Starship's Ship 40 Makes It Home
Astronomy Daily: Latest Space NewsAugust 18, 2026x
170
00:14:3013.33 MB

Starship's Ship 40 Makes It Home

Anna and Avery close out a three-week saga: SpaceX has recovered Starship's Ship 40 from the Indian Ocean after a soft splashdown, a difficult tow, and a moment where recovery odds looked as low as 18%. Plus: a dead star in the Helix Nebula previews our own Sun's five-billion-years-from-now fate, new evidence the Milky Way was built in part by an ancient galactic collision, and China's fast recovery from a rocket failure with back-to-back launches.
Full show notes:
Today's episode — S05E170, Tuesday August 18, 2026:
Main story: Starship's Ship 40 makes it home. SpaceX has completed recovery of Ship 40, the Starship Flight 13 upper stage that survived an unprecedented soft splashdown in the Indian Ocean on July 24. After drifting over 400km and a difficult multi-week tow through rough seas (prediction markets had given it ~18% odds as of mid-August), recovery vessels including the Normand Ranger brought the ship in to Western Australia this week. SpaceX had already secured the imagery it needed from the heat shield and engines regardless of outcome; Ship 41 and Flight 14 (targeting ~August 20) are already in the pipeline.
A dead star shows us our Sun's future. A Yale-led team studying the Helix Nebula's white dwarf found 22 bow-shock structures in its outer halo — the first direct observation of a dead star's ejected material dispersing back into the galaxy. It's a preview of what our own Sun will undergo in roughly 5 billion years. Published August 12 in Nature.
The collision that built the Milky Way. Hubble and Gaia data revealed a previously unknown ancient dwarf galaxy, "LKH," which merged with the Milky Way 11.8 billion years ago — predating the well-known Gaia-Sausage-Enceladus merger by 1.8 billion years. Published August 17 in Nature Astronomy.
China bounces back from a rocket failure. After an August 10 Long March 7A failure destroyed a communications satellite, China launched twice within 23 hours on August 16 — a Long March 12 from Wenchang and a Long March 2C from Taiyuan — demonstrating operational resilience across two rocket types and launch sites.
Tonight's sky: the waxing crescent Moon pairs with a brilliant Venus (magnitude -4.1) low in the western sky, about 45 minutes after sunset.
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This episode includes AI-generated content.


00:00:00 --> 00:00:03 Anna: Hey, everyone. Welcome back to Astronomy

00:00:03 --> 00:00:04 AstroDailyPod. I'm Anna.

00:00:04 --> 00:00:07 Avery: And I'm avery. It's Tuesday, August 18th,

00:00:07 --> 00:00:09 series five, episode 170.

00:00:10 --> 00:00:13 Anna: And we've got a genuinely satisfying one to

00:00:13 --> 00:00:13 lead with today.

00:00:14 --> 00:00:16 After three weeks of, uh, will they, won't

00:00:16 --> 00:00:19 they? SpaceX has actually pulled its

00:00:19 --> 00:00:21 starship upper stage out of the Indian

00:00:21 --> 00:00:22 Ocean.

00:00:22 --> 00:00:25 Avery: Ship 40 makes it home, closing the loop on a

00:00:25 --> 00:00:27 storey we've been checking in on since it

00:00:27 --> 00:00:29 splashed down back on July 24th.

00:00:29 --> 00:00:32 Anna: Then three more. A dead star in a

00:00:32 --> 00:00:35 nearby nebula that's basically showing us our

00:00:35 --> 00:00:37 own sun's obituary five billion

00:00:38 --> 00:00:41 years early. New evidence that the Milky

00:00:41 --> 00:00:43 Way itself was built out of a galaxy we

00:00:43 --> 00:00:46 crashed into almost 12 billion years ago.

00:00:47 --> 00:00:49 And China bouncing back fast from a

00:00:49 --> 00:00:52 rocket explosion with two launches in about

00:00:52 --> 00:00:55 23 hours, plus a quick one for

00:00:55 --> 00:00:57 Avery: anyone stepping outside tonight, there is a

00:00:57 --> 00:00:59 nice pairing in the western sky right after

00:00:59 --> 00:01:00 sunset.

