Space Force Unveiled: The Surprising Reality of Weapons in Orbit
Space Nuts: Astronomy Insights & Cosmic DiscoveriesOctober 09, 2026
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Space Force Unveiled: The Surprising Reality of Weapons in Orbit

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Space Nuts: Space Force Weapons, Purple Mars, and New Lunar Crater
In this episode of Space Nuts, hosts Andrew Dunkley and Professor Fred Watson delve into some fascinating and thought-provoking topics. They kick off with the recent revelation about the existence of weapons in orbit around Earth, a significant admission from the United States that raises questions about the future of space security. The conversation shifts to Mars, where stunning new images suggest that we might need to reconsider its nickname as the "Red Planet" due to striking purple hues observed in its southern regions. Finally, the duo discusses a newly discovered crater on the Moon, the largest of its kind in recent history, and what this means for our understanding of lunar impacts and surface changes.
Key topics
- The United States acknowledges the presence of weapons in space, sparking discussions about the implications for global security and the arms race in orbit.
- An exploration of Mars' changing colour palette, with new images revealing purple landscapes that challenge our traditional views of the planet.
- The discovery of a significant new crater on the Moon, highlighting the ongoing geological activity and impact history of our celestial neighbour.
Timestamps
00:00 - Introduction and overview of topics
01:20 - Discussion on weapons in orbit and implications for space security
15:30 - Mars as the "Purple Planet" and the significance of new imagery
25:00 - New lunar crater discovery and its implications for lunar geology
35:15 - Closing thoughts and listener engagement

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00:00:00 --> 00:00:02 Andrew Dunkley: Hello, thanks for joining us. This is Space

00:00:02 --> 00:00:05 Nuts, where we talk astronomy, space science

00:00:05 --> 00:00:07 and all sorts of weird and wonderful things.

00:00:07 --> 00:00:10 This one though, uh, one of the stories we're

00:00:10 --> 00:00:11 covering today, uh, sort of

00:00:12 --> 00:00:15 dovetails into something we talked about not,

00:00:15 --> 00:00:18 um, so long ago regarding Space

00:00:18 --> 00:00:20 Force. No, it's not a sequel to their, uh,

00:00:20 --> 00:00:23 unveiling of their uniforms, but it

00:00:23 --> 00:00:25 is something we have talked about recently.

00:00:25 --> 00:00:27 So the penny might drop with, uh, a few

00:00:27 --> 00:00:30 people as to what that might be. We'll get

00:00:30 --> 00:00:33 into that shortly. And should we be calling

00:00:33 --> 00:00:35 Mars the purple planet? I'll tell you

00:00:35 --> 00:00:38 why. And they've found yet another big crater

00:00:38 --> 00:00:41 on the moon. We'll talk about all of that on,

00:00:41 --> 00:00:44 uh, the latest episode of space nuts.

00:00:44 --> 00:00:46 Professor Fred Watson: 15 seconds. Guidance is internal.

00:00:47 --> 00:00:49 10, 9. Ignition

00:00:49 --> 00:00:50 sequence start.

00:00:51 --> 00:00:51 Professor Fred Watson: Space nuts.

00:00:51 --> 00:00:54 Professor Fred Watson: 5, 4, 3. 2. 1. 2, 3, 4,

00:00:54 --> 00:00:56 5, 5, 4, 3, 2, 1.

00:00:56 --> 00:00:58 Andrew Dunkley: Space nuts.

00:00:58 --> 00:00:59 Professor Fred Watson: Astronauts report it feels good.

00:01:01 --> 00:01:04 Andrew Dunkley: And he joins us again and, uh, we're so

00:01:04 --> 00:01:05 happy to have him. It's Professor Fred Watson

00:01:05 --> 00:01:07 Watson, astronomer at large. Hello,

00:01:07 --> 00:01:08 Fred Watson.

00:01:08 --> 00:01:09 Professor Fred Watson: Hello, Andrew.

00:01:09 --> 00:01:11 Hello, M. I think we both had a busy week,

00:01:11 --> 00:01:13 haven't we? It's amazing we can squeeze these

00:01:13 --> 00:01:14 in. Yes, yes.

00:01:14 --> 00:01:17 Andrew Dunkley: Uh, it's crazy. Uh, and, and

00:01:17 --> 00:01:19 uh, next week's going to be even worse for me

00:01:19 --> 00:01:21 with, um, a major golf tournament at our

00:01:21 --> 00:01:24 club, which I'm heavily involved in

00:01:25 --> 00:01:27 and I think not only on the organising side

00:01:27 --> 00:01:30 of it. I've got to play for 18 whole

00:01:30 --> 00:01:33 rounds in, um,

00:01:33 --> 00:01:36 six days or something. Oh, gosh, I

00:01:36 --> 00:01:39 don't know. Why do we do these things to

00:01:39 --> 00:01:39 ourselves, Fred Watson?

00:01:41 --> 00:01:42 Professor Fred Watson: Yeah, exactly.

00:01:42 --> 00:01:45 Andrew Dunkley: Yeah, it'll be fun. It'll be fun.

00:01:45 --> 00:01:48 Um, it'll probably help me sleep on the

00:01:48 --> 00:01:50 plane when we do our trip in a, in a couple

00:01:50 --> 00:01:52 of weeks time. Although by the time this

00:01:52 --> 00:01:55 episode gets released, um, I, I don't

00:01:55 --> 00:01:58 know where we'll be. But, um, let's get down

00:01:58 --> 00:02:00 to business. We have got so much to talk

00:02:00 --> 00:02:00 about.

00:02:00 --> 00:02:03 And this first story has probably

00:02:04 --> 00:02:07 shocked, um, a few people that have uh, now

00:02:07 --> 00:02:10 heard the news, uh, involving Space

00:02:10 --> 00:02:12 Force and their um,

00:02:13 --> 00:02:16 announcement that there are in fact

00:02:17 --> 00:02:19 weapons in orbit around Earth.

00:02:19 --> 00:02:21 We talked about this not so long ago,

00:02:21 --> 00:02:23 Fred Watson, and we just assumed that's

00:02:23 --> 00:02:25 probably the case. But no one's admitting

00:02:25 --> 00:02:27 anything. Well now the United States has

00:02:28 --> 00:02:29 actually fessed up.

00:02:30 --> 00:02:32 Professor Fred Watson: Uh, they have. That's right, with an

00:02:32 --> 00:02:34 announcement, uh, which I've currently lost.

00:02:37 --> 00:02:39 Uh, but is. Here we are.

00:02:40 --> 00:02:42 Uh, it was, came from the secretary, uh, of

00:02:42 --> 00:02:45 the Air Force, um, whose

00:02:45 --> 00:02:48 name is Tony Meek. I think that's how it's

00:02:48 --> 00:02:51 pronounced. Uh, and this was at a

00:02:51 --> 00:02:53 conference on airspace and

00:02:53 --> 00:02:56 cyber, uh, and the

00:02:56 --> 00:02:58 secretary of the Air Force or Air Force

00:02:59 --> 00:03:02 said today we continue to ensure we remain

00:03:02 --> 00:03:04 ready to meet the challenges of evolving

00:03:04 --> 00:03:07 threats wherever they exist. This is why the

00:03:07 --> 00:03:10 United States now has on orbit

00:03:10 --> 00:03:13 space control weapons capable of defending

00:03:13 --> 00:03:15 the joint force against hostile adversary

00:03:15 --> 00:03:18 action. So, um,

00:03:18 --> 00:03:21 you know, it's one of these things pretty

00:03:21 --> 00:03:23 well, as you said that we've talked about

00:03:23 --> 00:03:25 before, that we've

00:03:26 --> 00:03:28 tacitly assumed, uh, certain other powers

00:03:28 --> 00:03:31 have weapons in space, but nobody's ever

00:03:31 --> 00:03:34 come up front and said it. Um,

00:03:34 --> 00:03:36 and so the, uh,

00:03:37 --> 00:03:39 admission by the secretary of the Air Force

00:03:39 --> 00:03:42 is quite significant. So,

00:03:42 --> 00:03:45 uh, it sounds as though

00:03:45 --> 00:03:48 there's a whole retinue of

00:03:48 --> 00:03:50 possibilities that this might include.

