10 Interesting Behind-The-Scenes Facts From The Netflix Space Drama Away – Forbes

The Hilary Swank-helmed drama 'Away' premieres globally on Netflix September 4.

Did you ever have dreams of becoming an astronaut? Well, Netflix NFLX has a new drama premiering globally September 4 that will allow you to vicariously join an international mission to Mars. The 10-episode series Away will keep you hooked from start to finish. Its an emotional and exciting ride!

Hilary Swank shines as Commander Emma Green, an American astronaut leading an international crew on a first-of-its kind mission. Josh Charles plays her husband Matt, who stays home to take care of their teenage daughter, Alexis (Talitha Bateman). Rounding out the international crew are Ato Essandoh as Kwesi, Mark Ivanir as Misha, Vivian Wu as Lu and Ray Panthaki as Ram. From different corners of the globe, the team must work together under extreme stress to save themselves and the mission at hand.

As fascinating as the plots main storyline, a three-year first-of-its-kind mission to Mars, are some behind-the-scenes facts, as well as things that happen to the human body during space travel.

L-R: Vivian Wu, MarkIvanir, Hilary Swank, Ray Panthaki and Ato Essandoh.

1.Like other hit Netflix series, such as last years Unbelievable, the new 10-episode drama Away was inspired by an article. In this case, the Swank-helmed series about an international three-year mission to Mars was loosely based on a magazine article of the same name written by journalist Chris Jones for Esquire. Jones then joined the shows production team as a member of the writing staff.

2.One question many fans will be apt to ask is how they filmed the no-gravity scenes. There is gravity in the lower living quarters of the spaceship but not in the upper areas, nor outside the spacecraft. The answer is in whats called wire work. Mark Ivanir, who plays Russian astronaut Misha Popov, had a bit of an advantage here or, as he says, a secret weapon. When he initially arrived for the casts astronaut training bootcamp, his background as a circus performer gave him a leg up. He admits that by the second day, as the rest of the cast was adjusting to the wires, he was doing backflips.

3.As if the physicality of the wire work wasnt enough, it also led to one of the most challenging aspects of filming for Swank, which was how to talk in space. She says that one of the most trying parts of these scenes for the cast was learning to slow body movements down while not altering the speed of their words. Swank described that when your body is moving slowly, the inclination is to also slow your words down in a way similar to speaking in slow motion. This is not how astronauts speak in space and she compared it to tapping your head with one hand while simultaneously rubbing your stomach with the other.

4.The food in space has improved over the years and can now actually be considered cuisine. Over the course of a three-year mission to Mars, the astronauts would require an incredible 24,000 pounds of food. Its been reported that famous chef Rachael Ray prepared Swedish meatballs, Thai chicken and vegetable curry for the crew of space shuttle Discovery in December 2006. The shows production designer, David Sandefur, said he took the volume of food storage into account when designing the ship and he used moveable racks that could be reconfigured depending on the need for space. Sandefur and his team also completed extensive research of recent and upcoming designs of command modules from the Orion mission to Space X to ensure every detail was just right when designing the shows spaceship.

5.The Obamas played a role in Away, whether they knew it or not. When thinking about the relationship dynamic between Emma and Matt, the writers drew inspiration from a very famous couple. Showrunner Jessica Goldberg says the powerful relationship between President Obama and Michelle Obama was top of mind in the writers room.

6.Space travel does some very odd things to the human body. For instance, in one scene a character is extremely concerned when a large chunk of his foot falls off. This is a brutal reality that real-life astronauts really do have to be concerned about. After just one month of being in orbit, astronauts begin shedding large quantities of skin from their soles, mainly consisting of the calluses that have built-up over time. One astronaut was reported to have called Mission Control when a sizable wedge of his heel floated away.

7.Another interesting fact about the human body and space travel is that some astronauts actually grow taller in space. According to NASA, astronauts have been known to grow up to two inches taller in space due to the lack of gravity compressing the vertebrae.

8. Designing the space suits for the show was a very detail-oriented job. Costume Designer Kimberly Adams says that one of the most time-consuming elements for the costume department and the production design team was designing the astronaut patches because in the world of NASA, the mission patches are a huge deal and are extremely intricate in design. Each crew that goes up on various missions has a say in the design of their patches. Adams, who previously designed spacesuits when working on Stranger Things, as well as the Brendan Fraser and Alicia Silverstone 1999 movie Blast From the Past, adds that shes never created suits like the ones worn in Away. With these, the challenge was coming up with the practicality of what could be real in a near-future reality.

9.Real-life astronauts also came into play for the show. Former NASA astronaut and consultant Mike Massimino has a cameo playing himself in the series. He appears in the first episode in a scene where hes being interviewed about the mission. And, astronaut Peggy Whitson provided loose inspiration for Swanks character. Whitson commanded nine missions to space and when Swank called her to discuss her experiences, Swank learned Whitson is from the same town as her parents. Swank also admits that at five-years-old, long before she had dreams of becoming an actor, she had dreams of becoming an astronaut.

10. Two members of the cast knew as much as their characters. Charles plays Matt, who is much more than the husband of an astronaut and stay-at-home-dad. Hes also a NASA engineer and a composer and musician. Charles plays guitar in real life but he learned to also play the piano for the role. He had no prior experience but learned enough to make a scene work in the first episode. He initially aimed to learn to play well enough to fake it but he actually ended up playing the piano in the scene. Essandoh, who plays the missions botanist Dr. Kwesi Weisberg-Abban, also did double-duty in Away. Hes not only a brilliant actor but also has a bachelors degree in chemical engineering from Cornell University.

Hilary Swank stars as Commander Emma Green in the Netflix drama 'Away'.

Rounding out the cast are Adam Irigoyen, Monique Gabriela Curnen, Fiona Fu and Felicia Patti. The series was created by Andrew Hinderaker, who also executive produces alongside Goldberg and Swank, Jason Katims, Matt Reeves, Edward Zwick, Adam Kassan and Jeni Mulein.

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10 Interesting Behind-The-Scenes Facts From The Netflix Space Drama Away - Forbes

The NASA Innovative Advanced Concepts Is Funding Some Out of This World Ideas – Interesting Engineering

We have talked extensively about how technology and science fiction parallel each other, with these impressive fictional engineering feats making them into our reality. The NASA Innovative Advanced Concepts Program is the coolest program that you have never heard of. The collaborative group funds ideas that sound like something directly out of your favorite film. For the uninitiated, the NASA Innovative Advanced Concepts (NIAC) Program is a visionary and far-reaching aerospace program with the ambitious but straightforward aim of finding projects that could change almost every possible aspect of space travel.