00:01:00 --> 00:01:02 Anna: Lots to get through. Let's get into it.

00:01:02 --> 00:01:04 Avery: Okay, so let's actually finish this storey,

00:01:05 --> 00:01:07 Anna, uh, take us back to the start, because

00:01:07 --> 00:01:09 it's been a genuine saga.

00:01:09 --> 00:01:11 Anna: It has. This goes back to July

00:01:11 --> 00:01:14 24 and Starship's Flight 13.

00:01:14 --> 00:01:17 The upper stage ship 40 did something

00:01:17 --> 00:01:20 no Starship upper stage had ever managed

00:01:20 --> 00:01:23 before. It flipped, reignited two

00:01:23 --> 00:01:26 engines, oriented itself and made a

00:01:26 --> 00:01:28 controlled soft splashdown in the Indian

00:01:28 --> 00:01:31 Ocean off Western Australia, completely

00:01:31 --> 00:01:31 intact.

00:01:32 --> 00:01:35 Avery: Which nobody was really planning for. Usually

00:01:35 --> 00:01:37 these things topple over and break apart on

00:01:37 --> 00:01:37 impact.

00:01:38 --> 00:01:40 Anna: Right? That was the original good news

00:01:40 --> 00:01:43 storey. SpaceX got an intact upper

00:01:43 --> 00:01:45 stage sitting on the water and decided that

00:01:45 --> 00:01:48 was too good an opportunity to just scuttle

00:01:48 --> 00:01:50 it. They sent recovery vessels out, the

00:01:50 --> 00:01:53 Normand Ranger, the Go Australis, a

00:01:53 --> 00:01:56 ship called Skimmer Tide, and started trying

00:01:56 --> 00:01:59 to lasso a, uh, 170 foot

00:01:59 --> 00:02:01 stainless steel rocket that had drifted more

00:02:01 --> 00:02:04 than 400 kilometres from where it landed.

00:02:04 --> 00:02:06 Avery: And that's when it got complicated.

00:02:07 --> 00:02:10 Anna: Very complicated. The tow back toward shore

00:02:10 --> 00:02:12 started in early August, but the seas

00:02:12 --> 00:02:14 didn't cooperate. Conditions kept

00:02:14 --> 00:02:17 deteriorating. The convoy could only creep

00:02:17 --> 00:02:20 along at 1 to 3 knots. And on

00:02:20 --> 00:02:23 August 8th, Elon Musk gave us the line we led

00:02:23 --> 00:02:25 an episode with a couple of weeks ago. Ship

00:02:25 --> 00:02:28 recovery is not looking good right now.

00:02:28 --> 00:02:30 Avery: And, um, prediction markets had it down

00:02:30 --> 00:02:32 around an 18% chance of actually making it to

00:02:32 --> 00:02:33 shore.

00:02:33 --> 00:02:35 Anna: That's right where it sat for a while. But

00:02:35 --> 00:02:38 here's the actual news today. It worked.

00:02:39 --> 00:02:41 Over the past few days, the Normand Rangers

00:02:41 --> 00:02:44 convoy got ship 40 secured, built up

00:02:44 --> 00:02:47 speed and towed it all the way in toward

00:02:47 --> 00:02:49 Dampier in Western Australia. As of this

00:02:49 --> 00:02:51 week, SpaceX has recovered

00:02:51 --> 00:02:54 Avery: the ship three weeks adrift and they actually

00:02:54 --> 00:02:55 brought it home.

00:02:55 --> 00:02:58 Anna: Three weeks, more than 400 kilometres of

00:02:58 --> 00:03:01 drift, rough seas that nearly sank the whole

00:03:01 --> 00:03:03 recovery effort, and an intact

00:03:03 --> 00:03:06 170 foot Starship upper stage

00:03:06 --> 00:03:09 sitting on a dock instead of on the seafloor.