00:03:51 --> 00:03:53 My first thought was electromagnetic weapons,

00:03:53 --> 00:03:56 lasers, um, because that's what

00:03:56 --> 00:03:58 the Reagan administration were looking at

00:03:58 --> 00:04:01 back in the 1980s, the

00:04:01 --> 00:04:03 Reagan star wars programme.

00:04:04 --> 00:04:06 But, uh, we now have, um,

00:04:07 --> 00:04:09 I, uh, guess a whole array of things that

00:04:09 --> 00:04:11 probably weren't around then. Um, including

00:04:12 --> 00:04:15 directed energy by lasers,

00:04:15 --> 00:04:17 uh, or radio frequency jammers. But also

00:04:17 --> 00:04:20 there are chemical sprayers, uh, there's net

00:04:20 --> 00:04:23 equipment, microwave devices. Once again,

00:04:23 --> 00:04:25 that's electromagnetic or

00:04:26 --> 00:04:28 basically just good old fashioned

00:04:28 --> 00:04:31 kinetic impact. Uh, in other words,

00:04:32 --> 00:04:32 something into.

00:04:32 --> 00:04:33 Andrew Dunkley: Crash into something.

00:04:33 --> 00:04:36 Professor Fred Watson: That's right, yeah. Uh, so, uh,

00:04:36 --> 00:04:39 yeah, really interesting, uh, to read that.

00:04:39 --> 00:04:41 Uh, the first thing I did when I read this

00:04:41 --> 00:04:44 last week or earlier in the week was to

00:04:45 --> 00:04:47 check what the, um, International

00:04:47 --> 00:04:49 Space Outer space treaty of

00:04:49 --> 00:04:52 1967 says about weapons. What

00:04:52 --> 00:04:55 it specifically, um,

00:04:56 --> 00:04:59 prohibits is nuclear, uh,

00:04:59 --> 00:05:02 weapons. They are, uh,

00:05:02 --> 00:05:04 definitely prohibited by the

00:05:05 --> 00:05:07 treaty, though it doesn't mention

00:05:08 --> 00:05:10 non nuclear weapons. On the other hand,

00:05:11 --> 00:05:13 it does say that, um, you know,

00:05:14 --> 00:05:16 the International Space Treaty is all about

00:05:16 --> 00:05:19 the peaceful uses of outer space.

00:05:19 --> 00:05:22 Um, and so it sort of tends to rule out, uh,

00:05:23 --> 00:05:24 something that's not peaceful.

00:05:26 --> 00:05:28 Andrew Dunkley: And Earth is very upset by that news.

00:05:28 --> 00:05:28 Professor Fred Watson: Yeah.

00:05:28 --> 00:05:31 Professor Fred Watson: Ah, I, uh, need to keep an eye on him

00:05:31 --> 00:05:34 because I'm his soul,

00:05:34 --> 00:05:36 Andrew Dunkley: um, soul carer today.

00:05:36 --> 00:05:39 Professor Fred Watson: Not carer. Um, Yeah, I

00:05:39 --> 00:05:41 don't know what the word is.

00:05:42 --> 00:05:45 Uh, I'm his soul support. Just give me a

00:05:45 --> 00:05:47 second, Andrew. I've got to find out what's

00:05:47 --> 00:05:47 going on.

00:05:47 --> 00:05:48 Andrew Dunkley: Okay.

00:05:48 --> 00:05:48 Professor Fred Watson: Ah.

00:05:50 --> 00:05:52 Andrew Dunkley: Ah, it happens sometimes.

00:05:52 --> 00:05:55 Um, we've got one across the road that does

00:05:55 --> 00:05:57 exactly the same thing whenever the wind

00:05:57 --> 00:06:00 changes. Just goes off its proverbial nut

00:06:01 --> 00:06:03 and, um.

00:06:03 --> 00:06:03 Professor Fred Watson: What's your problem?

00:06:03 --> 00:06:06 Andrew Dunkley: I can't see him at the moment. But it's only

00:06:06 --> 00:06:09 a puppy. See, it doesn't understand,

00:06:09 --> 00:06:11 but, um, it drives people crazy

00:06:13 --> 00:06:13 sometimes.

00:06:14 --> 00:06:14 Professor Fred Watson: Um.

00:06:14 --> 00:06:15 Professor Fred Watson: Come on.

00:06:15 --> 00:06:18 Andrew Dunkley: All right. I Think we're going to have an

00:06:18 --> 00:06:19 added guest to the show by the sound of it.

00:06:20 --> 00:06:22 Professor Fred Watson: Good lad. Yes, sit down,

00:06:24 --> 00:06:27 make yourself at home. No idea

00:06:27 --> 00:06:28 what that was about. Sorry about that,

00:06:28 --> 00:06:29 Andrew.

00:06:29 --> 00:06:30 Andrew Dunkley: It could have just been a butterfly,

00:06:30 --> 00:06:31 Fred Watson.

00:06:31 --> 00:06:31 Who knows?

00:06:32 --> 00:06:33 Professor Fred Watson: Usually it's a leaf.

00:06:34 --> 00:06:35 Andrew Dunkley: That's what I was saying.

00:06:35 --> 00:06:36 Professor Fred Watson: Yeah.

00:06:36 --> 00:06:37 Andrew Dunkley: Or a change of breeze.

00:06:37 --> 00:06:39 Professor Fred Watson: Yeah, something like that.

00:06:39 --> 00:06:39 Professor Fred Watson: Yeah.

00:06:39 --> 00:06:42 Andrew Dunkley: Um, back to our topic. That's okay. Uh,

00:06:42 --> 00:06:43 back to our topic.

00:06:43 --> 00:06:46 Uh, I just did uh, a bit of a search

00:06:46 --> 00:06:49 on um, an AI platform to see

00:06:49 --> 00:06:52 what sort of weapons could potentially be in

00:06:52 --> 00:06:53 orbit around the planet at the moment.

00:06:53 --> 00:06:55 Because they're not going to confess to what

00:06:55 --> 00:06:57 exactly they've got, I imagine. Um,

00:06:57 --> 00:07:00 but anti satellite interceptors, electro

00:07:01 --> 00:07:03 magnetic, um, or electronic warfare jamming

00:07:04 --> 00:07:06 robotic co. Orbital weapons,

00:07:07 --> 00:07:09 uh, directed energy weapons. Conventional

00:07:09 --> 00:07:12 missile launches from orbit would be

00:07:12 --> 00:07:14 possible. Uh, this one's interesting.

00:07:14 --> 00:07:16 Kinetic tungsten projectiles.