Though it is a bit of a grim outlook, the late English theoretical physicist, cosmologist, and author Stephen Hawking famously said that humanity must find a new planet to live on within 1,000 years or perish. In short, becoming an interplanetary species is crucial to our survival. "Although the chance of a disaster to planet Earth in a given year may be quite low, it adds up over time, and becomes a near certainty in the next 1,000 or 10,000 years," Stephen Hawking told listeners at the 2016 Oxford University Union.

"By that time we should have spread out into space, and to other stars, so a disaster on Earth would not mean the end of the human race." For this to be possible, humans need to answer two questions, where would we go and how would we get there?

Due to current technological constraints, our answers to these questions have been limited. However, do not lose hope. Public and private institutions worldwide, most famously Elon Musk's SpaceX, are racing to solve this problem. Even more so, individuals in all fields are taking things into their own hands, working hard on projects that could very literally change the course of humanity.

As previously mentioned, the NIAC program nurtures visionary ideas that could transform future NASA missions and the course of space travel. They look to fund ideas that often seem grandiose and overly ambitious, solutions that could provide radically better or entirely new aerospace concepts. Partnering with entrepreneurs and innovators, the program looks for these innovations in diverse and non-traditional sources. As the NIAC team has described, "They study innovative, technically credible, advanced concepts that could one day change the possible in aerospace." The NIAC Program funds these ideas helping innovators refine concepts, properly define, and inevitably bring them to fruition, depending on their feasibility.

Here, we will look at some of the most out-of-this-world ideas that have been awarded Phase I and Phase II funding. If you have an idea that the NIAC could be interested in, be sure to apply and submit your ideas here.

Source: NASA

As we have previously discussed, Venus is a viable candidate for a future human habitat. Of course, you would want to avoid the surface of the planet at any cost. However, higher up in the atmosphere, things are relatively pleasant; some could even argue better than Mars. But, to get to the neighboring planet, we need to understand its environment. A team at the State University of New York at Buffalo has proposed BREEZE. Standing for Bio-inspired Ray for Extreme Environments and Zonal Exploration, these inflatable structures could be the key to understanding the Venus atmosphere.

The proposed inflatable solar-powered structures take their inspiration directly from biology. Hovering at approximately 50 km/h above the surface of Venus, these inflatable structures could be used to collect mountains of atmospheric data, track weather patterns, atmospheric constituents, and active volcanic investigations. BREEZE would include a host of technologies that could make this possible, including a mass spectrometer, nephelometer, visible and near-infrared high-resolution cameras, magnetometer, an anemometer, and sensors for measuring atmospheric pressure, temperature, and density.

You have probably come across "shapeshifting" robots in a few of your science fiction shows. Those shapeshifting robots are changing to avoid human detection. The shapeshifters proposed by NASA's Jet Propulsion Laboratory have been created to adapt and explore the harsh multi-terrain environments of planets and moons in our solar systems. The Shapeshifter NASA project proposes robots that are able to travel in an environment and atmosphere. Using a very minimal design, these robots are composed of smaller robot units combining and forming to fit an environment's needs, just like a Transformer. Robots can be aerial or amphibious. These Shapeshifters would be perfect for the exploration of Titan and other habitable bodies on our planet.

The Dual-Use Exoplanet Telescope, or DUET, could help us better understand planetary systems outside of our solar system. This new telescope design has the unique ability to detect exoplanets both indirectly (with radial velocity and astrometry techniques as well as directly with advanced spectroscopy). Even more impressive, DUET has an annulus gossamer membrane holographic primary objective that has four times the collection area and twice the diameterof the largest planned ground telescopes. Unlike competing exoplanet finders, DUET does not require a coronagraph or starshade.

Ice is far more abundant in our solar system than you may think. Mining for water on places like the Moon could drastically expand our potential for space exploration, with people going as far as to say the ice is the oil of space. Some of the more obvious water uses are that it could be recycled and used for drinking water and bathing on future habitats. Nonetheless, there is another reason. In our lunar example, water could be used to make rocket propellant. As you know, the main components of water are hydrogen and oxygen. These two materials are the two most prominent materials used to power rockets. Being able to make rocket propellant out of the water on the Moon could drastically cut down on the cost of some of our more ambitious missions in space.

That is the motivation behind the Colorado School of Mines Thermal Mining NASA project. The project involves applying heat to ice using redirected sunlight via conducting rods or heaters placed in boreholes. This method of mining would then capture the vapor in a dome-like tent and refreeze it in cold traps for processing.

Yes, if you were not already aware, there are flying spiders out there. The spiders use the process of ballooning, or what is sometimes known as kiting, to fly. Certain species of spiders are able to spin a few threads, creating a sail that then catches winds and transports them to different locations. West Virginia University researchers have proposed a similar concept that would allow NASA to study planetary atmospheres.

The concept is simple; thousands of micro spider probes would be deployed at once, each with a total mass of 50 mg. Each of the pods will have a small payload pod hanging under a 200 m long string loop, which provides both atmospheric drag and electrostatic lift. The pods will contain energy storage and conversion devices, an actuator for replenishing and regulating the static electric charge on the string loop, an integrated microprocessor, radio, and sensors. If done right, these microprobes would offer large spatial-scale atmospheric sensing capabilities.

As SpaceX has recently demonstrated, our space suits are in need of an upgrade, especially if we are planning to make it to another planet. This NIAC project proposes just that. Created by a team at Texas A&M Engineering, the SmartSuit is like nothing we have seen before. It is a spacesuit built for extravehicular activity (EVA) operations on Mars and other planetary environments.

The SmartSuit can not only increase human performance but also features stretchable self-healing skin. This smart outer membrane can provide visual feedback to the wearer, identifying potential damage, threats, or issues with the suit. Whats more, this EVA spacesuit is designed to be extremely comfortable.

Which project is your favorite? Which project do you think will have the biggest impact?

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The NASA Innovative Advanced Concepts Is Funding Some Out of This World Ideas - Interesting Engineering

Here are 9 great Netflix short documentaries to watch for inspiration – Yahoo! Voices

Zion

Zion Clarke of "Zion" Netlfix

It's been a year of some pretty spectacular documentaries from HBO's revealing sports and mental health documentary "The Weight of Gold," to Netflix'sinspiring Paralympics Games doc"Rising Phoenix," to the heartfelt "A Secret Love."

But, as I've written about before, I've developed something that I call "quarantine brain." It's kind of like being on a heavy dose of cold medicine while also taking an hourly shot of espresso; mentally dull with some spikes of anxiety.

There's a simple explanation for this, and Corinne Purtill put it quite succinctly for the New York Times: "Stress, like a pandemic, puts our brains into 'fight or flight' mode, disrupting attention, memory, breathing and sleep."

