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Limit loads can be calculated with the finite element method (FEM) for any component, defect geometry, and loading. FEM suggests that published long crack limit formulae for axial defects under-estimate the burst pressure for internal surface defects in thick pipes while limit loads are not conservative for deep cracks and for pressure loaded crack-faces. Very deep cracks have a residual strength, which is modelled by a global collapse load. These observations are combined to derive new analytical local and global collapse loads. The global collapse loads are close to FEM limit analyses for all crack dimensions.
Die Nutzung des Onlinehandels steigt seit Jahren kontinuierlich an. Für Händler:innen und ganz besonders für kleine Anbieter:innen, die zunehmend von größeren verdrängt werden, ist es wichtiger denn je, ihren Onlineauftritt auf den neuesten Stand zu bringen. Doch stellt dies die kleineren Anbieter:innen oftmals vor große Herausforderungen, denn der digitale Handel muss stets aktualisiert werden und kostet Zeit, Aufwand und Geld. „Localution“ ist eine digitale Plattform, die es lokalen Anbieter:innen möglich macht, mit wenig Aufwand eine Webseite aufzubauen. Zusätzlich sind Angebote buchbar, die den stationären Handel optimieren. Für Konsument:innen bietet „Localution“ die Möglichkeit, lokale Anbieter:innen in der Nähe zu finden und Termine zu buchen.
Isolierung, finanzielle Not und Zukunftsängste: Die sozialen Folgen des Corona-Lockdowns sind gravierend. Oftmals wird der Fokus in der Pandemie auf die wirtschaftlichen Folgen und die Auslastung des Gesundheitssystems gelegt, doch die Auswirkungen des Shutdowns sind weitaus vielschichtiger. Die Philippinen hatten einen der längsten und härtesten Lockdowns der Welt. Im internationalen Vergleich fällt auf, dass der Ton, den der Präsident anschlägt, besonders rau ist und die Einschränkungen des gesellschaftlichen Lebens strikt und gnadenlos sind. Der Dokumentarfilm „LOCKDOWN - a documentary about the corona crisis in the Philippines“ gibt einen Einblick in das Leben der Betroffenen. Aus Sicht der Befragten wird eine multiperspektivische Geschichte erzählt, die von dem Lockdown und seinen Folgen auf der philippinischen Insel Boracay handelt.
Ein hundert Seiten starkes Protestdokument, mit humorvollen, kritischen und zornigen gestalterischen Beiträgen Studierender des SS 05 (Julia Balkwitz, Kathrin Hartmann, Sandra Janiec, Thilo Klüppel, Judith Koch, Julia Kuhrmeyer, Kristina Mickartz, Anna Neumann, Melanie Neumann, Melina Oberscheven, Veronika Ripplinger, Silke Stendenbach und Marcus Wacker) / Seminar Prof. Casse-Schlüter zum Thema Studienreform – Bachelor / Master – und zur momentanen Besetzungssperre von Professorenstellen im FB Design.
Electronic cigarettes (e-cigarettes) have become popular worldwide with the market growing exponentially in some countries. The absence of product standards and safety regulations requires urgent development of analytical methodologies for the holistic control of the growing diversity of such products. An approach based on low-field nuclear magnetic resonance (LF-NMR) at 80 MHz is presented for the simultaneous determination of key parameters: carrier solvents (vegetable glycerine (VG), propylene glycol (PG) and water), total nicotine as well as free-base nicotine fraction. Moreover, qualitative and quantitative determination of fourteen weak organic acids deliberately added to enhance sensory characteristics of e-cigarettes was possible. In most cases these parameters can be rapidly and conveniently determined without using any sample manipulation such as dilution, extraction or derivatization steps. The method was applied for 37 authentic e-cigarettes samples. In particular, eight different organic acids with the content up to 56 mg/mL were detected. Due to its simplicity, the method can be used in routine regulatory control as well as to study release behaviour of nicotine and other e-cigarettes constituents in different products.
In the paper the results obtained from experiments at a modelled reinforced building in case of a direct lightning strike are compared with calculations. The comparison includes peak values of the magnetic field Hmax, its derivative (dH/dt)max and of induced voltages umax in typical cable routings. The experiments are performed at a 1:6 scaled building and the results are extrapolated using the similarity relations theory. The calculations are based on the approximate formulae given in IEC 62305-4 and have to be supplemented by a rough estimation of the additional shielding effect of a second reinforcement layer. The comparison shows, that the measured peak values of the magnetic field and its derivative are mostly lower than the calculated. The induced voltages are in good agreement. Hence, calculations of the induced voltages based on IEC 62305-4 are a good method for lightning protection studies of buildings, where the reinforcement is used as a grid-like electromagnetic shield.
For the application of the concept of Lightning Protection Zones (LPZ), the knowledge of the magnetic fields and induced voltages inside a structure is necessary. Laboratory experiments have been conducted at a downscaled model of a building (scale factor 1:6) to determine these electromagnetic quantities in case of a direct strike to the structure. The model (3 m x 2 m x 2 m) represented a small industrial building using the reinforcement of the concrete as electromagnetic shield. The magnetic fields and magnetic field derivatives were measured at several location inside the scaled model. Further, the voltages induced on three typical cable routes inside the model was determined. The influence of the lightning current waveshape, point-of-strike, bonding of the cable routes, and bridging of an expansion joint in the middle of the building on these quantities was studied.
Hydrophobic magnetic nanoparticles (NPs) consisting of undecanoate-capped magnetite (Fe3O4, average diameter ca. 5 nm) are used to control quantized electron transfer to surface-confined redox units and metal NPs. A two-phase system consisting of an aqueous electrolyte solution and a toluene phase that includes the suspended undecanoatecapped magnetic NPs is used to control the interfacial properties of the electrode surface. The attracted magnetic NPs form a hydrophobic layer on the electrode surface resulting in the change of the mechanisms of the surface-confined electrochemical processes. A quinone-monolayer modified Au electrode demonstrates an aqueous-type of the electrochemical process (2e-+2H+ redox mechanism) for the quinone units in the absence of the hydrophobic magnetic NPs, while the attraction of the magnetic NPs to the surface results in the stepwise single-electron transfer mechanism characteristic of a dry nonaqueous medium. Also, the attraction of the hydrophobic magnetic NPs to the Au electrode surface modified with Au NPs (ca. 1.4 nm) yields a microenvironment with a low dielectric constant that results in the single-electron quantum charging of the Au NPs.