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07x07 - High Voltage

Episode transcripts for the TV show, "The Secret of Skinwalker Ranch". Aired: March 31, 2020 – present.*
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Series that follows a team investigating Skinwalker Ranch, located in Uintah County, Utah, United States.

07x07 - High Voltage

Post by bunniefuu »

- It's shaking the drill.
- Holy smokes.

It feels different than anything

he's drilled up here yet.

Do you have a sense
on what you're grinding on?

Feels like you're hitting metal.

- Find something?
- Yeah.

Look at that.

All right, that's what
I was expecting to see.

That's a lot of metal.

Drones are rolling.

Looks like the swarm
is getting movement

all throughout the formation.

The drones look like
they're spinning in circles.

Yeah, they look wonky.

There's a huge magnetic field

that caused the drone to swirl around.

- There's a structure to it.
- There is a structure to it.

That shows that there is
a big magnetic anomaly

floating right over the triangle.

- Wow.
- That's fantastic.

There is a ranch in Northern Utah.

It is considered the epicenter

of the strangest and most
disturbing occurrences on Earth.

For two decades,

the federal government

investigated the property.

Their findings
have never been made public.

Right there! We got something!

Now a new team

of independent scientists
and researchers are taking over.

They are uncovering evidence

that the countless stories...

It came right out of the mesa.

Of unidentified aerial phenomena...

UAP right there!

Bizarre energies...

It looks like there's
a heat source right above 'em.

And portals that lead
to other dimensions...

We're maybe looking at the anomaly

for the first time, guys.

Might actually be true.

They will stop at nothing to reveal...

The Secret of Skinwalker Ranch.

Let's get this drill into position.

Looks great.

Down off the hill here.

- Down in this flat.
- Okay.

Today we're taking
a much more strategic approach

with our drilling operation
to finally figure out

what's buried in the mesa
on Skinwalker Ranch.

Jed, Bo, it's good to have you back out.

This is a very special "X" marks the spot.

You know, we're essentially
on top of the anomaly

that you've heard us talk about.

The first hole we drilled this year

was directly over Borehole 2,

which runs alongside the 400-foot-long,

possibly metallic object
that we've detected

with ground-penetrating radar.

We hoped to come down
right on the edge of this thing,

but unfortunately we didn't hit it.

So now we're gonna dig

a new two-foot-diameter
vertical borehole

right between Boreholes 1 and 2,

which should make a direct hit
on the object

somewhere around 60 to 90 feet.

Well, the odds of us hitting
something are better here,

I would say, than anywhere else,
at least from the data.

Now, how far down

- are we equipped to go?
- This rig

is designed for, you know,

- cutting 90 foot instead of 45.
- That's about

- as deep as we've ever put a hole in this property.
- Yeah.

Now, we don't want to damage
whatever this object is.

So the team will be working with caution

to hopefully bring up core samples

and ultimately expose
a good section of it.

Once we reach this thing,

we're also excited to examine its surface,

which we believe might be covered

by the strangely engineered
Type A ceramic materials

that we extracted last year.

Well, the nice thing about this 24-inch

- is, you're gonna be able to do it much quicker.
- Yeah.

How long would it take, do you think?

Probably a good couple of long days.

- Wow. Okay.
- I say we get after it.

- Let's go. Let's do it.
- Yeah.

All right.

All right, fellas, let's dig a hole.

Let's start drilling.

Okay, go ahead.

Looks like it's going pretty easy, Thomas.

It is.

He's just in dirt right now.

There's a lot of optimism with the team

as we come down on top
of whatever the anomaly is.

Look how sandy that looks.

And Chris is gonna be
sorting through these spoils

as he tries to determine
if there's anything

unnatural in this hole.

Chris, you found anything yet?

Sandstone.

- That sounds right.
- Wet-wet sandstone.

- That sounds right.
- About it, yeah.

Nothing unexpected.

Let's go ahead and stop it.

Can I come out of the hole?

Yeah, let's go ahead and wrap it up.

By the end of the day,

the drillers got as far as they could get...

about 45 feet deep in the mesa.