There are times, especially at the end of a workday, where my attention span is just shot. Earlier this year, I used this as an opportunity to explore all the great sketch comedy options that were available to stream, but recently I've expanded my media diet to include short, upbeat documentaries. Netflix has a ton of options that are under an hour long, with an expanse of topics space travel, sumo wrestling, and speedcubing. Here are some of my favorites that I've discovered.

"John Was Trying to Contact Aliens" 16 mins.

In this documentary short, which debuted on Netflix in August, director Matthew Killip tells the story of John Shepherd, a man who spent 30 years and tens of thousands of dollars trying to contact aliens. From a cottage in remote northern Michigan which was increasingly filled with computers, machines, satellites and wires Shepherd would broadcast music millions of miles into space (he decided aliens would probably respond to Afrobeat, jazz, reggae records as a kind of universal language).

After spending much of his life with his head in the stars, Shepherd's attention is brought back to Earth after making a different kind of connection in his own community.

Story continues

"The Search for Life in Space" 32 mins.

Continuing with the space theme, dive into "The Search for Life in Space," a 2016 film that tackles some of the universe's biggest questions like "Where did we come from?" and "Are we alone?" in just over a half hour. Using cutting-edge imagery from some of the world's most powerful telescopes, astronomer Lisa Kaltenegger, associate professor at Cornell University and Director of the Carl Sagan Institute, takes viewers from the surface of Mars, to extreme landscapes on Earth like the Hawaiian lava fields and thermal vents deep beneath the sea. In these environments, we encounter astrobiologists looking for clues about how life takes hold.

"Birders" 37 mins.

"Birders" has a tighter focus than "The Search for Life in Space," but it subtly tackles another big theme: migration across the US-Mexico border. In this 2019 film, directed by Otilia Portillo Padua, we observe birdwatchers on both sides of the border, and learn about how migrant birds travel back and forth across that border annually. I'm a big fan of documentaries that have a hyperfocus on enthusiast groups (there are a couple more of those on this list!), and "Birders" does a beautiful job showcasing the human connection that birdwatching fosters among an international community that obsessively counts, memorizes the calls of, and photographs migrant birds.

"America Wild: National Parks Adventure" 45 mins.

This film, which was originally released in 2016 in celebration of the 100-year anniversary of the formation of the national parks system, takes viewers into some of America's wildest natural playgrounds.

The cinematography is awe-inspiring from sprawling shots of Yellowstone and Yosemite to more intimate views of off-the-beaten path trails. Narrated by Robert Redford, "America Wild" follows world-class mountaineer Conrad Anker, adventure photographer Max Lowe and artist Rachel Pohl as they hike, climb and explore all across the country. It's a nice vicarious experience while many of us are homebound.

"Zion" 12 mins.

This is the shortest documentary on this list, but it probably packs the biggest emotional punch. Director Floyd Russ profiles Zion Clark, a high schooler who has found his purpose through competitive wrestling, after being born without legs and spending years in foster care. There's a tinge of sadness to "Zion," but in the hands of Russ who has a distinct, highly-stylized visual approach to filming Clark the story ultimately proves to be nuanced and inspirational.

"El lmite infinito" 47 mins.

Soon after Jean Maggi was born, he contracted polio and was paralyzed from the waist down, but he made a decision to live his life following a simple motto: "If you can't go fast, slow down, but don't stop." This Argentinian short documentary highlights his advancement of adaptive sports from developing a five-wheel chair to play basketball with more mobility to climbing the Himalayas.

"Little Miss Sumo" 18 mins.

Continue your binge of short documentaries featuring athletes that subvert societal expectations with "Little Miss Sumo." I love this film, which centers on Hiyori Kon, a 20-year-old sumo wrestler.

Sumo wrestling is a sport that is grounded in approximately 1,500 years of tradition tradition that allows men to compete into their late 30s, while women are unable to compete after they turn 21 based on an unfounded claim that women wrestlers reach peak physical capacity at the age of 20. This is something that Hiyori wants to change.

As I wrote for Salon following the film's debut in 2019, "'Little Miss Sumo' is astonishingly successful for an 18-minute film; through thoughtful interviews, beautiful training clips, and this idea of a countdown clock steadily ticking down without intervention, this is likely the last time Hiyori will be allowed to compete director Matt Kay strikes a masterful balance between contemplation and pressure."

"Lorena Light-Footed Woman" 28 mins.

This is another really thoughtful documentary short about women excelling in sports in ways that defy cultural norms. "Lorena Light-Footed Woman" follows Lorena Ramirez, a Mexican ultrarunner who lives in an indigenous community in the Tarahumara mountain range in Chihuahua, Mexico. She runs in traditional skirt and sandals; there is this absolutely breathtaking shot where cinematographer Hatuey Viveros scans across the feet of competitors lined up at the starting line of a race. You've got a pair of neutral Nike, a bright pair of Adidas, Ramirez's sandals, and then a pair of New Balance sneakers.

We enter Ramirez's story as she is just starting to gain attention globally. She is in her early 20s, has won a few ultramarathons and is beginning to receive invitations to travel internationally to Japan, Spain and Argentina to run. It's an interesting push-pull between honoring cultural tradition (and the sometimes limiting gender roles inherent to that) and personal advancement.

"The Speed Cubers" 40 mins.

"Speed Cubers" is a sweet and smart documentary about the lives of speedcubing champions,Max Park and Feliks Zemdegs. Both of the young competitors can solve a traditional Rubik's Cube in about four seconds.

As Salon's Hanh Nguyen wrote: "In the film, it's fascinating to witness solve after blurry solve because no matter how many times we see it, it's hard to follow what's going on in Feliks' or Max's heads, much less their fingers. We can only imagine the mental nimbleness required to assess the patterns in seconds and translate that into dexterity born of muscle memory; this is not the work of an Average Joe's brain."

Throughout the documentary, we also gain a deeper understanding of Max's life and what drew him to speedcubing; he was diagnosed with autism as a child and his mother would solve Rubik's Cubes with him as a bonding activity. He immediately fell in love

"While his speedcubing skills improved, his social skills were lagging behind," Nguyen wrote. "And the competitions offered unforeseen lessons in life experience: how to act in public, how to make friends, and most importantly, how to deal with failure."

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Here are 9 great Netflix short documentaries to watch for inspiration - Yahoo! Voices

WATCH | What happens to time when you travel at the speed of light? – Health24

55 minutes ago Compiled by Gabi Zietsman

Want to leave the planet? It's safe to say that millions would like to do just that at this point in time.

But there are a few technical details that need to be figured out before space travel becomes more mainstream including cracking the code of near-light speed travel.

NASArecently released a fun video, explaining some of the mechanics of travelling at this velocity, which is 90% of the speed of light. (Light travels at more than a billion kilometres per hour.)

