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Please use this identifier to cite or link to this item: https://modps71.lib.kmutt.ac.th/xmlui//handle/123456789/696
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dc.contributor.authorThomas William Cochran-
dc.coverage.spatialPennsylvania
dc.coverage.temporal1982
dc.date.accessioned2018-12-06T03:42:19Z-
dc.date.available2018-12-06T03:42:19Z-
dc.date.issued2018-10-17-
dc.identifier.urihttp://hdl.handle.net/123456789/696-
dc.description.tableofcontentsIntroduction--Pure-component adsorption model--Gas-mixture adsorption model--Evaluation of pure-component adsorption models--Evaluation of binary predictions using only pure-component data--Correlation of binary adsorption data using pure-component and binary data--Prediction of ternary adsorption equilibria--Conclusion--Recommendation for future workth_TH
dc.language.isoen_USth_TH
dc.publisherThe Pennsylvania State University. Department of Chemical Engineeringth_TH
dc.subjectวิทยานิพนธ์th_TH
dc.subjectKnowledge and discourseth_TH
dc.titleVacancy Solution Models for Gas-Mixture Adsorptionth_TH
dc.typeThesisth_TH
dc.creator.orgnameThe Pennsylvania State University. Department of Chemical Engineering
dc.description.note239 pages, Illustrations, Appendixes
dc.contributor.roleRobert L. Kabel, Thesis Co-Advisor Ronald P. Danner, Thesis Co-Advisor Lee C. Eagleton, [Advisor] R. Nagarajan, [Advisor]
dc.rights.accessAvailable
dc.thesis.degreenameMaster of Science
dc.thesis.degreelevelMaster Degree
dc.thesis.degreedisciplineChemical Engineering
dc.thesis.degreegrantorThe Pennsylvania State University
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