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A system of two massive stars in the Milky Way, Wolf-Rayet 140, has been closely studied, revealing the formation and outward expansion of carbon-rich dust shells. Data from the James Webb Space Telescope has shown 17 concentric shells expanding at regular intervals, moving outward at a speed of approximately 1 percent of the speed of light. These findings provide insight into how elements essential for life, like carbon, are distributed across space, contributing to a broader understanding of cosmic evolution.

Dust Shell Movement Captured Through Observations

As per the latest report by NASA, the system consists of two stars in an elongated orbit. When these stars come closest, their stellar winds collide, compressing material and forming carbon-rich dust. As reported in an official press release by NASA, Emma Lieb, a doctoral student at the University of Denver and the study’s lead author, noted that the consistent velocities of these shells were confirmed by Webb’s detailed observations.

Over 14 months, these shells were shown to expand visibly, with the dust moving at over 1,600 miles per second. Jennifer Hoffman, a professor at the University of Denver and co-author of the study, highlighted how this system defies typical astronomical timelines, showing rapid changes on an annual scale.

Formation of Dust Linked to Star Dynamics

It was observed that the dust is generated every eight years as the stars reach their closest orbital point. Ryan Lau, an astronomer at NSF NOIRLab and co-author, stated that mid-infrared imaging was critical for detecting these cool dust formations. He emphasized the significance of capturing the dust formation process with unprecedented precision.

Future of Wolf-Rayet 140

The larger of the two stars, a Wolf-Rayet star, is nearing the end of its life and may explode as a supernova or collapse into a black hole. Lau pointed out that the survival of such carbon-rich dust could help answer questions about the origins of cosmic dust. These findings could play a key role in understanding the processes behind the creation of rocky planets and solar systems

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SpaceX Launches Falcon 9 With 29 Starlink Satellites, Marks Florida’s 100th Space Coast Launch of 2025

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SpaceX’s Falcon 9 achieved Florida’s 100th launch of 2025, carrying 29 Starlink satellites into low Earth orbit. The milestone reflects a surge in launch cadence driven by reusable rockets, satellite constellations, and expanding commercial demand, marking one of the busiest years ever on the Space Coast.

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Webb’s Stunning View of Apep Shows a Rare Triple-Star System Wrapped in Spirals

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Webb’s mid-infrared images of Apep reveal a rare triple-star system producing vast carbon-rich dust spirals from colliding stellar winds. The two Wolf–Rayet stars and a distant supergiant create layered shells that record centuries of activity and enrich the galaxy with elements vital for future stars and planets.

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Study Traces Moon-Forming Impact to an Inner Solar System Neighbour Named Theia

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A new isotopic study reveals that Theia—the Mars-sized body that struck Earth 4.5 billion years ago to form the Moon—likely originated in the inner Solar System, close to Earth’s birthplace. By comparing heavy-element isotope ratios in lunar rocks, Earth samples, and meteorites, researchers found identical signatures, showing both worlds formed from the same inn…

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