READ | Germs from space could cause havoc in human bodies

Perception of time

One of the biggest adjustments would be your perception of time. While it might take you three years to reach the planet of your choice, on Earth, time would have moved a bit faster. To get to the edge of our solar system would take nine months, while on Earth, a year-and-a-half would pass.

Beyond our solar system, the next closest star system is Proxima Centauri, and it would take more than two years to get there at 90% of the speed of light.

Time dilation

This time differentiation is called time dilation. This is a fact of space travel that forms part of Albert Einstein's theory of relativity.

According to MIT Technology Review, if you left your twin behind on Earth, they would age more quickly than you.

However, the age difference would depend on the speed of the spaceship, including when it accelerates and when it slows down. Time dilation is also dependent on gravity and how close the "clock" is to a gravitational force like that of a planet.

READ MORE | NASAs new space toilet makes it easier for women astronauts to go to the bathroom

Fast particles

Space also isn't exactly empty. You would, for example, need some sort of shield from free-running particles that could damage you and your spacecraft, as they can also travel at around the speed of light.

NASAexplains that there are three ways that this acceleration can happen: through electromagnetic fields, magnetic explosions and wave-particle interactions. These mostly involve the collision of energies and magnetic fields.

Unfortunately, humanity is still a long way from having the kind of technology that allows us to reach these speeds.

For now, you can but daydream with NASA, while watching the video below:

READ | Clots in space: How an astronaut's blocked vein brought medical insight

Image credit: Pixabay

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WATCH | What happens to time when you travel at the speed of light? - Health24

There’s a Theory Beyond Relativity That Would Allow You to Fly Through a Wormhole – ScienceAlert

Wormholes are a popular feature in science fiction, the means through which spacecraft can achieve faster-than-light (FTL) travel and instantaneously move from one point in spacetime to another.

And while the General Theory of Relativity forbids the existence of "traversable wormholes", recent research has shown that they are actually possible within the domain of quantum physics.

The only downsides are that they would actually take longer to traverse than normal space and/or likely be microscopic.

In a new study performed by a pair of Ivy League scientists, the existence of physics beyond the Standard Model could mean that there are wormholes out there that are not only large enough to be traversable, but entirely safe for human travelers looking to get from point A to point B.

The study, titled "Humanly traversable wormholes," was conducted by Juan Maldacena (the Carl P. Feinberg Professor of theoretical physics from the Institute of Advanced Study) and Alexey Milekhin, a graduate of astrophysics student at Princeton University. The pair have written extensively on the subject of wormholes in the past and how they could be a means for traveling safely through space.

The theory regarding wormholes emerged in the early 20th century in response to Einstein's General Theory of Relativity. The first to postulate their existence was Karl Schwarzschild, a German physicist and astronomer whose solutions to Einstein's field equation (the Schwarzschild metric) resulted in the first theoretical basis for the existence of black holes.

A consequence of the Schwarzschild metric was what he referred to as "eternal black holes," which were essentially connections between different points in spacetime. However, these Schwarzschild wormholes (aka. EinsteinRosen bridges) were not stable as they would collapse too quickly for anything to cross from one end to the other.

As Maldacena and Milekhin explained to Universe Today via email, traversable wormholes require special circumstances in order to exist. This includes the existence of negative energy, which is not permissible in classic physics but is possible within the realm of quantum physics.

A good example of this, they claim, is the Casimir Effect, where quantum fields produce negative energy while propagating along a closed circle:

"However, this effect is typically small because it is quantum. In our previous paper ["Traversable wormholes in four dimensions"] we realized that this effect can become considerable for black holes with large magnetic charge. The new idea was to use special properties of charged massless fermions (particles like the electron but with zero mass). For a magnetically charged black hole these travel along the magnetic field lines (In a way similar to how the charged particles of the solar wind create the auroras near the polar regions of the Earth)."

The fact that these particles can travel in a circle by entering one spot and emerging where they started in ambient flat space, implies that the "vacuum energy" is modified and can be negative.

The presence of this negative energy can support the existence of a stable wormhole, a bridge between points in spacetime that won't collapse before something has a chance to traverse it.

Such wormholes are possible based on matter that is part of the Standard Model of particle physics. The only problem is, these wormholes would have to be microscopic in size and would only exist over very small distances.

For human travel, the wormholes would have to be large, which requires that physics beyond the Standard Model be employed.

For Maldacena and Milekhin, this is where the Randall-Sundrum II model (aka. 5-dimensional warped geometry theory) comes into play. Named after theoretical physicists Lisa Randall and Raman Sundrum, this model describes the Universe in terms of five-dimensions and was originally proposed to solve a hierarchy problem in particle physics.

"The Randall-Sundrom II model was based on the realization that this five-dimensional spacetime could also be describing physics at lower energies than the ones we usually explore, but that it would have escaped detection because it couples with our matter only through gravity. In fact, its physics is similar to adding many strongly interacting massless fields to the known physics. And for this reason it can give rise to the required negative energy."

From the outside, Maldacena and Milekhin concluded that these wormholes would resemble intermediately-sized, charged black holes that would generate similarly-powerful tidal forces that spacecraft would need to be wary of. To do that, they claim, a potential traveler would need a very large boost factor as they pass through the center of the wormhole.

Assuming that can be done, the question remains of whether or not these wormholes could act as a shortcut between two points in spacetime? As noted, previous research by Daniel Jafferis of Harvard University (which also considered the work of Einstein and Nathan Rosen) showed that while possible, stable wormholes would actually take longer to traverse than normal space.

According to Maldacena and Milekhin's work, however, their wormholes would take almost no time to traverse from the perspective of the traveler. From the perspective of an outsider, the travel time would be much longer, which is consistent with General Relativity where people traveling close to the speed of light will experience time dilation (i.e. time slows down). As Maldacena and Milekhin put it:

"]F]or astronauts going through the wormhole it would take only 1 second of their time to travel 10,000 light-year distance (approximately 5000 billion miles or 1/10 of Milky Way size). An observer who does not go through the wormhole and stays outside sees them taking more than 10,000 years. And all this with no use of fuel, since the gravity accelerates and decelerates the spaceship."

Artist illustration of a spacecraft passing through a wormhole to a distant galaxy. (NASA)

Another bonus is that traversing these wormholes could be done without the use of fuel since the gravitational force of the wormhole itself would accelerate and decelerates the spaceship. In a space exploration scenario, a pilot would need to navigate the tidal forces of the wormhole to position their spacecraft just right, and then let nature do the rest.

A second later, they would emerge on the other side of the galaxy!

While this might sound encouraging to those who think wormholes could be a means of space travel someday, Maldacena and Milekhin's work presents some significant drawbacks as well.

