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November 6, 2025 10 mins
Cristina Gomez reports on the latest 3I/ATLAS activity and new images from Spain, Italy, and China, revealing 3I/ATLAS has no cometary tail after its closest solar pass on October 29th, defying all scientific predictions as NASA data shows non-gravitational acceleration requiring 13% mass loss while Dr. Avi Loeb and Congresswoman Anna Paulina Luna push for high-resolution Mars Reconnaissance Orbiter images to determine if this interstellar object with 10 documented anomalies is a natural comet or something else entirely before its December 19th closest approach to Earth.

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00:00 - 3I/ATLAS New Images Just Dropped
02:10 - 3I/ATLAS  Missing Tail Mystery
03:12 - Something's Pushing 3I/ATLAS 
04:47 - Ice Fragments 3I/ATLAS Theory 
05:30 - NASA Will Release 3I/ATLAS  Images
07:19 - 3I/ATLAS is Breaking All The Rules
09:23 - 3I/ATLAS Critical Weeks Ahead


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Transcript

Episode Transcript

Available transcripts are automatically generated. Complete accuracy is not guaranteed.
Speaker 1 (00:00):
New images of three I Atlasts just dropped from different countries,
and they're not showing what scientists predicted. On November fifth,
several observatories released photographs of the interstellar object after its
closest pass by the Sun. Everyone expected a massive tale
stretching across space. Instead, there's just a fuzzy ball of light,

(00:22):
no dramatic tale whatsoever. Let's break down what these new
images reveal and why it matters. As always, I'm hearing
to report the information without bias, and you can decide
what to believe. You can find the sources in my
detailed articles at ufoews dot com, along with in the
description box below. Hey, follow yours. I'm Christina Gomez and
welcome to this episode of UFO News updates. The r

(00:44):
Naves Observatory in Spain, the Virtual Telescope Project in Italy,
and the ten Mars Orbiter in China released photographs showing
the same thing. A compact, fuzzy ball of light, no
massive cloud of gas and no streaming from the Sun.
No commentary tail at all. And this is not what

(01:04):
anyone predicted when three I Atlas passed. Perry hally On
on October twenty ninth, it became within two hundred and
three million kilometers of the Sun. At that distance, it
absorbed seven hundred and seventy watts of solar radiation per
square meter, and that is very intense heating for a comment,
which is what three Eye Atlas has been classified as.

(01:26):
This should trigger massive outgassing. The ice on the surface
should vaporize, creating a spectacular tail passing away from the
Sun by solar wind and radiation pressure. Doctor Avelobe explained
what should have happened during his recent NBC interview.

Speaker 2 (01:44):
There should have been a very massive cloud of gas
and dast around it. Based on what we know about comets.
In fact, we see other comets in the Solar system
that have a beautiful tail away from the Sun behind them.
Lemon is an excellent example, but in our case of
fifth three Iyatlass, it looks like a fuzzy ball of light.

Speaker 1 (02:07):
To understand how unusual this is, look at comet Lemon.
The same telescope that photograph three I Atlas also captured
images of Lemon on November three. Now, Lemon displays exactly
what you would expect, a clear, bright tail pointing away
from the Sun. This is textbook comet behavior, and this

(02:27):
is what happens when solar radiation pushes gas and dust
particles away from the comet's nucleus. But three EYE Atlas
nothing comparable, just a fuzzy glow that looks remarkably similar
to how it appeared back in July, months before Perry Hallion,
which was much farther away from the Sun and experiencing

(02:48):
far less heating. The Hubble Space Telescope photograph three I
Atlas on July twenty first, and compare that image to
the November fifth observations, and if you look, the morphology
has changed dramatically. Yet between those dates the object passed
through the most intense heating of its entire journey through
our solar system. Here's where things get a little more complex.

(03:12):
NASA's Jet Propulsion Laboratory released new data covering October thirty
first through November fourth, and that analysis detected non gravitational acceleration.
This means three I Atlas is not just moving according
to the Sun's gravity. Something's pushing it. Scientists measured what
three I Atlas is speeding up in two different directions.

(03:33):
It is getting pushed away from the Sun, and it's
also getting pushed sideways along its path. The measurements are
strong enough that scientists are confident this acceleration is real.
Doctor Lowe did the math to figure out what is
causing the speed up. For a common to accelerate like this, naturally,
it would need to lose at least thirteen percent of

(03:55):
its total weight. Think of it like a balloon. When
you let the air out, the escaped air pushes the
balloon in the opposite direction. When ice on a comment
heats up and turns into gas, the escaping gas pushes
the comet forward the same way. Losing thirteen percent of
its weight is a huge amount. Imagine if you lost

(04:16):
thirteen percent of your body weight in just a few weeks,
that would be very noticeable. The same is true for
a comet. When a comet loses that much material that quickly,
you should see obvious signs. There should be a giant
cloud of gas and dust surrounding it, and there should
be a long, bright tail stretching behind it. Special instruments

(04:37):
should detect the different gases being released. But we're not
seeing any of that now. Stick with me, because there's
still so much more that we need to unpack here.
And it only gets stranger.

