@masterthesis{Laubkermeier2022, type = {Bachelor Thesis}, author = {Laubkermeier, Kim}, title = {trust me}, publisher = {FH Aachen}, address = {Aachen}, pages = {94 Seiten}, year = {2022}, abstract = {"trust me" ist eine schwarz-weiß Fotoserie, pr{\"a}sentiert als Diashow mit unterlegtem Soundtrack. Es geht um das Vertrauen zwischen Model, Fotografin und Betrachter:innen. Die Darsteller sind ausschließlich homosexuelle M{\"a}nner und begeben sich in intime Situationen und Posen. Die Fotos sind {\"u}berwiegend Aktaufnahmen und nehmen eine pornografische Richtung an. Die Fragestellung zu Beginn war, wie weit vertrauen die unerfahrenen Models der Fotografin und was sind diese bereit, von sich zu zeigen. Die offene Kommunikation {\"u}ber die Richtung des Projekts war die essenzielle Basis f{\"u}r die Fotoshootings. W{\"a}hrend des Fotografierens lag der Fokus auf m{\"o}glichst verschiedenen Blickwinkeln, Kulissen, Ausleuchtungen und Motiven. Zus{\"a}tzlich war der sensible Umgang mit den M{\"a}nnern eine Vertrauensprobe."trust me" l{\"a}sst auf diversen Ebenen tief blicken und zeigt, wie loslassen aussieht.}, language = {de} } @article{Finkenberger2022, author = {Finkenberger, Isabel Maria}, title = {Transformatives Forschen, Lehren und Handeln im Rheinischen Braunkohlerevier}, series = {Forum Wohnen und Stadtentwicklung}, volume = {2022}, journal = {Forum Wohnen und Stadtentwicklung}, number = {2}, publisher = {vhw}, address = {Berlin}, issn = {1439-7242}, pages = {69 -- 72}, year = {2022}, abstract = {Die Institution Hochschule hat das Potenzial, {\"u}ber transformatives Forschen und Lehren und den entsprechenden Wissenstransfer in den lokalen Kontext strategisch-verl{\"a}ssliche Partnerin der Großen Transformation zur Nachhaltigkeit zu werden und bei der Ausbildung von Pionierinnen und Pionieren des Wandels mitzuwirken. Der Lehr- und Forschungsschwerpunkt „Zukunftsf{\"a}hige Transformation" am Fachbereich Architektur der FH Aachen widmet sich seit 2020 dem Tagebauumfeld Hambach im Rheinischen Revier, um dort angewandt und in Kooperation neue Narrative, innovative Prozesse, ortsbezogene Konzepte und strategische Projekte zu entwickeln und umzusetzen.}, language = {de} } @masterthesis{Neumann2022, type = {Bachelor Thesis}, author = {Neumann, Julius}, title = {Traces of urban change}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {72 Seiten}, year = {2022}, abstract = {Eine Stadt ist das Ergebnis eines komplexen Urbanisierungsprozesses. Dieser ist vor allem dadurch bestimmt, dass immer mehr Menschen in St{\"a}dten leben. Das Wachstum und Altern von St{\"a}dten machen st{\"a}ndige r{\"a}umliche und bauliche Ver{\"a}nderungen erforderlich. Die Bachelorarbeit verdeutlicht diese strukturellen Ver{\"a}nderungen der Stadt Aachen anhand von analogen Fotografien im Jahr 2022. Dabei werden Spuren aus unterschiedlichen Zeiten betrachtet und nat{\"u}rliche oder durch den Menschen beeinflusste Ver{\"a}nderungen in Form von Verfall, Nutzung und Erneuerung aufgezeigt. Ziel ist es, den Blick auf Details des urbanen Wandels zu richten, um diesen wahrnehmbar und bewusst zu machen. Die Betrachter:innen sollen zum Nachdenken und genauen Hinschauen angeregt werden. Die Fotografien versuchen den zur{\"u}ckliegenden Ver{\"a}nderungsprozess erkennen zu lassen und damit gewissermaßen dessen Geschichte abzubilden.}, language = {de} } @masterthesis{Bleeck2022, type = {Bachelor Thesis}, author = {Bleeck, Sophie}, title = {Trabic : zukunftsorientiertes Liefersystem f{\"u}r den urbanen Raum - Optimierte Paketlieferung auf der letzten Meile}, publisher = {FH Aachen}, address = {Aachen}, pages = {187 Seiten}, year = {2022}, abstract = {Der Onlinehandel boomt und die Anzahl an Paketsendungen w{\"a}chst stetig. Aktuelle Zustellmethoden sind jedoch nicht nachhaltig und st{\"o}ren den ohnehin schon {\"u}berlasteten innerst{\"a}dtischen Verkehr. Hier m{\"o}chte „TRABIC" Abhilfe schaffen. „TRABIC" ist ein nachhaltiges und zukunftsf{\"a}higes Liefersystem f{\"u}r den urbanen Raum. Die Kombination von innerst{\"a}dtischen Microhubs mit einem neuen Lieferfahrzeug schafft die Basis des Systems. Die den Lieferprozess begleitende KI erm{\"o}glicht einen effizient aufeinander abgestimmten Lieferprozess. Das Lieferfahrzeug bildet das Herz des Konzeptes und wurde auf der Basis eines Lastenrads entwickelt. Um eine effiziente Zustellung zu gew{\"a}hrleisten, wurde es an die Bed{\"u}rfnisse des Lieferprozesses und der Paketzusteller/innen angepasst. Damit erm{\"o}glicht „TRABIC" die Nutzung alternativer Verkehrswege, ist emissionsfrei und bietet somit eine attraktive Alternative zu verrufenen Zustellmethoden.