Don Dixon

Don Dixon

Don Dixon

More Posts from Epic-flight and Others

4 years ago
Space & Sound.

Space & Sound.

You can get this GIF as a phone wallpaper for free through the Zedge app.

You can also get this GIF as a looping 1080p video if you support me on Patreon.

Twitter / Instagram / Shop / Gumroad / Patreon / Zedge

4 years ago
Meirl

meirl

4 years ago
SPARTH Collapsing Empire - Preliminary Sketch Digital

SPARTH Collapsing Empire - Preliminary Sketch Digital

4 years ago
”I Didn’t Feel Like A Giant. I Felt Very, Very Small.”
”I Didn’t Feel Like A Giant. I Felt Very, Very Small.”

”I didn’t feel like a giant. I felt very, very small.”

–Neil Armstrong on looking back at the Earth from the Moon in July 1969.

(Sources: 1, 2)

8 months ago
Another Beautiful Space Painting From My Friend Steve R Dodd. ‘The Beacon’. Originally Displayed

Another beautiful space painting from my friend Steve R Dodd. ‘The Beacon’. Originally displayed in NASA’s 25th anniversary art show, Cleveland Museum of Natural History (1980s)

3 years ago
Starbright.

Starbright.

Twitter / Instagram / Gumroad / Patreon

KnownOrigin / SuperRare / OBJKT /Zedge

2 years ago

You Are Made of Stardust

Though the billions of people on Earth may come from different areas, we share a common heritage: we are all made of stardust! From the carbon in our DNA to the calcium in our bones, nearly all of the elements in our bodies were forged in the fiery hearts and death throes of stars.

You Are Made Of Stardust

The building blocks for humans, and even our planet, wouldn’t exist if it weren’t for stars. If we could rewind the universe back almost to the very beginning, we would just see a sea of hydrogen, helium, and a tiny bit of lithium.

The first generation of stars formed from this material. There’s so much heat and pressure in a star’s core that they can fuse atoms together, forming new elements. Our DNA is made up of carbon, hydrogen, oxygen, nitrogen, and phosphorus. All those elements (except hydrogen, which has existed since shortly after the big bang) are made by stars and released into the cosmos when the stars die.

You Are Made Of Stardust

Each star comes with a limited fuel supply. When a medium-mass star runs out of fuel, it will swell up and shrug off its outer layers. Only a small, hot core called a white dwarf is left behind. The star’s cast-off debris includes elements like carbon and nitrogen. It expands out into the cosmos, possibly destined to be recycled into later generations of stars and planets. New life may be born from the ashes of stars.

You Are Made Of Stardust

Massive stars are doomed to a more violent fate. For most of their lives, stars are balanced between the outward pressure created by nuclear fusion and the inward pull of gravity. When a massive star runs out of fuel and its nuclear processes die down, it completely throws the star out of balance. The result? An explosion!

Supernova explosions create such intense conditions that even more elements can form. The oxygen we breathe and essential minerals like magnesium and potassium are flung into space by these supernovas.

You Are Made Of Stardust

Supernovas can also occur another way in binary, or double-star, systems. When a white dwarf steals material from its companion, it can throw everything off balance too and lead to another kind of cataclysmic supernova. Our Nancy Grace Roman Space Telescope will study these stellar explosions to figure out what’s speeding up the universe’s expansion. 

This kind of explosion creates calcium – the mineral we need most in our bodies – and trace minerals that we only need a little of, like zinc and manganese. It also produces iron, which is found in our blood and also makes up the bulk of our planet’s mass!

You Are Made Of Stardust

A supernova will either leave behind a black hole or a neutron star – the superdense core of an exploded star. When two neutron stars collide, it showers the cosmos in elements like silver, gold, iodine, uranium, and plutonium.

You Are Made Of Stardust

Some elements only come from stars indirectly. Cosmic rays are nuclei (the central parts of atoms) that have been boosted to high speed by the most energetic events in the universe. When they collide with atoms, the impact can break them apart, forming simpler elements. That’s how we get boron and beryllium – from breaking star-made atoms into smaller ones.

Half a dozen other elements are created by radioactive decay. Some elements are radioactive, which means their nuclei are unstable. They naturally break down to form simpler elements by emitting radiation and particles. That’s how we get elements like radium. The rest are made by humans in labs by slamming atoms of lighter elements together at super high speeds to form heavier ones. We can fuse together elements made by stars to create exotic, short-lived elements like seaborgium and einsteinium.

You Are Made Of Stardust

From some of the most cataclysmic events in the cosmos comes all of the beauty we see here on Earth. Life, and even our planet, wouldn’t have formed without them! But we still have lots of questions about these stellar factories. 

In 2006, our Stardust spacecraft returned to Earth containing tiny particles of interstellar dust that originated in distant stars, light-years away – the first star dust to ever be collected from space and returned for study. You can help us identify and study the composition of these tiny, elusive particles through our Stardust@Home Citizen Science project.

Our upcoming Roman Space Telescope will help us learn more about how elements were created and distributed throughout galaxies, all while exploring many other cosmic questions. Learn more about the exciting science this mission will investigate on Twitter and Facebook.

Make sure to follow us on Tumblr for your regular dose of space!

1 year ago
Blue Glow - 220506

Blue Glow - 220506

3 years ago
🌕 Lemat Moon 1 2 3 4 5 6 7 8 9 10 11 12 13🌗 Twinkle Night27 3 17 / Instagram  / Adobe Behance🌑✨

🌕 Lemat Moon 1 2 3 4 5 6 7 8 9 10 11 12 13🌗 Twinkle Night27 3 17 / instagram  / Adobe Behance🌑✨

1 year ago
HiPOD: Bedrock Exposures In Nirgal Vallis
HiPOD: Bedrock Exposures In Nirgal Vallis

HiPOD: Bedrock Exposures in Nirgal Vallis

This observation covers two tributaries and the main channel of Nirgal Vallis. The channel is approximately 610 kilometers long and is named after Nergal, the Babylonian god of war and counterpart to the Roman god of war, Mars. Mars Orbiter Camera image show light-toned bedrock; our high resolution picture can gives us a better view of the channel form and bedrock stratigraphy. (Grayscale cutout is less than 5 km across; enhanced color is less than 1 km.)

ID: ESP_074945_1515 date: 23 July 2022 altitude: 257 km

NASA/JPL-Caltech/UArizona

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epic-flight - Epic Flight
Epic Flight

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