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Monday, July 18, 2022

Massive solar flares headed towards Earth! Geomagnetic storm expected to cause chaos - HT Tech

A massive solar flare is expected to cause geomagnetic storms on Earth in the coming days. Will these have a big impact? Know here.

A small part of the Sun has exploded and this massive energy in the form of solar flares are set to impact Earth soon! Solar flares occur due to explosions of electromagnetic energy taking place on the surface of the Sun. “There is a prominence jutting out from the sun's southwestern limb today. It is so big, astronomers are struggling to squeeze it into a single photograph," Space Weather reported. Now, these huge solar flares are making their way to the Earth at mind-numbing speeds.

According to Space Weather, a large and deep canyon of fire erupted on the Sun, which was around 155,000 miles long, and 15,500 miles deep, and it is expected to spark geomagnetic storms on Earth. A geomagnetic storm is a severe disturbance of Earth's magnetosphere that occurs when energy from the solar wind is transmitted very rapidly into the space environment around the earth.

These solar flares are expected to generate a minor G1-class geomagnetic storms possibly on July 20th or 21st. the massive solar particles that generate geomagnetic storms on Earth were hurled into space by an unstable filament of magnetism, which erupted on July 15th, Space Weather mentioned.

Will these geomagnetic storms have any impact on Earth? Generally, some of the geomagnetic storms can cause radio blackouts, even a strong geomagnetic storm can knock out the Internet and the mobile phone connectivity along with the electricity grid. However, physicist Cameron Patterson of Lancaster University mentioned to Express.co.uk that such space weather disruptions can even induce electrical currents that can interfere with operation of signalling systems. For example, turning green signals red when there is no train nearby! “While we usually connect these faults to rain, snow and leaves on the line, you may not have considered that the Sun can also cause railway signals to malfunction," he added. Interference with electrical signals of railway systems can cause horrifying accidents, researchers warned.

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This app compares Hubble and Webb images — the differences are astronomical - knkx.org

NASA released a new photograph of galaxy cluster SMACS 0723 last week which depicts a cluster of galaxies in space invisible to the human eye.

The image was captured by the James Webb Space Telescope, a $10 billion satellite that took decades of research and innovation to develop.

As most of the world collectively gasped, Reddit user pizzafourlife's reaction to the images was: That's it?

An image of the SMACS 0723 galaxy cluster captured by NASA's James Webb Space Telescope.

/ NASA, ESA, CSA, STScI

/

NASA, ESA, CSA, STScI

An image of the SMACS 0723 galaxy cluster captured by NASA's James Webb Space Telescope.

"I was bummed," pizzafourlife wrote. "Without context, [it] is just a space picture."

For thousands of people on Reddit and Twitter, that context was provided by an interactive tool created by John Christensen. The web app aligns images created by the Hubble Space telescope and Webb telescope, allowing users to compare them side by side in real time.

Christensen is a software developer, but he studied physics in college and was fascinated by astronomy growing up.

"I grew up really enjoying looking at the Hubble images," Christensen told NPR over the phone. "I would watch lots of PBS space documentaries with my dad and look at a lot of astrophotography, mostly from Hubble."

When he saw the first of the Webb images released on Monday, Christensen was impressed, but like pizzafourlife, he didn't fully comprehend the improvement between Hubble and Webb without a reference point.

"What's different about it?" he asked about Webb. "Why did we spend so much human engineering effort and time and money to create this thing?"

So he coded the app to answer his questions, and he shared it on Reddit and Twitter, where it went viral.

It reached tens of thousands of people, and got thousands of responses. Christenson said many of the responses expressed the same kind of wonder he felt about the leap from Hubble to Webb.

"I think my favorite responses were people saying they showed this interactive to their kids and got their kids very excited about it," Christenson said. "That's how I ended up going into science, was kind of being inspired by Hubble images."

Even science educator and author Hank Green retweeted Christenson's app.

For Christenson, the comparisons between Hubble and Webb images are baffling.

"[Hubble] has always been super amazing to me," he said. "It's been this, you know, pinnacle of human potential."

"Hubble is extraordinary. And Webb far surpasses that," Christenson added.

Copyright 2022 NPR. To see more, visit https://www.npr.org.

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Sunday, July 17, 2022

NASA says a humongous building-sized asteroid heading for Earth today - HT Tech

A giant asteroid is on the way to Earth today, NASA confirmed. Does it pose any risk to our planet? Know here.