}, language = {de} } @inproceedings{BurgethKleefeldZhangetal.2022, author = {Burgeth, Bernhard and Kleefeld, Andreas and Zhang, Eugene and Zhang, Yue}, title = {Towards Topological Analysis of Non-symmetric Tensor Fields via Complexification}, series = {Discrete Geometry and Mathematical Morphology}, booktitle = {Discrete Geometry and Mathematical Morphology}, editor = {Baudrier, {\´E}tienne and Naegel, Beno{\^i}t and Kr{\"a}henb{\"u}hl, Adrien and Tajine, Mohamed}, publisher = {Springer}, address = {Cham}, isbn = {978-3-031-19897-7}, doi = {10.1007/978-3-031-19897-7_5}, pages = {48 -- 59}, year = {2022}, abstract = {Fields of asymmetric tensors play an important role in many applications such as medical imaging (diffusion tensor magnetic resonance imaging), physics, and civil engineering (for example Cauchy-Green-deformation tensor, strain tensor with local rotations, etc.). However, such asymmetric tensors are usually symmetrized and then further processed. Using this procedure results in a loss of information. A new method for the processing of asymmetric tensor fields is proposed restricting our attention to tensors of second-order given by a 2x2 array or matrix with real entries. This is achieved by a transformation resulting in Hermitian matrices that have an eigendecomposition similar to symmetric matrices. With this new idea numerical results for real-world data arising from a deformation of an object by external forces are given. It is shown that the asymmetric part indeed contains valuable information.}, language = {en} } @article{WeldenPoghossianVahidpouretal.2022, author = {Welden, Melanie and Poghossian, Arshak and Vahidpour, Farnoosh and Wendlandt, Tim and Keusgen, Michael and Wege, Christina and Sch{\"o}ning, Michael Josef}, title = {Towards multi-analyte detection with field-effect capacitors modified with tobacco mosaic virus bioparticles as enzyme nanocarriers}, series = {Biosensors}, volume = {12}, journal = {Biosensors}, number = {1}, publisher = {MDPI}, address = {Basel}, issn = {2079-6374}, doi = {10.3390/bios12010043}, pages = {Artikel 43}, year = {2022}, abstract = {Utilizing an appropriate enzyme immobilization strategy is crucial for designing enzyme-based biosensors. Plant virus-like particles represent ideal nanoscaffolds for an extremely dense and precise immobilization of enzymes, due to their regular shape, high surface-to-volume ratio and high density of surface binding sites. In the present work, tobacco mosaic virus (TMV) particles were applied for the co-immobilization of penicillinase and urease onto the gate surface of a field-effect electrolyte-insulator-semiconductor capacitor (EISCAP) with a p-Si-SiO₂-Ta₂O₅ layer structure for the sequential detection of penicillin and urea. The TMV-assisted bi-enzyme EISCAP biosensor exhibited a high urea and penicillin sensitivity of 54 and 85 mV/dec, respectively, in the concentration range of 0.1-3 mM. For comparison, the characteristics of single-enzyme EISCAP biosensors modified with TMV particles immobilized with either penicillinase or urease were also investigated. The surface morphology of the TMV-modified Ta₂O₅-gate was analyzed by scanning electron microscopy. Additionally, the bi-enzyme EISCAP was applied to mimic an XOR (Exclusive OR) enzyme logic gate.}, language = {en} } @inproceedings{BlankeSchmidtGoettscheetal.2022, author = {Blanke, Tobias and Schmidt, Katharina S. and G{\"o}ttsche, Joachim and D{\"o}ring, Bernd and Frisch, J{\´e}r{\^o}me and van Treeck, Christoph}, title = {Time series aggregation for energy system design: review and extension of modelling seasonal storages}, series = {Energy Informatics}, volume = {5}, booktitle = {Energy Informatics}, number = {1, Article number: 17}, editor = {Weidlich, Anke and Neumann, Dirk and Gust, Gunther and Staudt, Philipp and Sch{\"a}fer, Mirko}, publisher = {Springer Nature}, issn = {2520-8942}, doi = {10.1186/s42162-022-00208-5}, pages = {14 Seiten}, year = {2022}, abstract = {Using optimization to design a renewable energy system has become a computationally demanding task as the high temporal fluctuations of demand and supply arise within the considered time series. The aggregation of typical operation periods has become a popular method to reduce effort. These operation periods are modelled independently and cannot interact in most cases. Consequently, seasonal storage is not reproducible. This inability can lead to a significant error, especially for energy systems with a high share of fluctuating renewable energy. The previous paper, "Time series aggregation for energy system design: Modeling seasonal storage", has developed a seasonal storage model to address this issue. Simultaneously, the paper "Optimal design of multi-energy systems with seasonal storage" has developed a different approach. This paper aims to review these models and extend the first model. The extension is a mathematical reformulation to decrease the number of variables and constraints. Furthermore, it aims to reduce the calculation time while achieving the same results.