“Nothing is more fairly distributed than common sense: no one thinks he needs more of it than he already has.”
— Rene Descartes, Discourse on the Method
Mustard gas and roses - Slaughter House 5 by Kurt Vonnegut
Hey everyone! The Literary Snob is teaming up with The Happy Bard Candle Co. to do a double giveaway this September. We’re all on the same trivia team in the real world (Sean Bean Lives!) and I absolutely love Happy Bard’s literary inspired candles. They’re about to release their next line of literary candles and one of the new scents will be a fan submission! So we’re holding a contest and double giveaway to find the fairest combo in the land.
Reblog this post with your submission for a literary candle scent. You can send in as many submissions as your heart desires and tag anyone who dreams of being a candle virtuoso. The Happy Bard Candle Co. will pick their favorite submission at the end of the contest, create the candle, and send it to you! Plus I will send the winner one of the newly released Vintage Minis of your choice.
GIVEAWAY RULES
Reblog this post with a book & fragrance combo suggestion
Follow The Happy Bard Candle Co. on either Instagram or Facebook
Follow The Literary Snob on Tumblr
Have fun and be creative!
RULES
There is no limit on submissions, so reblog away! Currently, The Happy Bard Candle Co. cannot ship internationally, so anybody can participate but only those in the U.S. can win. Contest ends Saturday, Sept. 30 at midnight.
We look forward to seeing what everyone comes up with! Plus I might throw in an extra prize for whoever makes me laugh the hardest. Good luck!
Super Blue Blood Moon 2018
Image credit: Chris Voigt
When you text San Francisco Museum of Modern Art how you’re feeling, it responds with a work of art that captures your mood.
GUYS! We live in an amazing world! I just texted the San Francisco Museum of Modern Art, “send me food,” and they sent me a picture of vegetables from their collection. My boyfriend texted them the cactus emoji and they sent back a picture of a cactus. This is blowing my mind!
In Hollywood blockbusters, explosions and eruptions are often among the stars of the show. In space, explosions, eruptions and twinkling of actual stars are a focus for scientists who hope to better understand their births, lives, deaths and how they interact with their surroundings. Spend some of your Fourth of July taking a look at these celestial phenomenon:
Credit: NASA/Chandra X-ray Observatory
This object became a sensation in the astronomical community when a team of researchers pointed at it with our Chandra X-ray Observatory telescope in 1901, noting that it suddenly appeared as one of the brightest stars in the sky for a few days, before gradually fading away in brightness. Today, astronomers cite it as an example of a “classical nova,” an outburst produced by a thermonuclear explosion on the surface of a white dwarf star, the dense remnant of a Sun-like star.
Credit: NASA/Hubble Space Telescope
The brilliant tapestry of young stars flaring to life resemble a glittering fireworks display. The sparkling centerpiece is a giant cluster of about 3,000 stars called Westerlund 2, named for Swedish astronomer Bengt Westerlund who discovered the grouping in the 1960s. The cluster resides in a raucous stellar breeding ground located 20,000 light-years away from Earth in the constellation Carina.
Credit: NASA/THEMIS/Sebastian Saarloos
Sometimes during solar magnetic events, solar explosions hurl clouds of magnetized particles into space. Traveling more than a million miles per hour, these coronal mass ejections, or CMEs, made up of hot material called plasma take up to three days to reach Earth. Spacecraft and satellites in the path of CMEs can experience glitches as these plasma clouds pass by. In near-Earth space, magnetic reconnection incites explosions of energy driving charged solar particles to collide with atoms in Earth’s upper atmosphere. We see these collisions near Earth’s polar regions as the aurora. Three spacecraft from our Time History of Events and Macroscale Interactions during Substorms (THEMIS) mission, observed these outbursts known as substorms.
Credit: NASA/Hubble Space Telescope//ESA/STScI
Every galaxy has a black hole at its center. Usually they are quiet, without gas accretions, like the one in our Milky Way. But if a star creeps too close to the black hole, the gravitational tides can rip away the star’s gaseous matter. Like water spinning around a drain, the gas swirls into a disk around the black hole at such speeds that it heats to millions of degrees. As an inner ring of gas spins into the black hole, gas particles shoot outward from the black hole’s polar regions. Like bullets shot from a rifle, they zoom through the jets at velocities close to the speed of light. Astronomers using our Hubble Space Telescope observed correlations between supermassive black holes and an event similar to tidal disruption, pictured above in the Centaurus A galaxy.
Credit: NASA/Hubble Space Telescope/ESA
Supernovae can occur one of two ways. The first occurs when a white dwarf—the remains of a dead star—passes so close to a living star that its matter leaks into the white dwarf. This causes a catastrophic explosion. However most people understand supernovae as the death of a massive star. When the star runs out of fuel toward the end of its life, the gravity at its heart sucks the surrounding mass into its center. At the turn of the 19th century, the binary star system Eta Carinae was faint and undistinguished. Our Hubble Telescope captured this image of Eta Carinae, binary star system. The larger of the two stars in the Eta Carinae system is a huge and unstable star that is nearing the end of its life, and the event that the 19th century astronomers observed was a stellar near-death experience. Scientists call these outbursts supernova impostor events, because they appear similar to supernovae but stop just short of destroying their star.
Credit: NASA/GSFC/SDO
Extremely energetic objects permeate the universe. But close to home, the Sun produces its own dazzling lightshow, producing the largest explosions in our solar system and driving powerful solar storms.. When solar activity contorts and realigns the Sun’s magnetic fields, vast amounts of energy can be driven into space. This phenomenon can create a sudden flash of light—a solar flare.The above picture features a filament eruption on the Sun, accompanied by solar flares captured by our Solar Dynamics Observatory.
Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com
The future is kelp
The push for renewable energy in the U.S. often focuses on well-established sources of electricity: solar, wind and hydropower. Off the coast of California, a team of researchers is working on what they hope will become an energy source of the future — macroalgae, otherwise known as kelp.
The Pacific Coast is known for its vast kelp forests. It’s one of the fastest-growing plants on Earth, and farming it requires no fertilizer, fresh water, pesticides, or arable land. “It can grow 2 to 3 feet per day,” says Diane Kim, one of the scientists running the kelp research project at the University of Southern California.
Kelp is transformed into biofuel by a process called thermochemical liquefaction. The kelp is dried out, and the salt is washed away. Then it’s turned into bio-oil through a high-temperature, high-pressure conversion process.
Some small companies are growing kelp as a substitute for kale in the U.S., but that’s exactly the problem – very, very few are doing it. Thus, the infrastructure and investment isn’t in place to make other products from kelp, like biofuel.
Photos: Courtesy of David Ginsburg/Wrigley Institute, Monika Evstatieva/NPR (2) and Anjuli Sastry/NPR
Note to self: in order to write, you have to actually do more than stare at a Word document rereading what you’ve already written. For example, maybe typing new words would be a good strategy.
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petition to ban “slideshow” as an article format on the internet
The total solar eclipse which crossed from Alaska to Texas spurred many to make the trip West in 1878. Dr. Henry Draper, a medical doctor and former chair of physiology at New York University, assembled a group who watched the eclipse from the railroad outpost of Rawlins, Wyoming Territory and made some observations.
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Rachel C Lewis | @wnq-quoteoftheday | @wordsnquotes-online
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