00:07:17 --> 00:07:19 Uh, you were talking about kinetic weapons.

00:07:20 --> 00:07:21 Nuclear, uh, weapons are uh,

00:07:22 --> 00:07:25 technically plaus, but as you said,

00:07:25 --> 00:07:28 outlawed by uh, the Outer Space Treaty.

00:07:28 --> 00:07:31 And chemical and biological weapons in orbit.

00:07:31 --> 00:07:33 Uh, but again, um,

00:07:34 --> 00:07:36 there's possible prohibition of those.

00:07:37 --> 00:07:39 So um, you got to wonder whether or

00:07:39 --> 00:07:42 not that particular thought.

00:07:43 --> 00:07:44 Professor Fred Watson: Did you say biological?

00:07:45 --> 00:07:46 Andrew Dunkley: No, chemical?

00:07:46 --> 00:07:46 Professor Fred Watson: Yeah.

00:07:46 --> 00:07:48 Andrew Dunkley: Chemical and biological.

00:07:48 --> 00:07:51 Professor Fred Watson: Yeah. You would want to keep those out

00:07:51 --> 00:07:52 of space, I guess.

00:07:53 --> 00:07:56 Andrew Dunkley: I've been reading a book, uh, by John

00:07:56 --> 00:07:58 Birmingham, an Australian sci fi author

00:07:58 --> 00:08:01 called World War 3.0. I think I've mentioned

00:08:01 --> 00:08:04 it before. Great, great series. And

00:08:05 --> 00:08:08 it involves the fact that um, uh,

00:08:08 --> 00:08:11 a uh, task force from the future ended up

00:08:11 --> 00:08:14 getting sent back to World War II and

00:08:16 --> 00:08:19 it changed the world. And uh, Stalin, because

00:08:19 --> 00:08:21 they had access to all the history of what

00:08:21 --> 00:08:23 was going to happen to them that hadn't

00:08:23 --> 00:08:25 happened yet. Uh, people like

00:08:25 --> 00:08:28 Stalin didn't end up dying as early as

00:08:29 --> 00:08:32 we know, um, and developed weapons uh,

00:08:32 --> 00:08:34 of mass destruction that were fired from

00:08:34 --> 00:08:37 space and attacked NATO with kinetic

00:08:37 --> 00:08:40 tungsten projectiles from space. So it's

00:08:40 --> 00:08:41 really interesting that that turned up on the

00:08:41 --> 00:08:42 list.

00:08:42 --> 00:08:45 Professor Fred Watson: Yes, that's right. Ah, it's pretty sharp. Uh,

00:08:45 --> 00:08:46 is Mr. Uh, Birmingham.

00:08:47 --> 00:08:47 Andrew Dunkley: It sure is.

00:08:47 --> 00:08:50 Professor Fred Watson: Gig with him once, which was great pleasure.

00:08:50 --> 00:08:50 Yeah.

00:08:50 --> 00:08:53 Andrew Dunkley: But this is, this is a very um,

00:08:53 --> 00:08:56 dicey subject. Probably a divisive

00:08:56 --> 00:08:58 subject and one that

00:08:59 --> 00:09:02 I think is a cause for concern to

00:09:02 --> 00:09:04 um, a certain degree because

00:09:05 --> 00:09:08 um, you know, no one up until now has

00:09:08 --> 00:09:10 admitted that they have weapons in orbit.

00:09:10 --> 00:09:13 We've just assumed they probably have. The US

00:09:13 --> 00:09:16 is the first to actually say, yep, yep, we've

00:09:16 --> 00:09:19 done it. They're up there. We

00:09:19 --> 00:09:20 don't know what they are though, do we?

00:09:21 --> 00:09:22 Exactly.

00:09:22 --> 00:09:25 Professor Fred Watson: No and, and with, you know, with other

00:09:25 --> 00:09:27 nations that almost certainly have them too,

00:09:27 --> 00:09:29 uh, it's still a matter of conjecture because

00:09:29 --> 00:09:32 they're even less likely to uh,

00:09:32 --> 00:09:35 to, to give us details of what they've got in

00:09:35 --> 00:09:35 space.

00:09:36 --> 00:09:38 Andrew Dunkley: The reasoning behind this has been suggested

00:09:38 --> 00:09:41 that we, we need to um, arm ourselves

00:09:41 --> 00:09:44 to be ready for whatever threat may exist

00:09:44 --> 00:09:47 in the future. What kind of threat

00:09:47 --> 00:09:50 could develop in space? And are

00:09:50 --> 00:09:52 we talking weapons that are going to be used

00:09:52 --> 00:09:55 in space against something else in space,

00:09:55 --> 00:09:58 or are they looking at weapons that they can

00:09:58 --> 00:10:01 use from space to the

00:10:01 --> 00:10:03 ground? Aim at a target on Earth?

00:10:03 --> 00:10:04 Professor Fred Watson: Yeah.

00:10:04 --> 00:10:05 Andrew Dunkley: Or is it both?

00:10:05 --> 00:10:07 Professor Fred Watson: It could be both, but I think the former is

00:10:07 --> 00:10:10 the one that is the one they're most upfront

00:10:10 --> 00:10:13 about. Um, there was a comment uh,

00:10:15 --> 00:10:18 from uh, actually um, Dr.

00:10:18 --> 00:10:20 Malcolm Davis, who's a senior analyst at the

00:10:20 --> 00:10:22 Australian Strategic Policy Institute,

00:10:23 --> 00:10:26 um, who says Space Force is a

00:10:26 --> 00:10:29 direct response to the growing Russian

00:10:29 --> 00:10:31 and Chinese anti satellite and anti space

00:10:31 --> 00:10:34 capabilities, particularly anti satellite

00:10:34 --> 00:10:37 missile systems as displayed by the Chinese

00:10:37 --> 00:10:40 in 2007. Uh, and that's,

00:10:40 --> 00:10:43 I uh, guess um, some of the um, things

00:10:43 --> 00:10:45 that we know about because of the DEB that

00:10:45 --> 00:10:48 was released when they were tested.

00:10:48 --> 00:10:51 Uh, so uh, it's uh, you know.

00:10:51 --> 00:10:53 Ah, you're absolutely right.

00:10:53 --> 00:10:55 There's two conversations here. There's the

00:10:55 --> 00:10:58 one you know, that's up front

00:10:58 --> 00:11:00 the sort of we know nothing conversation. And

00:11:00 --> 00:11:03 yet underneath that uh, there's a very, very

00:11:03 --> 00:11:05 detailed analysis of what's going on

00:11:06 --> 00:11:09 uh, and what is basically

00:11:09 --> 00:11:11 likely to be possible. Another comment from

00:11:11 --> 00:11:14 Malcolm Davis. Uh, the decision to combine

00:11:14 --> 00:11:15 the space capabilities across the various

00:11:15 --> 00:11:18 branches, a standalone branch of the US

00:11:18 --> 00:11:20 Armed Forces which is equal to branches like

00:11:20 --> 00:11:23 the US Navy or US Air Force is an important

00:11:23 --> 00:11:25 step forward and highlights how important the

00:11:25 --> 00:11:28 US considers the space domain.

00:11:28 --> 00:11:31 So that's, yes, that's another possible uh,

00:11:31 --> 00:11:34 uh, another comment there. I mean to some

00:11:34 --> 00:11:36 extent that's really regarding the formation

00:11:36 --> 00:11:39 of the Space Force which happened some time

00:11:39 --> 00:11:39 ago.

