Researchers have observed two resonances of first and second sound in a three-dimensional quantum gas, defying classical expectations. The system's compressibility and microscopic description offer new insights into quantum hydrodynamics.
Researchers studied the sizzling sound of deep-frying, finding three types of bubble events: explosion cavity, elongated cavity, and oscillating cavity. These events produced distinct acoustic characteristics, which could lead to future applications like acoustic sensing of aerosol generation.
A team of researchers from the University of Tsukuba has developed a new approach for accurate underwater acoustic positioning in multipath environments. By using a database of signals and selectively removing reflected waves, they achieve centimeter-scale accuracy in object location, even in shallow waters.
A recent study published in Endocrinology found that exposure to a scream sound may lead to diminished ovarian reserve and decreased fertility in female rats. The researchers discovered that the scream sound reduced estrogen and Anti-Mullerian hormone levels, as well as the number and quality of eggs, resulting in smaller litters.
Researchers found that greater mouse-eared bats imitate the buzzing sound of a stinging insect to avoid predatory owls. The study, published in Current Biology, provides evidence of interspecific mimicry between mammals and insects.
The study analyzed over 40,000 words from English texts and found that monosyllabic Middle English words predominantly had long vowels, which were more easily processed by the brain. This suggests that our brains are wired to learn and prefer frequent sound patterns, leading to gradual language changes.
A team of scientists successfully controlled multistep enzyme reactions using audible sound, creating a new method for spatiotemporal regulation. The researchers used standing waves generated by sound to separate and compartmentalize solutions, allowing for the precise control of chemical reactions.
Researchers found that harbor seals' vocal tracts matched their body size, explaining their ability to produce a wide range of calls. The study provides insight into the evolution of complex communication systems and highlights the intelligence of harbor seals.
Researchers at MIT have created a paper-thin loudspeaker that produces sound with minimal distortion while using a fraction of the energy required by traditional loudspeakers. The device, which is as thin as a dime and weighs about the same, can generate high-quality sound on any surface it is bonded to.
Researchers developed an audio-tactile sensory substitution device (SSD) that converts sound frequencies to vibrations, significantly improving speech comprehension in noisy environments. The technology has shown promise in training hearing-impaired individuals to better understand speech.
Perseverance mission has recorded the first ever sounds from Mars, showing that the planet is quiet due to low natural sound sources. The rover's microphone captured sounds within the human audible spectrum, including shock waves and helicopter flights.
Orb-weaver spiders have been found to use their massive webs as auditory arrays, capturing sounds and giving them advanced warning of prey or predators. The researchers used a special quiet room and placed a mini-speaker near the web, causing the spider to detect and respond.
Researchers at Texas A&M University have identified a unique sound signature produced by rocks as they crack and break. This discovery was made using a combination of supervised machine learning, causal discovery, and rapid simulations. The team found that an unusual pattern of positive and negative measurements in sound wave-transmiss...
A new study found that napping can positively affect preschool children's learning of letter-sound mappings and transfer this knowledge to reading unfamiliar words. The research suggests that naps may facilitate the acquisition and application of these fundamental literacy skills.
Researchers developed an automated auditory training program that enables marmoset monkeys to perform hearing tests in their familiar environment on a voluntary basis. The study demonstrates the animals' ability to abstract from learned sounds and suggests they are ideal model animals for hearing system research.
Climate change alters ocean soundscapes, affecting marine life's survival and reproduction. Warmer waters speed up sound waves, impacting essential activities like feeding, fighting, and migration.
Researchers at Duke University have developed a device that manipulates particles and cells using complex sound waves, enabling selective pairing of individual cells to measure adhesion forces. This technology could lead to personalized medicine by allowing doctors to determine treatment for individual cancer patients.
A new fabric developed by MIT engineers can detect subtle heartbeat features and the direction of sudden sounds, enabling real-time monitoring of vital signs. The fabric works like a microphone, converting sound vibrations into electrical signals.
Researchers created FishSounds.net, an interactive library of fish sounds, to help identify and track fish species. The database can aid in environmental monitoring, fisheries management, and conservation efforts.
A UK-based research project, funded by EPSRC, is developing miniature acoustic resonator systems using metamaterials. The goal is to create wearable personal audio and medical devices that are affordable and can operate at audio frequencies.