00:03:10 --> 00:03:10 That's a first.

00:03:11 --> 00:03:13 Avery: What do they actually get out of having the

00:03:13 --> 00:03:15 physical vehicle back versus just the imagery

00:03:15 --> 00:03:17 they'd already collected?

00:03:17 --> 00:03:19 Anna: That's the interesting part. SpaceX had

00:03:19 --> 00:03:22 already said the mission's main objective was

00:03:22 --> 00:03:24 done regardless of outcome because they got

00:03:24 --> 00:03:26 close up satellite and drone imagery of the

00:03:26 --> 00:03:29 heat SH and engine sections while ship

00:03:29 --> 00:03:32 40 was still floating. That inspection showed

00:03:32 --> 00:03:35 the thermal protection system mostly held up

00:03:35 --> 00:03:37 despite higher than expected aerodynamic

00:03:37 --> 00:03:40 pressure during ascent. Though there was some

00:03:40 --> 00:03:42 tile loss and damage around the aft rim that

00:03:42 --> 00:03:44 happened earlier in flight.

00:03:44 --> 00:03:47 Avery: So having the actual hardware back is a bonus

00:03:47 --> 00:03:49 on top of an already successful data run.

00:03:49 --> 00:03:52 Anna: Exactly. Now engineers can do hands

00:03:52 --> 00:03:55 on forensic inspection instead of just

00:03:55 --> 00:03:57 working from photos, which is a much richer

00:03:57 --> 00:04:00 way to validate what held and what didn't for

00:04:00 --> 00:04:02 the next generation of ships.

00:04:02 --> 00:04:04 Avery: And the programme hasn't exactly been

00:04:04 --> 00:04:06 standing still waiting for this to resolve.

00:04:06 --> 00:04:09 Anna: Not even slightly. Jip41

00:04:09 --> 00:04:11 has already been through cryogenic testing

00:04:11 --> 00:04:14 and engine installation and it's expected to

00:04:14 --> 00:04:16 roll out to the Massey's test site for static

00:04:16 --> 00:04:19 fire testing as early as this week.

00:04:19 --> 00:04:22 Booster 21's finished its own cryo campaign

00:04:22 --> 00:04:24 and is having engines installed for its

00:04:24 --> 00:04:27 static fire and Flight 14. The

00:04:27 --> 00:04:30 next full test flight is currently targeting

00:04:30 --> 00:04:32 around August 20th. So just a couple of days

00:04:32 --> 00:04:33 from now.

00:04:33 --> 00:04:36 Avery: So this whole saga wraps up almost exactly as

00:04:36 --> 00:04:37 the next chapter is about

00:04:37 --> 00:04:40 Anna: to start, which is very on brand for

00:04:40 --> 00:04:42 this programme. At the moment there's

00:04:42 --> 00:04:45 basically no gap between close one storey and

00:04:45 --> 00:04:47 open the next one. But Gregor has also been

00:04:47 --> 00:04:50 busy in the background. SpaceX ran 22

00:04:50 --> 00:04:53 separate Raptor 3 engine firings there over

00:04:53 --> 00:04:56 the last two weeks, including one that ran,

00:04:56 --> 00:04:58 ah, a full 140 seconds, matching

00:04:58 --> 00:05:00 a complete ascent burn.

00:05:00 --> 00:05:02 Avery: That's a lot of engines getting put through

00:05:02 --> 00:05:04 their paces. For a rocket that's supposedly

00:05:04 --> 00:05:04 still in

00:05:04 --> 00:05:07 Anna: a testing phase, it's the clearest sign yet

00:05:07 --> 00:05:09 that they're trying to get the cadence up.

00:05:09 --> 00:05:12 Anyway, ship 40's home after three weeks

00:05:12 --> 00:05:15 of is it lost at sea? It isn't.

00:05:15 --> 00:05:18 Good outcome and one less loose thread for us

00:05:18 --> 00:05:19 to keep tracking.