Speaker 2 (04:49):
So we should have seen it break up or at
the very least disintegrate to a very dense and massive
cloud of gas and dust that is pushed away from
the Sun by the solar radiation and the solar wind.
But we don't see that. So the question is what's
going on. One possibility is that what evaporates from it

(05:10):
are fragments of ice and they get vaporized by sunlight
before they have a chance to turn around and show
up as a plume of glow behind it away from
the sun. That's one possible interpretation, but otherwise I just
don't know what to make of it now.

Speaker 1 (05:28):
Congresswoman Anna Paulina Luna, who has been actively engaging with
this topic, tweeted on November fifth that she finally spoke
with NASA. Once the government shut down ends, they will
release high resolution images captured by the high Rise camera
aboard the Mars Reconnaissance orbiter. This fifty centimeter aperture camera

(05:49):
achieved a spatial resolution of approximately thirty kilometers per pixel
when three I Atlas passed within twenty nine million kilometers
of Mars on October, and the high rise images look
something like this But there's more to this. China's National
Space Administration already released images from their ten on Mars orbiter,

(06:12):
taken at a distance of twenty eight point nine six
million kilometers. The high resolution image camera on that spacecraft
has a slightly smaller aperture, proving somewhat lower resolution than
the high rise. Now, those images show the nucleus and
surrounding comma spanning several thousand kilometers. Isn't it kind of
crazy how the United States is falling behind on this.

(06:35):
The good news, however, is that we will get more data.
On December nineteenth, just six days before Christmas, three i
atlasts will make its closest approach to Earth, and this
will provide the best observation opportunity yet. Doctor Lope has
also mentioned that spectroscopic observations from the web Space Telescope
could reveal the interior composition of three i at Lists,

(06:58):
not just its surface later, and that data could finally
answer whether this is an unusual but natural comment from
an alien stellar environment or something requiring a different explanation entirely.

Speaker 3 (07:12):
From an object like like three i at lists. What
can it teach us about areas that are far far away?

Speaker 1 (07:18):
Well?

Speaker 3 (07:18):
That is. That's a great question, because the answer is,
we don't know until we find out what it has
to tell us. Because you know, science is about unraveling
the stories of nature, and these objects from outside our
Solar system have a story to tell.

Speaker 1 (07:31):
No matter what three i at list turns out to be,
it keeps breaking the rules. Aviy Lobe has documented ten
strange features that set it apart from every other comment
we've ever studied. Its path lines up almost perfectly with
where other planets orbit, which only has a point two
percent chance of happening randomly. Back in July and August,

(07:53):
it shot material toward the Sun instead of away from it,
the opposite of normal behavior. It's massive wing one million
times more than that of a muamua and a thousand
times more than Borisov, yet it moves faster than both.
It's timing brought it near Mars, Venus and Jupiter while
staying hidden from Earth at the critical moment with just

(08:15):
a point zero zero five percent probability, and the chemistry
is equally odd. The gases contain far more nickel than iron,
similar to manufactured metal alloys rather than natural space rock
with a nickel to cyanide ratio orders to magnitude higher
than any known comet. Each of these details alone might
be dismissed, but together they look like it's something completely

(08:39):
out of the ordinary.

Speaker 2 (08:40):
But most interestingly, there was a deviation from the trajectory
that you should have taken if its path was shaped
by gravity alone. So there was some no gravitational acceleration
that it exhibited. If it's a natural comet, that is
a consequence of its getting evaporated. And I did a

(09:00):
simple calculation that show that it must have lost them
at least a tenth of its mass in that process
in order to get the reported level of acceleration, and
that is a substantial fraction of its mass. It's most
likely even twenty percent. That's just a lower limit.

Speaker 1 (09:21):
The coming weeks will be very critical. You have the
December observations, the release of high resolution Mars images, the
potential web telescopes spectroscopy could provide the data needed to
resolve this mystery. We are watching an active scientific investigation
unfold in real time. What do you think is going

(09:41):
on with this object, natural comment with bizarre characteristics, or
something else entirely? Let me know your thoughts In the
comments and Christina Gomez and I said for this episode,
I will see you again today at two thirty pm
PST for mysteries with the history. Be safe and remember
keep your eyes on the skies. If you enjoy today's show,

(10:27):
hate that like bundon And if you're not subscribed, what
are you waiting for? Hi notification Bell as I do
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