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Gilbert-Taylor cones and multi-phase Electrospinning
Item type:
Thesis
,
Open Access
Gilbert-Taylor cones and multi-phase Electrospinning
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Files
dfg.pdf
(6.23 MB)
Date
2009-11-24
Authors
Großmann, Florian (139536183)
Publisher
Philipps-Universität Marburg
DOI
https://doi.org/10.17192/z2009.0693
Supervisors
Abstract
en
de
In this thesis a numerical method is developed, which allows to compute the shape of electrically charged liquid surfaces of droplets of finite conductivity.
Review
Metadata
Contributors
Supervisor:
Eckhardt, Bruno (Prof. Dr.)
Dates
Created
:
2009
Issued
:
2009-11-24
Updated
:
2011-08-10
DOI
https://doi.org/10.17192/z2009.0693
Faculty
Fachbereich Physik
Publisher
Philipps-Universität Marburg
Language
eng
Data types
DoctoralThesis
Keywords
Nichtlineare Integralgleichung
One-dimensional colloidal crystals
Gilbert Taylor Kegel
Nonlinear integral equation
Nanostructured materials in electrochemistry (for nanofabrication, see 81.16.-c
Inverse source problem
Eindimensionale kolloidale Kristalle
Electrified free liquid surfaces
Gilbert-Taylor cones
Geladene freie Flüssigkeitsoberflächen
DFG-subjects
Nonlinear integral equation
Taylor cone
Colloidal crystals
Electrified droplets
DDC-Numbers
530
License
https://rightsstatements.org/vocab/InC-NC/1.0/
URI
https://open.uni-marburg.de/handle/10.17192/z2009.0693
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Citation
BibTex
Großmann, Florian (139536183):
Gilbert-Taylor cones and multi-phase Electrospinning
. : Philipps-Universität Marburg 2009-11-24. DOI: https://doi.org/10.17192/z2009.0693.
License
This item has been published with the following license:
In Copyright