So it's gonna take at least until tomorrow

to reach our target.

Here comes Cameron.

But when the sun starts
to set on the ranch,

that's prime experiment time
at other hot spots.

So we started setting up
for a pretty exciting one

over at the triangle with my buddy,

Tesla coil engineer Cameron Prince.

I'll carry the boots
if you get that backpack.

We invited him back to help us

with an ambitious new experiment
to study

what we call the bubble.

- Man, those look cool.
- Yeah.

Cameron, it's great
to have you back, man.

We've had a lot of instruments...

probably 30 different
instruments at this point...

detect some kind of weirdness
that shouldn't be there.

Radio signals,

and even lidar showing that
there's a bubble that's centered

- right there on those towers.
- Right.

Although we can't see it
with the naked eye,

our most recent experiments this year

have already shown us evidence
that the bubble boundary

is about 120 feet thick.

UTV's through the boundary.

It's almost like it's not even moving.

And when we try to pass
our instruments through it,

the boundary obstructs them
like some kind of force field.

Look at the way it changed directions

- as we got through.
- Yeah.

We've also seen similar things happen

at a spot 31 feet above the triangle.

In 2022,

an odd shape we call the blob
appeared in our data

and seemed to cause a rocket to explode

when it flew through that airspace.

And that's not the only time the blob

affected our experiments.

When we recently shot smoke
through that area...

Look at the boundary it makes.

The smoke appeared
to move around something

that had the same shape as the blob.

So tonight we're hoping

Cameron can help us
make the blob appear again

so we can identify
what in the world it could be

and also find out
if it's connected to the bubble.

Cameron, a very important part of this

is, we're looking for interactivity

between the blob
and the bubble boundary.

When you energize this space here,

right where we've seen evidence

of what we've referred to as the blob,

do we see an effect out there

at the bubble boundary and vice versa?

When we energize the space
out here, do we see it here?

Because in our current thinking,

there's a connection,
there's a kind of structure.

- Okay.
- Well, Cameron, tell us

- what you brought for us.
- So, I got two Tesla g*ns this year.

About 300,000 volts each.

Makes about four-to five-foot sparks.

- Okay.
- The Tesla coil needs

a ground connection
for optimal operation.

If you don't have a good ground,

the arcs are kind of
drawn back towards you.

There's gonna be two phases

to this Tesla coil experiment.

For the first phase,

we'll raise Cameron to the 31-foot level.

There, he'll use
one of the Tesla coil g*ns

to blast electricity through
the so-called blob region

directly towards
one of the 30-foot towers

that we have at the triangle.

The tower will act like a grounding rod

that should attract the electricity toward it

in a straight path.

If the direction deviates in any way,

it could be evidence of the blob.

And if we're lucky, the
electricity might make it appear

long enough for us
to get better images of it.

For the second phase, we'll set
up another metal grounding rod

at the southern bubble boundary.

That way, Kaleb can use
the second Tesla coil g*n

to sh**t electricity
directly at the boundary

while Cameron simultaneously
fires at the blob.

That should help us see
if there's any connection

between the bubble and the blob.

Soon as it gets good and dark,
the first thing we'll do

is fire that Tesla g*n at the blob only.

- I can do it. -All right. -Okay.
- Well, I'm gonna get to work

grounding stuff off over here, then.

I'm just excited to get started.

Well, I'm gonna go put this up

and get the cherry picker in place.

Thanks for that.

To document tonight's experiment,

we'll be using several
high-speed cameras staged

all around the triangle and
the southern bubble boundary.

Which way is it going? Clockwise
or counterclockwise right now?

Counter.

We've also set up
several directional antennas

at the triangle, which will feed
into our spectrum analyzers.

That way, Erik and I can keep an eye out

for the strange radio signals we've seen

during our past experiments
in the bubble.

- Erik, looks like we're just about set up.
- All right.

I'm gonna check the antennas.

Okay.

Erik.

Look at this. 33 megahertz,

you know, like-like what
we've seen before

when we were drilling and stuff.

- Okay.
- Just now.

This strong 33-megahertz signal
is something

that started showing up recently
during our investigation.