A day after an aiplane-sized asteroid hurtled very close to our planet, there is a new terror on way. Yes, NASA says an asteroid today will get extremely close to Earth. In fact, quite a few asteroids are flying in space and heading towards Earth. NASA warned about this humongous asteroid which is as big as a 50-storey skyscraper or almost double the size of the Statue of Liberty. The asteroid will make its closest approach to Earth today. NASA confirmed that the asteroid will pass near Earth on July 17. This mammoth space rock known as 2022 KY4. Astronomers' eyes are on this asteroid to make sure there is no deviation in its path that may bring it even closer to Earth, or even crash into it.

These giant rocks in space, known as asteroids generally travel around the Sun, but can even change their paths due to the gravitational force of planets and sometimes even collide with them! So does this asteroid pose any risk to the Earth?

Will this Asteroid pose any risk to Earth?

Thankfully, this asteroid will miss Earth, but not by a large margin! According to NASA, this asteroid will get as close to the Earth as about 3.8 million miles or 6.1 million kilometres. For better understanding, know that this is more than 16 times the average distance between Earth and the moon. Well, this is still a larger distance than asteroid 2022 NF, which passed near the Earth on July 7 within just 56,000 miles, around 23 percent of the average distance between Earth and the moon.

Well, how big is this asteroid? NASA says that asteroid 2022 KY4 is around 290 feet or 88 meters in diameter and is travelling at an estimated speed of 16,900 mph. For reference, the Statue of Liberty in London is 151 feet tall. That means, this massive asteroid is even much bigger than the Statue of Liberty! NASA mentioned that this is not the first time when this space rock will make its closest approach towards the Earth. Earlier, asteroid 2022 KY4 made its nearest approaches to our planet, last in 1959 and 1948. According to the pattern, it will not make another close approach to our planet until May 2048.

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SpaceX launched and landed a Falcon 9 rocket on record-tying 13th mission - Space.com

SpaceX launched one of its Falcon 9 rockets for a record-tying 13th time on Sunday morning (July 17), and nailed the landing too.

A Falcon 9 carrying 53 of SpaceX's Starlink internet satellites lifted off at 10:20 a.m. EDT (1420 GMT) on Sunday from Cape Canaveral Space Force Station in Florida. 

It was the 13th launch for this Falcon 9's first stage, tying a rocket reuse record that SpaceX set last month and matched just 10 days ago. The booster also helped loft SpaceX's Demo-2 crewed test flight to the International Space Station, the RADARSAT Constellation Mission, the SXM-7 communications satellite and nine Starlink missions, SpaceX representatives said in a mission description (opens in new tab).

Related: SpaceX's Starlink megaconstellation launches in photos

A Falcon 9 rocket carrying Starlink satellites blasted off on July 17, 2022. (Image credit: SpaceX)

And this booster will probably fly yet again: A little less than nine minutes after liftoff, it came down for a vertical landing on the SpaceX droneship Just Read the Instructions, which was stationed in the Atlantic Ocean off the Florida coast.

The 53 Starlink satellites deployed from the Falcon 9's upper stage about seven minutes later, at 15.5 minutes after liftoff, according to a tweet (opens in new tab) from the company.

The fairing halves that protected the satellites on their ride to orbit made their third flight today, marking the 50th SpaceX mission to use reflown fairing halves, according to the company's mission broadcast. The fairings were also destined to be fished out of the water for use on a future mission.

The first stage of a Falcon 9 rocket touched down on the drone ship Just Read the Instructions in the Atlantic Ocean on July 17, 2022. (Image credit: SpaceX)

Related stories:

Sunday's flight continues a very busy 2022 for SpaceX. Today's flight was the 31st Falcon 9 mission this year, already tying the company's 2021 launch tally.

Starlink is SpaceX's huge constellation of broadband satellites. The company has launched more than 2,800 Starlink spacecraft to low Earth orbit to date, and many more will likely go up in the not-too-distant future: SpaceX has permission to loft 12,000 Starlink satellites, and it has applied for approval to launch 30,000 additional spacecraft on top of that.

Mike Wall is the author of "Out There (opens in new tab)" (Grand Central Publishing, 2018; illustrated by Karl Tate), a book about the search for alien life. Follow him on Twitter @michaeldwall (opens in new tab). Follow us on Twitter @Spacedotcom (opens in new tab) or on Facebook (opens in new tab).  