For starters, they emphasize that traversable wormholes would have to be engineered using negative mass since no plausible mechanism exists for natural formation.

While this is possible (at least in theory), the necessary spacetime configurations would need to be present beforehand. Even so, the mass and size involved are so great that the task would be beyond any practical technology we can foresee. Second, these wormholes would only be safe if space were cold and flat, which is not the case beyond the Randall Sundrum II model.

On top of all that, any object that enters the wormhole would be accelerated and even the presence of pervasive cosmic background radiation would be a significant hazard.

However, Maldacena and Milekhin emphasize that their study was conducted for the purpose of showing that traversable wormholes can exist as a result of the "subtle interplay between general relativity and quantum physics."

In short, wormholes are not likely to become a practical way to travel through space at least, not in any way that's foreseeable. Perhaps they would not be beyond a Kardashev Type II or Type III civilization, but that's just speculation. Even so, knowing that a major element in science fiction is not beyond the realm of possibility is certainly encouraging!

This article was originally published by Universe Today. Read the original article.

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There's a Theory Beyond Relativity That Would Allow You to Fly Through a Wormhole - ScienceAlert

Northcoast Veterans Museum looking to expand in Gibonburg – The News-Messenger

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Tanks and other war artifacts dating back to the War of 1812 can be found at the Northcoast Veterans Museum.(Photo: Doug Hise/Correspondent)

GIBSONBURG - There was a time 20 years ago when the Northcoast Veterans Museum had so many war artifacts there wasnot enough room to display them.

From military uniformsto equipment and other items, curator Rex Postlethwait said all they needed was space.

In 2000, they finally got the space they needed in Gibsonburg, at 411 N. Main St., and began the museum.

Now, 20 years later, Postlethwait, a retired master sergeant of the United States Air Force,said the museum is bursting at the seams with even more war artifacts and is looking to expand its space.

The Northcoast Veterans Museum is staffed by volunteers, from left, Bobby Whetsel, Mark Lodge, Vaughn Billow and Rex Postlethwait.(Photo: Sheri Trusty/Correspondent)

"We're trying to raise money to build a new building in Gibonburg," Postlethwait said.

The new building would increase the size of the museum and be used by a historical society, Postlethwait said.

Postlethwait said the museum is hoping to secure around $100,000 to build a new structure in Gibsonburg that would have more space and allow them to display more of the county's history.

"Right now we have about a quarter of that," Postlethwait said.

While some artifacts date back to the War of 1812, Postlethwaitsaid the majority of items on display are from the Civil War through today, with the artifacts changing out each week.

The museum is open from 5:30 to 8 p.m. each Monday, but Postlethwait said he is flexible, and if anyone is interestedthey will open the museum even at 2 a.m. for a tour.

"We have a little bit of everything," Postlethwait said. "We have weapons, uniforms, but we'redoing individual stories of World War II veterans and we have a four-by-four lighting case with uniforms and photographs and memorabilia."

The Northcoast Veterans Museum, 411 N. Main St., in Gibsonburg offers a historical snapshot of war artifacts and ties to local war history.(Photo: Doug Hise/Correspondent)

Sandusky County's rich military tradition is scattered from one end of the county to another, Postlethwait said, citing the Fremont Armory's role in the 37th Infantry Division an Ohio group called the Buckeye Division that fought in the Pacific during World War II.

"And the 37th Division stayed overseas longer than just about all other units in the Pacific," Postlethwait said.

Rodger Young, the namesake of Rodger Young Park and a Medal of Honor recipient, came from the Fremont Armory and the 37th Division that fought in the Pacific theater, includingbattles in Fiji Solomon Island and New Georgia, where Young was killed in action.

Stories like Young's can be viewed through the use of artifacts.

"We tell all these varied stories through the history of local veterans," Postlethwait said. "The Village of Gibsonburg itself, if you look at the number of people that volunteered or went into service per population, they had more than most other villages or cities in Ohio per capita."

Postlethwait said the museumwill travel, having displayed items at fairs and other military events.

The Northcoast Veterans Museum, 411 North Main St., Gibsonburg, is full of military displays and items that date back to the War of 1812. The museum is open to the public on Mondays from 5:30-8:00 p.m.(Photo: Doug Hise/Correspondent)

On Sept. 26 and 27, Postlethwait said the museum will set up an exhibit at the Military Vehicle and Equipment Display at Liberty Aviation Museum, 3525 E. State Rd., Port Clinton.

"We're going to set up a tent and have a small display there," Postlethwait said. "It will be more along the lines of a living history, we'll have volunteers dressing up in World War II uniforms and telling visitors about the museum."

cshoup@gannett.com

419-334-1035

Twitter: @CraigShoupNH

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Northcoast Veterans Museum looking to expand in Gibonburg - The News-Messenger

No – Space.com

David Blaine's aerial stunt may have been impressive and dramatic, but other ballooning skydivers have gone far higher.

Blaine rose into the Arizona sky today (Sept. 2) beneath a bouquet of multicolored balloons, employing the escape strategy pioneered by curmudgeon Carl Fredricksen in the 2009 Pixar film "Up." During the livestreamed event, called "Ascension," Blaine reached an altitude of nearly 25,000 feet (7,620 meters), then slipped out of his harness and fell back to Earth.

Twenty-five thousand feet is way up there, but it doesn't even sniff the balloon-skydiving record. In 2014, Google executive Alan Eustace jumped from a scientific balloon at an altitude of 135,890 feet (41,419 m). That's nearly 26 miles (42 kilometers) above Earth's surface.

Related: Real-life 'Aeronauts': the true stories of high-altitude balloonists

Eustace broke a mark set just two years earlier by Austrian daredevil Felix Baumgartner, who dove from his balloon at 128,000 feet (39,000 m). Baumgartner's dive smashed a record that had stood since 1959, when U.S. Air Force test pilot Joe Kittinger jumped from about 19 miles (31 km) up.

Eustace and Baumgartner both wore special pressurized suits during their landmark dives, and Baumgartner ascended inside a custom-built capsule. Blaine, by contrast, took to the skies wearing regular street clothes a black jacket, black pants and sunglasses. (Blaine did take supplemental oxygen with him, however, and began breathing the stuff once he reached about 20,000 feet, or 6,100 m.)

To be clear, Blaine did not set out to smash the altitude record with "Ascension." The project, a mixture of danger, drama and aesthetic appeal, was intended to push different buttons.

"The idea is, I want to grab a bunch of balloons and go floating all the way up into the sky until I almost disappear," the illusionist and endurance artist said in an update about the project this weekend.

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

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Bicyclist, teen driver killed in separate Ascension crashes overnight, officials say – The Advocate

Two people were killed in separate Ascension Parish crashes between late Tuesday night and early Wednesday morning.

