New research suggests that aerosol particles may not have as cooling effect on the climate as previously thought. Cloud researcher Franziska Glassmeier and her team created an extensive data set of cloud simulations to better understand this effect, which they found to be overestimated by traditional ship-track data.
Researchers at Delft University of Technology develop an optical flow-based learning process that enables small flying drones to estimate distances through the visual appearance of objects in view. This allows for better navigation skills, including smoother landings and improved obstacle detection.
Researchers developed a new model that describes driving behavior based on a 'human' principle: managing risk below a threshold level. The model can accurately predict human behavior in various driving tasks and may be used in intelligent cars to reduce their 'robotic' feel.
Researchers have investigated the emergence and development of cracks in glaciers, revealing a feedback process that accelerates fractures and weakening. This process is key to determining the stability of ice sheets and their contribution to rising sea levels.
Researchers at Delft University of Technology have discovered a new loop structure in DNA, called the 'Z loop', which differs from traditional single loops and occurs more frequently. This discovery sheds light on how condensin proteins fold DNA into a zigzag structure through complex interactions.
Scientists from QuTech have observed experimental signatures of Nagaoka ferromagnetism using an engineered quantum system. This phenomenon was predicted by Japanese physicist Yosuke Nagaoka in 1966 and has never been observed naturally. The researchers created a two-dimensional lattice of four quantum dots, which allowed them to trap t...
A joint research team has successfully designed a swarm of tiny drones to explore unknown environments autonomously. The drones use a novel bug algorithm that enables them to navigate back to a base station while avoiding obstacles and detecting victims, showcasing the potential for swarms in search-and-rescue scenarios.
Researchers at Delft University of Technology have created a quantum circuit that enables the detection of weak radio signals, which could revolutionize fields like radio astronomy and medicine. The breakthrough opens up possibilities for experiments that explore the interplay between quantum mechanics and gravity.
Researchers at Delft University of Technology developed a new approach to calculate the fast estimation of solar energy potential in urban environments. The method uses two parameters derived from the skyline profile, which simplifies calculations and enables quick assessments of large urban areas.
Researchers at QuTech have developed a comprehensive guide towards a world-wide quantum internet, describing six phases of network development from simple qubit networks to fully quantum-connected computers. This will enable secure quantum communications and applications such as precise clock synchronization and virtual telescopes.
Researchers developed an autonomous, free-flying robot that mimics fruit flies' aggressive escape manoeuvres, demonstrating exceptional flight qualities and power efficiency. The DelFly Nimble has a top speed of 25 km/h and can perform agile maneuvers, making it suitable for future applications in drone technology.
Researchers at QuTech in Delft successfully generated quantum entanglement between two quantum chips faster than it's lost, enabling the creation of a future quantum internet. The breakthrough allows for the connection of multiple quantum nodes and the establishment of the world's first quantum network.
Researchers at Delft University of Technology provide definite proof for Majorana particle existence, showcasing perfect quantization of zero-bias peak. This achievement enables exploration of Majorana quantum computing, with potential applications in topological quantum computing.
Researchers from Delft University and EMBL Heidelberg witness the formation of DNA loops by a single protein complex called condensin, resolving a heated debate. The process involves condensin reeling in DNA to form loops, which are then extruded to compact the genome.
Researchers from TU Delft have found a way to convert the spin information of electrons into a predictable light signal at room temperature, bringing together spintronics and nanophotonics. This discovery could lead to the development of energy-efficient data processing methods.
Researchers have successfully coupled a single electron spin and a single photon on a silicon chip, enabling the transfer of quantum information between them. This breakthrough paves the way for scaling up quantum bits on silicon chips, a crucial step towards creating more powerful quantum computers.
Hawkeye's advanced eyesight can be used to explain the physiology of the human eye and its limitations. This can lead to discussions on genetic engineering, wearable technologies, and responsible innovation in genetics. The article suggests using Hawkeye as a tool for engaging students in scientific communication and outreach.
Scientists from TU Delft and colleagues show that condensin, a protein involved in packing DNA into chromosomes, has motor function. This discovery supports the 'loop-extrusion' model of chromosome packing, suggesting that condensin pulls DNA inwards to create loops.
Researchers discovered how bacteria build new cell walls by 'treadmilling', adding material to the front and removing it from the rear. This process allows for rapid cell division, with new cell walls constructed in just 10-15 minutes.
The stability of qubits can be maintained 100 times more effectively in silicon than in gallium arsenide, allowing for longer coherence times and improved gate fidelity. Researchers are now focused on scaling up the qubits for use in circuits of multiple interplaying qubits.
Researchers at Delft University of Technology develop a memory that stores information atom by atom using chlorine atoms, reaching a storage density of 500 Terabits per square inch. The innovative method uses a scanning tunneling microscope and offers excellent prospects for stability and scalability.
A new Delft model reveals that coastline erosion due to rising sea levels is greater than previously thought, particularly near inlets. The model accurately predicts coastline development in areas with high rainfall and compensating effects, such as basin infilling.
A study by researchers from TU Delft and the University of Groningen found that contemporary body-powered prosthetic hands perform equally or less well than those from 1987, with insufficient grip strength required to operate them. The study suggests that user overload problems may be a result of excessive operating force, highlighting...
Researchers from Delft University of Technology have discovered a crucial step in the DNA repair process, revealing how a broken DNA molecule efficiently searches for a matching sequence. The discovery uses a dual-molecule technique to clarify why certain sequences lead to quick dissociation while others form strong bonds.
Professor Marcel Stive is conducting a five-year project to produce long-term predictions for coastal change processes using a combination of satellite and video surveillance. The goal is to improve coastal zone planning and management by studying interactions on comprehensive time and space scales.
