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Solar activity over the past three years has been transformed into audible sound through data collected by the Solar Orbiter, a joint mission by the European Space Agency (ESA) and NASA. This innovative sonification captures the progression of solar flares, highlighting changes in solar activity as the Sun approaches its 11-year cycle peak. Visual and auditory cues were used to represent solar flares, allowing researchers and the public to experience these events in a novel way.

Visual and Auditory Interpretation of Solar Data

According to data from ESA’s Solar Orbiter mission, images from the Spectrometer/Telescope for Imaging X-rays (STIX) and the Extreme Ultraviolet Imager (EUI) were combined to create this unique representation. Blue circles were mapped to show the location and size of X-rays emitted by solar flares, while the Sun’s outer atmosphere was depicted in yellow. Each blue circle was paired with an audible tone, increasing in frequency as solar activity intensified.

Correlations with the Solar Cycle

As reported by space.com, the frequency of solar flares has increased, aligning with the Sun’s approach toward solar maximum, the most active phase of its cycle. The U.S. National Oceanic and Atmospheric Administration (NOAA) and NASA have confirmed that the solar maximum is currently underway, marking an ideal period for observing phenomena such as the northern lights.

Orbital Proximity Reflected in Sound

Klaus Nielsen, affiliated with DTU Space and Maple Pools, developed the sonification. It was noted that the background hum within the audio reflected the elliptical orbit of Solar Orbiter. Every six months, the spacecraft’s proximity to the Sun changes, with the sound intensifying as it moves closer and softening as it moves farther away.

This collaboration provides insights into the Sun’s behaviour, offering an engaging way to study space weather and solar activity. The project highlights the potential of integrating auditory elements into scientific data for enhanced understanding.

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Ryugu Samples Reveal Ancient Water Flow on Asteroid for a Billion Years

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Microscopic samples from asteroid Ryugu reveal that liquid water once flowed through its parent body long after its formation. The finding, led by University of Tokyo scientists, suggests that such asteroids may have delivered far more water to early Earth than previously thought, offering a new perspective on how our planet’s oceans originated.

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Scientists Create Most Detailed Radio Map of Early Universe Using MWA

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Scientists using the Murchison Widefield Array in Australia analyzed nine years of radio data to study the elusive 21-cm hydrogen signal from the universe’s dark ages. Their findings suggest early black holes and stars had already heated cosmic gas, marking the first observational evidence of this warming phase.

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Vast Space to Launch Haven-1, the World’s First Private Space Station in 2026

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Vast Space’s Haven-1, a single-module orbital lab, will launch in 2026 via SpaceX’s Falcon 9. Designed for four astronauts on short missions, it features life-support systems tested with NASA and a domed observation window, marking a milestone in private space habitats.

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