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Delft University of Technology


Antarctica: cracks in the ice

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.

SourceDelft University of Technology·JournalProceedings of the National Academy of Sciences·DateSep 14, 2020

Zigzag DNA

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.

The magnet that didn't exist

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...

Listening to quantum radio

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.

SourceDelft University of Technology·JournalScience·DateMar 8, 2019

Majorana trilogy completed

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.

Development of prosthetic hands stagnated for 20 years

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...

SourceDelft University of Technology·JournalThe Journal of Rehabilitation Research and Development·DateJun 12, 2012

DNA through graphene nanopores

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.

SourceDelft University of Technology·JournalNano Letters·DateJul 9, 2010

Flat bacteria in nanoslits

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.

SourceDelft University of Technology·JournalProceedings of the National Academy of Sciences·DateAug 17, 2009

'Hidden' Van Gogh painting revealed

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.

SourceDelft University of Technology·JournalAnalytical Chemistry·DateJul 30, 2008