00:05:19 --> 00:05:22 Avery: We can finally stop saying still unresolved

00:05:22 --> 00:05:22 about this one.

00:05:23 --> 00:05:25 Anna: Next storey is, uh, a bit more melancholy,

00:05:25 --> 00:05:28 but in a genuinely beautiful way.

00:05:28 --> 00:05:30 Astronomers have gotten the clearest look yet

00:05:30 --> 00:05:33 at what happens to A star like our sun after

00:05:33 --> 00:05:34 it dies.

00:05:34 --> 00:05:36 Avery: And, uh, we're talking about the sun's actual

00:05:36 --> 00:05:37 eventual fate here.

00:05:37 --> 00:05:40 Anna: Not a metaphor, not a metaphor at

00:05:40 --> 00:05:43 all. This comes from the helix Nebula, about

00:05:43 --> 00:05:46 650 light years away in the constellation

00:05:46 --> 00:05:49 Aquarius, one of the closest and most

00:05:49 --> 00:05:51 photographed planetary nebulae there is. At

00:05:51 --> 00:05:54 its centre sits a white dwarf, the dense

00:05:54 --> 00:05:57 leftover core of a sun like star that

00:05:57 --> 00:06:00 ran out of hydrogen fuel, ballooned into a

00:06:00 --> 00:06:03 red giant and then shed its outer layers into

00:06:03 --> 00:06:03 space.

00:06:04 --> 00:06:06 Avery: Which 5 billion years from now is exactly

00:06:06 --> 00:06:08 what's going to happen to our sun.

00:06:08 --> 00:06:11 Anna: Precisely. This is our own star's

00:06:11 --> 00:06:14 future. Just further along the timeline, a

00:06:14 --> 00:06:16 team led by Peter Van Daakum at Yale, along

00:06:16 --> 00:06:19 with Roberto Abraham at the University of

00:06:19 --> 00:06:21 Toronto and Imad Pasha at the

00:06:21 --> 00:06:23 Dragonfly Focused Research Organisation

00:06:24 --> 00:06:26 studied the nebula's outer faint halo and

00:06:26 --> 00:06:29 found something nobody directly resolved

00:06:29 --> 00:06:31 before.22 distinct arc

00:06:31 --> 00:06:34 shaped structures called bow shocks,

00:06:34 --> 00:06:37 essentially wakes left behind as clumps of

00:06:37 --> 00:06:39 the dead star's ejected material plough

00:06:39 --> 00:06:41 through the surrounding interstellar gas.

00:06:42 --> 00:06:44 Avery: So we're watching the star's old outer layers

00:06:44 --> 00:06:47 actually being absorbed back into the galaxy?

00:06:47 --> 00:06:50 Anna: That's the headline. This is the first direct

00:06:50 --> 00:06:52 observation of stellar debris being broken

00:06:52 --> 00:06:55 apart and returned to the interstellar medium

00:06:55 --> 00:06:58 in real time. Van Daukum put it simply,

00:06:58 --> 00:07:01 we are seeing material shed near the end of a

00:07:01 --> 00:07:03 star's life being broken apart and returned

00:07:03 --> 00:07:04 to the galaxy.

00:07:05 --> 00:07:07 Avery: How long does that process actually take?

00:07:07 --> 00:07:10 Anna: Relatively fast on cosmic timescales. The

00:07:10 --> 00:07:13 researchers estimate those clumps survive for

00:07:13 --> 00:07:15 around 10 years before they fully

00:07:15 --> 00:07:17 disperse and blend into the surrounding gas.

00:07:18 --> 00:07:20 The nebula's outer ring itself spans about

00:07:20 --> 00:07:22 5.7 light years.

00:07:23 --> 00:07:25 Avery: So this is basically recycling the star's

00:07:25 --> 00:07:28 guts eventually become raw material for the

00:07:28 --> 00:07:29 next generation of stars and planets.

