorems, discrete and continuous random variables and vectors, uncertainty propagation and conditional analysis. Second-moment representation of uncertainty, random sampling, estimation of distribution parameters (method of moments, maximum likelihood, Bayesian estimation), and simple and multiple linear regression. Concepts illustrated with examples from various areas of engineering and everyday life.</description><link>http://ocw.mit.edu/OcwWeb/Civil-and-Environmental-Engineering/1-010Fall-2008/CourseHome/index.htm</link><dc:creator>Veneziano, Daniele </dc:creator><dc:date>2009-04-05T11:14:49-04:00</dc:date><dc:relation>1.010</dc:relation><dc:language>en-US</dc:language><dc:subject>Civil and Environmental Engineering</dc:subject><dc:subject>Mathematical Statistics and Probability</dc:subject><dc:subject>Poisson and Markov processes</dc:subject><dc:subject>simple and multiple linear regressions</dc:subject><dc:subject>hypothesis testing</dc:subject><dc:subject>estimation of distribution parameters</dc:subject><dc:subject>Bayesian analysis and risk-based decision</dc:subject><dc:subject>total probability theorem</dc:subject><dc:subject>Bayes theorem</dc:subject><dc:subject>system reliability</dc:subject><dc:subject>second-moment analysis</dc:subject><dc:subject>conditional distributions</dc:subject><dc:subject>uncertainty propagation</dc:subject><dc:subject>random variables and vectors</dc:subject><dc:subject>decision analysis</dc:subject><dc:subject>statistics</dc:subject><dc:subject>random processes</dc:subject><dc:subject>fundamentals of probability</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. 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></item></rdf:RDF>