And the weird thing is, over a year ago,

we ran a drilling beacon into the mesa

that was broadcasting at 33 megahertz.

Since then, it's almost like
something cloned that signal

and keeps broadcasting it back to us.

But where or what is it coming from?

That's really strong.

I mean, I had to turn
the gain down on the antenna.

It's coming from the stationary antenna

on top of the tower at the triangle.

- The one up on the tower?
- Yeah.

Yeah, Travis, is your antenna telling you

- what direction it's coming from?
- Yeah.

This is coming from the sky.

This is coming from the sky.

Look at this. And make note of this.

Yeah, that's really interesting.

Just as we were about to start sh**ting

the Tesla coil g*n
at the spot where we've seen

the blob above the triangle,

a 33-megahertz signal showed up
on my spectrum analyzer.

One of our stationary antennas indicated

that the signal was coming from
somewhere in the sky above us.

So what could it be?

I don't understand it.

- Kaleb, watch the antenna for me.
- Copy you.

To see if we can isolate

which direction
the signal is coming from,

I'm gonna rotate one of the antennas.

So that's-that's stronger there.

- Yeah, right in there somewhere.
- Where are you now?

You're kind of between
the triangle and the drill site.

- Okay.
- So, mesa.

That's something.

If we're picking it up
when we point at the mesa,

it could be coming from the sky
and bouncing off the mesa.

- Yeah. Yeah. I get it.
- Right?

It was really odd that we were
detecting 33-megahertz signals

coming from both above us and
from the direction of the mesa.

It made me wonder
if there were two signals...

maybe one coming
from something high above us

and the other from whatever
might be buried in the mesa.

Travis, I want to see what happens

when we rotate it towards the triangle.

Kaleb, just say "stop"

when it's pointed at the triangle.

Stop.

Yeah. It's big when you point it

right at the triangle.

The signal was the strongest

when the antenna was pointed
directly at the triangle.

So could I have been wrong?

Could the blob actually be the source?

Is the signal coming from the blob

and then reflecting
off the bubble's boundaries

so it looks like it's coming
from two different directions?

I mean, that's the way to start
the experiment off right.

We need to get
a Tesla coil up in that thing.

- Yeah.
- Kaleb and Jim,

- y'all ready?
- Yeah.

For the first stage of the experiment,

we broke up into teams.

Thomas and Cameron
will be in charge of firing

the Tesla coil g*n at the 31-foot mark

where we first saw the blob.

Kaleb, Jim, and I will be
at the southern bubble boundary

to look out for more signals.

And Erik and Sam
will be monitoring everything

from the science station
near the triangle.

All right, Kaleb, you know
what to do with the antenna.

- Yeah.
- I got to get my computers

and everything running.

Before we started,

Kaleb put another radio antenna
on top of my jeep,

facing the triangle.

I wanted to see if I would still
pick up that 33-megahertz signal

even from this far away.

Yeah, I'm seeing the spikes.

Hey, Erik, you copy?

Yeah, go ahead, Travis.

Yeah, be advised that, the antenna

is pointed at the triangle
and tuned to 33 megahertz.

I'm seeing

that same set of spikes

but, really low

signal strength.

Yeah, copy that.
Well, that's really interesting.

We're still trying to figure out
where the heck that's sourced.

And, we've yet to determine.

So that... that's worth keeping an eye on.

The fact that I'm
picking up a much weaker signal

when I'm far from the triangle
but still inside the bubble

is another sign that the source
of the signal could be the blob.

We're about in place,

if you're ready to send Cameron
up and do the first test.

Copy you, Travis.

All right. Going up.

As we are energizing
the space above the triangle,

we are looking

to collect contiguous data from

both the bubble boundary and the blob

to learn as much as we can about
the connection between the two.

Powering up.

Okay, Travis, guys, be advised,

Thomas and Cameron look like they're,

Just about in position.

All right, let's go ahead and start firing.

All right, he's firing in three, two, one, go.

Yeah. I can see it.
Heck yeah, I can see it

from here.

We can see it from here.
And when it started,

the 33-megahertz thing
started pulsing up and down.