00:07:30 --> 00:07:33 Anna: That's exactly the point. Every heavy element

00:07:33 --> 00:07:35 in your body that isn't hydrogen or helium

00:07:36 --> 00:07:38 came from a star that did this at some point.

00:07:39 --> 00:07:41 Watching it happen in real time, even in a

00:07:41 --> 00:07:44 nebula that's already thousands of years into

00:07:44 --> 00:07:46 the process, is about as close as we get to

00:07:46 --> 00:07:49 watching that recycling loop in action. The

00:07:49 --> 00:07:51 results were published Aug. 12 in Nature.

00:07:52 --> 00:07:54 Avery: A nice one to sit with. Not a disaster

00:07:54 --> 00:07:57 storey, just the actual shape of how stars,

00:07:57 --> 00:07:57 um, end.

00:07:58 --> 00:08:01 Anna: And a preview of a very, very distant

00:08:01 --> 00:08:03 Tuesday 5 billion years from now.

00:08:03 --> 00:08:05 Avery: Storey 3. And this one's about our home

00:08:05 --> 00:08:08 galaxy's own deep history, Right?

00:08:08 --> 00:08:10 Anna: New research using Hubble, backed up by data

00:08:10 --> 00:08:13 from ESA's GAIA mission, has identified

00:08:13 --> 00:08:16 a previously unknown collision that helped

00:08:16 --> 00:08:19 shape the Milky Way almost 11 billion years

00:08:19 --> 00:08:19 ago.

00:08:20 --> 00:08:22 Avery: Previously unknown, is doing some work there.

00:08:22 --> 00:08:24 How do you find a collision that happened

00:08:24 --> 00:08:25 that long ago?

00:08:26 --> 00:08:28 Anna: You look at the fossil record it left behind.

00:08:29 --> 00:08:32 Specifically, globular clusters, these dense

00:08:32 --> 00:08:34 balls of hundreds of thousands of old stars

00:08:34 --> 00:08:37 that orbit the galaxy. A team led by

00:08:37 --> 00:08:40 Davide Massari at Bologna's

00:08:40 --> 00:08:42 Astrophysics and Space Science Observatory,

00:08:42 --> 00:08:45 with Kiara Zerbinati from the University of

00:08:45 --> 00:08:47 Bologna doing key analysis of the Hubble and

00:08:47 --> 00:08:50 Gaia data, found a distinct population

00:08:50 --> 00:08:53 of globular clusters that didn't match any

00:08:53 --> 00:08:55 previously known building block of the Milky

00:08:55 --> 00:08:56 Way.

00:08:56 --> 00:08:59 Avery: So a whole separate family of star clusters

00:08:59 --> 00:09:01 just hiding in plain sight.

00:09:01 --> 00:09:04 Anna: Hiding in plain sight for decades, basically,

00:09:05 --> 00:09:07 because until you have precise enough motion

00:09:07 --> 00:09:10 and composition data, one old globular

00:09:10 --> 00:09:13 cluster looks a lot like another. This third

00:09:13 --> 00:09:16 population traces back to a dwarf galaxy.

00:09:16 --> 00:09:19 The team's calling LKH for

00:09:19 --> 00:09:21 low energy Kraken Heracles, which

00:09:21 --> 00:09:24 merged with the Milky Way about 11.8

00:09:24 --> 00:09:27 billion years ago, just roughly 2 billion

00:09:27 --> 00:09:28 years after the Big Bang.

00:09:29 --> 00:09:30 Avery: How big was this thing?

00:09:30 --> 00:09:33 Anna: Relatively speaking, modest by

00:09:33 --> 00:09:35 galaxy standards, around 500 million

00:09:35 --> 00:09:38 solar masses. But it brought its own globular

00:09:38 --> 00:09:41 clusters along with it, which merged into the

00:09:41 --> 00:09:44 Milky Way's own population. And the collision

00:09:44 --> 00:09:46 likely triggered bursts of star formation and

00:09:46 --> 00:09:49 contributed meaningfully to our galaxy's

00:09:49 --> 00:09:50 early chemical makeup.

