National Radio Astronomy Observatory
BankWikipedia
13
MENTIONS
9
EPISODES
8
PODCASTS
Search complete. 13 mentions across 9 episodes found for "National Radio Astronomy Observatory".
Oct 2, 2026
Mid-Air Collisions, Alien Life, & Light Sport Aviation: Dr. Paul Shuch's Remarkable Journey
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44:29H. Paul ShuchGUEST
No, unfortunately not.
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44:30H. Paul ShuchGUEST
They were using the Arecibo dish, and they were borrowing time on a really nice big telescope in Australia, and they would rent time from the NIO, Green Bank, West Virginia.
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44:46H. Paul ShuchGUEST
Big stuff.
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44:47H. Paul ShuchGUEST
Well, because it's a long shot with your targeted search, the second search strategy is called the All-Sky Survey.
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45:20H. Paul ShuchGUEST
So NASA wasn't about to bet on one or the other.
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45:23H. Paul ShuchGUEST
They bet on both.
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45:25H. Paul ShuchGUEST
JPL got involved with one of the searches, and National Radio Astronomy Observatory got involved in the other search, and they had these both going on a three-year plan at $12 million a year.
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45:36H. Paul ShuchGUEST
That's, by the way, five cents per U.S. citizen per year.
Searching for life in the universe
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4:50Brennan ByrneHOST
Frank Drake studied astronomy, getting his PhD from Harvard in 1958.
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4:55Brennan ByrneHOST
His first job was at the National Radio Astronomy Observatory in Green Bank, West Virginia.
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5:01Brennan ByrneHOST
And it was there in 1960 where he would get that chance to detect those other civilizations in our universe that young Frank wondered about.
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5:10Brennan ByrneHOST
That year, he convinced the observatory director to give him $2,000 to conduct the first search for life outside our own planet.
August 2026 - A UV Photon Walks into an (Orion) Bar
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41:38Samantha ScibelliHOST
I'm Samantha Schibelli.
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41:39Samantha ScibelliHOST
I'm a postdoctoral fellow at the National Radio Astronomy Observatory in Charlottesville, Virginia.
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41:45Samantha ScibelliHOST
I'm interviewing Funga Hill, who was an undergraduate at the University of Arizona and now is starting graduate school at the University of Michigan.
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41:56Samantha ScibelliHOST
I want to start by asking first, Funga, how did you get interested in astrochemistry?
The great silence: why haven’t we found any aliens yet?
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3:49James Sobel KellyNARRATOR
The first serious effort to detect radio signals from alien civilizations in deep space was made in 1960, when the American astronomer Frank Drake conducted an experiment he named Project OSMA.
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4:03James Sobel KellyNARRATOR
Using a telescope at the National Radio Astronomy Observatory in West Virginia, Drake looked for signals at a precise location on the electromagnetic spectrum.
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4:14James Sobel KellyNARRATOR
1420 megahertz, known as the hydrogen line, because hydrogen atoms emit photons at that frequency.
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4:23James Sobel KellyNARRATOR
Because hydrogen is so abundant in the universe, the line is easy for radio telescopes to detect.
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Unknown podcast
The Fermi Paradox Is More Terrifying Than We Thought
Sep 5 · 1 Mention
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18:09speaker_1NARRATOR
One year before Drake wrote his equation, he had already conducted the first modern search for extraterrestrial intelligence.
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18:17speaker_1NARRATOR
In the spring of 1960, Drake pointed the 85-foot radio telescope at the National Radio Astronomy Observatory in Greenbank, West Virginia, toward two nearby sun-like stars, Tau Ceti and Epsilon Eridani.
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18:34speaker_1NARRATOR
He called the project Ozma, after the princess of the fictional land of Oz, a distant and unreachable place filled with exotic beings.
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18:43speaker_1NARRATOR
For roughly 200 hours over several months, Drake listened for narrowband radio signals, the kind that natural astrophysical sources do not produce, that would indicate deliberate transmission by an intelligent civilization.
Discovering Blazars and SpaceX's New Spaceport
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8:25Stuart GaryHOST
In the meantime, another possibility is to point powerful telescopes at Enceladus and use those to try and get a spectroscopic reading of those tiny water and ice grains erupting into space from the tiger stripes.
