Hi! My name is June!
Please reblog this if you are a non-selective Camp Camp Rp blog willing to interact!
let's talk about Bridgerton tea, my ask is open

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PUT YOUR BEARD IN MY MOUTH
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@spacekid-the-moon-child
Hi! My name is June!
Please reblog this if you are a non-selective Camp Camp Rp blog willing to interact!
This seems like a good place to start. LIKE OR REBLOG if you would be intrsted in interacting with a slightly canon compliant Neil from camp camp! I’ll be working on a starter call soon.
:>
sweet
honey
iced
tea
Send me to Mars with party supplies before next august 5th
No guys you don’t understand.
The soil testing equipment on Curiosity makes a buzzing noise and the pitch of the noise changes depending on what part of an experiment Curiosity is performing, this is the way Curiosity sings to itself.
So some of the finest minds currently alive decided to take incredibly expensive important scientific equipment and mess with it until they worked out how to move in just the right way to sing Happy Birthday, then someone made a cake on Curiosity’s birthday and took it into Mission control so that a room full of brilliant scientists and engineers could throw a birthday party for a non-autonomous robot 225 million kilometres away and listen to it sing the first ever song sung on Mars*, which was Happy Birthday.
This isn’t a sad story, this a happy story about the ridiculousness of humans and the way we love things. We built a little robot and called it Curiosity and flung it into the star to go and explore places we can’t get to because it’s name is in our nature and then just because we could, we taught it how to sing.
That’s not sad, that’s awesome.
*this is different from the first song ever played on mars (Reach For The Stars by Will.I.Am) which happened the year before, singing is different from playing
This is humanity
Happy Birthday, Curiousity.
Happy birthday you funky lil robot!
Happy birthday to my favorite robot child
space is so cool!!
I stabbed my pencil into a tree and now its stuck :((
*tries to take pencil out*
*pencil breaks*
“…”
“fUcKeN A-”
“have another one instead!!”
reblog if ur gay, tired or fUCKING LOVE SPACE
why does this have 7 notes i’m pretty sure this covers all of tumblr
Don’t you dare scroll, you liar!
All three of these make up my life.
this is literally me. all of this. always. it’s me.
I’m all three-
A l l t h r e e
All three (both in and out of character)
@spacekid-the-moon-child
//mun is all three, oh spacekid too i guess (though i like headcannoning him as ace but i also like ships)
Better late than never!
This week’s finale on stars focuses on stellar sizes!
https://www.youtube.com/watch?v=7T1LO6nOUdw
https://en.wikipedia.org/wiki/File:Star-sizes.jpg
Solar System 10 Things: Looking Back at Pluto
In July 2015, we saw Pluto up close for the first time and—after three years of intense study—the surprises keep coming. “It’s clear,” says Jeffery Moore, New Horizons’ geology team lead, “Pluto is one of the most amazing and complex objects in our solar system.”
1. An Improving View
These are combined observations of Pluto over the course of several decades. The first frame is a digital zoom-in on Pluto as it appeared upon its discovery by Clyde Tombaugh in 1930. More frames show of Pluto as seen by the Hubble Space Telescope. The final sequence zooms in to a close-up frame of Pluto taken by our New Horizons spacecraft on July 14, 2015.
2. The Heart
Pluto’s surface sports a remarkable range of subtle colors are enhanced in this view to a rainbow of pale blues, yellows, oranges, and deep reds. Many landforms have their own distinct colors, telling a complex geological and climatological story that scientists have only just begun to decode. The image resolves details and colors on scales as small as 0.8 miles (1.3 kilometers). Zoom in on the full resolution image on a larger screen to fully appreciate the complexity of Pluto’s surface features.
3. The Smiles
July 14, 2015: New Horizons team members Cristina Dalle Ore, Alissa Earle and Rick Binzel react to seeing the spacecraft’s last and sharpest image of Pluto before closest approach.
4. Majestic Mountains
Just 15 minutes after its closest approach to Pluto, the New Horizons spacecraft captured this near-sunset view of the rugged, icy mountains and flat ice plains extending to Pluto’s horizon. The backlighting highlights more than a dozen layers of haze in Pluto’s tenuous atmosphere. The image was taken from a distance of 11,000 miles (18,000 kilometers) to Pluto; the scene is 780 miles (1,250 kilometers) wide.
5. Icy Dunes
Found near the mountains that encircle Pluto’s Sputnik Planitia plain, newly discovered ridges appear to have formed out of particles of methane ice as small as grains of sand, arranged into dunes by wind from the nearby mountains.
6. Glacial Plains
The vast nitrogen ice plains of Pluto’s Sputnik Planitia – the western half of Pluto’s “heart”—continue to give up secrets. Scientists processed images of Sputnik Planitia to bring out intricate, never-before-seen patterns in the surface textures of these glacial plains.