Look at that. Yeah.

It definitely made the signal stronger.

So we're looking
for effects that are not normal.

In this case, an electric discharge

at the center of the triangle

would not be expected
to affect a 33-megahertz signal.

What could cause that? The blob?

I don't have a good explanation for that.

Stop.

Erik, I can see

when he stopped, the peaks stabilized.

But when he's firing it,
they start bouncing like crazy.

Yeah, copy that. I saw
corresponding activity

here at the triangle.

The strength of that


right when Cameron
was firing his Tesla coil g*n

at the spot where the blob
has been seen.

It was like he was pushing an on button.

You know what I'd like to do, Thomas?

If you can have Cameron fire again

so we can watch this closer.

Copy that. Firing in five,

four, three,

two, one.

Man. Those spikes
at 33 megahertz are going nuts.

Wow.

Well, that's weird, man.

Look at that. See it?
See it? Look at it bouncing.

It's crazy what's happening
at 33 megahertz.

This is wild.

Every time we fire that Tesla coil g*n

directly at the place
where we first spotted the blob,

the 33-megahertz signal goes nuts.

Could this be more evidence

that the blob really is
the source of this signal?

Stopping now.

All right.

So, Erik, if it's all right with you,

we're gonna go ahead
and move on to the next phase

and get, Kaleb suited up and ready to,

Light up the bubble barrier down here.

Yeah, copy you. I'm all for it. Let's go.

For the next phase of our experiment,

we're gonna fire
two Tesla g*ns simultaneously,

both at the blob and bubble boundary.

We want to see
if that 33-megahertz signal

reacts again. If it does,

that might prove there is
some kind of connection

between the blob and the boundary.

All right, going up.

- You got it?
- Yep. Good.

I don't know what to expect

with the discharges
at the center of the triangle

and the bubble boundary.

But we do know we've seen

some kind of a response
from the ranch itself

when we stimulate
other areas on the property.

And that's the purpose
of this two-site experiment.

Will an effect in one location

be reflected in the other?

We are ready to do the simultaneous,

- Test.
- Copy you, Travis.

Thomas, give us a countdown
to fire the Tesla g*ns.

- Copy that.
- We are

in position, so whenever you're ready.

All right. In five,

four, three, two,

one, fire.

Fire, Kaleb.

Dude, look at that.

Okay, you see what's happening

- with the 33 over here?
- Yeah.

That signal is pulsing
with higher strength again.

Five,

four, three, two,

one, stop.

Stop!

Erik, are you seeing anything
on the sensors at the triangle?

Yes, we are seeing a lot of hopping,

On the 33 on both instruments.

Yeah, we're-we're seeing
a lot down here as well

while the g*ns are firing.

Copy that.

Firing the Tesla coil at both the blob

and the bubble boundary simultaneously

caused that 33-megahertz signal
to spike again

but this time even higher.

It seemed like a pretty clear
correlation to us.

I think we're ready to,
move to the next phase.

Thomas, you set up to do
a rocket launch down there.

Copy that.

We'll go ahead
and prepare for rocket launch.

And we need to prepare for
a lo... rocket launch down here.

Sounds good.

Next up, we're
gonna fire some rockets to try

and make the blob appear again.

First we're gonna aim exactly for the spot

at 31 feet where we first saw the blob.

Then we're gonna fire one
at the southern bubble boundary

to explore a possible connection
between the blob and the bubble.

And finally we'll launch rockets
in both places at once.

Thomas, you set up to do
a rocket launch at the triangle?

Yes, we're ready to go.

Okay. Fire away, Thomas.

Copy that.

Three, two,

one.

There it goes!

Whoa! That one just changed direction!

For such a calm night,

it sure veered off there at the end.

Yeah, and it fell rapidly suddenly

once it got outside the bubble.

I can see it coming down now.

Yeah, guys, from my perspective,

looking through the camera
assets at the south tower,

it looked like it, took off towards the east.

- Do you confirm?
- Yeah, Erik, that's what I saw.

Well, the rocket didn't explode,

and no one reported
seeing anything show up

where the blob appeared before.

