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From folds and cuts to linkages

Researchers create collapsible scissored surfaces based on networks of interconnected scissor mechanisms that can transform into curved surfaces. The new approach completes a trilogy of metamaterial design principles: origami (folds), kirigami (cuts), and pantograph lattices (linkages).

SourceHarvard John A. Paulson School of Engineering and Applied Sciences·JournalProceedings of the National Academy of Sciences·TypeComputational simulation/modeling·DateJul 24, 2026

FireANTs brings AI speed and geometric precision to medical imaging

FireANTs, an open-source algorithm, combines AI optimization and geometry to quickly match complex medical images. The new method can accomplish what took weeks in minutes, detecting subtle changes that signal disease or cognitive decline, making it practical for clinical practice.

SourceUniversity of Pennsylvania School of Engineering and Applied Science·JournalNature Communications·TypeData/statistical analysis·DateJun 9, 2026

Lessons from Finland: FAU researcher reveals gaps in special education math instruction

A study of Finnish special needs and special class teachers found that data processing, statistics, and probability are under-taught areas, mirroring trends in the US. The researchers emphasize the need for stronger teacher preparation, ongoing professional development, and support to ensure effective strategies are used consistently.

SourceFlorida Atlantic University·JournalScandinavian Journal of Educational Research·TypeSurvey·DateApr 22, 2026

Geometry shapes life

Researchers at ISTA have found that the zebrafish embryo's geometry is essential for its development, guiding cell division and gene activation. The study's findings could improve IVF embryo assessments by understanding how the embryo interprets its geometry.

SourceInstitute of Science and Technology Austria·JournalNature Physics·TypeExperimental study·DateJan 5, 2026

Mathematical proof provides new perspectives on the effects of blending

Researchers from OIST and universities provided a new proof for the BBL inequality using heat and diffusion equations, taking an unconventional approach. The study offers fresh insights on the concept, which has vast applications across many fields, including computer science, medical imaging, and resource distribution.

Integrating hard silicon for high-performance soft electronics via geometry engineering

Researchers review how geometry engineering improves c-Si's mechanical properties, allowing for high-performance soft electronics. Silicon nanowires with enhanced flexibility, superior mechanical properties, and excellent electrical performance are poised to transform the landscape of flexible electronics.

SourceShanghai Jiao Tong University Journal Center·JournalNano-Micro Letters·TypeExperimental study·DateJun 11, 2025

From order to chaos: Understanding the principles behind collective motion in bacteria

Researchers discovered how bacterial swarms transition from organized movement to chaotic flow as confinement radius increases. The study reveals intermediate states between order and turbulence through large-scale experiments, computer modeling, and mathematical analysis. These findings provide insights into the universal properties o...

SourceInstitute of Science Tokyo·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateMar 17, 2025

Researchers successfully prove the solution to Dudeney’s 120-year-old dissection puzzle

A team of researchers from Japan Advanced Institute of Science and Technology proved that Dudeney's original solution to the famous dissection problem is the optimal solution. They used a novel approach, including matching diagrams, to show that no dissection between an equilateral triangle and a square can be achieved with three or fe...

Eddy-mean flow energy exchange depends on three variables

Researchers found that the eddy-mean kinetic energy exchange term is separated into three parts: one associated with cross-stream variation, one with along-stream variation, and one with mean flow direction. This new framework describes eddy-mean energy exchange without accounting for forces or physical properties.

SourceOcean-Land-Atmosphere Research (OLAR)·JournalOcean-Land-Atmosphere Research·TypeData/statistical analysis·DateFeb 19, 2025

First evidence in the Levant (and among the first in the world) of communal worship in caves and the development of religious rituals

A 35,000-year-old ritual complex in the Manot Cave offers insight into the spiritual practices of Paleolithic hunter-gatherer groups. The discovery reveals evidence of human-made engravings, ash remains from fire, and acoustic tests that suggest a unique auditory experience for communal activities.