A teenager died after his vehicle ran off the road and struck a tree on the side of Interstate 10, according to State Police. The driver was identified as Mason Pusey, 17, of St. Amant.

He was traveling westbound on I-10 about 11 p.m. Tuesday when the crash occurred near the La. 641 exit, State Police said. The investigation is ongoing.

Several hours later, shortly before 5 a.m. Wednesday, a bicyclist died after being struck by a vehicle on La. 22 near Melancon Road in Sorrento.

Jessica White Gibbs, 27, was transported to the hospital but pronounced dead a short time later, according to the Ascension Parish Sheriff's Office. That case also remains under investigation.

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Bicyclist, teen driver killed in separate Ascension crashes overnight, officials say - The Advocate

Ascension Michigan health system to lay off and outsource 223 IT jobs in Troy – Detroit Free Press

An information technology division within AscensionMichigan, formerly known as St. John Providence Health System, plans to lay off 223 workers in Troy this fall and outsourcetheir jobs.

An executive with Ascension Technologiesnotified state officials this week about the layoffs, which are planned to begin Oct. 24. The affected employees work at the organization's Network Operations Center and Service Desk, which has anoffice in the North Troy Corporate Park, 800 Tower Drive.

Those who can't find different work within Ascension will get severances, the layoff notice said. Some of the affected workers also could get hired by the new vendor.

AnAscension representative on Wednesdaywouldn't provide further details about the layoffs or identify thevendor.

In a recent blog post, Ascension's Chief Information Officer Gerry Lewis said the health system will be shifting some of its IT jobs to outside vendors as part of Ascension's "digital transformation."

Ascension Michigan's hospitals include Ascension Providence Hospital in Southfield.(Photo: Ascension Michigan)

"These transitions will enable us to design, deliver and innovate the best end-to-end customer and clinician experience, using best practices and industry standards, while being good stewards of our resources," Lewis wrote in the post.

More: Trinity Health Michigan lays off, furloughs another 1,000 employees

More: Michigan unemployment claims decline, but are 4 times higher than before coronavirus

Ascension Michigan is part of St. Louis-based Ascension Health, a nonprofit Catholic health system.

Since the coronavirus pandemic began, Ascension Health has received $815 million in grants and $1.3 billion in loans through the federal CARES Act relief package, according to the website COVID Stimulus Watch.

Contact JC Reindlat 313-222-6631 or jcreindl@freepress.com. Follow him on Twitter@jcreindl. Read more on business and sign up for our business newsletter.

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Ascension Michigan health system to lay off and outsource 223 IT jobs in Troy - Detroit Free Press

David Blaine’s balloon flight over Page, Arizona, goes off without a hitch. Watch here – The Arizona Republic

David Blaine stuck the landing.

The magician floated up into the skyabovePage, Arizona, rising more than 20,000 feet with the help of a couple dozen weather balloons on Wednesday morning.

Then he released the balloons and wentcatapulting back to Earth, having put on his parachute pack on the ride up. Blaine had traveled too far off-course to make it back to the planned landing zone, but despite his apparent nerves he was able to spot a safe place to land.

Hundreds of thousands of people watched Blaine's "Ascension" stunt, which spanned about an hour, live on YouTube.

You can watch Blaine's journey here:

The helium-balloon rig, which had to be classified as an experimental aircraft by the FAA, hadan airworthiness certificate and was approvedto take flight, the FAA confirmed toThe Arizona Republic on Tuesday.

In a statement to TheRepublic on Monday, the agencysaid,"The FAA is working closely with David Blaine and his team to ensure that the proposed flight meets all regulatory requirements. ... The FAA will closely monitor the flight and will provide air traffic services as needed."

MORE: Lake Powell, Horseshoe Bend and Antelope Canyon keep people coming to Page, Arizona

"Ascension" was years in the making.Blaine'sgoal wasto reach 18,000 feet above the ground, Variety reported, and hehadto put on his parachute pack in midair.

"If there's a catastrophic balloon failure partway up, David comes crashing down to Earth," a narrator saidin a promotional YouTube video for the event.

"This groundbreaking (research and discovery) flight will be done for the first time right here in Arizona, which is the most beautiful backdrop that I've ever seen in my life," Blainesaidin an Instagram video."I want tograb a bunch of balloons and go floating all the way up into the sky until I almost disappear."

Blaine had to obtain a hot air balloon pilot certificate and a skydiving license on top of learning how to read the wind, he said in a video.

The original plan was to soar across the Hudson River from New Jersey to New York City, but due to its complexity, Blaine announced last weekend that he was moving it to Arizona.

Blaine could haveexperienced oxygen deprivation or hypoxia and hypothermia. There wasalso a chance he could have goneplummetingback to Earth if he didn'tget his parachute on in time.

There was also that potential for "catastrophic balloon failure."

Blaine is known for stunts such as "Buried Alive" in 1999, in which he was sealed in a plastic box beneath a 3-ton water tank for seven days, and "Frozen in Time" in 2000, in which he was encased in a block of ice for more than two days in Times Square.

"Ascension"washis first major live stunt since "Electrified: One Million Volts Always On" in 2012.

The helium balloon flight isn't the only reason Blaine has been in the news in recent years. In 2019, The Daily Beast,New York Times and other media published reports that the New York Police Department was investigating Blaine over two accusations of sexual assault. He denied the allegations and said he would cooperate with law enforcement.

Reach the reporter at kimi.robinson@gannett.com or at 602-444-4968. Follow her on Twitter @kimirobinand Instagram @ReporterKiMi.

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David Blaine's balloon flight over Page, Arizona, goes off without a hitch. Watch here - The Arizona Republic

Ascension Seton Hospital ranked 14th best in Texas – Hays Free Press

Ascension Seton in Kyle was ranked the #3 hospital in the Austin Metro area and the 19th in Texas on markers including patient safety and survival and nurse staffing by U.S. News and World Report in July.

By Anita Miller

KYLE North Hays County residents might not know it, but they are within minutes of a hospital intent on being one of the best in the nation.

Ascension Seton in Kyle was ranked the #3 hospital in the Austin Metro area and the 19th in Texas on markers including patient safety and survival and nurse staffing, by U.S. News and World Report in July.

The magazine also recognized Ascension Seton Hays as high performing in the areas of heart bypass surgery, congestive heart failure and COPD. In June, Newsweek magazine ranked the hospital 14th in the state and 274th nationwide. It was the only Seton facility to be ranked.

Back in 2016, Ascension Seton Hays Chief Medical Officer Fausto Meza told the Hays Free Press that he gathered physicians and nurses and asked them what they wanted the future to be.