But it was curious that the rocket

veered away from that area.

It should have flown straight up.

So it'll be interesting
to see what Erik finds

when he reviews
our high-speed cameras.

Hey, Erik, do you copy?

Yeah, Travis, I copy.

I didn't see that 33 megahertz
change that time. Did you?

Yeah. It's staying steady on my end, too.

Unlike with the Tesla coil g*ns,

the 33-megahertz signal
didn't seem to react

after the first rocket launch.

So we decided to launch another rocket

at the southern bubble boundary

to see if that would make
the signal spike again.

We got the rocket
on the pad ready to launch.

Copy that. We are, recording

and observing on all the instruments.

All right. Going to launch in five,

four, three,

two, one.

Dang it. Dang it.

I don't see it.

We had a malfunction
down here. We're having

some kind of issue with the, connectivity.

I don't understand it.

Yeah, copy that, Travis. Standing by.

I tested that launcher earlier.

So why was it not working
in the bubble boundary?

Maybe it was a malfunction.

Or did the boundary
somehow make it glitch?

Dang.

What the hell's going on?

It's off the charts.

It's reading really high carbon monoxide,

but there's nothing around here.

Yeah, there's no elevated

- carbon monoxide.
- Yeah, it's going off again.

What happened?

Two of our sensor boxes
just lost connection.

- Are you kidding?
- No.

This is a really peculiar,

even disturbing sequence of events.

Certainly, we've seen our share
of equipment malfunction,

possibly as a result
of this high-voltage source

at the center of the triangle

and even right at the bubble boundary.

But we have to get

to the bottom of what this interference is.

Where is this coming from?

Okay, guys,

we've got a lot going on
here simultaneously.

But now Sam's getting errors

on a bunch of our sensors.

So it-it seems like we've got,

quite a sequence of things,
unfolding here.

What a coincidence, Erik.

All right. I'm gonna try
another launch over here

and see what happens.

Yeah, copy. Good luck with that.

All right, rocket's going hot.

Second attempt in five,

four, three, two, one.

Okay, that was a good launch.

Well, that seemed to work.

We have a good launch and good chute.

Seems like it's coming down normal.

Hey, look at that.

Signal's kind of come back pretty strong.

That 33-megahertz signal
spiked stronger

than we've seen it all night.

So, if it's coming
from the blob like we suspect,

could that mean that sh**ting a rocket

through the bubble boundary

somehow triggered a response
from the blob?

Hopefully, our simultaneous
rocket launch will tell us more.

All right, so let's, let's
go get another one on

and get ready for
the simultaneous rocket launch.

All right, so let's go get

another one on and get ready for
the simultaneous rocket launch.

Hey, Thomas. It's Travis.

You copy?

Go for Thomas.

I'm ready to go when you are.

All right, going hot.

Launching in five, four,

three, two,

one.

We've got simultaneous launches.

Did we get both of 'em? Yeah.

There goes chute.

Good chute.

Theirs is, like, coming straight down.

- Look at that thing.
- Yeah.

Our rocket's on the ground,
we had good chute.

Yeah, guys, that looked great.

The simultaneous rocket launch

went off without a hitch,

and nothing odd
happened in the moment.

But all things considered,

from what we saw
during the experiment,

I think we learned a little more
about the blob tonight.

I think, we're good, we're gonna start

wrapping up down here

and I'm just gonna
head on back to the triangle.

Copy that.

We've seen some
very unexpected results.

I don't know what to make of that,

but we have all the data,

and I can't wait to take a look at it.

Man, that was some...
unusual stuff happening.

I think we got a lot of data,

we still got to go
through the high-speed video.

I say we wrap it up and, get
back to the command center.

I appreciate you bringing your cool toys

out here... I mean,
they're more than toys, but...

Me, too. I enjoyed it.
Thank you so much.

All right.

What are you at right now?

- 68.
- 68 feet?

- Yep.
- Okay.

The fact that
we haven't hit any hard objects,

I'm not seeing anything that's promising.

The next morning, we headed

back out to the mesa first thing,

after receiving word from the drillers

that they were closing in
on the 60-foot depth

where we hope to find the anomaly.

