@article{ChwallekNawrathKrastinaetal.2024, author = {Chwallek, Constanze and Nawrath, Lara and Krastina, Anzelika and Bruksle, Ieva}, title = {Supportive research on sustainable entrepreneurship and business practices}, series = {SECA Sustainable Entrepreneurship for Climate Action}, journal = {SECA Sustainable Entrepreneurship for Climate Action}, number = {3}, publisher = {Lapland University of Applied Sciences Ltd}, address = {Rovaniemi}, isbn = {978-952-316-514-4 (pdf)}, issn = {2954-1654 (on-line publication)}, pages = {67 Seiten}, year = {2024}, language = {en} } @article{HafidiElHatkaSchmitzetal.2024, author = {Hafidi, Youssef and El Hatka, Hicham and Schmitz, Dominik and Krauss, Manuel and Pettrak, J{\"u}rgen and Biel, Markus and Ittobane, Najim}, title = {Sustainable soil additives for water and micronutrient supply: swelling and chelating properties of polyaspartic acid hydrogels utilizing newly developed crosslinkers}, series = {Gels}, volume = {10}, journal = {Gels}, number = {3}, publisher = {MDPI}, address = {Basel}, issn = {2310-2861}, doi = {10.3390/gels10030170}, pages = {Artikel 170}, year = {2024}, abstract = {Drought and water shortage are serious problems in many arid and semi-arid regions. This problem is getting worse and even continues in temperate climatic regions due to climate change. To address this problem, the use of biodegradable hydrogels is increasingly important for the application as water-retaining additives in soil. Furthermore, efficient (micro-)nutrient supply can be provided by the use of tailored hydrogels. Biodegradable polyaspartic acid (PASP) hydrogels with different available (1,6-hexamethylene diamine (HMD) and L-lysine (LYS)) and newly developed crosslinkers based on diesters of glycine (GLY) and (di-)ethylene glycol (DEG and EG, respectively) were synthesized and characterized using Fourier transform infrared (FTIR) spectroscopy and scanning electron microscopy (SEM) and regarding their swelling properties (kinetic, absorbency under load (AUL)) as well as biodegradability of PASP hydrogel. Copper (II) and zinc (II), respectively, were loaded as micronutrients in two different approaches: in situ with crosslinking and subsequent loading of prepared hydrogels. The results showed successful syntheses of di-glycine-ester-based crosslinkers. Hydrogels with good water-absorbing properties were formed. Moreover, the developed crosslinking agents in combination with the specific reaction conditions resulted in higher water absorbency with increased crosslinker content used in synthesis (10\% vs. 20\%). The prepared hydrogels are candidates for water-storing soil additives due to the biodegradability of PASP, which is shown in an exemple. The incorporation of Cu(II) and Zn(II) ions can provide these micronutrients for plant growth.}, language = {en} } @book{StaatDigelTrzewiketal.2024, author = {Staat, Manfred and Digel, Ilya and Trzewik, J{\"u}rgen and Sielemann, Stefanie and Erni, Daniel and Zylka, Waldemar}, title = {Symposium Proceedings; 4th YRA MedTech Symposium 2024 : February 1 / 2024 / FH Aachen}, publisher = {Universit{\"a}t Duisburg-Essen}, address = {Duisburg}, organization = {MedTech Symposium}, isbn = {978-3-940402-65-3}, doi = {10.17185/duepublico/81475}, pages = {40 Seiten}, year = {2024}, language = {en} } @article{OezsoyluAliaziziWagneretal.2024, author = {{\"O}zsoylu, Dua and Aliazizi, Fereshteh and Wagner, Patrick and Sch{\"o}ning, Michael Josef}, title = {Template bacteria-free fabrication of surface imprinted polymer-based biosensor for E. coli detection using photolithographic mimics: Hacking bacterial adhesion}, series = {Biosensors and Bioelectronics}, volume = {261}, journal = {Biosensors and Bioelectronics}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1873-4235 (eISSN)}, doi = {10.1016/j.bios.2024.116491}, pages = {11 Seiten}, year = {2024}, abstract = {As one class of molecular imprinted polymers (MIPs), surface imprinted polymer (SIP)-based biosensors show great potential in direct whole-bacteria