00:11:41 --> 00:11:43 Andrew Dunkley: Would it be too long a bow to draw, no

00:11:43 --> 00:11:46 pun intended, that um, they're doing this

00:11:46 --> 00:11:47 because they know the others have to.

00:11:49 --> 00:11:52 Professor Fred Watson: Um. Yes. I don't think that's a longbow at

00:11:52 --> 00:11:54 all. I think that's very likely.

00:11:55 --> 00:11:56 Yeah.

00:11:56 --> 00:11:58 Andrew Dunkley: It's sad isn't it? I mean we shouldn't be

00:11:58 --> 00:12:00 surprised. Uh, we lock our doors

00:12:00 --> 00:12:03 because we don't trust people that walk past

00:12:03 --> 00:12:06 our houses. This is just a very

00:12:06 --> 00:12:08 elaborate and high tech orbital version of

00:12:08 --> 00:12:09 that, I think.

00:12:09 --> 00:12:11 Professor Fred Watson: Yes it is. Yeah, yeah, that's mhm.

00:12:11 --> 00:12:11 Professor Fred Watson: Right.

00:12:13 --> 00:12:15 Andrew Dunkley: And that's unfortunately human nature. Ah.

00:12:15 --> 00:12:17 And we, we have.

00:12:17 --> 00:12:19 And in fact when you, when you read um, into

00:12:19 --> 00:12:22 it deeply, the article

00:12:22 --> 00:12:24 that we're referring to in

00:12:24 --> 00:12:26 arstechnica.com says what is

00:12:26 --> 00:12:29 clear is there is now an arms race in

00:12:29 --> 00:12:32 orbit. Uh, and, and we, I

00:12:32 --> 00:12:34 didn't mention the you know, potential

00:12:34 --> 00:12:37 antagonist but uh, I don't think you would

00:12:37 --> 00:12:39 get much money back from a bet on it being

00:12:39 --> 00:12:40 Russia and China.

00:12:40 --> 00:12:41 Professor Fred Watson: Yes.

00:12:41 --> 00:12:43 Andrew Dunkley: So it's um, it's, it's no surprise

00:12:43 --> 00:12:46 at all. Uh, who knows where it leads

00:12:46 --> 00:12:47 Fred Watson, that's, that's the next

00:12:47 --> 00:12:49 question. You know what, what could happen

00:12:49 --> 00:12:52 next? Uh, ah, are we going to see

00:12:52 --> 00:12:54 at some stage in the future an all out

00:12:54 --> 00:12:57 assault, Satellites versus satellites?

00:12:58 --> 00:12:58 I don't know.

00:12:59 --> 00:13:01 Professor Fred Watson: It could um, I mean that could change our

00:13:01 --> 00:13:03 world completely because of the absolute

00:13:03 --> 00:13:06 dependence that we have on space technology.

00:13:07 --> 00:13:09 Yeah, pretty well. Everything we do,

00:13:09 --> 00:13:12 including what you and I are doing now goes

00:13:12 --> 00:13:12 through space.

00:13:14 --> 00:13:17 Andrew Dunkley: Ah, it wouldn't surprise me either if there

00:13:17 --> 00:13:20 was some major conflict in the future. Uh,

00:13:20 --> 00:13:23 one of the strategic targets would be

00:13:23 --> 00:13:26 communications, uh, satellites and

00:13:26 --> 00:13:27 military satellites.

00:13:27 --> 00:13:28 Professor Fred Watson: That's right.

00:13:28 --> 00:13:31 Andrew Dunkley: So yeah, here it is, it's all ready to go and

00:13:32 --> 00:13:34 another um, arms race is upon us.

00:13:35 --> 00:13:37 If you'd like to read about that. Uh, As I

00:13:37 --> 00:13:40 said, arstechnica.com has

00:13:40 --> 00:13:42 written a um, quite uh, significant

00:13:43 --> 00:13:46 article explaining what is happening. But

00:13:46 --> 00:13:48 yes, the United States is the first to admit

00:13:49 --> 00:13:51 that they have weapons in orbit.

00:13:52 --> 00:13:54 This is Space Nuts with Andrew Dunkley and

00:13:54 --> 00:13:56 Professor Fred Watson Watson.

00:13:58 --> 00:14:00 Professor Fred Watson: I'm going to step off the land mountain.

00:14:02 --> 00:14:04 That's one small step for man,

00:14:07 --> 00:14:08 one

00:14:10 --> 00:14:13 Andrew Dunkley: Space Nuts. Okay Fred Watson, let's

00:14:13 --> 00:14:15 go to Mars. Uh, it is a um,

00:14:15 --> 00:14:18 beautiful planet. Uh, I saw a photo the other

00:14:18 --> 00:14:21 day of a sunset on,

00:14:21 --> 00:14:22 on Mars and it is just

00:14:24 --> 00:14:26 you know, nothing like we get on Earth. It's,

00:14:27 --> 00:14:29 it's a beautiful sight. And

00:14:30 --> 00:14:31 uh, interestingly enough when the sun is

00:14:31 --> 00:14:34 setting on mar, the sky turns blue as

00:14:34 --> 00:14:36 against. When the sun is setting on Earth the

00:14:36 --> 00:14:39 sky turns red. Um, what

00:14:39 --> 00:14:42 they've discovered now is that uh, maybe we

00:14:42 --> 00:14:44 should be starting to think about uh, start

00:14:44 --> 00:14:46 to think about calling it the purple planet

00:14:46 --> 00:14:48 because uh, down near the south pole there

00:14:48 --> 00:14:50 are some landscapes that just

00:14:52 --> 00:14:55 the photos, I can't describe

00:14:55 --> 00:14:57 them. That will do them justice I think is

00:14:57 --> 00:14:58 what I'm trying to say.

00:14:58 --> 00:14:59 Professor Fred Watson: Uh, that's right.

00:15:01 --> 00:15:03 I'm always hesitant Andrew to pick

00:15:03 --> 00:15:06 out stories that um, rely heavily

00:15:06 --> 00:15:08 on visual images because a lot of our

00:15:08 --> 00:15:11 listeners just listen rather than watch.

00:15:11 --> 00:15:14 Uh, but it's well worth having a

00:15:14 --> 00:15:17 look at these. Um, perhaps the best site is

00:15:17 --> 00:15:19 uh, The European Space Agency site.

00:15:20 --> 00:15:23 Uh, Purple Swirls on the Red Planet. Uh,

00:15:23 --> 00:15:25 it's basically a press release came out

00:15:25 --> 00:15:28 last um, in fact a couple of days ago. Uh,

00:15:28 --> 00:15:31 and it's a nice, it's a region around

00:15:31 --> 00:15:33 Mars south pole which is being

00:15:33 --> 00:15:36 illuminated from pretty low angle,

00:15:37 --> 00:15:39 uh as you'd expect near the south pole.

