Researchers found that random packings of disks always form a periodic structure, achieving higher densities than random arrangements. The probability of a channel not being periodic decreases exponentially with increasing fill level, regardless of container width.
Peter Wasserscheid receives second Advanced Investigator Grant from European Research Council to explore fundamental new concept in catalysis based on metal droplets with low melting point. This research has the potential to replace expensive precious metals with cost-effective alternatives.
Geographers from FAU investigate ancient dust deposits to draw conclusions about settlement structures, crops, landscape changes, and climate fluctuations. The study aims to understand the cultural growth and decline of the Southern Levant region between the Iron Age and Byzantine period.
Researchers at Friedrich-Alexander-Universität Erlangen-Nürnberg have identified a new molecular cause of aggressive infant leukemia in children. The study found that changes in genes in white blood cells disrupt cell growth control, leading to the production of abnormal proteins that facilitate leukaemia.
Physicists at FAU have demonstrated that macroscopic particles rotating in opposite directions form homogeneous groups. The researchers used miniature robots manufactured using 3D printing methods for their experiment. After only one minute, single domains were clearly visible, and after 15 minutes, the robots had almost entirely demixed.
A new EIT Health project, 'MoveIT', aims to analyze gait patterns and warn patients of potential falls. The project uses sensors placed on patients' shoes and upper body to gather data for further research.
Researchers from FAU found warning signs of mass extinction existed 700,000 years before the event, including fossil records of dying species. They also note that current global warming, ocean acidification, and oxygen lack are evident in today's biodiversity crisis.
A Master's student at FAU has developed a method to assign blue-green algae fossils to specific species using crystallography. By comparing fossil structures with microfossils, researchers found that blue-green algae have a less structured pattern with many misorientations in crystals.
Scientists from FAU, University of Leicester and University of Vigo have proven that the kinetic energy of particles in granular gases can increase temporarily due to surface adhesion. This effect contradicts Haff's law, which states that granular temperature decreases in closed systems.
A study published in Nature Communications found that an oxygen sensor in the body reduces inflammation by activating HIF-1α, which inhibits excessive immune responses. This molecular mechanism could lead to new approaches for treating chronic inflammatory diseases such as arthritis and multiple sclerosis.
Researchers at FAU have deciphered what causes life-threatening inflammation of the intestines after a stem cell transplant, identifying a protein named BATF as a central switch in donor T-lymphocytes. The discovery may lead to new therapies to influence inflammation and increase patients' chances of survival.
Researchers analyzed over 540,000 tweets to find nearly 80% of them were duplicates or re-tweets originating from bot accounts. The study found that right-wing internet activists used social bots to spread nationalistic content and boosted Abe's election campaign.
A joint research project is questioning the authenticity of pictures of Luther, exploring whether the images depict him at a certain moment in his life or represent later heroification and veneration. The project uses technological examinations, digital analysis, and scientific methods to date and authenticate the images.
Researchers from FAU are studying German cities' bids for European Capital of Culture to understand the impact on EU culture and identity. Initial findings suggest that cities prioritize cooperation over competition, highlighting the initiative's potential as a counter-balance to EU politics.
Researchers at Friedrich-Alexander-Universität Erlangen-Nürnberg found that a fiber-rich diet can reduce arthritis symptoms by changing the intestinal bacteria and increasing short-chained fatty acids. These fatty acids have anti-inflammatory properties and can help slow bone degradation.
Researchers are developing miniaturized sensor systems that can be produced on an industrial scale to monitor NO2 levels in metropolitan areas and detect cancers. The project combines different sensor components to analyze complex gas mixtures and fine-tunes the functionality of materials used.
Researchers at FAU have identified two mechanisms by which H. pylori destroys the stomach's protective layer, allowing bacteria to access deeper tissue layers and inflict further damage. The team also discovered that the injected bacterial toxin reprograms host cells, making them potentially cancerous.
Researchers have successfully developed a method to analyze microscopic structures using incoherently scattered light, improving the analysis of small-scale biological systems. The technique has the potential to enhance imaging capabilities in fields like biology and medicine.
Researchers at FAU successfully developed a new technique to generate an optical field that can be influenced with great precision, enabling light and electrons to coincide within 'attoseconds'. This allows for high-energy acceleration of electrons, promising applications in materials science, biology, and medicine.
Nerve cell networks reorganize themselves during periods of inactivity, becoming hypersensitive and prone to overreaction when signals are reinstated. Researchers developed a high-speed microscopy process to visualize communication networks of living neurons, shedding light on the effects of blocking neural pathways.
Researchers from FAU have successfully controlled electronic current in graphene using a single laser pulse within a femtosecond, generating a current that is more than a thousand times faster than the most efficient transistors today. The method uses light waves to regulate electron movement and generate electricity.
Researchers at FAU have discovered a new material concept that enables more efficient and cost-effective catalysts. Gallium-based alloy complexes show significant performance over standard technical catalysts, with minimal deactivation even when carbon deposits form.
Researchers are working on a method to distribute processing power to programs based on their needs, enabling computers to cope with future requirements. This approach aims to prevent unpredictable delays and frequent interruptions by providing accurate information regarding application needs.
Scientists develop an artificial silk protein that can be used to engineer cardiac tissue, demonstrating its suitability for repairing damaged heart cells. The protein, eADF4(κ16), was produced in large quantities and shown to support the growth of cardiac cells, with potential implications for treating cardiac insufficiency.
A study by FAU researchers found that men tend to be more aggressive than women in competitive situations, while team players exhibit less aggression. Cortisol levels also decreased in participants exhibiting aggressive behavior.