detection. Micro-contact imprinting, that involves stamping the template bacteria immobilized on a substrate into a pre-polymerized polymer matrix, is the most straightforward and prominent method to obtain SIP-based biosensors. However, the major drawbacks of the method arise from the requirement for fresh template bacteria and often non-reproducible bacteria distribution on the stamp substrate. Herein, we developed a positive master stamp containing photolithographic mimics of the template bacteria (E. coli) enabling reproducible fabrication of biomimetic SIP-based biosensors without the need for the "real" bacteria cells. By using atomic force and scanning electron microscopy imaging techniques, respectively, the E. coli-capturing ability of the SIP samples was tested, and compared with non-imprinted polymer (NIP)-based samples and control SIP samples, in which the cavity geometry does not match with E. coli cells. It was revealed that the presence of the biomimetic E. coli imprints with a specifically designed geometry increases the sensor E. coli-capturing ability by an "imprinting factor" of about 3. These findings show the importance of geometry-guided physical recognition in bacterial detection using SIP-based biosensors. In addition, this imprinting strategy was employed to interdigitated electrodes and QCM (quartz crystal microbalance) chips. E. coli detection performance of the sensors was demonstrated with electrochemical impedance spectroscopy (EIS) and QCM measurements with dissipation monitoring technique (QCM-D).}, language = {en} } @inproceedings{RuettersBragardDolls2024, author = {R{\"u}tters, Ren{\´e} and Bragard, Michael and Dolls, Sarah}, title = {The Inverted Rotary Pendulum: Facilitating Practical Teaching in Advanced Control Engineering}, series = {2024 IEEE Global Engineering Education Conference (EDUCON)}, booktitle = {2024 IEEE Global Engineering Education Conference (EDUCON)}, publisher = {IEEE}, address = {New York, NY}, issn = {2165-9559}, doi = {10.1109/EDUCON60312.2024.10578937}, pages = {5 Seiten}, year = {2024}, abstract = {This paper outlines a practical approach to teach control engineering principles, with an inverted rotary pendulum, serving as an illustrative example. It shows how the pendulum is embedded in an advanced course of control engineering. This approach is incorporated into a flipped-classroom concept, as well as classical teaching concepts, offering students practical experience in control engineering. In addition, the design of the pendulum is shown, using a Raspberry Pi as the target platform for Matlab Simulink. This pendulum can be used in the classroom to evaluate the controller design mentioned above. It is analysed if the use of the pendulum generates a deeper understanding of the learning contents.}, language = {en} } @masterthesis{Naujoks2024, type = {Bachelor Thesis}, author = {Naujoks, Christian}, title = {Tracking healthy habits : Digitale Anwendung zur F{\"o}rderung von gesunder Ern{\"a}hrung und Verhalten}, publisher = {FH Aachen}, address = {Aachen}, pages = {293 Seiten}, year = {2024}, abstract = {"Tracking healthy habits" ist eine App, die darauf abzielt, ges{\"u}ndere Essgewohnheiten und mehr Bewegung zu f{\"o}rdern, indem sie verschiedene messbare Metriken erfasst. Die Anwendung legt einen besonderen Schwerpunkt auf das Verfolgen von Kalorien, um Nutzer:innen dabei zu helfen, ihre t{\"a}gliche Kalorienaufnahme zu kontrollieren und ein besseres Verst{\"a}ndnis f{\"u}r Lebensmittel zu entwickeln. Ein {\"u}berm{\"a}ßiger Konsum ungesunder Lebensmittel und Bewegungsmangel k{\"o}nnen sich negativ auf den geistigen und k{\"o}rperlichen Zustand auswirken. Daher unterst{\"u}tzt diese App Nutzer:innen dabei, ges{\"u}ndere Gewohnheiten zu entwickeln und Disziplin zu f{\"o}rdern. Die Hauptziele von "Tracking Healthy Habits" sind die F{\"o}rderung ges{\"u}nderer Essgewohnheiten, die Unterst{\"u}tzung langfristiger Verhaltens{\"a}nderungen durch kontinuierliches Monitoring und die Verbesserung der k{\"o}rperlichen sowie geistigen Gesundheit.