@article{Stulpe2014, author = {Stulpe, Werner}, title = {From the attempt of certain classical reformulations of quantum mechanics to quasi-probability representations}, series = {Journal of Mathematical Physics}, volume = {55}, journal = {Journal of Mathematical Physics}, number = {1}, publisher = {AIP Publishing}, address = {College Park, Md.}, issn = {222-488}, doi = {10.1063/1.4861939}, pages = {Artikel 012109}, year = {2014}, abstract = {The concept of an injective affine embedding of the quantum states into a set of classical states, i.e., into the set of the probability measures on some measurable space, as well as its relation to statistically complete observables is revisited, and its limitation in view of a classical reformulation of the statistical scheme of quantum mechanics is discussed. In particular, on the basis of a theorem concerning a non-denseness property of a set of coexistent effects, it is shown that an injective classical embedding of the quantum states cannot be supplemented by an at least approximate classical description of the quantum mechanical effects. As an alternative approach, the concept of quasi-probability representations of quantum mechanics is considered.}, language = {en} } @incollection{Stapenhorst2014, author = {Stapenhorst, Carolin}, title = {Organizzare l'addizione}, series = {Atlante di progettazione architettonica}, booktitle = {Atlante di progettazione architettonica}, editor = {Palma, Riccardo and Ravagnati, Carlo}, publisher = {Citt{\`a}StudiEdizioni}, address = {Mailand}, isbn = {978-88-251-7385-7}, pages = {490 -- 505}, year = {2014}, language = {it} } @misc{StadtmuellerTippkoetterUlber2014, author = {Stadtm{\"u}ller, R. and Tippk{\"o}tter, Nils and Ulber, Roland}, title = {Produktion von einzelstr{\"a}ngigen DNA-Makronukleotiden}, series = {Chemie Ingenieur Technik}, volume = {86}, journal = {Chemie Ingenieur Technik}, number = {9}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.201450372}, pages = {1403}, year = {2014}, abstract = {In der Biotechnologie stellt Einzelstrang-DNA (ssDNA) eine Schl{\"u}sselrolle dar und fungiert z. B. als Baustein f{\"u}r die nanoskalige Feinmechanik oder als Affinit{\"a}tsligand, ein sog. Aptamer. Hinsichtlich der industriellen Verwendung bieten Aptamere im Vergleich zu Antik{\"o}rpern viele Vorteile, wie z. B. eine gute Renaturierung bzw. die Selektion f{\"u}r cytotoxische Molek{\"u}le. Aktuell w{\"a}chst die Nachfrage f{\"u}r chim{\"a}re Aptamere von bis zu 200 n, um die simultane Bindung bzw. die Modifikation mehrerer Molek{\"u}le zu realisieren. Bis heute wird ssDNA mittels einer sequentiellen Synthese hergestellt, die eine Effizienz von ca. 99,5 \% je Zyklus und bereits bei einer Produktl{\"a}nge von 100 n nur noc hAusbeuten von max. 60 \% zeigt. Um dem Bedarf an ssDNA im Bereich > 100 n zu entsprechen, wurden zwei enzymatische Verfahren zur Produktion dieser Makronukleotide entworfen. Die erste Technik basiert auf einerFestphasen-PCR und erm{\"o}glicht sowohlein Primer- als auch ein Templatrecycling. Das zweite Verfahren beruht auf einer Plasmidbasierten In-vivo-Amplifikation, der sog. AptaGENE®-Technologie. In einer einzigen Klonierung werden bis zu 100 Kopien des Monomers in einen Vektor kloniert. Nach einer Transformation folgt der regul{\"a}re Produktionsprozess in Form einer Kultivierung, Plasmidpr{\"a}paration und sequenziellen Aufarbeitung von bis zu 6 · 10¹⁵ Makronukleotiden pro Milliliter Fermentationsvolumen.}, language = {de} } @article{StadlerGarveyEmbsetal.2014, author = {Stadler, Alexander Maximilian and Garvey, Christopher J. and Embs, Jan Peter and Koza, Michael Marek and Unruh, Tobias and Artmann, Gerhard and Zaccai, Guiseppe}, title = {Picosecond dynamics in haemoglobin from different species: A quasielastic neutron scattering study}, series = {Biochimica et biophysica acta (BBA): General Subjects}, volume = {1840}, journal = {Biochimica et biophysica acta (BBA): General Subjects}, number = {10}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1872-8006 (E-Journal); 0304-4165 (Print)}, doi = {10.1016/j.bbagen.2014.06.007}, pages = {2989 -- 2999}, year = {2014}, language = {en} } @article{SrivastavaLahiriMaitietal.2014, author = {Srivastava, A. and Lahiri, S. and Maiti, M. and Knolle, F. and Hoyler, Friedrich and Scherer, Ulrich W. and Schnug, E. W.