00:09:51 --> 00:09:53 Avery: And this is a different event from the Gaia

00:09:53 --> 00:09:55 sausage Enceladus merger, the one we've

00:09:55 --> 00:09:57 mentioned before as the Milky Way's biggest

00:09:57 --> 00:09:58 ancient collision.

00:09:59 --> 00:10:01 Anna: Different and earlier. LKH

00:10:01 --> 00:10:04 predates that Gaia Sausage Enceladus merger

00:10:04 --> 00:10:07 by about 1.8 billion years. So

00:10:07 --> 00:10:09 this pushes the known history of the Milky

00:10:09 --> 00:10:12 Way's construction by collision back even

00:10:12 --> 00:10:14 further than we'd already mapped.

00:10:14 --> 00:10:17 Avery: It's a good reminder that the Milky Way isn't

00:10:17 --> 00:10:20 really one continuous thing. It's more like a

00:10:20 --> 00:10:21 scrapbook of everything it swallowed.

00:10:22 --> 00:10:24 Anna: Which is exactly the sentiment Messari

00:10:24 --> 00:10:27 captured. He said, our home is the Milky Way

00:10:27 --> 00:10:30 galaxy, but we do not know how our house was

00:10:30 --> 00:10:33 built. This is one more floorboard in that

00:10:33 --> 00:10:35 house getting identified. The findings were

00:10:35 --> 00:10:38 published August 18th in Nature Astronomy.

00:10:39 --> 00:10:42 Avery: Somewhere between the LKH merger and Gaia

00:10:42 --> 00:10:44 sausage Enceladus, our, uh, galaxy basically

00:10:44 --> 00:10:47 had two formative growth spurts back to back.

00:10:47 --> 00:10:50 Anna: And there's likely more of these still hiding

00:10:50 --> 00:10:52 in the data. This is very much an ongoing

00:10:52 --> 00:10:53 excavation.

00:10:54 --> 00:10:56 Okay, on to our last storey today and a

00:10:56 --> 00:10:59 quicker one. China's space programme had a

00:10:59 --> 00:11:01 rough moment last week, and a strong recovery

00:11:01 --> 00:11:02 this

00:11:02 --> 00:11:03 Avery: week set the scene.

00:11:03 --> 00:11:06 Anna: What happens on August 10th? A Long March

00:11:06 --> 00:11:09 7A rocket failed about 85

00:11:09 --> 00:11:11 seconds into flight. The Fairing and upper

00:11:11 --> 00:11:13 section of the vehicle bent backward and

00:11:13 --> 00:11:16 broke apart, destroying the rocket along with

00:11:16 --> 00:11:19 its payload. A communications satellite,

00:11:19 --> 00:11:22 Zongshang 4B. The cause is still

00:11:22 --> 00:11:24 under investigation, which

00:11:24 --> 00:11:26 Avery: is obviously a serious loss. Both a rocket

00:11:26 --> 00:11:29 and a comm satellite gone it is.

00:11:29 --> 00:11:31 Anna: And there was a real question of how quickly

00:11:31 --> 00:11:34 China's programme could get back to flying

00:11:34 --> 00:11:37 after that kind of very public failure. The

00:11:37 --> 00:11:40 answer turned out to be fast. On August

00:11:40 --> 00:11:42 16, they launched twice within about

00:11:42 --> 00:11:45 23 hours, using two completely different

00:11:45 --> 00:11:47 rockets from two different sites.

00:11:47 --> 00:11:49 Avery: Walk us through both.

00:11:49 --> 00:11:51 Anna: First up was a long March 12 from the

00:11:51 --> 00:11:54 Wenshang Commercial Space Launch Site,

00:11:54 --> 00:11:56 carrying 24 Internet satellites into low

00:11:56 --> 00:11:59 Earth orbit. That's the long March 12's

00:11:59 --> 00:12:02 seventh consecutive successful mission since

00:12:02 --> 00:12:05 it debuted in 2024. Then about

00:12:05 --> 00:12:07 23 hours later, a long March

00:12:07 --> 00:12:10 2C lifted off from the Taiwan Satellite

00:12:10 --> 00:12:13 Launch Centre roughly 1300 miles to

00:12:13 --> 00:12:15 the north, carrying a satellite for the

00:12:15 --> 00:12:16 United Arab Emirates.