}, language = {en} } @article{MolinnusJanusFangetal.2022, author = {Molinnus, Denise and Janus, Kevin Alexander and Fang, Anyelina C. and Drinic, Aleksander and Achtsnicht, Stefan and K{\"o}pf, Marius and Keusgen, Michael and Sch{\"o}ning, Michael Josef}, title = {Thick-film carbon electrode deposited onto a biodegradable fibroin substrate for biosensing applications}, series = {Physica status solidi (a)}, volume = {219}, journal = {Physica status solidi (a)}, number = {23}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {1862-6319}, doi = {10.1002/pssa.202200100}, pages = {1 -- 9}, year = {2022}, abstract = {This study addresses a proof-of-concept experiment with a biocompatible screen-printed carbon electrode deposited onto a biocompatible and biodegradable substrate, which is made of fibroin, a protein derived from silk of the Bombyx mori silkworm. To demonstrate the sensor performance, the carbon electrode is functionalized as a glucose biosensor with the enzyme glucose oxidase and encapsulated with a silicone rubber to ensure biocompatibility of the contact wires. The carbon electrode is fabricated by means of thick-film technology including a curing step to solidify the carbon paste. The influence of the curing temperature and curing time on the electrode morphology is analyzed via scanning electron microscopy. The electrochemical characterization of the glucose biosensor is performed by amperometric/voltammetric measurements of different glucose concentrations in phosphate buffer. Herein, systematic studies at applied potentials from 500 to 1200 mV to the carbon working electrode (vs the Ag/AgCl reference electrode) allow to determine the optimal working potential. Additionally, the influence of the curing parameters on the glucose sensitivity is examined over a time period of up to 361 days. The sensor shows a negligible cross-sensitivity toward ascorbic acid, noradrenaline, and adrenaline. The developed biocompatible biosensor is highly promising for future in vivo and epidermal applications.}, language = {en} } @inproceedings{EggertChwallekWollf2022, author = {Eggert, Mathias and Chwallek, Constanze and Wollf, Frederik}, title = {The role of environmental factors for the success of digital start-ups}, series = {ECIS 2022 Research Papers}, booktitle = {ECIS 2022 Research Papers}, pages = {1 -- 16}, year = {2022}, abstract = {Digital start-ups are perceived as an engine for innovation and job promotor. While success factors for non-IT start-ups have already been extensively researched, this study sheds light on digital entrepreneurs, whose business model relies primarily on services based on digital technologies. Applying the Grounded Theory method, we identify relevant environmental success factors for digital entrepreneurs. The study's research contribution is threefold. First, we provide 16 relevant and less relevant environmental success factors, which enables a comparison with prior identified factors. We found out that several prior environmental success factors, such as accessibility to transportation or the availability of land and facilities are less relevant for a digital entrepreneur. Second, we derive and discuss hypotheses for the influence of these factors on digital start-up success. Third, we present a theoretical model that lays the foundation for explaining the environmental influence on digital entrepreneurship success.}, language = {de} } @masterthesis{Larscheid2022, type = {Bachelor Thesis}, author = {Larscheid, Maja Marlene}, title = {The Future of Fitness : Konzeption und Gestaltung einer digitalen Fitness- und Gesundheitsanwendung}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {153 Seiten}, year = {2022}, abstract = {Laut einer Langzeitstudie bewegt sich mehr als ein Viertel der Weltbev{\"o}lkerung - rund 2 Milliarden Menschen - zu wenig. Trotzdem ließ sich zuletzt klares Interesse an Fitness- und Gesundheitsm{\"o}glichkeiten am stetigen Anstieg der Fitnessstudio-Mitgliederzahl erkennen. Nachdem die Zahl seit 2006 jedes Jahr anstieg, fiel sie in den Pandemie-Jahren. Seit der Pandemie besteht also Bedarf nach einer flexibleren L{\"o}sung zu klassischen Studios. Um diesen Bedarf zu decken, wurde eine digitale L{\"o}sung zum Thema entwickelt. Dazu wurden Sport und Ern{\"a}hrung zusammengefasst. Das beinhaltet Videoanleitungen, Ern{\"a}hrungs- und Trainingsplanerstellung, individuelle K{\"o}rperanalyse im Onboarding-Prozess, Verbindung mit Wearables und ein flexibles Online- sowie Studioangebot. Meine Zielgruppe sind Menschen, die flexibel Sport machen, mit Sport anfangen oder ihre allgemeine Gesundheit verbessern wollen.}, language = {de} }