}, title = {Study of naturally occurring radioactive material (NORM) in top soil of Punjab State from the North Western part of India}, series = {Journal of Radioanalytical and Nuclear Chemistry}, volume = {2014}, journal = {Journal of Radioanalytical and Nuclear Chemistry}, number = {302}, publisher = {Springer Nature}, address = {Basel}, issn = {1588-2780 (E-Journal); 0022-4081 (Print); 0134-0719 (Print); 0236-5731 (Print); 1417-2097 (Print)}, doi = {0.1007/s10967-014-3450-1}, pages = {1049 -- 1052}, year = {2014}, language = {en} } @article{SiqueiraMolinnusBegingetal.2014, author = {Siqueira, Jose R. and Molinnus, Denise and Beging, Stefan and Sch{\"o}ning, Michael Josef}, title = {Incorporating a hybrid urease-carbon nanotubes sensitive nanofilm on capacitive field-effect sensors for urea detection}, series = {Analytical chemistry}, volume = {86}, journal = {Analytical chemistry}, number = {11}, publisher = {ACS Publications}, address = {Columbus}, issn = {1520-6882 (E-Journal); 0003-2700 (Print); 0096-4484 (Print)}, doi = {10.1021/ac500458s}, pages = {5370 -- 5375}, year = {2014}, abstract = {The ideal combination among biomolecules and nanomaterials is the key for reaching biosensing units with high sensitivity. The challenge, however, is to find out a stable and sensitive film architecture that can be incorporated on the sensor's surface. In this paper, we report on the benefits of incorporating a layer-by-layer (LbL) nanofilm of polyamidoamine (PAMAM) dendrimer and carbon nanotubes (CNTs) on capacitive electrolyte-insulator-semiconductor (EIS) field-effect sensors for detecting urea. Three sensor arrangements were studied in order to investigate the adequate film architecture, involving the LbL film with the enzyme urease: (i) urease immobilized directly onto a bare EIS [EIS-urease] sensor; (ii) urease atop the LbL film over the EIS [EIS-(PAMAM/CNT)-urease] sensor; and (iii) urease sandwiched between the LbL film and another CNT layer [EIS-(PAMAM/CNT)-urease-CNT]. The surface morphology of all three urea-based EIS biosensors was investigated by atomic force microscopy (AFM), while the biosensing abilities were studied by means of capacitance-voltage (C/V) and dynamic constant-capacitance (ConCap) measureaments at urea concentrations ranging from 0.1 mM to 100 mM. The EIS-urease and EIS-(PAMAM/CNT)-urease sensors showed similar sensitivity (∼18 mV/decade) and a nonregular signal behavior as the urea concentration increased. On the other hand, the EIS-(PAMAM/CNT)-urease-CNT sensor exhibited a superior output signal performance and higher sensitivity of about 33 mV/decade. The presence of the additional CNT layer was decisive to achieve a urea based EIS sensor with enhanced properties. Such sensitive architecture demonstrates that the incorporation of an adequate hybrid enzyme-nanofilm as sensing unit opens new prospects for biosensing applications using the field-effect sensor platform.}, language = {en} } @article{Sillius2014, author = {Sillius, Sarah}, title = {„Viele machen gutes Marketing, ohne es zu wissen" : zwei Experten von FH [Prof. Dr. Gert Hoepner] und RWTH Aachen [Prof. Dr. Daniel Mentzel] erkl{\"a}ren, wie Unternehmen ihre Zielgruppe besser erreichen}, series = {Wirtschaftliche Nachrichten : das Magazin f{\"u}r Unternehmen / Industrie- und Handelskammer Aachen}, volume = {2014}, journal = {Wirtschaftliche Nachrichten : das Magazin f{\"u}r Unternehmen / Industrie- und Handelskammer Aachen}, number = {3}, publisher = {IHK Aachen}, address = {Aachen}, pages = {16 -- 18}, year = {2014}, language = {de} } @book{Siedenbiedel2014, author = {Siedenbiedel, Georg}, title = {Corporate Compliance : Grundelemente der strukturellen Integration von Compliance-Konzepten}, publisher = {NWB-Verl.}, address = {Herne}, isbn = {3-482-65131-0}, pages = {292 S.}, year = {2014}, language = {de} } @incollection{SchoeningPoghossianGluecketal.2014, author = {Sch{\"o}ning, Michael Josef and Poghossian, Arshak and Gl{\"u}ck, Olaf and Thust, Marion}, title = {Electrochemical methods for the determination of chemical variables in aqueous media}, series = {Measurement, instrumentation, and sensors handbook / ed. by John G. Webster [u.a.] Vol. 2 : Electromagnetic, optical, radiation, chemical, and biomedical measurement}, booktitle = {Measurement, instrumentation, and sensors handbook / ed. by John G. Webster [u.a.] Vol. 2 : Electromagnetic, optical, radiation, chemical, and biomedical measurement}, publisher = {CRC Pr.}, address = {Boca Raton, Fla.}, isbn = {978-1-4398-4891-3}, pages = {55-1 -- 55-54}, year = {2014}, language = {en} } @incollection{SchoeningPoghossianGluecketal.2014, author = {Sch{\"o}ning, Michael Josef and Poghossian, Arshak and Gl{\"u}ck, Olaf and Thust, Marion}, title = {Electrochemical composition measurement}, series = {Measurement, instrumentation, and sensors handbook: electromagnetic, optical, radiation, chemical, and biomedical measuremen}, booktitle = {Measurement, instrumentation, and sensors handbook: electromagnetic, optical, radiation, chemical, and biomedical measuremen}, edition = {2nd ed.}, publisher = {CRC Pr.}, address = {Boca Raton, Fa.}, isbn = {978-1-4398-4891-3}, pages = {55-1 -- 55-54}, year = {2014}, language = {en} }