499 episodes
- If you’re searching for life on another world, you don’t want to find life that’s hitchhiked from Earth. But preventing contamination isn’t easy.
Over the past few decades, we’ve identified quite a few worlds in the outer solar system that could be habitable. These worlds are coated with frozen water. But they could have oceans of liquid water below the crust. Those oceans could supply the minerals and the energy needed for life. So scientists are especially interested in them. But they want to make sure that any life they find really is native.
So every mission to these worlds goes through a careful process of sterilization.
But building and launching a spacecraft requires hands-on contact by hundreds of people. They build the instruments, assemble the spacecraft, test it, and attach it to its booster. Much of the work is done in high-level cleanrooms. Along the way, the spacecraft and its components may be cleaned with chemicals, baked at high temperatures, or zapped with radiation – all to prevent Earthly “bugs” from catching a ride.
One especially interesting target is Enceladus, a moon of Saturn. It has a buried ocean, but some of its water shoots into space. Some of it falls back onto the surface – perhaps making it easier to find native life on this icy world.
Saturn is close to the right of our own moon in early evening. It looks like a bright star. It’ll stay close to the Moon all night.
Script by Damond Benningfield - The Moon is full today. But it’s not just any old full Moon. It’s the best-known of them all: the Harvest Moon – the subject of books, music, and lots of fall festivals.
In centuries past, the Harvest Moon was much more than a pop-culture event. It provided enough light for farmers to harvest their crops well into the night. And at high northern latitudes, it helped out for several nights in a row.
Officially, the Harvest Moon is the full Moon that’s closest to the fall equinox. That put it around harvest time – especially at higher latitudes, where autumn frosts soon would blanket the night. Without artificial lights to help them out, farmers relied on the Moon to add hours to their work time.
The Moon is bright enough to help for several nights before and after it’s full. And thanks to the angle at which it climbs into the sky, for latitudes north of about Milwaukee or Minneapolis it rises only a few minutes later each night. So farmers in such high northerly climes didn’t have to wait around for the Moon to rise – they could keep on harvesting through the twilight and into the night.
Tonight, the planet Saturn is quite close below the Moon at nightfall, and stays close throughout the night.
It looks like a bright star. Like the full Moon, it’s about to line up opposite the Sun – setting up its own prime viewing time.
We’ll have more about Saturn and the Moon tomorrow.
Script by Damond Benningfield - Neptune has lost its vibrancy. The planet itself hasn’t changed – only our perception of it – the result of a bit of creative license exercised 37 years ago.
Neptune is the Sun’s fourth-largest planet – four times the diameter of Earth. But it’s also the most-distant major planet – 30 times farther from the Sun than Earth is.
Our only close look at Neptune came in August 1989, when Voyager 2 flew just 3,000 miles above its cloudtops. It transmitted hundreds of pictures of the planet. They revealed white bands of clouds racing through Neptune’s atmosphere, and a massive storm – the Great Dark Spot.
In most of the pictures, Neptune has a deep cerulean palette. But a couple of years ago, a team reprocessed the images. The original project team had enhanced the planet’s color and contrast. That revealed details in the atmosphere that otherwise wouldn’t show up. But it also concealed Neptune’s true appearance: a pale blue-green. So Neptune isn’t as vibrant as it seemed – but it’s still an amazing world far from the Sun.
Neptune is closest to Earth today for the entire year. It shines at its brightest, and it’s in the sky all night.
You still need help to see it. But its location is easy to spot. As night falls, it’s about half way between the full Moon – the Harvest Moon – and the planet Saturn, which looks like a bright star to the lower left of the Moon.
Script by Damond Benningfield - The largest moon of Neptune was an agent of chaos. It wasn’t born with Neptune itself. Instead, it was captured by the giant planet. As it spiraled in, it might have hit one of Neptune’s existing moons. And it scattered the others – knocking some of them out of orbit. Only one of them might have survived.
There’s a lot of evidence of that idea. Triton is about the same size and composition as Pluto. It contains more than 99 percent of the total mass of Neptune’s moons and rings. And it orbits in the opposite direction from Neptune’s rotation.
There’s no way for a moon to form in that kind of orbit, so Triton must have formed elsewhere in the solar system. It was captured when Neptune was young. It might have caromed off an existing moon. Or it might have had a companion. When the duo passed close to Neptune, it was ripped apart – Triton entered orbit, while its sibling was kicked off on its own. Triton then bludgeoned its way through the system.
A recent study says the only surviving moon is Nereid, Neptune’s third-largest moon. Researchers looked at it with Webb Space Telescope. They found that it’s made of the same materials as the moons of Uranus – not the other moons of Neptune. That suggests it was born with the planet, and survived Triton’s chaotic arrival.
Neptune is at its brightest this week. It’s in the east at nightfall, to the upper right of the bright planet Saturn. But you need a telescope to see it.
More tomorrow.
Script by Damond Benningfield - It’s not often that someone hands an astronomer a major discovery. But that’s what happened 180 years ago today. German astronomer Johann Galle, the director of Berlin Observatory, received a letter from Urbain Le Verrier. The French astronomer had calculated the likely position of a planet beyond Uranus, which at the time was the Sun’s most-distant known planet. Galle looked for the new planet that night – and found it: the planet Neptune.
Le Verrier had calculated that Uranus wasn’t orbiting the Sun as expected. He decided that it was being nudged out of position by the gravity of another planet, farther from the Sun. He calculated the planet’s location, then sent his results to Berlin.
British astronomer John Couch Adams had made similar calculations. He passed his results to his own colleagues. One of them searched for the planet, and saw it, in 1845 – but he didn’t realize it. So Adams usually is credited as a co-discoverer. But some research in recent years has suggested that his calculations were off, so there’s a debate about who discovered the Sun’s eighth planet.
Appropriately enough, Neptune is at its best this week. It lines up opposite the Sun, so it’s closest to Earth, and shining at its brightest. But it’s so far away that you need a telescope to pick it out. It’s not far to the upper right of the bright planet Saturn, which is low in the east at nightfall.
More tomorrow.
Script by Damond Benningfield
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StarDate, the longest-running national radio science feature in the U.S., tells listeners what to look for in the night sky.
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