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Jupiter Was Once Twice Its Size - And Its Magnetic Field Could Fry Spacecraft

Jupiter Was Once Twice Its Size - And Its Magnetic Field Could Fry Spacecraft

NDTV22-05-2025

The information of Jupiter's early evolution sheds light on the solar system's formation and structure. As the solar system's gravitational 'architect', Jupiter's influence was instrumental in shaping the orbits of other planets and defining the gas and dust disc from which they emerged.
In a new study published in the journal Nature Astronomy, Konstantin Batygin (PhD '12), professor of planetary science at Caltech; and Fred C. Adams, professor of physics and astronomy at the University of Michigan; provide a detailed look into Jupiter's primordial state. Their calculations reveal that roughly 3.8 million years after the solar system's first solids formed-a key moment when the disk of material around the Sun, known as the protoplanetary nebula, was dissipating-Jupiter was significantly larger and had an even more powerful magnetic field.
"Our ultimate goal is to understand where we come from, and pinning down the early phases of planet formation is essential to solving the puzzle," Batygin says."This brings us closer to understanding how not only Jupiter but the entire solar system took shape."
Batygin and Adams approached this question by studying Jupiter's tiny moons Amalthea and Thebe, which orbit even closer to Jupiter than Io, the smallest and nearest of the planet's four large Galilean moons. Because Amalthea and Thebe have slightly tilted orbits, Batygin and Adams analyzed these small orbital discrepancies to calculate Jupiter's original size: approximately twice its current radius, with a predicted volume that is the equivalent of over 2,000 Earths. The researchers also determined that Jupiter's magnetic field at that time was approximately 50 times stronger than it is today.
Adams highlights the remarkable imprint the past has left on today's solar system: "It's astonishing that even after 4.5 billion years, enough clues remain to let us reconstruct Jupiter's physical state at the dawn of its existence."

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They survived ice ages and hunted mammoths; so why did the Neanderthals suddenly disappear? Now a physicist blames something in the sky
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They survived ice ages and hunted mammoths; so why did the Neanderthals suddenly disappear? Now a physicist blames something in the sky

Live Events Radiation as a Hidden Killer? A Caution Against Oversimplification (You can now subscribe to our (You can now subscribe to our Economic Times WhatsApp channel Neanderthals have long puzzled scientists. These ancient relatives of modern humans thrived across Europe and parts of Asia for hundreds of thousands of years. But around 40,000 years ago, they disappeared, just as Homo sapiens spread across the same regions. What really caused their extinction remains one of human evolution's biggest a new and unusual theory suggests that space weather, not climate, competition, or disease, may have played a decisive role.A recent study by Dr. Agnit Mukhopadhyay, a space physicist from the University of Michigan , proposes that a powerful cosmic event known as the Laschamp excursion might have played a part in the Neanderthals' decline. The findings were published in the journal Science Laschamp event occurred about 41,000 years ago, when the Earth's magnetic poles temporarily flipped. During this brief reversal, the planet's magnetic field, which normally protects us from cosmic radiation, dramatically weakened for several argues that this weakening may have exposed the Earth's surface to much higher levels of ultraviolet (UV) and cosmic radiation, particularly in some parts of the core of the hypothesis is that Neanderthals, already living in small, isolated populations, may have been more vulnerable to this radiation than Homo sapiens. The study claims that Homo sapiens had tighter clothing, used red ochre as UV protection, and took shelter in caves helping them survive the radiation. Neanderthals, in contrast, might have lacked these simulations in the study even show that auroras, a sign of increased solar activity, might have been visible across much of the world during this time, proof, the author argues, of the heightened radiation the theory is bold and imaginative, many experts are José-Miguel Tejero and Montserrat Sanz Borràs, writing for The Conversation, point out that the idea rests on shaky archaeological example, it assumes that Neanderthals didn't wear fitted clothing. While it's true that no sewing needles have been found at Neanderthal sites, there is clear evidence that they processed animal hides and likely wore functional garments using other techniques, such as tying hides with leather cords or fact, genetic studies of lice suggest that humans, possibly including Neanderthals, were already wearing clothes over 200,000 years ago. The absence of needles doesn't prove the absence of study also claims that Homo sapiens used red ochre as sunblock. While experiments show that ochre can somewhat block UV rays, this claim is also disputed. Ochre was widely used by both Neanderthals and modern humans, often for symbolic or cosmetic reasons. There is no solid evidence that either group used it primarily for sun are known to have used ochre for over 100,000 years. In one example, a painted scallop shell found in a Neanderthal cave in Spain shows their symbolic use of pigments long before Homo sapiens arrived in scientists believe that multiple factors caused the Neanderthals' disappearance. These include, interbreeding with Homo sapiens (evident in modern DNA), smaller populations that were more vulnerable to decline, limited long-range hunting tools, unlike the projectile weapons used by sapiens, Changing climate, and possibly, competition for this broader context, Mukhopadhyay's theory appears too narrow. Critics note that there is no archaeological evidence of a sudden, global collapse of Neanderthal populations tied to the Laschamp event. If radiation were such a major factor, it would have also harmed Homo sapiens populations living outside caves in sunny Africa, which doesn't seem to have Neanderthal story is complex. These early humans were not primitive brutes. They developed tools, built shelters, made symbolic objects, and survived in extreme climates for hundreds of thousands of years. They even lived through earlier magnetic reversals, such as the Blake event 120,000 years theory adds an intriguing piece to the puzzle, but it's far from did a shift in Earth's magnetic field doom the Neanderthals?Probably not. While the Laschamp event may have had some environmental impact, there's no strong evidence that it caused Neanderthal extinction . The theory suggests that the disappearance of Neanderthals was likely due to a mix of climate, biology, and human interaction.

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