If they hit it, we absolutely
wanted to be there.

Hey, Thomas, you copy?

Yeah. Go for Thomas.

Yeah, Thomas,
just checking in on progress.

Wanted to know what depth we're at

- and how things are going over there.
- Yeah.

You guys might want to come
over here to the drill rig.

Yeah, copy that.

So, what's the word, Chris?

- What depth we at?
- We're at 68.

- 68 feet deep already?
- Yeah.

Where is the anomaly?

We should have hit it by now.

I'm baffled.

After over 60 feet of drilling

directly down onto the top
of that anomaly

that shows up in GPR data,

we were fully expecting to encounter

something very hard by now,

and we just don't see it.

Maybe we're just not there yet.

Well, I say we finish
this hole out to the 90 feet,

and while you guys are doing that,

we can be sifting through the spoils.

Sounds good.

The only thing
that would make sense to me

is if this object is somehow
deeper than we thought.

So, once we started
drilling again, we were hoping

that within an hour or two,
we'd hit our target.

We've got a little ways left to go.

While the drillers continued working...

Yeah, I copy you, Cameron.
We got eyes on you.

The rest of us headed back

to the command center
to greet Cameron Fugal.

We asked him to fly in
from Salt Lake City today

to help us run an impromptu experiment.

Hey, Cameron, how's it going?

Good. Good to be back, guys.

Flying in, I see we got a lot of activity

- up on the drill site.
- Yeah, we're gonna be busy.

A couple weeks ago, when we drilled

our first vertical borehole

in the same general area
that we're drilling now,

Pete was running
some lidar scans up there

and captured images
of the bubble boundary

starting to show up.

It made us wonder if the drilling

was a triggering effect
that caused that to happen.

And if so, can we make it
appear again today?

- I'm excited. Let's...
- Yeah.

We'll get up in the air
and get-get Pete monitoring.

- Let's get to it.
- All right.

So, as the drilling continues,

Erik and I want Pete
to run scans from the helicopter

as Cameron flies him
back and forth over the mesa.

At the same time, we'll have Kaleb

run stationary scanners
at the triangle and also where

we've marked
the western bubble boundary.

The TLS in triangle is good.

Thanks, Kaleb.

If the bubble starts to show up again

during the drilling operation,

it could mean that the buried
objects in the mesa

are connected to the bubble

and may even suggest
that they cause it to appear.

And we'll start spooling up right now.

Copy that.

How's that camera moving out there?

Looks good.

Today we're gonna get to map
across the bubble,

east to west,

at ever-increasing altitudes,

and we should get amazing lidar data

of anything it sees, like the bubble.

Okay, we're over on the east side

of the bubble.

Yeah, Cameron, copy loud and clear.

The helicopter's such a
great tool because we can cover

so much ground quickly
and at varying altitudes.

This will be adding

to an already rich data set to help us

try to understand what's going on here.

We're commencing the descent.

We're gonna land up at the drill site

- here in just a bit.
- Yeah, copy that.

I'm gonna go ahead and get up
to the top of the mesa.

Sounds great, man.
We'll see you guys in a bit.

Coming in.

- Well, what'd you think?
- Was awesome.

- Hey, fellas.
- Hey, guys.

How's it going down at the drill?

We're... they're making good progress.

Did you find anything in the spoils?

Right now there's nothing
coming out that's not natural.

I'm pretty optimistic

that we still have a chance in this hole.

- I-I'm in agreement.
- Fingers crossed.

Well, you know, today's scan
was really exciting.

- I can't wait to see that data.
- Yeah.

It'll just take me a couple
of days to process the data.

It's been really good
to be out here with y'all.

I look forward to seeing
what-what we yield from,

from all this work.

Let's move in position

- and let's do it.
- All right.

I'm gonna go tell the drillers

to keep charging forward.

Thomas to the science
tent. You guys copy?

Yeah, Thomas, it's Travis. Go ahead.

We hit our 90-foot mark.

We are literally bringing up
the last scoop of dirt

out of this hole.

We're-we're finished,

- if you guys want to come down.
- Wow.

