had a fun experience on the subway the other day

blake kathryn
The Stonewall Inn

gracie abrams
Claire Keane

❣ Chile in a Photography ❣

No title available

Andulka
Cosimo Galluzzi

PR's Tumblrdome
taylor price
Aqua Utopia|海の底で記憶を紡ぐ
NASA

@theartofmadeline
art blog(derogatory)
One Nice Bug Per Day
noise dept.

#extradirty

tannertan36
official daine visual archive
$LAYYYTER

seen from Türkiye
seen from United States

seen from Philippines

seen from Brazil

seen from Germany

seen from Saudi Arabia

seen from Italy
seen from United States
seen from Türkiye
seen from United States

seen from United States
seen from United States
seen from Italy
seen from Brazil
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seen from United States

seen from United States
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seen from United States
@weefish
had a fun experience on the subway the other day
I love when my relationships with my coworkers are totally normal.
GIFs by @bisexualfbiagents
the best part of each x-files episode is waiting for the end to see who's gonna do the sign off report cause when it's scully it's usually something like "once again, despite my partner's opinion to the contrary, i cannot confidently say that there is any scientific basis to the theory that alien ghost blood was responsible for the disappearance of the crack in the liberty bell" meanwhile if it's mulder we get gems like "are we alone in the universe? what does it truly mean to be alone? did bigfoot fuck the speaker of the house? as always i am left with more questions than answers and don't know who to trust and i think scully changed her shampoo and..."
1899 1.05 “The Calling”
richard papen choosing to almost freeze to death rather than asking for help was the most relatable thing he ever did. in this essay i will
i stand by the fact that boris pavlikovsky was probably not as cool or as mysterious that theo made him out to be. theo was just raised in upper middle class new york and thinks anyone who doesn’t have a stick up their ass is the coolest person ever to him. boris in reality is probably some gangly weirdo who forced his way into theo’s life and runs his mouth oversharing abt everything.
“I’ve always been interested in people, but I’ve never liked them.”
— Henry James
ANDREW SCOTT as THE PRIEST in Fleabag (2016-2019)
is there any bond as strong as that between ur slavic not-boyfriend and ur dead dad’s girlfriend’s gay white dog
Since I can’t bring myself to write on books unless they’re short pencil notes, I started leaving letters/reviews/thoughts to keep inside my books and I just left a long one in my copy of The Goldfinch that I finished reading some days ago. I couldn’t stop thinking about it, and it helped me not randomly stare into the void as I get overwhelmed by a specific passage.
Donna Tartt // Oscar Wilde
PIPPA!!! <3
when you finish reading a really good book and you feel like an empty shell but you have to move on with your day
accidentally spent the last thirty minutes laying in bed in front of my open balcony staring at the rain and listening to mitski
Caution: Universe Work Ahead 🚧
We only have one universe. That’s usually plenty – it’s pretty big after all! But there are some things scientists can’t do with our real universe that they can do if they build new ones using computers.
The universes they create aren’t real, but they’re important tools to help us understand the cosmos. Two teams of scientists recently created a couple of these simulations to help us learn how our Nancy Grace Roman Space Telescope sets out to unveil the universe’s distant past and give us a glimpse of possible futures.
Caution: you are now entering a cosmic construction zone (no hard hat required)!
This simulated Roman deep field image, containing hundreds of thousands of galaxies, represents just 1.3 percent of the synthetic survey, which is itself just one percent of Roman's planned survey. The full simulation is available here. The galaxies are color coded – redder ones are farther away, and whiter ones are nearer. The simulation showcases Roman’s power to conduct large, deep surveys and study the universe statistically in ways that aren’t possible with current telescopes.
One Roman simulation is helping scientists plan how to study cosmic evolution by teaming up with other telescopes, like the Vera C. Rubin Observatory. It’s based on galaxy and dark matter models combined with real data from other telescopes. It envisions a big patch of the sky Roman will survey when it launches by 2027. Scientists are exploring the simulation to make observation plans so Roman will help us learn as much as possible. It’s a sneak peek at what we could figure out about how and why our universe has changed dramatically across cosmic epochs.
This video begins by showing the most distant galaxies in the simulated deep field image in red. As it zooms out, layers of nearer (yellow and white) galaxies are added to the frame. By studying different cosmic epochs, Roman will be able to trace the universe's expansion history, study how galaxies developed over time, and much more.
As part of the real future survey, Roman will study the structure and evolution of the universe, map dark matter – an invisible substance detectable only by seeing its gravitational effects on visible matter – and discern between the leading theories that attempt to explain why the expansion of the universe is speeding up. It will do it by traveling back in time…well, sort of.
