Parker Solar Probe Rockets Toward Sun

NASA’s Parker solar probe rockets toward sun for closest look yet

By Marcia Dunn – The Associated Press – A NASA spacecraft zoomed toward the sun Sunday on an unprecedented quest to get closer to our star than anything ever sent before.

As soon as this fall, the Parker Solar Probe will fly straight through the wispy edges of the sun’s corona, or outer atmosphere, that was visible during last August’s total solar eclipse. It eventually will get within 3.8 million (6 million kilometres) of the surface in the years ahead, staying comfortably cool despite the extreme heat and radiation, and allowing scientists to vicariously explore the sun in a way never before possible.

No wonder scientists consider it the coolest, hottest mission under the sun, and what better day to launch to the sun than Sunday as NASA noted.

“All I can say is, ‘Wow, here we go.’”

“We’re in for some learning over the next several years,” said Eugene Parker, the 91-year-old astrophysicist for whom the spacecraft is named.

Solar encounters

Protected by a revolutionary new carbon heat shield and other high-tech wonders, the spacecraft will zip past Venus in October. That will set up the first solar encounter in November.

Altogether, the Parker probe will make 24 close approaches to the sun on the seven-year, $1.5 billion undertaking.

For the second straight day, thousands of spectators jammed the launch site in the middle of the night as well as surrounding towns, including Parker and his family. He proposed the existence of solar wind – a steady, supersonic stream of particles blasting off the sun – 60 years ago.

It was the first time NASA named a spacecraft after someone still alive, and Parker wasn’t about to let it take off without him. Saturday morning’s launch attempt was foiled by last-minute technical trouble. But Sunday gave way to complete success.

The Delta IV Heavy rocket thundered into the pre-dawn darkness, thrilling onlookers for miles around as it climbed through a clear, star-studded sky. NASA needed the mighty 23-story rocket, plus a third stage, to get the diminutive Parker probe – the size of a small car and well under a ton – racing toward the sun.

From Earth, it is 93 million miles (150 million kilometres) to the sun, and the Parker probe will be within 4 per cent of that distance at its closest. That will be seven times closer than previous spacecraft.

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“Go, baby, go!” project scientist Nicola Fox of Johns Hopkins University shouted at liftoff.

It was the first rocket launch ever witnessed by Parker, professor emeritus at the University of Chicago. He came away impressed, saying it was like looking at the Taj Mahal for years in photos and then beholding “the real thing” in India.

“I really have to turn from biting my nails in getting it launched, to thinking about all the interesting things which I don’t know yet and which will be made clear, I assume, over the next five or six or seven years,” Parker said on NASA TV.

NASA’s science mission chief, Thomas Zurbuchen, was thrilled not only with the launch, but Parker’s presence.

“I’m in awe,” Zurbuchen said. “What a milestone. Also what’s so cool is hanging out with Parker during all this and seeing his emotion, too.”

Parker, the probe, will start shattering records this fall. On its very first brush with the sun, it will come within 15.5 million miles (25 million kilometres), easily beating the current record of 27 million miles (43 million kilometres) set by NASA’s Helios 2 spacecraft in 1976. Zurbuchen expects the data from even this early stage to yield top science papers.

By the time Parker gets to its 22nd, 23rd and 24th orbits of the sun in 2024 and 2025, it will be even deeper into the corona and travelling at a record-breaking 430,000 mph (690,000 kilometres per hour).

Nothing from Planet Earth has ever hit that kind of speed.

Even Fox has difficulty comprehending the mission’s derring-do.

“To me, it’s still mind-blowing,” she said. “Even I still go, really? We’re doing that?”

Close to the sun

Zurbuchen considers the sun the most important star in our universe – it’s ours, after all – and so this is one of NASA’s big-time strategic missions. By better understanding the sun’s life-giving and sometimes violent nature, Earthlings can better protect satellites and astronauts in orbit, and power grids on the ground, he noted. In today’s tech-dependent society, everyone stands to benefit.

With this first-of-its-kind stellar mission, scientists hope to unlock the many mysteries of the sun, a commonplace yellow dwarf star around 4.5 billion years old. Among the puzzlers: Why is the corona hundreds of times hotter than the surface of the sun and why is the sun’s atmosphere continually expanding and accelerating, as Parker accurately predicted in 1958?

“The only way we can do that is to finally go up and touch the sun,” Fox said.

“We’ve looked at it. We’ve studied it from missions that are close in, even as close as the planet Mercury. But we have to go there.”

The spacecraft’s heat shield will serve as an umbrella, shading the science instruments during the close, critical solar junctures. Sensors on the spacecraft will make certain the heat shield faces the sun at the right times. If there’s any tilting, the spacecraft will correct itself so nothing gets fried. With a communication lag time of 16 minutes, the spacecraft must fend for itself at the sun. The Johns Hopkins flight controllers in Laurel, Maryland, will be too far away to help.

A mission to get close up and personal with our star has been on NASA’s books since 1958. The trick was making the spacecraft small, compact and light enough to travel at incredible speeds, while surviving the sun’s punishing environment and the extreme change in temperature when the spacecraft is out near Venus.

“We’ve had to wait so long for our technology to catch up with our dreams,” Fox said. “It’s incredible to be standing here today.”

More than 1 million names are aboard the spacecraft, submitted last spring by space enthusiasts, as well as photos of Parker, the man, and a copy of his 1958 landmark paper on solar wind.

“I’ll bet you 10 bucks it works,” Parker said.