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8:38Stuart GaryHOST
This report from the United States National Radio Astronomy Observatory.
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8:43Bryan ButlerSOUNDBITE_SPEAKER
Enceladus has geysers at its south pole.
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8:49Bryan ButlerSOUNDBITE_SPEAKER
It has what almost are the equivalent of geothermal geysers on the Earth.
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9:44Bryan ButlerSOUNDBITE_SPEAKER
So on Enceladus, is there some ocean where material is coming up through the crust and that's what's coming out in these geysers? So we'll be able to quite accurately measure the abundances of the different kinds of molecules that are in that, you know, that ring of material around Saturn.
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10:04Bryan ButlerSOUNDBITE_SPEAKER
And because it has such fine resolution, we'll actually be able to make an image of Enceladus and right over where the geysers are, we'll have, you know, the resolution to see precisely what's in that area, what's coming out, what the temperatures are, again, what the, the abundances are of the materials that are coming out.
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10:26Stuart GaryHOST
And in that report from the National Radio Astronomy Observatory, we heard from scientist Brian Butler.
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10:31Stuart GaryHOST
This is Space Time.
Discovering Blazars and SpaceX’s New Spaceport
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7:55Stuart GaryHOST
In the meantime, another possibility is to point powerful telescopes at Enceladus and use those to try and get a spectroscopic reading of those tiny water and ice grains erupting into space from the tiger stripes.
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8:08Stuart GaryHOST
This report from the United States National Radio Astronomy Observatory.
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8:13Brian ButlerSOUNDBITE_SPEAKER
Enceladus has geysers at its south pole.
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8:19Brian ButlerSOUNDBITE_SPEAKER
It has what almost are the equivalent of geothermal geysers on the Earth.
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9:24Brian ButlerSOUNDBITE_SPEAKER
quite accurately measure the abundances of the different kinds of molecules that are in that, you know, that ring of material around Saturn.
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9:34Brian ButlerSOUNDBITE_SPEAKER
And because it has such fine resolution, we'll actually be able to make an image of Enceladus, and right over where the geysers are, we'll have, you know, the resolution to see precisely what's in that area, what's coming out, what the temperatures are again, what the abundances are of the materials that are coming out.
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9:55Stuart GaryHOST
And in that report from the National Radio Astronomy Observatory, we heard from scientist Brian Butler.
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10:01Stuart GaryHOST
This is Space Time.
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Unknown podcast
The Dark Forest Theory_ Why One Signal to Aliens Could End Us
Sep 4 · 1 Mention
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2:51speaker_0NARRATOR
In 1961, astronomer Frank Drake attempted to put numbers to this intuition.
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2:57speaker_0NARRATOR
Working at the National Radio Astronomy Observatory in Greenbank, West Virginia, Drake developed an equation designed to estimate how many communicative civilizations might exist in our galaxy at any given time.
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3:10speaker_0NARRATOR
The Drake equation, as it became known, multiplied together a series of factors the rate of star formation in the galaxy, the fraction of stars with planetary systems, the fraction of those planets that could support life, the fraction where life actually develops, the fraction where intelligence emerges, the fraction that develop technology capable of sending detectable signals, and the average length of time such civilizations continue broadcasting.
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3:39speaker_0NARRATOR
The equation was never meant to produce a precise answer.
Fall Asleep to The Signals We've Never Been Able to Explain
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1:49speaker_0NARRATOR
The telescope does not hear with ears, it hears with mathematics.
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1:55speaker_0NARRATOR
In the spring of 1960, a young astronomer named Frank Drake pointed an 85-foot radio telescope at the National Radio Astronomy Observatory in Greenbank, West Virginia, at two nearby sun-like stars.
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2:12speaker_0NARRATOR
Their names were Tau Ceti and Epsilon Eridani, and they were chosen because they were close, because they were similar to our own Sun, and because they seemed like reasonable places to begin.
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2:26speaker_0NARRATOR
Drake listened for narrow band radio signals at the hydrogen line frequency, 1420 MHz.