We'll be right there, Thomas.

Man, they're at 90 feet already?

After several more hours
of drilling at the mesa,

Thomas called us over because the drill

was reaching
its maximum depth of 90 feet.

We were all surprised,
given the fact that,

according to all our data,

we should have easily
hit that anomaly by now.

So they're down at 90 feet?
That seems quick.

Chris, have you found anything
in the spoils yet?

So far, preliminarily, we don't
have any, any artifacts.

I don't get it.

No ceramics yet, no metal.

Why have we not hit that?

What the hell's going on there?

I know I sound like a broken record here,

but this makes no sense.

It's like whatever is in there moved.

- Well, that's it, guys.
- All right.

I say we call it in this hole

and drill our next one,
right in line with Borehole 2.

But this time we'll drill much
closer to the face of the mesa.

- All right, cool.
- Okay.

Well, that's gonna give us a good chance

of finding more of those ceramics.

Let's move in position and let's do it.

Since we missed the target

that we were so desperately
hoping to find,

we pick a spot close
to the face of the mesa

right in line with where we found

these ceramics in Borehole 2.

We wanted to hit
the dead center of this object,

but now it's important
that we get back in there

where we've already found
important clues before.

Well, let's get on with it.

Hey, guys.

So, I have the data from our exercise

- that I want to get your eyes on.
- Okay. -Okay.

After a long day of drilling

and scanning the mesa,

Erik called us together to go over

all the high-speed video we captured

during last night's Tesla g*n experiment.

This is from the first test at the tower

at the center of the triangle.

What do you say I just play
through a-at regular speed?

Yeah.

Whoa.

Look how many times it doesn't
hit the grounding rod.

Exactly.

You know, I understand
that there's gonna be

some variation each time, but you know,

when you're that close
to that, grounding rod,

they should always
be hitting the grounding rod.

Right.

It's like there's another grounding rod

up there above it
or out in the air or something.

Yeah, what the heck is going on?

Wow.

Wait, back that up. That was a good one.

Okay.

Now, see, that one, it went way...

like it was avoiding the tower.

- Like it's turning away from it.
- Yeah.

So what is attracting the arc?

I don't know. I-I'm just...

I-I don't know, I don't know what to think.

I mean, that doesn't make any sense.

I'd expect to see a single arc

going from the g*n
to the grounded launch tower,

but that's not what happened at all.

In fact, the electric arcs
turn, like, up and to the left.

And so, that suggests

that there might be
something in that space.

Maybe it's the blob that causes

the electric current to take paths

that we wouldn't normally expect.

So I'd like to bring up
the Meta-Frame view

from these cameras that we have here

mounted on the science tower.

So, here we're looking directly
over at the grounding rod,

and you enter the frame in a moment.

- Now, look at that.
- Whoa.

So what you're seeing here

are all the arcs from the Tesla g*n

in a time-lapse long exposure.

They keep curving up
and away from the grounding rod.

Maybe it's the blob,
but I don't really see anything.

Do you?

Let's take a look at the next one.

What I've done here
is I've zoomed in the view,

and-and, tell me if anything
jumps out at you guys.

What is that in the top?

- What is that?
- Yeah.

It's almost like
we're illuminating something

right at where we hit the blob
with that rocket.

This is crazy, man.

The enhanced video seemed to show

the electric arcs
making contact with something

right where we first saw the blob.

Could this experiment
have made it appear

for the second time
and prove that it's real?

If so, what the heck is it?

These are clearly not
arcs from the Tesla g*n.

Could it be a region of charge?

And that some kind
of the electrical charge

is what blew the rocket up?

Right. We should probably watch

the launches themselves.

So let me take us to the first
launch at the triangle.

- All right, there we are.
- Now, right there

- you're at the height of the tower.
- That's right.

So this rocket is headed,

essentially, straight up at this point.

- Yep. Yeah.
- Yes?

So, again, straight up.

- And let's see...
- Ooh,

and immediately it turns.

Now, there was no significant wind.

And if that was wind-c*ck,

you'd see that-that contrail right there

- sh**ting off to the south.
- Yep, you're right.

