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StarDate

Billy Henry
StarDate
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466 episodes

  • StarDate

    Fast-Growing Planets

    08/25/2026 | 2 mins.
    As the roster of known planets in other star systems grows, astronomers learn a lot more about planets and stars in general. One key finding is that almost all stars are still infants when their planets form.

    A planet is born from a disk of gas and dust around the newborn star. Solid particles stick together to form larger and larger bodies. They eventually form a chunk of rock and metal that can be much more massive than Earth. If these embryos are far enough from the star, where conditions are cold, they may sweep up vast amounts of leftover gas to form giant worlds.

    Observations of infant stars and planets suggest that most planets take shape within 10 million years or so. By then, the star’s radiation and winds have cleared away most of the raw ingredients for making planets. That leaves only the planets and some leftover “building blocks.” The gravity of the giant planets kicks many of the building blocks out of the system. But others remain, forming asteroids and comets.

    The planetary system isn’t in its final form by then. Gravitational interactions can cause a planet to move toward or away from the star, change the angle of its orbit, or even get kicked out of the system. And the asteroids and comets can pound the young planets – perhaps giving birth to moons.

    So while planets form quickly, they continue to evolve throughout the lifetime of their star system.

    Script by Damond Benningfield
  • StarDate

    Hamal

    08/24/2026 | 2 mins.
    Of the thousands of planets that have been discovered in other star systems, only a few orbit stars that are easy to see with the eye alone. Most of the stars are so faint or so far away that they just fade into the firmament.

    One exception is Hamal, the brightest star of Aries, the ram. It climbs into view, in the east-northeast, by mid-evening. It’s about 66 light-years away, but it’s bright enough that it’s easy to see from all but the most light-polluted cities.

    Hamal is so bright because it’s completed the “prime” phase of life – a phase known as the “main sequence.” Now it’s in the next phase, as a giant. It’s puffed up to about 15 times the diameter of the Sun, making it much brighter.

    Hamal has one confirmed planet – Hamal b. It, too, is a big ‘un – it’s almost twice as massive as Jupiter, the giant of our own solar system. But the planet is only a little farther from Hamal than Earth is from the Sun. So every square inch of the surface receives about 10 times more energy than the same-sized patch of Earth.

    As a result of that bombardment, Hamal b is extremely hot. That makes it highly unlikely to host any form of life – at least not like any life on Earth. And if it ever did have life, it probably perished as Hamal expanded and brightened. So Hamal b isn’t a good place to go hunting for neighbors.

    We’ll have more about planets in other star systems tomorrow.

    Script by Damond Benningfield
  • StarDate

    Jupiter Rising

    08/23/2026 | 2 mins.
    Jupiter is climbing away from the Sun, moving a little higher into the dawn sky day by day. Right now, it’s quite low in the east as twilight paints the sky. But it’s also quite bright, so if you have a clear horizon, you’ll be able to pick it out.

    Despite appearances, Jupiter isn’t really close to the Sun at all. It looks close only because of the relative positions of Jupiter and Earth.

    As seen from Earth, Jupiter passed behind the Sun in late July, so it was hidden in the Sun’s glare for several weeks. But Earth follows a smaller, faster orbit around the Sun. Now, we’re looping around toward Jupiter. We’ll catch up to it and pass it next February. So Jupiter will rise earlier and remain in view longer every day until then.

    Jupiter repeats this cycle every 13 months. In other words, wherever it appears in the sky now, it’ll be in a similar position 13 months later.

    But it won’t appear against the same background of stars. It takes Jupiter almost 12 years to orbit the Sun, so it takes that long for it to complete one full circle through the constellations. On average, it shifts eastward by about one constellation per year. So while it’s currently in Cancer, by the next time it graces the dawn sky, next September, it’ll be one constellation over, in Leo.

    Again, look for Jupiter low in the east during the dawn twilight, and climbing higher into the sky morning by morning.

    Script by Damond Benningfield
  • StarDate

    Changing Signs

    08/22/2026 | 2 mins.
    The Sun narrowly skirts by the heart of the lion today and tomorrow – the star Regulus. At their closest, they’ll be separated by just a fraction of a degree. After that, the Sun will slide across Leo for almost four weeks before moving into Virgo.

    That may surprise those whose astrological sign is Virgo. The Sun is supposed to cross into Virgo tomorrow. That highlights two points: the difference between the “signs” and the constellations, and the Sun’s changing position relative to both.

    The constellations of the zodiac were drawn thousands of years ago. They were based on connect-the-dots patterns of stars, not formal boundaries.

    The constellations are different sizes, so the Sun spends different amounts of time crossing each one. On average, though, with 12 months and 12 constellations, the Sun spent a month in each. So astrology divided the zodiac into 12 equal slices. That meant the Sun spent an equal amount of time in each sign, regardless of the size of the constellation itself.

    But the Sun shifts position relative to the background of the stars. So today, the signs and constellations are out of sync by about a month.

    And in the early 20th century, astronomers assigned formal borders to the constellations. So the Sun spends from about a week to more than five weeks crossing each constellation. And the way the borders are set up, it actually crosses 13 of them – including Leo.

    Script by Damond Benningfield
  • StarDate

    Cloudy Crossing

    08/21/2026 | 2 mins.
    The space around our solar system is cloudy. Astronomers have mapped 15 individual clouds within a few hundred light-years. The clouds are moving in different directions, and they have different mixtures of ingredients. Some of those ingredients were forged by exploding stars.

    Over the past few years, scientists have used one of those ingredients to trace the solar system’s path through the Local Interstellar Cloud. It’s about 30 light-years across, and we’re close to its edge – perhaps in the transition zone with the next cloud.

    The scientists have looked at a radioactive form of iron that’s produced when a massive star explodes as a supernova. The explosion scatters the atoms, creating clouds of debris – including iron-rich dust grains.

    As Earth flies through a cloud, it sweeps up some of the dust, which falls to the surface. The scientists have found the iron in sediments on the bottom of the ocean, and in fresh snow in Antarctica. And recently, they found it in layers of ice deposited 40,000 to 80,000 years ago, also in the Antarctic.

    Those samples fell to Earth before the others did. And they have lower amounts of the radioactive iron. That could mean that Earth was just entering the Local Cloud during that period. The amount of iron went up as we passed deeper into the cloud. Now, the amount is going down again – perhaps heralding the solar system’s exit from the Local Cloud.

    Script by Damond Benningfield
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About StarDate
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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