00:12:17 --> 00:12:19 Avery: Um, and the IIC is the old reliable of the

00:12:19 --> 00:12:20 fleet, right?

00:12:20 --> 00:12:23 Anna: By a wide margin. That airframe's been flying

00:12:23 --> 00:12:26 since 1982. So the message

00:12:26 --> 00:12:28 China's sending here is pretty deliberate.

00:12:28 --> 00:12:31 Newer commercial rocket, decades old

00:12:31 --> 00:12:34 workhorse rocket, two different launch sites,

00:12:34 --> 00:12:36 back to back. Less than a week after a very

00:12:36 --> 00:12:39 Avery: public failure, a calculated show of

00:12:39 --> 00:12:42 operational depth rather than just look, we

00:12:42 --> 00:12:42 launched

00:12:42 --> 00:12:45 Anna: something that's exactly the read on it,

00:12:45 --> 00:12:48 proving the failure was contained to that.

00:12:48 --> 00:12:51 One rocket and one pad. Not a symptom of

00:12:51 --> 00:12:53 something systemic across the programme.

00:12:53 --> 00:12:55 Avery: A quick one before we go. If you step outside

00:12:55 --> 00:12:58 after sunset tonight, look low in the western

00:12:58 --> 00:12:58 sky.

00:12:59 --> 00:13:01 Anna: The waxing crescent moon, just a few days

00:13:01 --> 00:13:04 old, is keeping company with Venus tonight.

00:13:04 --> 00:13:07 And Venus is blazing away at magnitude

00:13:07 --> 00:13:10 -4.1, so it's genuinely hard

00:13:10 --> 00:13:12 to miss. About 45 minutes after sunset.

00:13:13 --> 00:13:15 Avery: Um, an easy, no telescope required, one for

00:13:15 --> 00:13:16 tonight.

00:13:16 --> 00:13:19 Anna: Okay, that's today's episode. Starship's ship

00:13:19 --> 00:13:22 40 finally makes it home after three weeks

00:13:22 --> 00:13:24 adrift a dead star, showing us our

00:13:24 --> 00:13:27 Sun's own distant future. New evidence

00:13:27 --> 00:13:29 the Milky Way was built out of an ancient

00:13:29 --> 00:13:32 galactic collision and China's fast

00:13:32 --> 00:13:33 recovery with back to back

00:13:33 --> 00:13:36 Avery: launches, plus tonight's Moon and Venus

00:13:36 --> 00:13:37 pairing. If you get a clear sky.

00:13:38 --> 00:13:40 Anna: If you enjoyed today's episode, the best

00:13:40 --> 00:13:42 thing you can do for us is leave a rating or

00:13:42 --> 00:13:45 review wherever you're listening and share it

00:13:45 --> 00:13:47 with a fellow space nerd. Full show notes,

00:13:47 --> 00:13:49 sources and links for every storey we covered

00:13:49 --> 00:13:52 today are at, uh, astronomydaily IO

00:13:52 --> 00:13:55 and you can find us on social media. We're

00:13:55 --> 00:13:57 astrodaily Pod pretty much everywhere.

00:13:58 --> 00:13:59 Avery: We'll be back tomorrow with more from the

00:13:59 --> 00:14:02 world of space and astronomy. Until then,

00:14:02 --> 00:14:03 keep looking up.

00:14:03 --> 00:14:05 Anna: See you then. Clear skies, everyone.

00:14:06 --> 00:14:07 Astronomy day.

00:14:08 --> 00:14:10 Avery: The storeys be told.

00:14:17 --> 00:14:17 Anna: Storeys.