A team led by Prof. PAN Jianwei from the University of Science and Technology of China has successfully measured second sound attenuation in a controlled experiment using ultra-cold lithium-6, verifying the dynamic scaling theory and paving the way for further research on quantum critical regions.
Researchers at RMIT University used high-frequency sound waves to turn stem cells into bone cells, overcoming challenges in mass production and pain associated with extraction. The innovative treatment is faster, simpler, and more efficient than existing methods.
Researchers developed a highly efficient wave-based acoustics simulation that can accurately estimate the acoustics of large-scale interior spaces. The method uses a time-domain Finite Element Method to consider frequency-dependent characteristics of sound absorption materials, enabling precise modeling and high-speed estimations.
Researchers at the University of Illinois used sonification to analyze data and teach protein folding, leading to a new discovery about protein folding mechanisms. Musicians collaborated with chemists to create audio-mapped visualizations that complemented traditional views, increasing intuition for experts.
Researchers at the University of Nottingham have developed a groundbreaking technology to measure the microscopic elasticity of materials. By analyzing the speed of sound across the material's surface, they can reveal the orientation and inherent stiffness of small crystals, which is essential for material performance.
Researchers at Goethe University Frankfurt recorded brain waves of bats to understand how they filter out essential signals from echolocation calls and communication signals. The study shows that rare sounds elicit stronger neuronal responses than frequent ones.
Researchers have achieved triple-wave cloaking for both sound and light using computational inverse design method. This breakthrough expands the functionality of biphysical cloaks, enabling a wider range of materials to be used, including those beyond traditional metals.
Neurobiologists demonstrated that humans can unconsciously distinguish between even very similar sounds, but often don't recognize these differences. The study used EEG to measure brain responses to stimuli and found that the brain reacts differently to local and global irregularities in sound sequences.
Nagoya University researchers have discovered how bird brains compute time differences between sounds reaching each ear to determine their location. This process relies on the clustering of nerve junctions in specialized dendrites dedicated to low-frequency sounds.
Researchers created an interactive computer interface called EmoteControl, which allows users to control six cues of a musical piece in real time. Participants conveyed specific emotions through changing these cues, with tempo and mode being the most influential cues.
The MIT team developed a computer model that can perform sound localization tasks as well as humans, and adapts to real-world environments. The model uses convolutional neural networks and was trained on over 400 sounds, including human voices and animal sounds.
A new study from Cornell University reveals that fish are more likely to communicate with sound than previously thought. Researchers found 175 families of ray-finned fishes that use sound for communication, including species that have been doing so for at least 155 million years.
A new study found that nearly four times as many words describing rough surfaces contain the trilled /r/ sound compared to smooth ones. This pattern is prevalent across sensory words in 38 Indo-European languages and has likely existed for over six millennia.
A University of Washington team has discovered 349 methane gas plumes bubbling up from the seafloor in Puget Sound. The bubbles are likely connected to underlying geology and may be a natural source of methane, rather than human activity.
Ancient Chinese scholars viewed sound as a means to assess cosmic qi and predict weather events. Jing Fang's tuning system, developed in the 1st century BCE, used acoustics to construct a closed cycle with reduced gaps, allowing for accurate seasonal predictions.
Harvard researchers create first topological acoustic transistor, utilizing sound waves to control flow on and off. The device demonstrates scalable and controllable 'acoustic switches' with potential applications in efficient noise reduction, ultrasound imaging, and more.
Researchers at the University of Basel traced the neuronal fingerprint of sound processing in mouse brains, finding ten distinct activity patterns that depend on factors like attention, arousal, and reward. These findings suggest that even simple sound detection is a cognitive process that profoundly shapes brain activity.
Research from the University of Florida found that baby talk can stimulate motor production of speech in infants. By mimicking infant vocal tracts, babies learn how words should sound coming out of their mouths. This discovery challenges previous assumptions about the role of baby talk in language development.
A team of researchers at Imperial College London has generated and observed non-Gaussian states of high-frequency sound waves comprising over a trillion atoms. This breakthrough makes important strides towards generating macroscopic quantum states that will enable future quantum internet components to be developed.
Researchers at City University of Hong Kong have discovered a new type of sound wave that vibrates transversely and carries both spin and orbital angular momentum like light. This finding provides new degrees of freedom for sound manipulations, enabling unprecedented acoustic communications and sensing capabilities.