Physicists from FAU and DESY have developed a method to improve X-ray image quality, enabling the visualization of individual atoms in molecules at higher resolutions. The new technique uses incoherent radiation and time-resolved snapshots to overcome limitations of conventional coherent imaging methods.
A team of researchers at FAU has identified a key mechanism involved in the resolution of inflammations in rheumatoid arthritis patients. Innate lymphoid cells can induce a 'hibernation' state, which persists in those with rheumatism but is reversed when these cells are 'woken up', stopping inflammation and joint damage.
A team of Polish astronomers identified a new class of variable dwarf stars with shorter oscillation periods and higher surface temperatures than known classes. The newly discovered BLAPs are hotter and more compact than previously thought, posing an enigma in the field of astronomy.
Researchers at FAU successfully manipulated the properties of hybrid systems made from carbon nanostructures and a dye. The team discovered that light stimulation could transfer electrons between the dye and carbon structures, a crucial requirement for dye-sensitised solar cells.
Researchers in Erlangen and Jena have achieved high-precision measurement of the wave characteristics of focused, ultra-short light pulses. This will enable targeted influence on electrons and chemical reactions.
Researchers at FAU have developed a detailed model of the singlet fission process, which could lead to a 50% increase in solar cell performance. By analyzing intermediate phases, they identified key steps in the process and provided new insights into molecule design.
Researchers at FAU investigated the formation of rot in grapes and found that certain mould fungi can produce a range of aromas, including fruity and floral notes. The study suggests that wine producers may be able to harness these alteration processes to create new, desirable flavors.
The FAU-based project 'E|Connect' aims to improve the performance and reliability of on-board networks in mechatronic systems. Researchers will investigate ways to optimize these networks for higher speeds, larger numbers of nodes, and better power delivery.
The CorsicArchive project, funded by the German Research Foundation, uses tree ecology, hydrology and climatology to analyze past and present climate changes. The researchers aim to understand the effects of climate extremes on forest ecosystems and provide insights for forestry industry and tourism.
Andreas Hirsch aims to develop new areas of application for black phosphorus, which could make batteries last longer or enable solar cells to produce more electrical energy. His research may lead to the generation of new fields of application for the substance, including the development of more powerful and efficient batteries.
A new robot technology reveals that the ADAM10 signalling pathway is activated during melanoma transformation, enabling a better diagnosis and potential simplification of detection methods. The research suggests avoiding cosmetic products with aluminium, which can activate this pathway.
Researchers employed high-resolution microscopy techniques to study the formation mechanism of butterfly wing scales. The green butterfly features separated photonic crystal domains that increase in size from base to tip, suggesting time-frozen growth stages.
A young researcher at FAU has studied what causes recycled plastic to smell, identifying key contaminants such as mouldy, cheesy, or acidic-smelling molecules. The study's findings will help scientists develop strategies for reducing odours in recycled plastics.
Researchers at FAU have successfully assembled and tested conductors and networks made of individual molecules. The 'Lego bricks' can fabricate the smallest nanostructures under precision-controlled conditions, opening up possibilities for optoelectronic applications.
Chemists at FAU have developed a novel synthetic route towards antiviral quinazoline heterocycles using metal-free domino processes. This approach reduces lab work time, costs, and waste, while creating new compounds with intrinsic fluorescence properties.
FAU researchers identified Zeb1 as a key factor that activates embryonic programme, leading to rapid dissemination and metastasis in pancreatic cancer. They also found that blocking Zeb1 reduces metastatic capacity in other tumour types.
Researchers from FAU identified substances responsible for smelly toys, including cyclohexanone and isophorone, which may cause physiological concerns. The study aims to further examine the effects of these substances on consumers, manufacturers, and retailers over longer periods.
Engineers at FAU have successfully produced complex crystal lattices, so-called clathrates, using DNA strands and nanoparticles. The team achieved this by reordering pyramid-shaped gold crystals to form clathrate compounds through a self-assembling process.
Researchers used deep learning and machine learning techniques to analyze S&P 500 data, achieving statistically significant and economically substantial returns. The findings challenge the efficient-market hypothesis and suggest AI can excel in times of high volatility.
Researchers at FAU have created a method to combine exhaust gas purification with the synthesis of high-value products. Nitrogen oxides can be used to produce balsalazide and sulfasalazine, two drugs for chronic inflammatory bowel diseases.
Researchers at FAU successfully generate electron packets with lengths of 1.3 femtoseconds, enabling imaging of atomic movements on ultra-short time scales. The method uses laser-controlled acceleration, deceleration, and deflection of electrons, paving the way for ultra-high resolution electron microscopes.
Professor Erik Bitzek aims to investigate the interactions between cracks and material defects to improve understanding of breaking processes in metals, intermetallic compounds, and semiconductors. He seeks realistic results through micromechanical models and fracture tests to develop novel, fail-safe materials.
Researchers at FAU Erlangen-Nürnberg have developed a new sheet bulk metal forming process that combines two manufacturing methods to create complex functional components with wider applications. The project aims to improve the surface contact, reduce tool wear, and enable batch production for industry partners.
Researchers at FAU's Computer Chemistry Center are developing an AI application to predict odor molecules, neutralizing undesirable smells in packaging and products. The project aims to improve product development efficiency, reducing trial-and-error experiments.
Researchers at FAU are developing a new hybrid device to combine magnetic resonance imaging and angiography for faster stroke diagnosis and treatment. This innovative approach aims to reduce the time needed for patient transfers and save valuable time when treating stroke patients.