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Haberl"/></rdf:_1><rdf:_2><swrc:Person swrc:name="Thomas Kropf"/></rdf:_2></rdf:Seq></swrc:author></rdf:Description><rdf:Description rdf:about="http://www.bibsonomy.org/bibtex/22649bed93c15150bb5886cf056fb744a/jan.ruediger"><owl:sameAs rdf:resource="http://www.bibsonomy.org/uri/bibtex/22649bed93c15150bb5886cf056fb744a/jan.ruediger"/><rdf:type rdf:resource="http://swrc.ontoware.org/ontology#Article"/><swrc:date>Tue Feb 07 22:28:07 CET 2012</swrc:date><swrc:title>Soziale Netzwerkanalyse: Twitter</swrc:title><swrc:year>2012</swrc:year><swrc:keywords>diskurs handlung kassel konversationmodell linguistik netzwerkanalyse oberseminar soziale sprache twitter </swrc:keywords><swrc:author><rdf:Seq><rdf:_1><swrc:Person swrc:name="Jan Oliver Rüdiger"/></rdf:_1></rdf:Seq></swrc:author></rdf:Description><rdf:Description rdf:about="http://www.bibsonomy.org/bibtex/2a94da0a8e369d2098b8a8811e4ec646a/dblp"><owl:sameAs rdf:resource="http://www.bibsonomy.org/uri/bibtex/2a94da0a8e369d2098b8a8811e4ec646a/dblp"/><rdf:type rdf:resource="http://swrc.ontoware.org/ontology#Article"/><owl:sameAs rdf:resource="http://dblp.uni-trier.de/db/journals/tmi/tmi31.html#GlogerTLKLV12"/><swrc:date>Tue Feb 07 00:00:00 CET 2012</swrc:date><swrc:journal>IEEE Trans. Med. Imaging</swrc:journal><swrc:number>2</swrc:number><swrc:pages>312-325</swrc:pages><swrc:title>Prior Shape Level Set Segmentation on Multistep Generated Probability Maps of MR Datasets for Fully Automatic Kidney Parenchyma Volumetry.</swrc:title><swrc:volume>31</swrc:volume><swrc:year>2012</swrc:year><swrc:keywords>dblp </swrc:keywords><swrc:hasExtraField><swrc:Field swrc:value="http://dx.doi.org/10.1109/TMI.2011.2168609" swrc:key="ee"/></swrc:hasExtraField><swrc:author><rdf:Seq><rdf:_1><swrc:Person swrc:name="Oliver Gloger"/></rdf:_1><rdf:_2><swrc:Person swrc:name="Klaus D. Tönnies"/></rdf:_2><rdf:_3><swrc:Person swrc:name="Volkmar Liebscher"/></rdf:_3><rdf:_4><swrc:Person swrc:name="Bernd Kugelmann"/></rdf:_4><rdf:_5><swrc:Person swrc:name="Rene Laqua"/></rdf:_5><rdf:_6><swrc:Person swrc:name="Henry Volzke"/></rdf:_6></rdf:Seq></swrc:author></rdf:Description><rdf:Description rdf:about="http://www.bibsonomy.org/bibtex/25249b0c657546424a3fae4933de049c2/bkoch"><owl:sameAs rdf:resource="http://www.bibsonomy.org/uri/bibtex/25249b0c657546424a3fae4933de049c2/bkoch"/><rdf:type rdf:resource="http://swrc.ontoware.org/ontology#Article"/><swrc:date>Mon Feb 06 14:02:32 CET 2012</swrc:date><swrc:journal>J. Mater. Chem.</swrc:journal><swrc:pages>2878--2884</swrc:pages><swrc:title>Fabrication and applications of large arrays of multifunctional rolled-up
