<div class="csl-bib-body">
<div class="csl-entry">Klein, M. (2026). <i>The surface tension of ultrapure water in its pure vapour</i> [Diploma Thesis, Technische Universität Wien]. reposiTUm. https://doi.org/10.34726/hss.2026.139642</div>
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dc.identifier.uri
https://doi.org/10.34726/hss.2026.139642
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/227104
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dc.description
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprüft
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dc.description
Abweichender Titel nach Übersetzung der Verfasserin/des Verfassers
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dc.description.abstract
The surface tension of pure water has been measured for more than a century using a wide range of experimental techniques. Despite this long history, reported surface tension values are not always in agreement; instead, they are distributed over a wider range than would be expected based on the stated accuracies of individual measurements. This discrepancy suggests the presence of systematic effects, such as contamination, that may be responsible for the observed deviations. Another unresolved issue in this context is the explanation of the Jones-Ray effect; the decrease of the surface tension of water for low concentrations of added salt. While some researchers attribute this effect to surface-active impurities, others argue that it represents a fundamental property of water itself. To gain more insight into these questions, an ultra-high vacuum (UHV) system for surface tension measurements was built in the surface-science group at TU Wien. Pendant drop tensiometry was selected as the measurement technique because it doesn't require any correction factors to calculate the surface tension and is well suited for operation in a UHV system. The aim of this diploma project is to use this system to perform highly accurate surface tension measurements of ultra-pure water in its own vapour. To enhance measurement accuracy, pneumatic vibration isolators were installed and the optical system was calibrated. Surface tension measurements were conducted over a range of temperatures, and after carefully selecting the results from the most stable pendant drops, the measured surface tension was found to be approximately 0.25 mN /m higher than the value generated from historical data. This result could indicate a contamination with surfactants in many historical experiments and can provide new insights into the Jones-Ray effect.
en
dc.language
English
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dc.language.iso
en
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dc.rights.uri
http://rightsstatements.org/vocab/InC/1.0/
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dc.subject
Oberflächenphysik
de
dc.subject
Oberflächenspannung
de
dc.subject
Wasser
de
dc.subject
Präzisionsmessungen
de
dc.subject
Surface Physics
en
dc.subject
Surface Tension
en
dc.subject
Water
en
dc.subject
Precision measurements
en
dc.title
The surface tension of ultrapure water in its pure vapour
en
dc.title.alternative
Die Oberflächenspannung von höchstreinem Wasser in einer Umgebung von reinem Wasserdampf
de
dc.type
Thesis
en
dc.type
Hochschulschrift
de
dc.rights.license
In Copyright
en
dc.rights.license
Urheberrechtsschutz
de
dc.identifier.doi
10.34726/hss.2026.139642
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dc.contributor.affiliation
TU Wien, Österreich
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dc.rights.holder
Martin Klein
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dc.publisher.place
Wien
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tuw.version
vor
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tuw.thesisinformation
Technische Universität Wien
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dc.contributor.assistant
Ryan, Paul
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tuw.publication.orgunit
E134 - Institut für Angewandte Physik
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dc.type.qualificationlevel
Diploma
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dc.identifier.libraryid
AC17818473
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dc.description.numberOfPages
32
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dc.thesistype
Diplomarbeit
de
dc.thesistype
Diploma Thesis
en
dc.rights.identifier
In Copyright
en
dc.rights.identifier
Urheberrechtsschutz
de
tuw.advisor.staffStatus
staff
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tuw.assistant.staffStatus
staff
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tuw.advisor.orcid
0000-0003-0319-5256
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item.fulltext
with Fulltext
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item.grantfulltext
open
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item.openairecristype
http://purl.org/coar/resource_type/c_bdcc
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item.cerifentitytype
Publications
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item.languageiso639-1
en
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item.openairetype
master thesis
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item.openaccessfulltext
Open Access
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item.mimetype
application/pdf
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crisitem.author.dept
E311-01-4 - Forschungsgruppe Fertigungsmesstechnik und adaptronische Systeme