They told us they thought we were a good community hospital, he said. But they told us they wanted to be in the top 10% of hospitals in the country and to grow from a community hospital to a regional hospital.

At that time their journey to greatness began. What youre seeing now, he said, is the result of four and a half years of dedicated work you are just starting to see the fruits of our labor.

Other accolades have also started to pour in. Centers for Medicare & Medicaid Services (CMS), which assigns a letter grade to hospital performance, has given Ascension Seton Hays four out of a possible five stars, and the Leapfrog Group, which ranks hospitals, has Ascension Seton highly ranked.

Nurses are really the tip of the spear, Meza said, noting that Nicky Rivers, who has since left Seton, was instrumental as far back as that first meeting in 2016. Its been purposeful, he said. It might look to others like it happened overnight, but it was purposeful.

He said the journey is continuing for the facility to get a five-star rating from CMS, with the goal to achieve that by years end.

His hope is that more and more Hays County residents will come to a realization that, Wow. I may not need to go to Austin or San Antonio or Houston.

Ascension Seton Hays is fast becoming a well-used trauma center as well, Meza said. Though officially ranked as a Level 3 Trauma Facility it has been functioning at the higher Level 2. Meza said that designation might have been officially upped this year but was delayed because of COVID-19.

We have saved peoples lives that youve probably read about in the news from motor vehicle accidents to gunshot wounds and stabbings. People in our community have lived because we have developed and been serving as a Trauma Level 2.

Meza said more physicians and other staff members have been recruited to help the hospital grow as the community grows. We are becoming that regional medical center, he said. We are one of the top hospitals in the state, and we are just getting started. Nurses, physicians and other people want to come work at one of the top hospitals in the state you will see us break into the top 10% within a few years.

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Ascension Seton Hospital ranked 14th best in Texas - Hays Free Press

Ground-Breaking Ceremony for Ascension Saint Thomas New Salem Surgery Center – rutherfordsource.com

Leaders from Ascension Saint Thomas Rutherford, United Surgical Partners International (USPI), and the Rutherford County Chamber of Commerce were among those in attendance at Thursdays 12 PM ground-breaking ceremony for the highly anticipated Ascension Saint Thomas New Salem Surgery Center.

The multi-speciality ambulatory care center is a joint-venture between Ascension Saint Thomas and United Surgical Partners International, the nations largest ambulatory services provider with over 400 facilities. USPI serves more than 3.4 million patients per year. The Ascension Saint Thomas New Salem Surgery Center will span 13,000 square feet on 3 acres at the southwest corner of New Salem Highway and St. Andrews Drive in Murfreesboro.

Opening remarks were provided by Kelli Beam, Vice President of Membership Development for the Rutherford County Chamber of Commerce, who discussed Rutherford Countys growing healthcare needs. Gordon Ferguson, President and CEO of Ascension Saint Thomas Rutherford, explained how the new surgery center complements the recent hospital expansion by providing an access point for convenient care in the heart of the New Salem community. Dr. Lindsay Keith of Ascension Medical Group/Saint Thomas Medical Partners attended on behalf of the facilitys group of physician investors. The blessing of the ground was led by Tracey Biles, Vice President of Mission Integration for Ascension Saint Thomas Rutherford, and was followed by ceremonial shoveling of the dirt. Chris Hartshorn, Market President for United Surgical Partners International, gave closing remarks.

Project completion is expected in 2021.

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Ascension school district hits ground running in plans for new high school construction – The Advocate

GONZALES With a successful bond election behind them, Ascension Parish public school officials are taking the next steps to build a new high school at Prairieville.

Seventy-one percent of voters who turned out for the Aug. 15 election approved extending an existing property tax for 20 years to fund $140 million in bonds to build the high school and complete 13 other construction and improvement projects.

Originally slated to go before voters in May, an Ascension Parish school district proposal for building a new high school in Prairieville and

"We're thankful to be in a community that partners with us to provide state-of-the-art facilities for our students; we're fired up," Superintendent David Alexander said after a meeting of a board committee that approved a timeline for completing the $79.5 million high school in time for the start of school in 2023.

At its next meeting, set for Tuesday, the board is expected to hire the two Baton Rouge architect firms RHH Architects and Domain Architecture, which bid as a joint venture on the high school project.

A committee of school district personnel is recommending the joint-venture bid over five others to design the 280,000-square-foot school that will go up on Parker Road, next to Prairieville Primary.

The timeline of important milestones approved in committee last week for the project includes:

"It will be an aggressive schedule and we'll do our best," Jeff Parent, the district's supervisor of planning and construction, told board members.

The new high school will be the fourth on the east bank of the parish and is designed to relieve overcrowding at the others Dutchtown, East Ascension and St. Amant where student enrollment at each is nearing or past 2,000.

Other projects that will now be going forward after the recent bond election are:

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Ascension school district hits ground running in plans for new high school construction - The Advocate

PerimeterX Platform Named Best Application Security Solution by the 2020 Tech Ascension Awards – Security Boulevard

The 2020 Tech Ascension Awards have named the PerimeterX Platform winner of Best Application Security Solution. This recognition comes a mere two months after the formal launch of the consolidated Platform, validating its status as the premier suite of solutions for bot mitigation and client-side protection that preserve a users web app experience.

Digital business and security leaders recognize that innovating at a rapid pace and adopting new application technologies is required to stay competitive, to grow revenue and to increase brand awareness. However, many organizations compromise their digital transformation work by using multiple point solutions to manage the constantly growing number of application security threats that range from classic code vulnerabilities to business logic threats. To truly secure todays digital businesses, a platform approach is essential. Using a single cloud-native platform can simplify and future-proof application security and help businesses bring new applications to market faster and more efficiently. A platform that provides unified visibility into web analytics and enriches data with threat analysis truly empowers businesses to make accurate decisions quickly.

Comprised of PerimeterX Bot Defender, PerimeterX Code Defender and PerimeterX Page Defender, the Platform provides essential features for digital businesses, including:

The cloud-native Platform seamlessly integrates into an enterprises existing infrastructure and automatically scales to meet demandno changes or (Read more...)

*** This is a Security Bloggers Network syndicated blog from PerimeterX Blog authored by PerimeterX Blog. Read the original post at: https://www.perimeterx.com/resources/blog/2020/perimeterx-platform-named-best-application-security-solution-by-the-2020-tech-ascension-awards/

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UAB and Ascension St. Vincent’s hospitals named to third-annual hospital rankings for exceptional consumer loyalty – UAB News

The UAB Health System/Ascension St. Vincents Alliance has seen both organizations named to the third-annual NRC Health Top 100 Consumer Loyalty list, the first and only loyalty-based hospital rankings that recognize the top U.S. health care organizations for earning exceptional loyalty ratings from their patient populations.