Seeing into the past
Looking way out into space is kind of like using a time machine. That’s because the light emitted by distant galaxies takes longer to reach us than light from ones that are nearby. When we look at farther galaxies, we see the universe as it was when their light was emitted. That can help us see billions of years into the past. Comparing what the universe was like at different ages will help astronomers piece together the way it has transformed over time.
This animation shows the type of science that astronomers will be able to do with future Roman deep field observations. The gravity of intervening galaxy clusters and dark matter can lens the light from farther objects, warping their appearance as shown in the animation. By studying the distorted light, astronomers can study elusive dark matter, which can only be measured indirectly through its gravitational effects on visible matter. As a bonus, this lensing also makes it easier to see the most distant galaxies whose light they magnify.
The simulation demonstrates how Roman will see even farther back in time thanks to natural magnifying glasses in space. Huge clusters of galaxies are so massive that they warp the fabric of space-time, kind of like how a bowling ball creates a well when placed on a trampoline. When light from more distant galaxies passes close to a galaxy cluster, it follows the curved space-time and bends around the cluster. That lenses the light, producing brighter, distorted images of the farther galaxies.
Roman will be sensitive enough to use this phenomenon to see how even small masses, like clumps of dark matter, warp the appearance of distant galaxies. That will help narrow down the candidates for what dark matter could be made of.
In this simulated view of the deep cosmos, each dot represents a galaxy. The three small squares show Hubble's field of view, and each reveals a different region of the synthetic universe. Roman will be able to quickly survey an area as large as the whole zoomed-out image, which will give us a glimpse of the universe’s largest structures.
Constructing the cosmos over billions of years
A separate simulation shows what Roman might expect to see across more than 10 billion years of cosmic history. It’s based on a galaxy formation model that represents our current understanding of how the universe works. That means that Roman can put that model to the test when it delivers real observations, since astronomers can compare what they expected to see with what’s really out there.
In this side view of the simulated universe, each dot represents a galaxy whose size and brightness corresponds to its mass. Slices from different epochs illustrate how Roman will be able to view the universe across cosmic history. Astronomers will use such observations to piece together how cosmic evolution led to the web-like structure we see today.
This simulation also shows how Roman will help us learn how extremely large structures in the cosmos were constructed over time. For hundreds of millions of years after the universe was born, it was filled with a sea of charged particles that was almost completely uniform. Today, billions of years later, there are galaxies and galaxy clusters glowing in clumps along invisible threads of dark matter that extend hundreds of millions of light-years. Vast “cosmic voids” are found in between all the shining strands.
Astronomers have connected some of the dots between the universe’s early days and today, but it’s been difficult to see the big picture. Roman’s broad view of space will help us quickly see the universe’s web-like structure for the first time. That’s something that would take Hubble or Webb decades to do! Scientists will also use Roman to view different slices of the universe and piece together all the snapshots in time. We’re looking forward to learning how the cosmos grew and developed to its present state and finding clues about its ultimate fate.
This image, containing millions of simulated galaxies strewn across space and time, shows the areas Hubble (white) and Roman (yellow) can capture in a single snapshot. It would take Hubble about 85 years to map the entire region shown in the image at the same depth, but Roman could do it in just 63 days. Roman’s larger view and fast survey speeds will unveil the evolving universe in ways that have never been possible before.
Roman will explore the cosmos as no telescope ever has before, combining a panoramic view of the universe with a vantage point in space. Each picture it sends back will let us see areas that are at least a hundred times larger than our Hubble or James Webb space telescopes can see at one time. Astronomers will study them to learn more about how galaxies were constructed, dark matter, and much more.
The simulations are much more than just pretty pictures – they’re important stepping stones that forecast what we can expect to see with Roman. We’ve never had a view like Roman’s before, so having a preview helps make sure we can make the most of this incredible mission when it launches.
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!d
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