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Amazing photos of the Buck supermoon of 2022 from around the world - Space.com

(Image credit: Sergei Gapon/Anadolu Agency via Getty Images)

The largest full moon of 2022 put on quite a show for moongazers all over the world Wednesday (July 13).

Known as the Buck Moon, Thunder Moon or Hay Moon, the July full moon appeared big and bright between the constellations of Sagittarius and Capricornus. July's full moon gets its name from the antlers of male deer, or bucks, which experience their most rapid phase of annual growth during the summer months.

This year's Buck Moon is designated as a supermoon because it occurs while Earth's satellite approaches its closest point to Earth (perigee) throughout its slightly elliptical orbit around the planet. 

July's full moon was the third in a series of four back-to-back supermoons this year, spanning from May to August. 

For moongazers around the world, the Buck Moon was an impressive sight, enabling photographers to capture stunning images as the moon made its appearance above natural landscapes and bustling cities alike.

In this image, the Buck Moon can be seen seen above a buck grazing outside the village of Taarbaek, Denmark, some 9 miles (15 kilometers) north of Copenhagen, on July 14, 2022. 

Amateur astronomers planning on photographing the moon can check out our guides on the best cameras for astrophotography and best lenses for astrophotography to get some pointers. Make sure to also brush up on our guide on how to photograph the moon with a camera to get the best pictures you can during your next moongazing session.

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Friday, July 15, 2022

Goodbye, Comet K2! Next stop: closest approach to the sun - Space.com

A megacomet has just passed safely by Earth, but there's still a chance it will grow brighter through the summer as it reaches its closest approach to the sun in December.

Comet C/2017 K2 (PANSTARRS), called K2 for short, made its closest approach to our planet on Thursday (July 14). It passed 168 million miles (270 million kilometers) from Earth (beyond the orbit of Mars).

This distant approach meant that K2 had a bit of a dim showing, despite its sheer size. The megacomet was first spotted in 2017 by the Panoramic Survey Telescope and Rapid Response System (PanSTARRS) in the outer reaches of the solar system.

But there's more to come, as K2 now continues its journey to the sun and will make its closest approach to the star around which it orbits, the so-called perihelion, in December. The comet, which is visible these days by large amateur telescopes, may brighten up in the warmer environment closer to the sun and move into average binocular range if we are lucky.

Related: The massive, strange Comet K2 is touring the solar system, surprising scientists as it goes

The first observations of the comet revealed a potentially large nucleus (or core) and a huge envelope of gas and dust. At that time, the comet was between the orbits of Saturn and Uranus, about 1.49 billion miles (2.4 billion km) from the sun, which is about 16 times farther away than Earth is from the sun. The fact that K2 already sported the gaseous coma surprised scientists, as this deep in the solar system, temperatures are so cold that comets, mostly made of water ice, are supposed to be as still and dead as rocks.

Scientists still debate how big the comet is. The Canada–France–Hawaii Telescope (CFHT) suggested K2's nucleus could be between 18 and 100 miles (30 to 160 km) wide,  but data from the Hubble Space Telescope showed it might be only 11 miles (18 km) wide.

Related stories:

Comet activity is always tough to predict, as we cannot say exactly how the sun's heat will affect K2 or whether it will survive the passage at all. Now poised at about magnitude 7 or 8, the comet should remain viewable in telescopes through at least the rest of the summer. Naked-eye visibility is magnitude 6, by comparison.

Perihelion will happen on Dec. 19 and so far, the comet has been getting brighter as it moves toward the inner solar system. So we can only hope that in the coming weeks, the comet will get a little brighter so that more people will be able to see it beyond the pictures coming in from larger observatories.

Perihelion will also be distant, as K2 will be about 1.8 astronomical units from the sun (nearly double the distance between Earth and the sun), when it makes the closest approach.

Follow Elizabeth Howell on Twitter @howellspace (opens in new tab). Follow us on Twitter @Spacedotcom (opens in new tab) and on Facebook (opens in new tab)

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Wednesday, July 13, 2022

Astronomers detect a radio “heartbeat” billions of light-years from Earth - MIT News

Astronomers at MIT and universities across Canada and the United States have detected a strange and persistent radio signal from a far-off galaxy that appears to be flashing with surprising regularity.

The signal is classified as a fast radio burst, or FRB — an intensely strong burst of radio waves of unknown astrophysical origin, that typically lasts for a few milliseconds at most. However, this new signal persists for up to three seconds, about 1,000 times longer than the average FRB. Within this window, the team detected bursts of radio waves that repeat every 0.2 seconds in a clear periodic pattern, similar to a beating heart.