SiO/SiO2 microtubes</swrc:title><swrc:volume>22</swrc:volume><swrc:year>2012</swrc:year><swrc:keywords>microfluidics microtube phd </swrc:keywords><swrc:author><rdf:Seq><rdf:_1><swrc:Person swrc:name="Stefan M. Harazim"/></rdf:_1><rdf:_2><swrc:Person swrc:name="Wang Xi"/></rdf:_2><rdf:_3><swrc:Person swrc:name="Christine K. Schmidt"/></rdf:_3><rdf:_4><swrc:Person swrc:name="Samuel Sanchez"/></rdf:_4><rdf:_5><swrc:Person swrc:name="Oliver Schmidt"/></rdf:_5></rdf:Seq></swrc:author></rdf:Description><rdf:Description rdf:about="http://www.bibsonomy.org/bibtex/2af08d0557d6e756660c32312f11b2b34/dblp"><owl:sameAs rdf:resource="http://www.bibsonomy.org/uri/bibtex/2af08d0557d6e756660c32312f11b2b34/dblp"/><rdf:type rdf:resource="http://swrc.ontoware.org/ontology#Article"/><owl:sameAs rdf:resource="http://dblp.uni-trier.de/db/journals/dss/dss52.html#Martin-OliverS12"/><swrc:date>Mon Feb 06 00:00:00 CET 2012</swrc:date><swrc:journal>Decision Support Systems</swrc:journal><swrc:number>3</swrc:number><swrc:pages>612-623</swrc:pages><swrc:title>IT assets, organization capital and market power: Contributions to business value.</swrc:title><swrc:volume>52</swrc:volume><swrc:year>2012</swrc:year><swrc:keywords>dblp </swrc:keywords><swrc:hasExtraField><swrc:Field swrc:value="http://dx.doi.org/10.1016/j.dss.2011.10.019" swrc:key="ee"/></swrc:hasExtraField><swrc:author><rdf:Seq><rdf:_1><swrc:Person swrc:name="Alfredo Martín-Oliver"/></rdf:_1><rdf:_2><swrc:Person swrc:name="Vicente Salas-Fumás"/></rdf:_2></rdf:Seq></swrc:author></rdf:Description><rdf:Description rdf:about="http://www.bibsonomy.org/bibtex/2516bf01bd1705994ae3155ea36d0f630/bkoch"><owl:sameAs rdf:resource="http://www.bibsonomy.org/uri/bibtex/2516bf01bd1705994ae3155ea36d0f630/bkoch"/><rdf:type rdf:resource="http://swrc.ontoware.org/ontology#Article"/><owl:sameAs rdf:resource="http://pubs.acs.org/doi/abs/10.1021/ja205012j"/><swrc:date>Fri Feb 03 08:46:35 CET 2012</swrc:date><swrc:journal>Journal of the American Chemical Society</swrc:journal><swrc:number>38</swrc:number><swrc:pages>14860--14863</swrc:pages><swrc:title>Superfast Motion of Catalytic Microjet Engines at Physiological Temperature</swrc:title><swrc:volume>133</swrc:volume><swrc:year>2011</swrc:year><swrc:keywords>assay mtt phd </swrc:keywords><swrc:abstract> There is a great interest in reducing the toxicity of the fuel used to self-propel artificial nanomachines. Therefore, a method to increase the efficiency of the conversion of chemicals into mechanical energy is desired. Here, we employed temperature control to increase the efficiency of microjet engines while simultaneously reducing the amount of peroxide fuel needed. At physiological temperatures, i.e. 37 Â°C, only 0.25% H2O2 is needed to propel the microjets at 140 Î¼m sâ1, which corresponds to three body lengths per second. In addition, at 5% H2O2, the microjets acquire superfast speeds, reaching 10 mm sâ1. The dynamics of motion is altered when the speed is increased; i.e., the motion deviates from linear to curvilinear trajectories. The observations are modeled empirically. </swrc:abstract><swrc:hasExtraField><swrc:Field