Perseid Meteor Shower 2018

When, Where & How to See It This Weekend

By Sarah Lewin Space.com – According to NASA meteor expert Bill Cooke, the Perseids are perhaps the most popular meteor shower of the year; and in 2018, they’ll be the best shower of the year. During the Perseids’ peak this weekend, spectators should see about 60-70 meteors per hour, but in outburst years (such as in 2016) the rate can be between 150-200 meteors an hour. The meteor shower’s peak will be visible both the nights of Aug. 11-12 and Aug. 12-13, Cooke said, but he’s inclined this year to lean toward the night of Aug. 12-13 for the better show. (Both, however, should be spectacular.)

“This year the moon will be near new moon, it will be a crescent, which means it will set before the Perseid show gets underway after midnight,” Cooke told Space.com. “The moon is very favorable for the Perseids this year, and that’ll make the Perseids probably the best shower of 2018 for people who want to go out and view it.” The Perseids are rich in fireballs, so the show should be even better.

To best see the Perseids, go to the darkest possible location and lean back to observe as much sky as possible directly above you. The rates of Perseids visible will increase from about 10 p.m. in your local time zone all the way through dawn, so the later you can look the better. Earlier in the night there will be fewer meteors, but the ones that appear will have longer tails as they graze along more of the atmosphere. Those in southern latitudes can look toward the northeast to see more meteors.

The 2018 Perseid meteor shower peaks overnight on Aug. 12-13, 2018. This sky map shows where to look at 11 p.m. local time this weekend.
The 2018 Perseid meteor shower peaks overnight on Aug. 12-13, 2018. This sky map shows where to look at 11 p.m. local time this weekend. Credit: Sky & Telescope Magazine

Skywatchers looking out for the Perseids should also be able to see Mars (visible until about 4 a.m. in your local time zone) and Saturn (visible until about 2 a.m. local time); Venus and Jupiter both set before the Perseids are best viewed (9:30 p.m. and 11 p.m., respectively).

Earth will pass through the path of Comet Swift-Tuttle from July 17 to Aug. 24, with the shower’s peak — when Earth passes through the densest, dustiest area — occurring on Aug. 12. That means you’ll see the most meteors in the shortest amount of time near that peak, but you can still catch some action from the famed meteor shower before or after that point.

You can see the Perseid meteor shower best in the Northern Hemisphere and down to the mid-southern latitudes, and all you need to catch the show is darkness, somewhere comfortable to sit and a bit of patience.

What causes the Perseids?

Comet Swift-Tuttle is the largest object known to repeatedly pass by Earth; its nucleus is about 16 miles (26 kilometers) wide. It last passed nearby Earth during its orbit around the sun in 1992, and the next time will be in 2126. But it won’t be forgotten in the meantime, because Earth passes through the dust and debris it leaves behind every year, creating the annual Perseid meteor shower.

The annual Perseid meteor shower occurs when the Earth passes through a stream of dust from the Comet Swift-Tuttle, as shown in this orbit diagram.
The annual Perseid meteor shower occurs when the Earth passes through a stream of dust from the Comet Swift-Tuttle, as shown in this orbit diagram. Credit: Sky & Telescope Magazine

When you sit back to watch a meteor shower, you’re actually seeing the pieces of comet debris heat up as they enter the atmosphere and burn up in a bright burst of light, streaking a vivid path across the sky as they travel at 37 miles (59 km) per second. When they’re in space, the pieces of debris are called “meteoroids,” but when they reach Earth’s atmosphere, they’re designated as “meteors.” If a piece makes it all the way down to Earth without burning up, it graduates to “meteorite.” Most of the meteors in the Perseids are much too small for that; they’re about the size of a grain of sand.

What do you need to see them?

The key to seeing a meteor shower is “to take in as much sky as possible,” Cooke said. Go to a dark area, in the suburbs or countryside, and prepare to sit outside for a few hours. It takes about 30 minutes for your eyes to adjust to the dark, and the longer you wait outside, the more you’ll see. A rate of 60-70 meteors per hour, for instance, means around one meteor per minute, including faint streaks along with bright, fireball-generating ones.

Some skywatchers plan to camp out to see the Perseid meteor shower, but at the very least, viewers should bring something comfortable to sit on, some snacks and some bug spray. Then, just relax and look upward for the celestial show.

ARISS Packet Radio System Expected to be Back Late this Year

ARRL – The currently silent packet radio system on the International Space Station could be back on the air by year’s end.

Amateur Radio on the International Space Station (ARISS) hardware team members have located an original duplicate of the packet module that had been in use on the International Space Station (ISS) before failing more than a year ago after 17 years of service. With a new battery installed, the unit was tested and found to be functioning. The ARISS packet system in the space station’s Columbus module, operating on 145.825 MHz, quit last July after first experiencing some problems. All necessary paperwork has been completed to manifest the packet module on the Progress 71P spacecraft launch now set for Halloween, with docking on November 2.

“Installation date will depend on the crew’s busy schedule, but ARISS hopes packet can be online again by the end of November 2018,” ARISS said this week in a news release. ARISS said it’s heard from “many hams” who have been asking when the packet system will be back on the air.

When the ARISS packet module aboard ISS died in last year, the ARISS hardware team already was overburdened with the design and safety certification of the new interoperable radio system ARISS has been developing that’s set for launch next year. The team did attempt some basic troubleshooting of the old packet module but was unable to revive it and decided instead to dedicate all of its time to the new replacement radio system, including packet capability.

ARISS Packet Radio System Expected to be Back Late this Year

Early this year, thermal testing of the first flight-identical power supply for the new comprehensive radio system showed that some changes to air flow were needed. This change would delay launch of the new radio equipment from late 2018 to early 2019.