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NASA’s Parker Solar Probe is About to Lift Off
NASA - Parker Solar Probe Mission patch. Aug. 9, 2018 At 3:33 a.m. EDT on Aug. 11, while most of the U.S. is asleep, NASA’s Kennedy Space Center in Florida will be abuzz with excitement. At that moment, NASA’s Parker Solar Probe, the agency’s historic mission to touch the Sun, will have its first opportunity to lift off. Launching from Cape Canaveral Air Force Station in Florida, Parker Solar Probe will make its journey all the way to the Sun’s atmosphere, or corona — closer to the Sun than any spacecraft in history.
Image above: NASA’s Parker Solar Probe inside one half of its 62.7-foot-tall fairing. Image Credits: NASA/Johns Hopkins APL/Ed Whitman. “Eight long years of hard work by countless engineers and scientists is finally paying off,” said Adam Szabo, the mission scientist for Parker Solar Probe at NASA’s Goddard Space Flight Center in Greenbelt, Maryland. Nestled atop a United Launch Alliance Delta IV Heavy — one of the world’s most powerful rockets — with a third stage added, Parker Solar Probe will blast off toward the Sun with a whopping 55 times more energy than is required to reach Mars. About the size of a small car, it weighs a mere 1,400 pounds. “That’s a relatively light spacecraft,” said Andy Driesman, project manager for the mission at the Johns Hopkins Applied Physics Lab. “And it needs to be, because it takes an immense amount of energy to get to our final orbit around the Sun.” Zooming through space in a highly elliptical orbit, Parker Solar Probe will reach speeds up to 430,000 miles per hour — fast enough to get from Philadelphia to Washington, D.C., in a second — setting the record for the fastest spacecraft in history. During its nominal mission lifetime of just under 7 years, Parker Solar Probe will complete 24 orbits of the Sun — reaching within 3.8 million miles of the Sun’s surface at closest approach. “We’ll be going where no spacecraft has dared go before — within the corona of a star,” said project scientist Nicky Fox of APL. “With each orbit, we’ll be seeing new regions of the Sun’s atmosphere and learning things about stellar mechanics that we’ve wanted to explore for decades.” But getting so close to the Sun requires slowing down — for which Parker will use the gravity of our neighbor planet, Venus.
Animation above: Parker uses a highly elliptical orbit with Venus gravity assists to get closer to the Sun. Animation Credits: NASA/JPL/WISPR Team. “Parker Solar Probe uses Venus to adjust its course and slow down in order to put the spacecraft on the best trajectory,” said Driesman. “We will fly by Venus seven times throughout the mission. Each time we fly by we get closer and closer to the Sun.” In an orbit this close to the Sun, the real challenge is to keep the spacecraft from burning up. “NASA was planning to send a mission to the solar corona for decades, however, we did not have the technology that could protect a spacecraft and its instruments from the heat,” said Szabo. “Recent advances in materials science gave us the material to fashion a heat shield in front of the spacecraft not only to withstand the extreme heat of the Sun, but to remain cool on the backside.” The heat shield is made of a 4.5-inch thick carbon composite foam material between two carbon fiber face sheets. While the Sun-facing side simmers at 2,500 degrees Fahrenheit, behind the shield the spacecraft will be a cozy 85 degrees Fahrenheit. Parker Solar Probe is also the first NASA mission to be named after a living individual: Dr. Eugene Parker, famed solar physicist who in 1958 first predicted the existence of the solar wind, the stream of charged particles and magnetic fields that flow continuously from the Sun, bathing Earth. The spacecraft’s path through the corona allows it to observe the acceleration of the very solar wind that Parker predicted, right as it makes a critical transition from slower than the speed of sound to faster than it.
Image above: An illustration of Parker Solar Probe approaching the Sun. Image Credits: NASA/Johns Hopkins APL/Steve Gribben. The corona is also where the solar material is heated to millions of degrees and where the most extreme events on the Sun occur, such as solar flares and coronal mass ejections — accelerating particles to a fraction of the speed of light. These explosions create space weather events that can pummel Earth with high energy particles, endangering astronauts, interfering with GPS and communications satellites and, at their worst, disrupting our power grid. This will be the first time that solar scientists can see the objects of their study up close and personal. “All of our data on the corona so far have been remote,” said Nicholeen Viall, solar physicist at Goddard. “We have been very creative to get as much as we can out of our data, but there is nothing like actually sticking a probe in the corona to see what’s happening there.” And scientists aren’t the only ones along for the adventure — the spacecraft holds a microchip carrying the names of more than 1.1 million participants who signed up to send their name to the Sun. Sometime between Aug. 11 and 23, the close of the launch period, these names and 1,400 pounds of solar protection and science equipment will begin their journey to the center of our solar system.
