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Study of molecular dynamic behaviour in mixtures water/ethanol
dc.contributor.advisorHanyková, Lenka
dc.creatorRadecki, Marek
dc.date.accessioned2021-03-24T10:08:46Z
dc.date.available2021-03-24T10:08:46Z
dc.date.issued2009
dc.identifier.urihttp://hdl.handle.net/20.500.11956/23315
dc.description.abstractIn the diploma work we studied mixtures of water, ethanol and poly(vinyl methyl ether) (PVME) by the methods of Nuclear Magnetic Resonance (NMR) and Differential Scanning Calorimetry (DSC). NMR studies of water/ethanol binary mixtures between 10 - 90 vol.% of ethanol for wide temperature range comprised chemical shifts, relaxation times, translation diusion coecients, Nuclear Overhauser Eect of ethanol spectra and calculation of hydrodynamical radii. Most of the results show extremal values around 50 vol.% of ethanol. DSC provides measurements of pure PVME, water and ethanol, then binary water/ethanol mixtures and PVME/water/ethanol mixtures in the whole ethanol concentration region and low PVME concentrations. The high concentratios of the PVME/water mixtures were prepared and measured. We obtain detailed description of PVME/water/ethanol mixtures - glass transition temperature, crystallization, melting and phase separation temperature.en_US
dc.languageČeštinacs_CZ
dc.language.isocs_CZ
dc.publisherUniverzita Karlova, Matematicko-fyzikální fakultacs_CZ
dc.titleStudium dynamického chování molekul ve směsích voda/ethanolcs_CZ
dc.typediplomová prácecs_CZ
dcterms.created2009
dcterms.dateAccepted2009-09-22
dc.description.departmentDepartment of Macromolecular Physicsen_US
dc.description.departmentKatedra makromolekulární fyzikycs_CZ
dc.description.facultyFaculty of Mathematics and Physicsen_US
dc.description.facultyMatematicko-fyzikální fakultacs_CZ
dc.identifier.repId49284
dc.title.translatedStudy of molecular dynamic behaviour in mixtures water/ethanolen_US
dc.contributor.refereeLabuta, Jan
dc.identifier.aleph001135709
thesis.degree.nameMgr.
thesis.degree.levelnavazující magisterskécs_CZ
thesis.degree.disciplineFyzika kondenzovaných soustav a materiálůcs_CZ
thesis.degree.disciplinePhysics of Condensed Matter and Materialsen_US
thesis.degree.programPhysicsen_US
thesis.degree.programFyzikacs_CZ
uk.thesis.typediplomová prácecs_CZ
uk.taxonomy.organization-csMatematicko-fyzikální fakulta::Katedra makromolekulární fyzikycs_CZ
uk.taxonomy.organization-enFaculty of Mathematics and Physics::Department of Macromolecular Physicsen_US
uk.faculty-name.csMatematicko-fyzikální fakultacs_CZ
uk.faculty-name.enFaculty of Mathematics and Physicsen_US
uk.faculty-abbr.csMFFcs_CZ
uk.degree-discipline.csFyzika kondenzovaných soustav a materiálůcs_CZ
uk.degree-discipline.enPhysics of Condensed Matter and Materialsen_US
uk.degree-program.csFyzikacs_CZ
uk.degree-program.enPhysicsen_US
thesis.grade.csVýborněcs_CZ
thesis.grade.enExcellenten_US
uk.abstract.enIn the diploma work we studied mixtures of water, ethanol and poly(vinyl methyl ether) (PVME) by the methods of Nuclear Magnetic Resonance (NMR) and Differential Scanning Calorimetry (DSC). NMR studies of water/ethanol binary mixtures between 10 - 90 vol.% of ethanol for wide temperature range comprised chemical shifts, relaxation times, translation diusion coecients, Nuclear Overhauser Eect of ethanol spectra and calculation of hydrodynamical radii. Most of the results show extremal values around 50 vol.% of ethanol. DSC provides measurements of pure PVME, water and ethanol, then binary water/ethanol mixtures and PVME/water/ethanol mixtures in the whole ethanol concentration region and low PVME concentrations. The high concentratios of the PVME/water mixtures were prepared and measured. We obtain detailed description of PVME/water/ethanol mixtures - glass transition temperature, crystallization, melting and phase separation temperature.en_US
uk.file-availabilityV
uk.grantorUniverzita Karlova, Matematicko-fyzikální fakulta, Katedra makromolekulární fyzikycs_CZ
thesis.grade.code1
dc.contributor.consultantLang, Jan
uk.publication-placePrahacs_CZ
uk.thesis.defenceStatusO
dc.identifier.lisID990011357090106986


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