We've seen so many strange things

in our rocket launches there
at the center of the triangle

at that 30-foot-or-so point.

Large deviations,
very sharp, angular changes

in the trajectories
of the rockets at launch.

Is this, in fact, evidence of this structure

that we've been trying to study

to which we've given
the name "the blob"?

Where's the turn?

- It's right here...
- Right there.

Where the Tesla coil
g*n arcs curved upward.

Right there.

That is crazy.

That's exactly where the blob was.

I don't know what to make of it.

Our high-speed cameras
helped us pinpoint the moment

when a rocket suddenly turned midair

and flew away from the triangle.

And once again it's that same spot

where we saw the blob
appear a few years ago.

Let's see what's going on here.

So, we're going straight up.

And then, I mean, what is that little...?

Look at how it's kind of got
some separate, weird...

Back up a minute. I just
realized what's happening.

Now watch when it makes this turn.

You don't see the effect.

- Right there.
- Yeah,

- look at that discontinuity.
- See, look how much

it's pushed the rocket tail end.

- That disconnect...
- That's a foot or something

at that, at this angle, probably.

At this distance and field of view.

So that means it pushed...

something literally pushed
the tail of the rocket

that caused it to, to,

to teeter like a seesaw.

I-I would put the bottom of the rocket

just about the exact same height

as the sparks that are reaching up.

Yep, that's a good point.

The tip and body of the rocket

made it through that area

and only got redirected at its tail end.

So, was the blob not present one second

but then somehow got triggered
to materialize out of thin air

as the rocket flew through that space?

I don't know.

All right, all right, so, let me take us

to the next launch.

So, again, straight up.

- And the same thing.
- Ooh,

- immediately it turns.
- Same place.

- No way.
- All right,

look at what's going on here.

Why?

- Zoom-zoom, zoom in on it, too.
- All right.

Dive in here. Okay.

Ooh, stop. Look at that rocket.

It was teetering again.

- There it is.
- Yeah.

The-the motor was literally pushed

about a foot.

Look at that. Exact same spot.

This is absolute evidence

that something hit the rocket right there.

What are the chances
that two different rockets

veered off in the exact same spot

and that they both teetered
like something

bumped them in midair?

That cannot be a coincidence.

Clearly, there was something
with a physical presence

in that spot.

Now we just need to figure out
what it actually is.

There was a lot of data
came out of this experiment.

I think that catching that data
was very important.

Well, you know, given what we've seen

with the rocket launches,
you know, I-I think

that we absolutely know
what we're looking for now.

We need to follow up and,
see if we see more of it.

Yes, absolutely. In fact,
I have some ideas of,

making some measurements there,
where we've seen that blob.

I really want to launch a lot more rockets

right there in the triangle

and see if we continue
to see that but track it better.

- Sounds good.
- We've got a lot to work on.

This was a good conversation.
I say we, regroup tomorrow.

- Yeah, let's get after it.
- Okay, let's go.

Let's do it.

We've seen so many anomalies

and unusual effects in the blob.

There is some kind of connectivity

between the region
we're calling "the blob"

and the periphery of the bubble.

I want to study that space
in as many ways as we can.

Every experiment
that we run on the bubble

and that spot above the triangle

gives us more evidence that something

is hiding from us in plain sight.

It just might be the key

to revealing the truth about this place.

So we're gonna keep poking
this invisible nest

harder until we know
for a fact exactly what it is.

Why are we seeing something that is so

out of place on Skinwalker Ranch,

particularly above the triangle?

Do our experiments

trigger or activate this bubble

or this region of the property

where we have recorded the anomaly?

What or who could be behind

this strange force that continues

to have a presence
at Skinwalker Ranch?

- We got metal from the mesa.
- Hey. Fantastic..

- Holy...
- Look, it stalled.

It's like it's stuck at the top of the bubble.

It should be coming straight down.

Looking at that sensor

to record changes in the magnetic field.

- Gosh.0273.
- Look at that.

That coil was cutting
through a magnetic field.

- Look at that. Yep.
- Right there.

Hold on, now.

We may have caught something.
I don't know what that is.