00:15:39 --> 00:15:42 Um, but the colours are ah, exactly as you've

00:15:42 --> 00:15:43 said. The colours are what make this quite

00:15:43 --> 00:15:46 dramatic. Striking swirls as they describe

00:15:46 --> 00:15:49 it, of purple, pink and red. It's a far cry

00:15:49 --> 00:15:51 from the colour palette we usually associate

00:15:51 --> 00:15:53 with the red planet. Yeah, so, yeah, very,

00:15:53 --> 00:15:56 very interesting. And I think the reds and

00:15:56 --> 00:15:59 browns, um, they do come not from

00:15:59 --> 00:16:02 uh, sunset illumination as you've

00:16:02 --> 00:16:05 already indicated. The sky is blue on Mars at

00:16:05 --> 00:16:08 sunset. Uh, but it

00:16:08 --> 00:16:10 comes from the dust, the

00:16:10 --> 00:16:12 oxidised iron, uh, the dust in the

00:16:12 --> 00:16:15 atmosphere, the dust that settles on pretty

00:16:15 --> 00:16:17 well all the surfaces just because uh,

00:16:18 --> 00:16:21 of the winds that blow on Mars. Um, and

00:16:21 --> 00:16:24 so uh, there's lots of uh,

00:16:24 --> 00:16:27 of red in perhaps

00:16:27 --> 00:16:30 all its manifestations from pink to

00:16:30 --> 00:16:32 purple, um, sometimes almost

00:16:32 --> 00:16:35 white but still with that reddish hue. Uh,

00:16:35 --> 00:16:38 and it's a region uh, called uh,

00:16:38 --> 00:16:41 Thyles Rupus. I uh, beg your

00:16:41 --> 00:16:44 pardon? Rupes. Rupes is uh, a Latin

00:16:44 --> 00:16:47 word for cliff or wall. Thales

00:16:47 --> 00:16:49 is actually uh, refers to Thule.

00:16:49 --> 00:16:52 Thule which we used to talk about. Ultima

00:16:52 --> 00:16:54 Thule was the name that we used to give to

00:16:54 --> 00:16:57 Arrokoth, the Furth known object that's

00:16:57 --> 00:17:00 been visited by a spacecraft. So,

00:17:00 --> 00:17:02 um, these are materials

00:17:03 --> 00:17:06 which uh, seem to be

00:17:06 --> 00:17:09 as well due to volcanic activity to some

00:17:09 --> 00:17:12 extent. Um, a comment on the ESA uh

00:17:12 --> 00:17:14 website says that the volcanic

00:17:14 --> 00:17:16 activity leaves environments um,

00:17:17 --> 00:17:19 rich in materials such as olivine and

00:17:19 --> 00:17:22 pyroxene, both of which are prevalent in

00:17:22 --> 00:17:25 Earth's mantle. Um, and those layers of

00:17:25 --> 00:17:28 rock actually not far below the crust of our

00:17:28 --> 00:17:30 planet, although that's quite thick. But

00:17:30 --> 00:17:32 yeah, some really interesting geology there.

00:17:32 --> 00:17:35 Um, lots of craters in the region, uh,

00:17:35 --> 00:17:38 evidence of perhaps a glacier there as well.

00:17:38 --> 00:17:40 Uh, given that we're near the, near the pole.

00:17:41 --> 00:17:43 Uh, so, um, well worth a look if our

00:17:43 --> 00:17:45 listeners want to check it out. Purple Swirls

00:17:45 --> 00:17:46 on the Red planet.

00:17:46 --> 00:17:48 Andrew Dunkley: Yes, I just sent the link to our live

00:17:48 --> 00:17:51 audience so those that are in the chat room

00:17:51 --> 00:17:53 can uh, click on it and have a look at some

00:17:53 --> 00:17:55 of these pictures. Uh, they are truly

00:17:55 --> 00:17:58 extraordinary. I think

00:17:58 --> 00:18:01 Fred Watson, uh, that um, these

00:18:01 --> 00:18:04 images were impossible in the

00:18:04 --> 00:18:06 recent past, but they are now

00:18:07 --> 00:18:10 um, more and more significant and

00:18:10 --> 00:18:12 more and more detailed because the technology

00:18:12 --> 00:18:14 is just getting so much better. The High

00:18:14 --> 00:18:16 definition cameras that are available,

00:18:17 --> 00:18:20 um, the super pixel cameras, whatever you

00:18:20 --> 00:18:22 want to call them, uh, that can take these

00:18:22 --> 00:18:25 images and create such

00:18:25 --> 00:18:27 fine detail, it's really amazing.

00:18:28 --> 00:18:31 Professor Fred Watson: Well, uh, that's certainly true, uh, but Mars

00:18:31 --> 00:18:33 Express, when was it launched? It's probably

00:18:33 --> 00:18:34 about 20 years ago I think.

00:18:36 --> 00:18:38 Um, let's just check when it

00:18:38 --> 00:18:41 went into space. I can do that.

00:18:41 --> 00:18:44 Andrew Dunkley: I'm raising you 6-2-2003.

00:18:45 --> 00:18:45 Professor Fred Watson: Got it.

00:18:45 --> 00:18:48 Yeah, there you go. 23 years ago. So that is

00:18:49 --> 00:18:51 pretty uh, legacy technology I

00:18:51 --> 00:18:54 think you'd say. And imagine what you could

00:18:54 --> 00:18:57 do now given that the high resolution

00:18:57 --> 00:19:00 cameras um, aboard Mars Express

00:19:00 --> 00:19:03 are probably only comparable, uh,

00:19:03 --> 00:19:05 with the cameras that are in our

00:19:05 --> 00:19:08 smartphones, rather than being comparable

00:19:08 --> 00:19:10 with the camera that's on the Vera C. Rubin

00:19:10 --> 00:19:13 Observatory's telescope, uh, which is the

00:19:13 --> 00:19:13 size of a bus.

00:19:14 --> 00:19:17 Andrew Dunkley: Yes, yes, I think I've said it before that

00:19:17 --> 00:19:20 uh, the technology uh, in a

00:19:20 --> 00:19:23 standard smartphone today, uh, far

00:19:23 --> 00:19:26 exceeds the computer capacity of

00:19:26 --> 00:19:28 um, the Apollo 11 mission.

00:19:30 --> 00:19:32 And, and I think it was clearly demonstrated

00:19:32 --> 00:19:35 on Apollo 13, uh, in the movie

00:19:35 --> 00:19:37 that uh, when, when they were trying to keep

00:19:37 --> 00:19:40 the astronauts alive and, and reinvent

00:19:40 --> 00:19:43 their carbon filters, uh, carbon dioxide

00:19:43 --> 00:19:45 filters and all that jazz, that

00:19:45 --> 00:19:48 um, they had to sequentially

00:19:49 --> 00:19:51 turn systems on and off so that

00:19:52 --> 00:19:54 the batteries wouldn't die and that the

00:19:54 --> 00:19:57 astronauts would be stranded. And when you

00:19:57 --> 00:19:59 listen to the dialogue, I mean the amount of

00:20:00 --> 00:20:02 power they were talking about was minuscule.

00:20:02 --> 00:20:05 And the um, computer

00:20:05 --> 00:20:08 capacity of the spacecraft we're

00:20:08 --> 00:20:10 talking about in those um, late 60s, early

00:20:10 --> 00:20:13 70s space flights was just.

00:20:14 --> 00:20:16 You couldn't fit a hundred songs on it.

00:20:17 --> 00:20:20 Professor Fred Watson: That's absolutely right. I remember, um,

00:20:20 --> 00:20:23 what year would it have been? 69, I think.

