• Shdwdrgn@mander.xyz
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        8 months ago

        Checking my image recordings the only thing I see as an ejection around 12 hours ago, so it would have to be a really fast burst to arrive today? Current Kp index is only at 2.3 which is pretty normal, and even NOAA’s own forecast shows nothing happening. I’d say this event is a dud.

        • shortwavesurfer@lemmy.zip
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          8 months ago

          I’m not quite sure what you are asking for. So, I would need more information to be able to answer properly.

          • BOMBS@lemmy.world
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            8 months ago

            I don’t know what QRZ.com is, so I don’t understand how the site being up lead to your conclusion. I’m not criticizing in anyway, but moreso just trying to understand because it sounds interesting to me. While I don’t know the math, I love theoretical physics, and am wondering what I’m missing out on 🙂

            • shortwavesurfer@lemmy.zip
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              8 months ago

              Oh, qrz is a website for amateur radio operators and it has data from another site that has solar information I pulled up QRZ to take a look at that solar information at a glance. And the geomagnetic field was quiet with an S1 to S2 radio noise level, which is extremely low.

    • webghost0101@sopuli.xyz
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      8 months ago

      I cant even find local news report on it.

      After some brief research apparantly these are super common, sometimes causd moderate disturbances and this one is minor but was predicted to maybe last a bit longer.

      Its super interesting sfuff that i wish was more common in everyday news reporting but this article Up here is mere clickbait.

  • Lunch@lemmy.world
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    8 months ago

    This is so fascinating and cool at the same time, crazy how things work around us!

      • wikibot@lemmy.worldB
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        8 months ago

        Here’s the summary for the wikipedia article you mentioned in your comment:

        The Carrington Event was the most intense geomagnetic storm in recorded history, peaking from 1 to 2 September 1859 during solar cycle 10. It created strong auroral displays that were reported globally and caused sparking and even fires in multiple telegraph stations. The geomagnetic storm was most likely the result of a coronal mass ejection (CME) from the Sun colliding with Earth’s magnetosphere. The geomagnetic storm was associated with a very bright solar flare on 1 September 1859. It was observed and recorded independently by British astronomers Richard Christopher Carrington and Richard Hodgson—the first records of a solar flare.

        to opt out, pm me ‘optout’. article | about

      • BobGnarley@lemm.ee
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        8 months ago

        I wonder if something like that hit today if it would fry all of our satellites

  • ChrisLicht@lemm.ee
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    8 months ago

    Oh, good! I might finally get a break from the buttplug I lost last week.

  • AbouBenAdhem@lemmy.world
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    8 months ago

    This cloud, if aimed toward the Earth, approaches our planet in around 48 to 72 hours, though some can arrive much sooner.

    I didn’t realize there was that much variation in the speed stuff comes off the sun. Does it ever clump up, if fast ejections overtake slow ones?

    • Shdwdrgn@mander.xyz
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      8 months ago

      To give you a perspective on just how far away the sun is, if it were to blow up right now you wouldn’t even see the light from the event for another 8 minutes and 20 seconds.

  • AutoTL;DR@lemmings.worldB
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    8 months ago

    This is the best summary I could come up with:


    A geomagnetic storm is expected to surge across the Earth’s atmosphere later today as a plume of solar plasma hits our planet.

    This chunk of the sun was spat out on Sunday as a magnetic filament erupted from the star’s surface, with the coronal mass ejection (CME) set to collide with the Earth at around 1 p.m.

    The CME collision could lead to geomagnetic storms as intense as G2-class or even G3-class, which may trigger GPS issues, satellite problems, and auroras seen much further south than usual.

    Amateur radio & #GPS users, expect disruptions on Earth’s nightside," space weather physicist Tamitha Skov posted on X, formerly Twitter, on Sunday.

    CMEs are triggered by magnetic activity on the sun’s surface flinging out huge volumes of solar plasma.

    “Whilst these storms cannot harm us or nature directly, they are disruptive and potentially very damaging to technology,” Huw Morgan, head of the Solar Physics group at Aberystwyth University in the United Kingdom, told Newsweek.


    The original article contains 577 words, the summary contains 161 words. Saved 72%. I’m a bot and I’m open source!