7. Colorful and Violent Charon
High resolution images of Pluto’s largest moon, Charon, show a surprisingly complex and violent history. Scientists expected Charon to be a monotonous, crater-battered world; instead, they found a landscape covered with mountains, canyons, landslides, surface-color variations and more.
8. Ice Volcanoes
One of two potential cryovolcanoes spotted on the surface of Pluto by the New Horizons spacecraft. This feature, known as Wright Mons, was informally named by the New Horizons team in honor of the Wright brothers. At about 90 miles (150 kilometers) across and 2.5 miles (4 kilometers) high, this feature is enormous. If it is in fact an ice volcano, as suspected, it would be the largest such feature discovered in the outer solar system.
9. Blue Rays
Pluto’s receding crescent as seen by New Horizons at a distance of 120,000 miles (200,000 kilometers). Scientists believe the spectacular blue haze is a photochemical smog resulting from the action of sunlight on methane and other molecules in Pluto’s atmosphere. These hydrocarbons accumulate into small haze particles, which scatter blue sunlight—the same process that can make haze appear bluish on Earth.
10. Encore
On Jan. 1, 2019, New Horizons will fly past a small Kuiper Belt Object named MU69 (nicknamed Ultima Thule)—a billion miles (1.5 billion kilometers) beyond Pluto and more than four billion miles (6.5 billion kilometers) from Earth. It will be the most distant encounter of an object in history—so far—and the second time New Horizons has revealed never-before-seen landscapes.
Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com.
Our Sun is More than Meets the Eye
The Sun may look unchanging to us here on Earth, but that’s not the whole story.
In visible light – the light our eyes can see – the Sun looks like an almost featureless orange disk, peppered with the occasional sunspot. (Important note: Never look at the Sun directly, and always use a proper filter for solar viewing – or tune in to our near-real time satellite feeds!)
But in other kinds of light, it’s a different picture. The Sun emits light across the electromagnetic spectrum, including the relatively narrow range of light we can see, as well as wavelengths that are invisible to our eyes. Different wavelengths convey information about different components of the Sun’s surface and atmosphere, so watching the Sun in multiple types of light helps us paint a fuller picture.
Watching the Sun in these wavelengths reveals how active it truly is. This image, captured in a wavelength of extreme ultraviolet light at 131 Angstroms, shows a solar flare. Solar flares are intense bursts of light radiation caused by magnetic events on the Sun, and often associated with sunspots. The light radiation from solar flares can disturb part of Earth’s atmosphere where radio signals travel, causing short-lived problems with communications systems and GPS.
Looking at the Sun in extreme ultraviolet light also reveals structures like coronal loops (magnetic loops traced out by charged particles spinning along magnetic field lines)…
…solar prominence eruptions…
…and coronal holes (magnetically open areas on the Sun from which solar wind rushes out into space).
Though extreme ultraviolet light shows the Sun’s true colors, specialized instruments let us see some of the Sun’s most significant activity in visible light.
A coronagraph is a camera that uses a solid disk to block out the Sun’s bright face, revealing the much fainter corona, a dynamic part of the Sun’s atmosphere. Coronagraphs also reveal coronal mass ejections, or CMEs, which are explosions of billions of tons of solar material into space. Because this material is magnetized, it can interact with Earth’s magnetic field and trigger space weather effects like the aurora, satellite problems, and even – in extreme cases – power outages.
The Sun is also prone to bursts of energetic particles. These particles are blocked by Earth’s magnetic field and atmosphere, but they could pose a threat to astronauts traveling in deep space, and they can interfere with our satellites. This clip shows an eruption of energetic particles impacting a Sun-observing satellite, creating the ‘snow’ in the image.
We keep watch on the Sun 24/7 with a fleet of satellites to monitor and better understand this activity. And this summer, we’re going one step closer with the launch of Parker Solar Probe, a mission to touch the Sun. Parker Solar Probe will get far closer to the Sun than any other spacecraft has ever gone – into the corona, within 4 million miles of the surface – and will send back unprecedented direct measurements from the regions thought to drive much of the Sun’s activity. More information about the fundamental processes there can help round out and improve models to predict the space weather that the Sun sends our way.
Keep up with the latest on the Sun at @NASASun on Twitter, and follow along with Parker Solar Probe’s last steps to launch at nasa.gov/solarprobe.
Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com.
im back at camp now!
max came and got me
hello Erin! :D
It’s nice to see your enthusiastic face!
and its nice to see you again Erin :D
im back at camp now!
max came and got me
hello Erin! :D
im back at camp now!
max came and got me
why is max pushing me in the woods again?
why does everything feel
fuzzy?
like in my head
what was i doing?
It’s okay, you’ll get it soon.
i...ok
why is max pushing me in the woods again?
why does everything feel
fuzzy?
like in my head
what was i doing?
someone help a while ago max pushed me into the woods and told me to keep walking and he’ll find me but he never got mE
WHO?!
Max he said he had to hide me from someone who was going to hurt me
i think he forgot…
Are you okay?!
yep! just trying to find my way back to camp!