SourceTel-Aviv University·JournalProceedings of the National Academy of Sciences·DateDec 10, 2024

Ice-ray patterns: A rediscovery of past design for the future

A study discovers that traditional Chinese ice-ray lattice designs can provide unique stiffness and strength under asymmetric loads, offering an alternative to conventional gridshells. The research also explores the potential of integrating complex geometry into facade design and micro-scale material design.

SourceXi'an Jiaotong-Liverpool University·JournalFrontiers of Architectural Research·TypeComputational simulation/modeling·DateMar 20, 2024

Clever lapwings use cover to hide in plain sight

Research shows that lapwings can hide their eggs by using small variations in the terrain, making them invisible to ground predators. The study found that habitat geometry rather than visual acuity limits the visibility of a ground-nesting bird's clutch to terrestrial predators.

SourceUniversity of Exeter·JournalEcology and Evolution·TypeObservational study·DateSep 14, 2023

Study observes sudden acceleration of flow, generates new boundary layer

Aerodynamic researchers at University of Illinois create wind tunnel experiment to study internal boundary layers and their impact on flow behavior. They identify a new internal boundary layer that changes the flow's behavior, providing insights into aerodynamics physics and improving turbulence models for complex designs.

SourceUniversity of Illinois Grainger College of Engineering·JournalJournal of Fluid Mechanics·DateAug 17, 2023

New study reveals design clues for silver-based superatomic molecules

Researchers from Japan have synthesized two di-superatomic molecules composed of Ag and evaluated the factors involved in their formation. The study found that a twist between the two icosahedral structures stabilizes the nanocluster by shortening the distance between them. Additionally, the presence of Pd and Pt central atoms was foun...

SourceTokyo University of Science·JournalCommunications Chemistry·TypeExperimental study·DateApr 6, 2023

Creating a blueprint for optimized ear tubes and other implantable fluid-transporting devices

Researchers have developed a new ear tube design that combines liquid-infused materials with optimized geometry to improve treatment outcomes for patients with ear infections. The design enables better performance and reduces complications such as impaired hearing and scarring of the eardrum.

SourceWyss Institute for Biologically Inspired Engineering at Harvard·JournalScience Translational Medicine·TypeExperimental study·DateApr 5, 2023

Brandon Levin wins NSF CAREER Award

Brandon Levin, an assistant professor of mathematics at Rice University, has won a prestigious National Science Foundation CAREER Award to pursue his research on major unsolved problems in number theory. He aims to build theoretical bridges between arithmetic world and representation theory.

The geometry of conflict

Conflicts between divergent goals can continue indefinitely through evolutionary time, causing devastating damage to complex organisms and social structures. Modular design is a crucial enabler of complex adaptation and transformative changes in social organisation.

SourceUniversity of St. Andrews·JournalProceedings of the Royal Society B Biological Sciences·TypeData/statistical analysis·DateFeb 8, 2023

Think before you design your brand's logo: How marketers can capitalize on the power of perception to influence beliefs about brand performance

A new study found that structured visual design properties, such as symmetry and balance, reinforce claims about a brand's utilitarian benefits. In contrast, unstructured designs are associated with hedonic benefits. The research suggests marketers can use perception to influence beliefs about brand performance and consumer choice.

SourceAmerican Marketing Association·JournalJournal of Marketing·DateJan 4, 2023

A closer look at the dynamics of the p-Laplacian Allen–Cahn equation

A team of researchers from Korea investigated the dynamics of the p-Laplacian AC equation, finding that solutions maintain three criteria: phase separation, boundedness, and energy decay properties. They also identified an advantage of p-AC equation over classical Laplacian in adjusting interface sharpness.

SourceIncheon National University·JournalApplied Mathematics and Computation·TypeExperimental study·DateNov 21, 2022

New potential from ‘one-pot-and-one-step’ polymer synthesis

Researchers at Hokkaido University have developed a one-pot-and-one-step synthesis procedure to create long and geometrically interlinked polymer molecules. This process can produce a wide range of advanced materials with applications in drug delivery, data storage, microelectronics, and nanolithography.

SourceHokkaido University·JournalJournal of the American Chemical Society·TypeExperimental study·DateOct 24, 2022