Researchers from Delft University of Technology have demonstrated that mobile electrons can be produced by a single light particle in quantum dot films, increasing solar cell efficiency. Up to 3.5 free electrons are created per absorbed light particle, surviving long enough to move freely through the material.
Scientists at Delft University of Technology have developed a new method using luminescence dating to determine the year of historic storm floods. By analyzing layers of sediment in the dunes near Heemskerk, they were able to establish that the flood occurred in either 1775 or 1776.
Researchers at Delft University of Technology found that smaller metal alloy nanoparticles release hydrogen gas more quickly when stored in a metal hydride. This could lead to more efficient hydrogen storage for fuel cells.
Researchers at Delft University of Technology have developed a cheap and efficient quantum dot solar cell by understanding electron movement in linked semiconductor nanoparticles. The discovery was published on Nature Nanotechnology, paving the way for more sustainable energy solutions.
The RainGain project aims to provide detailed precipitation and flooding data on an urban scale. TU Delft will utilize rain radar technology to measure local precipitation patterns in Rotterdam and other partner cities, enabling more effective urban water management and flood protection strategies.
Scientists at Delft University of Technology are developing a new toilet facility that uses microwave technology to transform human waste into electricity. The process involves drying, gasifying, and generating syngas, which is then fed to a fuel cell stack for electricity production.
Research by Ruud van der Ent shows that evaporation from the Amazon forest is responsible for 50% of rainfall in Peru and other surrounding countries. Land use changes such as irrigation, dams, and deforestation can alter evaporation patterns, affecting water resources in distant regions.
A team of researchers has developed a biomimetic nanopore that selectively transports individual proteins across its surface, mirroring the behavior of natural nuclear pores. The study uses functionalized key proteins to create a synthetic pore that can be used as a testing platform for drug delivery into a cell's nucleus.
Researchers at TU Delft have discovered that a moving bicycle can remain stable without relying on traditional gyroscopic or caster effects. By analyzing the dynamics of bicycle motion, they found a new approach to achieve self-stability.
Researchers at TU Delft have discovered that adding nanocrystals to solid electrolyte material can significantly increase the efficiency of fuel cells. The addition creates more space in the network, allowing protons to move freely and improving conductivity.
By adding subsoil information to a sedimentation and erosion model, researchers at Delft University of Technology gained a clearer picture of how rivers and deltas develop over time. This new understanding can help with delta management and reservoir geology, particularly in finding oil reserves.
Researchers at TU Delft are developing an objective, quantitative method to assess MRI scans for Crohn's disease activity. This new method aims to improve disease monitoring and reduce the need for colonoscopies, a stressful procedure.
Dutch researchers have successfully controlled qubits using electrical fields instead of magnetic ones, paving the way for a future super-fast quantum computer. They also embedded these qubits into semiconductor nanowires, which are ideal for quantum information processing.
Researchers at Delft University of Technology and Oxford University have developed a new, more robust type of nanopore device that combines biological and artificial building blocks. This technology has the potential to revolutionize DNA analysis by making it faster and cheaper.
Researchers have trained bacteria to efficiently convert sugars in agricultural bio-wastes into valuable chemicals for bioplastics. The optimized process enables the production of high-quality bioplastics from waste materials, reducing costs and increasing efficiency.
Henny Zandbergen receives EU funding to develop 'NanoElectrical Measurements in a Transmission Electron Microscope' (NEMinTEM) equipment and methods. This technology enables real-time measurements of electrical characteristics of nanostructures, paving the way for groundbreaking research.
Researchers are using analytics to identify patterns in the Dutch water system, enabling improvements in overall water management. Advanced algorithms and software will provide real-time insight into the water system, aiding decision-making for water boards and municipalities.
Researchers have revised estimates of Greenland and West Antarctica ice cap melting rates using GRACE satellites, GPS measurements, and glacial isostatic adjustment data. The corrected estimate shows the ice caps are melting at approximately half the predicted speed, resulting in a lower average sea level rise.
Researchers at Delft University of Technology have developed a novel technique to fabricate graphene nanopores that can detect individual DNA molecules as they pass through. This technology has the potential to significantly impact DNA sequencing by reading off the sequence base by base in real-time.
The VECTor device combines microPET and microSPECT techniques to provide higher resolution and enable simultaneous imaging. This allows for more detailed analysis of cell function and disease mechanisms in experimental animal models.
Researchers at TU Delft have discovered a way to break down harmful by-products in wood waste, enabling the production of biochemicals and biofuels without costly methods. This breakthrough paves the way for using wood waste as a sustainable raw material.
Researchers introduced a single bacterial gene into yeast to improve bioethanol production from agricultural waste, increasing ethanol yields while eliminating major byproducts glycerol and acetate. The innovation addresses second-generation bioethanol challenges, enabling more efficient and sustainable production.
Researchers at Delft University of Technology discovered that bacteria can retain motility in surprisingly narrow channels, growing and dividing instead of swimming. This new phenotype may be more common than thought, with implications for membrane filters and medical applications.
Researchers from TU Delft and CSR have developed a method to create an accurate picture of Greenland's ice loss, revealing a half-millimeter-rise in global sea levels per year. The study also shows that the ice loss is advancing towards the North of Greenland, particularly on the west coast.
A new technique has successfully revealed a hidden portrait of a woman behind Vincent van Gogh's 'Patch of Grass'. The method, using synchrotron radiation induced X-ray fluorescence spectroscopy, allowed researchers to reconstruct the concealed painting in unparalleled detail.