The researchers have labeled the signal FRB 20191221A, and it is currently the longest-lasting FRB, with the clearest periodic pattern, detected to date.

The source of the signal lies in a distant galaxy, several billion light-years from Earth. Exactly what that source might be remains a mystery, though astronomers suspect the signal could emanate from either a radio pulsar or a magnetar, both of which are types of neutron stars — extremely dense, rapidly spinning collapsed cores of giant stars.

“There are not many things in the universe that emit strictly periodic signals,” says Daniele Michilli, a postdoc in MIT’s Kavli Institute for Astrophysics and Space Research. “Examples that we know of in our own galaxy are radio pulsars and magnetars, which rotate and produce a beamed emission similar to a lighthouse. And we think this new signal could be a magnetar or pulsar on steroids.”

The team hopes to detect more periodic signals from this source, which could then be used as an astrophysical clock. For instance, the frequency of the bursts, and how they change as the source moves away from Earth, could be used to measure the rate at which the universe is expanding.

The discovery is reported today in the journal Nature, and is authored by members of the CHIME/FRB Collaboration, including MIT co-authors Calvin Leung, Juan Mena-Parra, Kaitlyn Shin, and Kiyoshi Masui at MIT, along with Michilli, who led the discovery first as a researcher at McGill University, and then as a postdoc at MIT.

“Boom, boom, boom”

Since the first FRB was discovered in 2007, hundreds of similar radio flashes have been detected across the universe, most recently by the Canadian Hydrogen Intensity Mapping Experiment, or CHIME, an interferometric radio telescope consisting of four large parabolic reflectors that is located at the Dominion Radio Astrophysical Observatory in British Columbia, Canada.

CHIME continuously observes the sky as the Earth rotates, and is designed to pick up radio waves emitted by hydrogen in the very earliest stages of the universe. The telescope also happens to be sensitive to fast radio bursts, and since it began observing the sky in 2018, CHIME has detected hundreds of FRBs emanating from different parts of the sky.

The vast majority of FRBs observed to date are one-offs — ultrabright bursts of radio waves that last for a few milliseconds before blinking off. Recently, researchers discovered the first periodic FRB that appeared to emit a regular pattern of radio waves. This signal consisted of a four-day window of random bursts that then repeated every 16 days. This 16-day cycle indicated a periodic pattern of activity, though the signal of the actual radio bursts was random rather than periodic. 

On Dec. 21, 2019, CHIME picked up a signal of a potential FRB, which immediately drew the attention of Michilli, who was scanning the incoming data.

“It was unusual,” he recalls. “Not only was it very long, lasting about three seconds, but there were periodic peaks that were remarkably precise, emitting every fraction of a second — boom, boom, boom — like a heartbeat. This is the first time the signal itself is periodic.”

Brilliant bursts

In analyzing the pattern of FRB 20191221A’s radio bursts, Michilli and his colleagues found similarities with emissions from radio pulsars and magnetars in our own galaxy. Radio pulsars are neutron stars that emit beams of radio waves, appearing to pulse as the star rotates, while a similar emission is produced by magnetars due to their extreme magnetic fields.

The main difference between the new signal and radio emissions from our own galactic pulsars and magnetars is that FRB 20191221A appears to be more than a million times brighter. Michilli says the luminous flashes may originate from a distant radio pulsar or magnetar that is normally less bright as it rotates and for some unknown reason ejected a train of brilliant bursts, in a rare three-second window that CHIME was luckily positioned to catch.

“CHIME has now detected many FRBs with different properties,” Michilli says. “We’ve seen some that live inside clouds that are very turbulent, while others look like they’re in clean environments. From the properties of this new signal, we can say that around this source, there’s a cloud of plasma that must be extremely turbulent.”

The astronomers hope to catch additional bursts from the periodic FRB 20191221A, which can help to refine their understanding of its source, and of neutron stars in general.

“This detection raises the question of what could cause this extreme signal that we’ve never seen before, and how can we use this signal to study the universe,” Michilli says. “Future telescopes promise to discover thousands of FRBs a month, and at that point we may find many more of these periodic signals.”

This research was supported, in part, by the Canada Foundation for Innovation.

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Two meteor showers will peak tonight. How to watch the Southern Delta Aquariids and the Alpha Capricornids. - Yahoo

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