swrc:value="10.1021/ja205012j" swrc:key="doi"/></swrc:hasExtraField><swrc:hasExtraField><swrc:Field swrc:value="http://pubs.acs.org/doi/pdf/10.1021/ja205012j" swrc:key="eprint"/></swrc:hasExtraField><swrc:author><rdf:Seq><rdf:_1><swrc:Person swrc:name="Samuel Sanchez"/></rdf:_1><rdf:_2><swrc:Person swrc:name="Adithya N. Ananth"/></rdf:_2><rdf:_3><swrc:Person swrc:name="Vladimir M. Fomin"/></rdf:_3><rdf:_4><swrc:Person swrc:name="Marlitt Viehrig"/></rdf:_4><rdf:_5><swrc:Person swrc:name="Oliver G. Schmidt"/></rdf:_5></rdf:Seq></swrc:author></rdf:Description><rdf:Description rdf:about="http://www.bibsonomy.org/bibtex/2bedb4036e3613bd92419807a34ae8bcd/dblp"><owl:sameAs rdf:resource="http://www.bibsonomy.org/uri/bibtex/2bedb4036e3613bd92419807a34ae8bcd/dblp"/><rdf:type rdf:resource="http://swrc.ontoware.org/ontology#Article"/><owl:sameAs rdf:resource="http://dblp.uni-trier.de/db/journals/icl/icl12.html#MaCMSHT08"/><swrc:date>Fri Feb 03 00:00:00 CET 2012</swrc:date><swrc:journal>IEEE Communications Letters</swrc:journal><swrc:number>6</swrc:number><swrc:pages>459-461</swrc:pages><swrc:title>Experimental Demonstration of a Detection-Time-Bin-Shift Polarization Encoding Quantum Key Distribution System.</swrc:title><swrc:volume>12</swrc:volume><swrc:year>2008</swrc:year><swrc:keywords>dblp </swrc:keywords><swrc:hasExtraField><swrc:Field swrc:value="http://dx.doi.org/10.1109/LCOMM.2008.080237" swrc:key="ee"/></swrc:hasExtraField><swrc:author><rdf:Seq><rdf:_1><swrc:Person swrc:name="Lijun Ma"/></rdf:_1><rdf:_2><swrc:Person swrc:name="Tiejun Chang"/></rdf:_2><rdf:_3><swrc:Person swrc:name="Alan Mink"/></rdf:_3><rdf:_4><swrc:Person swrc:name="Oliver Slattery"/></rdf:_4><rdf:_5><swrc:Person swrc:name="Barry Hershman"/></rdf:_5><rdf:_6><swrc:Person swrc:name="Xiao Tang"/></rdf:_6></rdf:Seq></swrc:author></rdf:Description><rdf:Description rdf:about="http://www.bibsonomy.org/bibtex/2c4f5bde28f0f1cb4c96cd645e01f1e16/dblp"><owl:sameAs rdf:resource="http://www.bibsonomy.org/uri/bibtex/2c4f5bde28f0f1cb4c96cd645e01f1e16/dblp"/><rdf:type rdf:resource="http://swrc.ontoware.org/ontology#Article"/><owl:sameAs rdf:resource="http://dblp.uni-trier.de/db/journals/cn/cn56.html#CanoBO12"/><swrc:date>Fri Feb 03 00:00:00 CET 2012</swrc:date><swrc:journal>Computer Networks</swrc:journal><swrc:number>2</swrc:number><swrc:pages>915-926</swrc:pages><swrc:title>Wake up after transmissions and reduced channel contention to alleviate the hidden terminal problem in preamble sampling WSNs.</swrc:title><swrc:volume>56</swrc:volume><swrc:year>2012</swrc:year><swrc:keywords>dblp </swrc:keywords><swrc:hasExtraField><swrc:Field swrc:value="http://dx.doi.org/10.1016/j.comnet.2011.11.011" swrc:key="ee"/></swrc:hasExtraField><swrc:author><rdf:Seq><rdf:_1><swrc:Person swrc:name="Cristina Cano"/></rdf:_1><rdf:_2><swrc:Person swrc:name="Boris Bellalta"/></rdf:_2><rdf:_3><swrc:Person swrc:name="Miquel Oliver"/></rdf:_3></rdf:Seq></swrc:author></rdf:Description></rdf:RDF>
