I'm taking a class on Plato's Republic next quarter and you can guarantee I am bringing this up on the first day!
I LEARNED RECENTLY THAT PLATO WON THE GOLD MEDAL IN THE OLYMPICS FOR WRESTLING THREE TIMES. THIS PUTS A NEW PERSPECTIVE ON THINGS. I ALWAYS IMAGINED PLATO TO BE FRAIL AND MISSHAPEN BUT HE MUST HAVE BEEN FRICKEN RIPPED. I WONDER IF ARISTOTLE EVER FELT ANXIETY ABOUT GETTING PHYSICALLY (I.E. NOT JUST METAPHYSICALLY) DISMANTLED BY PLATO. PLATO WAS PROBABLY PISSED OFF BY AT LEAST A HANDFUL OF QUESTIONS ARISTOTLE ASKED HIM. ARISTOTLE WAS A LITERAL GENIUS TOO. IMAGINE PLATO LECTURING AND WRITING ON A BLACKBOARD AND ARISTOTLE THROWING A COMMENT OUT THERE ABOUT SOME COMPLEX MISSTEP IN PLATO’S LOGIC AND PLATO’S CHALK JUST SNAPS AND ARISTOTLE’S TESTICLES SUCK WAY BACK UP TO WHERE THEY DROPPED FROM, THEN PLATO IN A BLUR APPEARS BESIDE ARISTOTLE SITTING AT HIS DESK AND HE PICKS HIM UP AND SUPLEXES HIS MACEDONIAN ASS.
In school we learn that mistakes are bad, and we are punished for making them. Yet, if you look at the way humans are designed to learn, we learn by making mistakes. We learn to walk by falling down. If we never fell down, we would never walk.
Robert Kiyosaki, Rich Dad, Poor Dad (via inspirededucator)
It’s that time of year <3
Black women with afros
Black women with dread locks
Black women with dyed hair
Black women with natural hair
Black women with relaxed hair
Black women with weaves
Black women with hair
Black women without hair
Black women
credit: onepuffin
Last weekend, I published my first piece in a weekly newsletter I'm starting called "Climate Chronicle." This first letter is intended to serve as a reminder of the urgency of immediate action on climate change, an introduction to the concept behind this newsletter, and a review of the book The Future We Choose--which inspired this periodical. I hope you'll take the time to give it a read, let me know what you think, and subscribe to the newsletter to join me on this journey of chronicling the climate crisis as we seek to stop it.
I have this planner with these absolutely ridiculous pages with like “motivational” quotes on them that are just these bullshit things like “Let your heart sing” and “Always believe in your dreams”
and like that’s always struck me as such meaningless bullshit, I’ve always hated those. They’ve never had that element that truly motivates me.
Our Spitzer Space Telescope has revealed the first known system of seven Earth-size planets around a single star. Three of these planets are firmly located in an area called the habitable zone, where liquid water is most likely to exist on a rocky planet.
This exoplanet system is called TRAPPIST-1, named for The Transiting Planets and Planetesimals Small Telescope (TRAPPIST) in Chile. In May 2016, researchers using TRAPPIST announced they had discovered three planets in the system.
Assisted by several ground-based telescopes, Spitzer confirmed the existence of two of these planets and discovered five additional ones, increasing the number of known planets in the system to seven.
This is the FIRST time three terrestrial planets have been found in the habitable zone of a star, and this is the FIRST time we have been able to measure both the masses and the radius for habitable zone Earth-sized planets.
All of these seven planets could have liquid water, key to life as we know it, under the right atmospheric conditions, but the chances are highest with the three in the habitable zone.
At about 40 light-years (235 trillion miles) from Earth, the system of planets is relatively close to us, in the constellation Aquarius. Because they are located outside of our solar system, these planets are scientifically known as exoplanets. To clarify, exoplanets are planets outside our solar system that orbit a sun-like star.
In this animation, you can see the planets orbiting the star, with the green area representing the famous habitable zone, defined as the range of distance to the star for which an Earth-like planet is the most likely to harbor abundant liquid water on its surface. Planets e, f and g fall in the habitable zone of the star.
Using Spitzer data, the team precisely measured the sizes of the seven planets and developed first estimates of the masses of six of them. The mass of the seventh and farthest exoplanet has not yet been estimated.
For comparison…if our sun was the size of a basketball, the TRAPPIST-1 star would be the size of a golf ball.
Based on their densities, all of the TRAPPIST-1 planets are likely to be rocky. Further observations will not only help determine whether they are rich in water, but also possibly reveal whether any could have liquid water on their surfaces.
The sun at the center of this system is classified as an ultra-cool dwarf and is so cool that liquid water could survive on planets orbiting very close to it, closer than is possible on planets in our solar system. All seven of the TRAPPIST-1 planetary orbits are closer to their host star than Mercury is to our sun.
The planets also are very close to each other. How close? Well, if a person was standing on one of the planet’s surface, they could gaze up and potentially see geological features or clouds of neighboring worlds, which would sometimes appear larger than the moon in Earth’s sky.
The planets may also be tidally-locked to their star, which means the same side of the planet is always facing the star, therefore each side is either perpetual day or night. This could mean they have weather patterns totally unlike those on Earth, such as strong wind blowing from the day side to the night side, and extreme temperature changes.
Because most TRAPPIST-1 planets are likely to be rocky, and they are very close to one another, scientists view the Galilean moons of Jupiter – lo, Europa, Callisto, Ganymede – as good comparisons in our solar system. All of these moons are also tidally locked to Jupiter. The TRAPPIST-1 star is only slightly wider than Jupiter, yet much warmer.
How Did the Spitzer Space Telescope Detect this System?
Spitzer, an infrared telescope that trails Earth as it orbits the sun, was well-suited for studying TRAPPIST-1 because the star glows brightest in infrared light, whose wavelengths are longer than the eye can see. Spitzer is uniquely positioned in its orbit to observe enough crossing (aka transits) of the planets in front of the host star to reveal the complex architecture of the system.
Every time a planet passes by, or transits, a star, it blocks out some light. Spitzer measured the dips in light and based on how big the dip, you can determine the size of the planet. The timing of the transits tells you how long it takes for the planet to orbit the star.
The TRAPPIST-1 system provides one of the best opportunities in the next decade to study the atmospheres around Earth-size planets. Spitzer, Hubble and Kepler will help astronomers plan for follow-up studies using our upcoming James Webb Space Telescope, launching in 2018. With much greater sensitivity, Webb will be able to detect the chemical fingerprints of water, methane, oxygen, ozone and other components of a planet’s atmosphere.
At 40 light-years away, humans won’t be visiting this system in person anytime soon…that said…this poster can help us imagine what it would be like:
Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com
Climate Justice Organizer | Dark Academia Enthusiast | Writer
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