Researchers investigate glacial ice melting that releases acoustically distinct pressurized underwater bubbles, providing a potential tool for monitoring climate change's impact on glaciers. The team's experiments will permit the long-term monitoring of ice loss and its link to water temperature.
Researchers use speaker shakers to generate vibrations in a plate, creating sound waves that constructively interfere at the target minifigure. The focused energy knocks over the single Lego minifig without disrupting the surrounding minifigs.
The Seattle Space Needle renovation incorporated acoustic designs to limit sound transmission, enhancing visitor experience. Acoustic materials and effective reverberant sound control were selected for the observation levels and restaurant.
A study by Penn State University and Virginia Tech Transportation Institute found that electric vehicle sounds can improve pedestrian safety, but with some cases of false negatives at close ranges. Adding sound to electric vehicles increases detection distances beyond minimum safe detection ranges.
Researchers developed a tool to monitor and predict water losses in waterfalls based on their soundscapes, allowing environmental managers to balance water diversion and preservation. The study highlights the importance of maintaining a minimum threshold of water flow for waterfall appearance and sound.
Researchers from Kaunas University of Technology have developed an AI-based approach for contactless machine failure detection, using sound data from existing equipment. The solution is sustainable and relatively cheap, with no need for new sensors or equipment installation.
Shima Shahab, a Virginia Tech assistant professor, is studying acoustic holograms to manipulate sound waves and their effects on physical surfaces. Her research aims to improve non-invasive treatment of neurological disorders using this technology.
Researchers at Japan Advanced Institute of Science and Technology create method to estimate five-room acoustic parameters and speech transmission index using a short conversation, with potential applications in monitoring auditoriums during concerts and saving lives through smart speakers
Researchers at Stanford University have developed a new device that brings sound to quantum science experiments, opening up new possibilities for studying solids and phases of matter. The device uses a precise cavity to hold an optical lattice of atoms, which vibrates at around 1 kHz, producing phonons - the building blocks of sound.
Researchers at the University of York developed new sound design techniques to enhance film experiences for visually impaired audiences. The methods use sound effects, 3D sound, and first-person narration to create a more inclusive cinematic experience.
Researchers developed a flexible, self-powered device that translates sound waves into electrical signals, mimicking the inner ear's function. The device, implanted in a model ear, accurately recreated music files, offering a promising solution for treating hearing loss without batteries.
Researchers found that reactivating memories during sleep improves motor skills by enhancing learning of new motor tasks. The study showed participants performed better without sound cues after a nap, indicating improved memory recall and muscle activation.
Researchers at McMaster University have found a simple tweak in medical device tones can significantly lower annoyance caused by alarms. The study suggests changing the amplitude envelope of existing sounds to make them sound more musical, without harming efficacy or affecting patient recovery.
A small study found that a wireless kit, comprising headphones and an app, may be a cheap alternative to traditional treatment of 'glue ear' in kids. The kit enables remote monitoring of hearing at home, reducing clinic visits and potentially avoiding surgery in many cases.
Researchers discovered that earless worms can detect airborne sounds in a range of frequencies and localize the source. This finding opens a new field for studying auditory sensation and challenges the assumption that organisms without ears cannot sense sound.
Scientists at ETH Zurich have developed a system that can manipulate the acoustic field in real time, creating illusions of objects disappearing or being simulated. The technology uses field-programmable gate arrays to control the augmentation of sound waves, enabling potential applications in sensor technology, architecture, and commu...
Researchers found that certain moth species' wingtips reflect sound strongly, distracting bats and saving the moths' lives. The unique structures also evolved to act as hemispheric and corner retroreflectors, reflecting sound back to its point of origin.
Researchers at Flinders University found that embryos of three bird species can distinguish between their parents' calls and non-specific sounds, building on complexity of vocal learning. This study paves the way for new insights into evolutionary and developmental timescales.
The Iñupiaq people's seal hunting season has shrunk by about one day per year over the past 17 years due to sea ice decline. This reduction in flexibility affects hunters' ability to prepare and hunt, as they now have less time to adapt to changing conditions.
Researchers at Duke University have developed a new approach to using sound waves to manipulate tiny particles suspended in liquid in complex ways. The 'shadow waveguide' technique creates a tightly confined, spatially complex acoustic field inside a chamber without requiring any interior structure.