}, language = {de} } @incollection{Finkenberger2024, author = {Finkenberger, Isabel Maria}, title = {Transformatives Handeln als disziplin{\"u}berschreitende, kollektive Aktion. Stadtentwicklung trifft k{\"u}nstlerische und kollaborative Handlungspraxen}, series = {Por{\"o}s-Werden : geteilte R{\"a}ume, urbane Dramaturgien, performatives Kuratieren}, booktitle = {Por{\"o}s-Werden : geteilte R{\"a}ume, urbane Dramaturgien, performatives Kuratieren}, editor = {B{\"u}scher, Barbara and Krasny, Elke and Ortmann, Lucie}, publisher = {Turia + Kant}, address = {Wien}, isbn = {978-3-98514-543-0}, pages = {144 -- 158}, year = {2024}, language = {de} } @masterthesis{Stein2024, type = {Bachelor Thesis}, author = {Stein, Hannah}, title = {Tr{\"a}ume hoch, klein Dani!}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {120 Seiten}, year = {2024}, abstract = {"Tr{\"a}ume hoch, klein Dani!" ist ein Pappkinderbuch mit Schieb- und Drehfunktionen f{\"u}r Kinder ab 3 Jahren. Diese Bachelorarbeit beinhaltet das Schreiben einer Kindergeschichte, das Gestalten der Illustrationen, das Konzeptionieren der interaktiven Funktionen und das Binden und Bauen des Buches. Gut gestaltete Kinderb{\"u}cher spielen eine entscheidende Rolle bei der Entwicklung von Kindern. Kinderb{\"u}cher f{\"o}rdern die Sprachentwicklung, unterst{\"u}tzen kritisches Denken, lehren wichtige Werte und Moral, beg{\"u}nstigen das Lernen der Grundlagen des Lesens und Schreibens und regen die Kreativit{\"a}t an. Pappb{\"u}cher mit zus{\"a}tzlichen interaktiven Funktionen trainieren die Hand- und Augenkoordination und damit die motorischen F{\"a}higkeiten des Kindes. Ziel war es, ein Pappkinderbuch f{\"u}r junge Kinder zu gestalten, das Jung und Alt begeistert und Spaß bereitet.}, language = {de} } @masterthesis{Frings2024, type = {Bachelor Thesis}, author = {Frings, Christina}, title = {Unerw{\"u}nscht : Anti-Gestaltung im {\"o}ffentlichen Raum}, publisher = {FH Aachen}, address = {Aachen}, school = {Fachhochschule Aachen}, pages = {55 Seiten}, year = {2024}, abstract = {»Unerw{\"u}nscht« widmet sich einer Art von architektonischer Gestaltung, die auf t{\"u}ckische Weise als »defensive Architektur« bezeichnet wird. In Form einer Zeitung bietet sie einen umfassenden Einblick in das Thema und gew{\"a}hrt einen vielseitigen Blick in eine Thematik, die im Interesse der Verantwortlichen lieber im Verborgenen geblieben w{\"a}re. Defensive Architektur bezeichnet strategische Baumaßnahmen in der Stadt- und Bauplanung, die darauf abzielen, unerw{\"u}nschte Personengruppen durch unpraktisches oder unbequemes Design von bestimmten Orten fernzuhalten. Diese Maßnahmen richten sich beispielsweise gegen obdachlose Menschen, Jugendliche oder Skateboarder*innen. Die {\"u}berwiegende Mehrheit der Bev{\"o}lkerung ist sich weder der Existenz von solchen architektonischen Maßnahmen noch ihrer Auswirkungen auf das Leben der Betroffenen bewusst. »Unerw{\"u}nscht« zielt darauf ab, diese L{\"u}cke in der {\"o}ffentlichen Wahrnehmung zu schließen.}, language = {de} } @inproceedings{KramerBragardRitzetal.2024, author = {Kramer, Pia and Bragard, Michael and Ritz, Thomas and Ferfer, Ute and Schiffers, Tim}, title = {Visualizing, Enhancing and Predicting Students' Success through ECTS Monitoring}, series = {2024 IEEE Global Engineering Education Conference (EDUCON)}, booktitle = {2024 IEEE Global Engineering Education Conference (EDUCON)}, publisher = {IEEE}, address = {New York, NY}, issn = {2165-9559}, doi = {10.1109/EDUCON60312.2024.10578652}, pages = {5 Seiten}, year = {2024}, abstract = {This paper serves as an introduction to the ECTS monitoring system and its potential applications in higher education. It also emphasizes the potential for ECTS monitoring to become a proactive system, supporting students by predicting academic success and identifying groups of potential dropouts for tailored support services. The use of the nearest neighbor analysis is suggested for improving data analysis and prediction accuracy.}, language = {en} }