00:20:23 --> 00:20:26 The party that we had to celebrate,

00:20:27 --> 00:20:29 uh, our mainframe computer, the

00:20:29 --> 00:20:31 biggest computer almost in Scotland

00:20:32 --> 00:20:35 at St Andrews University when its memory was

00:20:35 --> 00:20:37 upgraded to 256k,

00:20:38 --> 00:20:40 which. Well, it's not, it's

00:20:41 --> 00:20:43 about half a song, isn't it? Yeah, it is less

00:20:43 --> 00:20:44 than half a song.

00:20:46 --> 00:20:49 Andrew Dunkley: And now you, you drive through a city like

00:20:49 --> 00:20:51 Canberra, which I did a few weeks ago, and

00:20:51 --> 00:20:54 you, you drive past massive

00:20:54 --> 00:20:57 buildings that are the, you know, the size of

00:20:57 --> 00:20:59 shopping centres and they are 100

00:21:00 --> 00:21:02 dedicated to data storage.

00:21:02 --> 00:21:04 It is mind blowing what we hear

00:21:04 --> 00:21:07 Professor Fred Watson: a lot about, um, data centres and they're

00:21:07 --> 00:21:09 going to be a big issue. They're certainly a

00:21:09 --> 00:21:12 big issue here and in the United States about

00:21:12 --> 00:21:14 whether we want them chewing up our power and

00:21:14 --> 00:21:16 our water. Um, they are very, very power

00:21:16 --> 00:21:17 hungry.

00:21:17 --> 00:21:19 Andrew Dunkley: In particular, I'm not sure I mentioned it

00:21:19 --> 00:21:22 but they uh, uh, I was listening to

00:21:22 --> 00:21:24 two fellows that I was playing golf with down

00:21:24 --> 00:21:26 in Canberra one day that were talking about

00:21:26 --> 00:21:29 one of the data centres and they said, um,

00:21:29 --> 00:21:31 did you go into the wind tunnel? And

00:21:32 --> 00:21:35 uh, my friend said, yeah, I did. It's where

00:21:35 --> 00:21:37 all the hot air gets blown

00:21:37 --> 00:21:40 out of the building. Um, and

00:21:40 --> 00:21:42 I said it's like walking through the Zaharov

00:21:42 --> 00:21:45 desert. It's just so hot in that tunnel

00:21:45 --> 00:21:48 because of um, the amount of air that's

00:21:48 --> 00:21:51 required to cool the servers that are storing

00:21:51 --> 00:21:54 the data. And it's

00:21:54 --> 00:21:56 big business now. It's huge.

00:21:57 --> 00:21:59 We're getting a bit off track but uh, we're

00:21:59 --> 00:22:02 talking about the advances in technology and

00:22:02 --> 00:22:05 in terms of um, space

00:22:06 --> 00:22:09 photography, uh, um, it's probably

00:22:09 --> 00:22:11 going ahead in leaps and bounds.

00:22:11 --> 00:22:13 Professor Fred Watson: But just um, recapping what we are talking

00:22:13 --> 00:22:16 about, that's as we were saying,

00:22:16 --> 00:22:18 that's 23 year old cameras at least that are

00:22:18 --> 00:22:21 on Mars Express. But

00:22:21 --> 00:22:24 what will have improved is the processing

00:22:24 --> 00:22:26 technology to get the very best images

00:22:26 --> 00:22:29 out of those. And perhaps that's one reason

00:22:29 --> 00:22:31 why we're seeing these glorious images

00:22:31 --> 00:22:34 of um, Mars, Southern moon,

00:22:34 --> 00:22:35 polar region.

00:22:35 --> 00:22:37 Andrew Dunkley: Yeah, on that I took some photos uh,

00:22:37 --> 00:22:40 with my smart telescope the other night.

00:22:40 --> 00:22:43 I've got some really lovely images and I took

00:22:43 --> 00:22:45 a really nice one of the moon because it was

00:22:46 --> 00:22:48 um, I don't think it was a full moon that

00:22:48 --> 00:22:51 night, but it was damn close and I,

00:22:52 --> 00:22:55 I thought I'll see what um, ChatGPT

00:22:55 --> 00:22:57 can do to this. So I, I put the photo in

00:22:57 --> 00:23:00 ChatGPT and I just said can you sharpen this,

00:23:00 --> 00:23:03 enhance it a little? I don't want to lose

00:23:04 --> 00:23:06 the character of the image but I, you know,

00:23:06 --> 00:23:09 can you, can you ramp up the um,

00:23:09 --> 00:23:12 uh, the image a bit so that it um, it's got,

00:23:12 --> 00:23:14 it's a bit more striking. Wow.

00:23:14 --> 00:23:17 What it did was amazing. Um, yeah, I

00:23:17 --> 00:23:19 should send you the two shots so you can see

00:23:19 --> 00:23:19 the

00:23:19 --> 00:23:21 Professor Fred Watson: difference, but um, to see them.

00:23:21 --> 00:23:23 Andrew Dunkley: Yeah, yeah, it was, it was quite remarkable

00:23:23 --> 00:23:26 what it did. Um, so I was

00:23:26 --> 00:23:28 um, yeah, I was quite, uh,

00:23:28 --> 00:23:31 quite chuffed with how that turned out. So

00:23:31 --> 00:23:33 even if you get a really shonky image,

00:23:33 --> 00:23:36 sometimes you can just load into

00:23:36 --> 00:23:39 uh, an AI platform and say, well,

00:23:39 --> 00:23:42 can you do this? And wham, most of the time

00:23:42 --> 00:23:44 it can. Remarkable what's available to

00:23:45 --> 00:23:47 us now. And it brings me back to that

00:23:48 --> 00:23:48 old question.

00:23:48 --> 00:23:51 If we can do this as everyday people in

00:23:51 --> 00:23:54 our homes with the AI technology

00:23:54 --> 00:23:57 that's available, what kind of AI technology

00:23:57 --> 00:23:59 are they developing or have they developed

00:23:59 --> 00:24:02 for military services

00:24:02 --> 00:24:05 and all of those kinds of um,

00:24:06 --> 00:24:08 things you Just, you know, it's probably way

00:24:08 --> 00:24:09 beyond our imaginations already.

00:24:11 --> 00:24:13 Professor Fred Watson: Indeed, I think. Yeah.

00:24:13 --> 00:24:15 Andrew Dunkley: Anyway, uh, yes, if you would like to see

00:24:15 --> 00:24:18 those ESA images of

00:24:18 --> 00:24:20 Mars around the South Pole region, uh, they

00:24:20 --> 00:24:23 are absolutely beautiful and you can uh, go

00:24:23 --> 00:24:25 to the ESA.int

00:24:26 --> 00:24:29 website and check it out. You're listening to

00:24:29 --> 00:24:31 Space Nuts, a, um,

00:24:32 --> 00:24:35 standard edition with Andrew Dunkley head

00:24:35 --> 00:24:36 Professor Fred Watson Watson.

00:24:38 --> 00:24:39 Professor Fred Watson: Okay.

00:24:39 --> 00:24:41 Professor Fred Watson: We checked all four systems and being with a

00:24:41 --> 00:24:42 girl, Space nets.