Animation above: Parker Solar Probe will travel closer to the Sun than any spacecraft before it. Animation Credit: NASA/Johns Hopkins APL. Three months later, Parker Solar Probe will reach its first close approach of the Sun in November 2018, and will send the data back in December. “For scientists like myself, the reward of the long, hard work will be the unique set of measurements returned by Parker,” said Szabo. “The solar corona is one of the last places in the solar system where no spacecraft has visited before. It gives me the sense of excitement of an explorer.” Stay tuned — Parker is about to take flight. Related article: New Views of Sun: 2 Missions Will Go Closer to Our Star Than Ever Before https://orbiterchspacenews.blogspot.com/2018/05/new-views-of-sun-2-missions-will-go.html Related links: Parker Solar Probe: https://www.nasa.gov/solarprobe Why Won’t Parker Solar Probe Melt?: https://www.nasa.gov/feature/goddard/2018/traveling-to-the-sun-why-won-t-parker-solar-probe-melt Parker Solar Probe and the Birth of the Solar Wind: https://www.nasa.gov/feature/goddard/2018/parker-solar-probe-and-the-birth-of-the-solar-wind The Curious Case of the Sun’s Hot Corona: https://www.nasa.gov/feature/goddard/2018/nasa-s-parker-solar-probe-and-the-curious-case-of-the-hot-corona Images (mentioned), Animation (mentioned), Text, Credits: NASA/Rob Garner/Goddard Space Flight Center, by Miles Hatfield. Greetings, Orbiter.ch Full article
Lucy Liu, 1999
Japan 2018 by Alex Penfold Via Flickr: A few photos that never made it onto Flickr.
this is the most powerful image on the internet.. reblog to join the circle
Reblog to destroy all evil energies in your life
Read this craigslist ad for a 1999 toyota corolla.
@toyota-senpai you absolutely 100% need to turn the audio on.
It’s a brilliant car really.
@wildedoesntblog !
my type of public transportation
“Why were you late in today?”
“Oh, I got tied up on the subway…”
I was always 50/50 on whether to reblog this but the last comment pushed it to like 95/5 in favor.
“What’s our stop?”
“You’ll get off when I tell you to.”
you people are the most fucking exhausting i swear it
Brúarfoss Brekkuskógur, Iceland
by Sven Broeckx
when ya girl come home drunk af lookin for ya dick
😂😂😂😂
The host at our Airbnb has the most talkative cat.
That is the host
this is the best video i’ve seen all month
Mood
this is the best video i’ve seen all month
Mood
Hi. My name is Dakota Crane. I design psychic machinery, drawings which function as two-dimensional slices of higher-dimensional sigilic constructs meant for direct interaction with the viewer via the gnostic state. These psychotronic machines are engineered to explore and transmit facets of occult currents. Each piece has specific functions but all are networked and further the goal of immanentization. You can view more of my work at http://dispersionarray.blogspot.com
Thanks for your time! This seems like a cool project.
High Above Jupiter’s Clouds
NASA - JUNO Mission logo. Jan. 5, 2018
NASA’s Juno spacecraft was a little more than one Earth diameter from Jupiter when it captured this mind-bending, color-enhanced view of the planet’s tumultuous atmosphere. Jupiter completely fills the image, with only a hint of the terminator (where daylight fades to night) in the upper right corner, and no visible limb (the curved edge of the planet). Juno took this image of colorful, turbulent clouds in Jupiter’s northern hemisphere on Dec. 16, 2017 at 9:43 a.m. PST (12:43 p.m. EST) from 8,292 miles (13,345 kilometers) above the tops of Jupiter’s clouds, at a latitude of 48.9 degrees. The spatial scale in this image is 5.8 miles/pixel (9.3 kilometers/pixel). Citizen scientists Gerald Eichstädt and Seán Doran processed this image using data from the JunoCam imager. JunoCam’s raw images are available for the public to peruse and process into image products at: http://www.missionjuno.swri.edu/junocam More information about Juno is at: https://www.nasa.gov/juno and http://missionjuno.swri.edu Image, Text, Credits: NASA/Tony Greicius/JPL-Caltech/SwRI/MSSS/Gerald Eichstädt/Seán Doran. Greetings, Orbiter.ch Full article