00:24:42 --> 00:24:44 Andrew Dunkley: I was about to say Q and A edition, but

00:24:44 --> 00:24:47 that's, that's next. We do that next. I'm

00:24:47 --> 00:24:49 getting ahead of myself. Um,

00:24:50 --> 00:24:53 we go from a very colourful place to a not so

00:24:53 --> 00:24:54 colourful place. Although the, you know, when

00:24:54 --> 00:24:56 you talk to the astronauts who have walked on

00:24:56 --> 00:24:58 the uh, moon, they go, hang on a minute. It

00:24:58 --> 00:25:00 is actually quite colourful here. You just

00:25:00 --> 00:25:03 gotta, you know, be pretty close. Uh, yes,

00:25:03 --> 00:25:05 the moon, uh, the reason it's in the news at

00:25:05 --> 00:25:07 the moment, to quote my friend Fred Watson

00:25:07 --> 00:25:10 Watson, is because they've found a new hole,

00:25:10 --> 00:25:13 uh, a crater and it was almost

00:25:13 --> 00:25:14 found by accident.

00:25:14 --> 00:25:14 Fred Watson.

00:25:15 --> 00:25:17 Professor Fred Watson: Yeah, that's right. It's people trolling

00:25:17 --> 00:25:18 through and uh, it's actually NASA

00:25:18 --> 00:25:21 researchers who are doing this using the

00:25:22 --> 00:25:24 uh, images from NASA's Lunar

00:25:24 --> 00:25:27 Reconnaissance Orbiter, uh, which again goes

00:25:27 --> 00:25:30 back probably a couple of decades, uh, and

00:25:30 --> 00:25:32 is a phenomenal device for

00:25:33 --> 00:25:35 imaging the lunar surface. Um,

00:25:36 --> 00:25:38 so uh, what they do, the

00:25:38 --> 00:25:41 Lunar Reconnaissance Orbiter, it surveys the

00:25:41 --> 00:25:44 moon's surface on a regular basis and so you

00:25:44 --> 00:25:46 can tell if something changes.

00:25:47 --> 00:25:49 And this basically is

00:25:49 --> 00:25:52 something that has changed. There has been

00:25:53 --> 00:25:55 uh, an impact on the moon that's

00:25:55 --> 00:25:58 created a crater quarter of a kilometre

00:25:58 --> 00:26:01 across, 222 metres, uh, and

00:26:01 --> 00:26:04 up to 43 metres deep. So this is a

00:26:04 --> 00:26:07 big hole, um, and it's actually the

00:26:07 --> 00:26:09 biggest known impact crater that has been

00:26:10 --> 00:26:13 created in recent times. Uh,

00:26:14 --> 00:26:16 it fell ah, between uh, two

00:26:17 --> 00:26:19 surveys or scans of the moon. So we've got,

00:26:20 --> 00:26:23 we don't have a precise date for it but we

00:26:23 --> 00:26:26 do have um, a pair

00:26:26 --> 00:26:28 of dates between which we know uh,

00:26:28 --> 00:26:31 when that happened. Uh, and

00:26:31 --> 00:26:34 I've lost the dates now on my scre screen,

00:26:34 --> 00:26:36 uh so I'll have to rely on you to tell me

00:26:36 --> 00:26:38 what they are. But it was a relatively short

00:26:38 --> 00:26:41 interval between the two dates

00:26:41 --> 00:26:44 that define when this event

00:26:44 --> 00:26:45 took place.

00:26:45 --> 00:26:47 Andrew Dunkley: I'm looking, I'm looking, uh, somewhere

00:26:47 --> 00:26:50 between April 11th and May

00:26:50 --> 00:26:52 22nd, 2024 they think.

00:26:53 --> 00:26:55 Professor Fred Watson: Yes. Okay, so these are uh,

00:26:55 --> 00:26:57 images that were taken a couple of years ago,

00:26:57 --> 00:26:59 bit more than a couple of years ago but

00:26:59 --> 00:27:01 nevertheless, uh, still yielding

00:27:02 --> 00:27:05 uh, new data and so it's, and uh,

00:27:05 --> 00:27:08 what's I think more striking about this, that

00:27:08 --> 00:27:10 the diameter and depth of the crater

00:27:11 --> 00:27:13 uh, are quite impressive. But

00:27:14 --> 00:27:16 when you look at wide angle images

00:27:17 --> 00:27:20 um, you can see that there

00:27:20 --> 00:27:22 is debris spread around for

00:27:22 --> 00:27:25 quite um, you know, quite a big

00:27:25 --> 00:27:28 radius, something like seven kilometres wide,

00:27:29 --> 00:27:31 uh, where you've got basically

00:27:32 --> 00:27:34 a lower temperature on the moon's surface.

00:27:34 --> 00:27:37 And that comes about because the, the topsoil

00:27:38 --> 00:27:40 has been loosened. Uh, it's the

00:27:41 --> 00:27:44 um, you know, the top few, only the top

00:27:44 --> 00:27:46 few centimetres, uh, that have been

00:27:47 --> 00:27:49 stirred up and that's enough to

00:27:49 --> 00:27:52 reveal a different thermal signature from

00:27:52 --> 00:27:55 the moon, uh, so it's actually cooler.

00:27:55 --> 00:27:58 There is a comment um, uh, uh

00:27:58 --> 00:28:01 in the report on this that I

00:28:01 --> 00:28:04 read uh, which is um, that

00:28:04 --> 00:28:07 but due to uh,

00:28:07 --> 00:28:09 asteroid impacts and the material that they

00:28:09 --> 00:28:12 eject the top couple of inches

00:28:12 --> 00:28:15 of lunar soil or the top inch or so

00:28:15 --> 00:28:18 it's being overturned every

00:28:18 --> 00:28:21 80 years. Uh, and that's

00:28:21 --> 00:28:24 not that long because we used to think

00:28:24 --> 00:28:27 that the Apollo astronauts footprints would

00:28:27 --> 00:28:29 last forever but they won't. They'll

00:28:29 --> 00:28:32 be recirculated by debris

00:28:32 --> 00:28:35 that is um, probably pushed up into

00:28:35 --> 00:28:37 the lunar environment, not the lunar

00:28:37 --> 00:28:38 atmosphere because there isn't one, but

00:28:38 --> 00:28:40 debris from collisions.

00:28:40 --> 00:28:42 And I think the other important thing about

00:28:42 --> 00:28:44 this story is that that

00:28:45 --> 00:28:48 debris, of course, and knowing about debris

00:28:48 --> 00:28:50 like that, it's going to play into how you

00:28:50 --> 00:28:53 defend um, a moon base. If you've got a

00:28:53 --> 00:28:55 moon base on the surface of the moon, no

00:28:55 --> 00:28:57 matter what nationality you're talking about,

00:28:58 --> 00:29:00 uh, you're going to need the structures to be

00:29:01 --> 00:29:03 reasonably robust uh to not

00:29:03 --> 00:29:06 to worry about damage

00:29:06 --> 00:29:09 from material debris that's been

00:29:10 --> 00:29:12 kicked uh, up by impacts on the lunar surface

00:29:12 --> 00:29:14 because those impacts will continue to

00:29:14 --> 00:29:16 happen. There's no atmosphere to slow them

00:29:16 --> 00:29:16 down.

00:29:16 --> 00:29:19 Andrew Dunkley: Now what do they think caused this

00:29:19 --> 00:29:20 crater?

00:29:21 --> 00:29:24 Professor Fred Watson: An object? Um, I think it

00:29:24 --> 00:29:27 was a few metres. I've

00:29:27 --> 00:29:29 got two separate reports on this and I think

00:29:29 --> 00:29:31 that's in the other one. I think it is um,

00:29:32 --> 00:29:34 um, probably a few tens of metres across.

00:29:34 --> 00:29:35 Professor Fred Watson: Right.

00:29:35 --> 00:29:37 Professor Fred Watson: Uh, and that's the

00:29:38 --> 00:29:41 um, you know that that's typical of the

00:29:41 --> 00:29:44 kind of amount of kinetic energy that will be

00:29:44 --> 00:29:46 in uh, something that size. Let me see if I

00:29:46 --> 00:29:49 can find that number. Probably

00:29:49 --> 00:29:51 can, maybe can.

00:29:52 --> 00:29:54 Andrew Dunkley: Speaking, speaking of numbers, this, this

00:29:54 --> 00:29:57 crate is so deep you could put um, three

00:29:57 --> 00:29:59 school buses end to end.

00:29:59 --> 00:30:02 Professor Fred Watson: Yes, I saw that. It's got

00:30:02 --> 00:30:04 to be American school buses.

00:30:04 --> 00:30:05 Andrew Dunkley: Yeah. And wellness.

00:30:05 --> 00:30:05 Professor Fred Watson: That's right.

00:30:06 --> 00:30:07 Andrew Dunkley: And they've got to be yellow.

00:30:08 --> 00:30:10 Professor Fred Watson: Yeah, I can't find the estimate of

00:30:10 --> 00:30:13 um, the size of the impactor was, but

00:30:13 --> 00:30:16 it would be certainly, um, you know,

00:30:16 --> 00:30:19 something that um, is significant

00:30:19 --> 00:30:21 enough to uh,

00:30:22 --> 00:30:24 basically provide that amount of energy, uh,

00:30:25 --> 00:30:26 to make a hole that big.

00:30:26 --> 00:30:29 Andrew Dunkley: Yeah. And the other thing is it hits the moon

00:30:29 --> 00:30:31 harder than it hits Earth because there's

00:30:31 --> 00:30:32 nothing to slow it down.

00:30:32 --> 00:30:33 Professor Fred Watson: That's correct.

00:30:34 --> 00:30:36 Andrew Dunkley: So it's much more explosive on the lunar

00:30:36 --> 00:30:39 surface than if something like this, uh,

00:30:39 --> 00:30:41 hit Earth. In fact, if this particular rock

00:30:41 --> 00:30:44 had hit Earth, it may not have done much at

00:30:44 --> 00:30:44 all.

00:30:45 --> 00:30:47 Professor Fred Watson: Well, it probably would have exploded in the

00:30:47 --> 00:30:50 atmosphere. Yeah, that's the thing, you

00:30:50 --> 00:30:52 know, like the, um, Chelyabinsk

00:30:52 --> 00:30:55 event back in 2013, was it that,

00:30:55 --> 00:30:58 uh, was something 30 metres across that

00:30:58 --> 00:31:00 exploded in the atmosphere. But if it hit the

00:31:00 --> 00:31:02 ground on the moon, it might have been made

00:31:02 --> 00:31:04 quite a big hole. Yeah, yeah, I'm sorry, I

00:31:04 --> 00:31:06 can't find, um, an estimate of the, um, the

00:31:07 --> 00:31:10 size of that from, uh, the size

00:31:10 --> 00:31:12 of the impact crater. But, uh, I'm sure it's

00:31:12 --> 00:31:15 uh, not that far away to

00:31:15 --> 00:31:16 discover it.

00:31:16 --> 00:31:18 Andrew Dunkley: Um, let me see if I can find it.

00:31:19 --> 00:31:21 Professor Fred Watson: Thank you. Thank you. That'd be very good.

00:31:22 --> 00:31:24 Andrew Dunkley: That hit the moon

00:31:25 --> 00:31:27 in 20,

00:31:27 --> 00:31:30 25, 20, 24. Uh,

00:31:30 --> 00:31:31 24.

00:31:31 --> 00:31:34 Professor Fred Watson: Sorry, that's what you read before.

00:31:34 --> 00:31:36 Andrew Dunkley: Yeah, yeah. Um,

00:31:37 --> 00:31:40 okay, so, uh, yeah, Magechen

00:31:40 --> 00:31:42 crater. And

00:31:43 --> 00:31:46 they're saying the impactor was roughly 20 to

00:31:46 --> 00:31:47 30 metres across.

00:31:47 --> 00:31:50 Professor Fred Watson: There you go. So, um, what did I just say? 30

00:31:50 --> 00:31:52 metres was the, uh, size of the

00:31:52 --> 00:31:55 Chelyabinsk, uh, impactor. Uh, and this is

00:31:55 --> 00:31:56 probably similar.

00:31:56 --> 00:31:59 Andrew Dunkley: Yeah, so a similar kind of rock. So this

00:31:59 --> 00:32:01 is probably one we didn't see in advance by

00:32:01 --> 00:32:02 the sound of it.

00:32:02 --> 00:32:05 Professor Fred Watson: Um, that's correct. Uh, a

00:32:05 --> 00:32:08 30 metre object seen from the distance

00:32:08 --> 00:32:10 of Earth will be virtually invisible.

00:32:13 --> 00:32:15 Bearing in mind that we can't see the, you

00:32:15 --> 00:32:17 know, the landing, the Apollo

00:32:17 --> 00:32:19 landing sites with any terrestrial

00:32:19 --> 00:32:21 telescopes, we can certainly see them from

00:32:21 --> 00:32:23 Lunar Reconnaissance Orbiter and see what's

00:32:23 --> 00:32:26 left there, but can't see it from a. Yeah,

00:32:26 --> 00:32:26 okay.

00:32:27 --> 00:32:30 Andrew Dunkley: Uh, you can read all about it, uh, on the

00:32:30 --> 00:32:32 NASA website. Uh, it's a

00:32:32 --> 00:32:35 fantastic site to visit. So much great stuff

00:32:35 --> 00:32:37 there. Uh, that brings us to

00:32:37 --> 00:32:39 the end of our show. Fred Watson, thank you

00:32:39 --> 00:32:40 so much.

00:32:40 --> 00:32:43 Professor Fred Watson: Oh, it's a pleasure, Andrew. Always good to

00:32:43 --> 00:32:44 talk about these things, even when they are

00:32:44 --> 00:32:45 weapons in space.

00:32:45 --> 00:32:48 Andrew Dunkley: Yeah, yeah, well, we know now, so, um,

00:32:50 --> 00:32:51 Very good. We'll catch you soon, Fred Watson.

00:32:51 --> 00:32:54 Thank you. Um, and in the meantime, visit us

00:32:54 --> 00:32:56 online at spacenutspodcast.com or

00:32:56 --> 00:32:59 spacenuts IO have a look around, visit the

00:32:59 --> 00:33:02 shop, Send, um, us messages and questions. On

00:33:02 --> 00:33:04 the Ask me anything button at the top, it's

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00:33:09 --> 00:33:12 Newsfeed if you like. And please

00:33:12 --> 00:33:15 leave reviews wherever you listen to or

00:33:15 --> 00:33:17 watch us. And thanks to Huw in the studio,

00:33:17 --> 00:33:19 who couldn't be with us. I've got to go bail

00:33:19 --> 00:33:21 him out again because he's been throwing

00:33:21 --> 00:33:23 large rocks at people. And from me, Andrew

00:33:23 --> 00:33:25 Dunkley, thanks for your company. We'll see

00:33:25 --> 00:33:28 you on the next episode of Space Nuts. Bye

00:33:28 --> 00:33:28 bye.

00:33:28 --> 00:33:31 Space Nuts. You've been listening to the

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