The UAB Health System/Ascension St. Vincents Alliance has seen both organizations named to the third-annual NRC Health Top 100 Consumer Loyalty list, the first and only loyalty-based hospital rankings that recognize the top U.S. health care organizations for earning exceptional loyalty ratings from their patient populations.

Both St. Vincents Birmingham and UAB Hospital were named Best in Class, and designated as two of the top 10 hospitals in the country on the Consumer Loyalty list, based on results from NRC Healths Market Insights survey, the largest database of health care consumer responses in the country. From April 2019 to March 2020, NRC Health surveyed more than 310,000 households in the contiguous United States to measure consumer engagement with community health care brands. The winning organizations on the 2020 Consumer Loyalty list achieved remarkably high scores on NRC Healths Loyalty Index, a composite of seven different critical aspects of consumer loyalty, including access, engagement, experience and net promoter score.

Ascension St. Vincents and UAB, along with the other hospitals recognized in this years Consumer Loyalty Awards, are at the forefront of delivering patient-centric care, which is more important than ever in this new normal in health care, said Helen Hrdy, chief growth officer at NRC Health. We are proud to recognize these industry-leading organizations and the commitments they hold to their patients and improving the complete care journey now and moving forward.

For nearly four decades, NRC Health has helped health care organizations illuminate and improve the moments that matter most to patients, residents, physicians, nurses and staff.

What an honor it is to receivesuch high recognition from the patients we serve, said Jason Alexander, CEO of Ascension St. Vincents and senior vice president of Ascension. Every day, it is our promise and desire to deliver compassionate and personalized care to all who come through ourdoors. Knowing that our patients recognize our efforts demonstrates that we are delivering on that promise,and we could not be more pleased.

It comes as no surprise that Ascension St. Vincents and UAB should be among the top 10 hospitals honored on this list, said Will Ferniany, Ph.D., CEO of the UABHS/St. Vincents Alliance. Both organizations are committed to providing outstanding medical care. It is this approach, ingrained within the cultures of both health systems, that inspires patient loyalty. We are honored with this recognition.

Winning organizations were publicly announced Monday, Aug. 24, during the virtual 26th Annual NRC Health Symposium. A complete list of winners can be found at undefined.

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UAB and Ascension St. Vincent's hospitals named to third-annual hospital rankings for exceptional consumer loyalty - UAB News

Supermicro Details Its Hardware for MN-3, the Most Efficient Supercomputer in the World – HPCwire

In June, HPCwire highlighted the new MN-3 supercomputer: a 1.6 Linpack petaflops system delivering 21.1 gigaflops per watt of power, making it the most energy-efficient supercomputer in the world at least, according to the latest Green500 list, the Top500s energy-conscious cousin. The system was built by Preferred Networks, a Japanese AI startup that used its in-house MN-Core accelerator to help deliver the MN-3s record-breaking efficiency. Collaborating with Preferred Networks was modular system manufacturer Supermicro, which detailed the hardware and processes behind the chart-topping green giant in a recent report.

As Supermicro tells it, Preferred Networks was facing challenges on two fronts: first, the need for a much more powerful system to solve its clients deep learning problems; and second, the exorbitant operating costs of the system they were envisioning. With increasing power costs, a large system of the size PFN was going to need, the operating costs of both the power and associated cooling would exceed the budget that was allocated, Supermicro wrote. Therefore, the energy efficiency of the new solution would have to be designed into the system, and not become an afterthought.

Preferred Networks turned to partnerships to help resolve these problems. First, they worked with researchers at Kobe University to develop the MN-Core accelerator, specializing it for deep learning training processes and optimizing it for energy efficiency. After successfully benchmarking the MN-Core above one teraflop per watt in testing, the developers turned to the rest of the system and thats where Supermicro entered the picture.

On a visit to Japan, Clay Chen general manager of global business development at Supermicro sat down with Preferred Networks to hear what they needed.

At first I was asking them, you know, what type of GPU they are using, Chen said in an interview with HPCwire. They say, oh, no, were not using any type were going to develop our own GPU. And that was quite fascinating to me.

Preferred Networks selected Supermicro for the daunting task: fitting four MN-Core boards, two Intel Xeon Platinum CPUs, up to 6TB of DDR4 memory and Intel Optane persistent memory modules in a single box without sacrificing the energy efficiency of the system.

Supermicro based its design on one of its preexisting GPU server models that was designed to house multiple GPUs (or other accelerators) and high-speed interconnects. Working with Preferred Networks engineers, Supermicro ran simulations to determine the optimal chassis design and component arrangement to ensure that the MN-Core accelerators would be sufficiently cooled and efficiency could be retained.

Somewhat surprisingly, the custom server is entirely fan-cooled. Our concept is: if we can design something with fan cooling, why would we want to use liquid cooling? Chen said. Because essentially, all the heat being pulled out from the liquid is going to cool somewhere. When you take the heat outside the box, you still need to cool the liquid with a fan.

The end result, a customized Supermicro server just for Preferred Networks, is pictured below.

The servers four MN-Core boards are connected to PCIe x16 slots on a Supermicro motherboard and to the MN-Core Direct Connect board that enables high-speed communication between the MN-Core boards.

These custom servers each 7U high were then rack-mounted into what would become the MN-3 supercomputer: 48 servers, four interconnect nodes and five 100GbE switches. In total, the systems 2,080 CPU cores, delivering 1,621 Linpack teraflops of performance, required just 77 kW of power for the Top500 benchmarking run. This efficiency level is just 15 percent short of the 40-megawatt limit targeted by planned exascale systems like Aurora, Frontier and El Capitan.

We are very pleased to have partnered with Supermicro, who worked with us very closely to build MN-3, which was recognized as the worlds most energy-efficient supercomputer, said Yusuke Doi, VP of computing infrastructure at Preferred Networks. We can deliver outstanding performance while using a fraction of the power that was previously required for such a large supercomputer.

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I confess, I’m scared of the next generation of supercomputers – TechRadar

Earlier this year, a Japanese supercomputer built on Arm-based Fujitsu A64FX processors snatched the crown of worlds fastest machine, blowing incumbent leader IBM Summit out of the water.

Fugaku, as the machine is known, achieved 415.5 petaFLOPS by the popular High Performance Linpack (HPL) benchmark, which is almost three times the score of the IBM machine (148.5 petaFLOPS).

It also topped the rankings for Graph 500, HPL-AI and HPCH workloads - a feat never before achieved in the world of high performance computing (HPC).

Modern supercomputers are now edging ever-closer to the landmark figure of one exaFLOPS (equal to 1,000 petaFLOPS), commonly described as the exascale barrier. In fact, Fugaku itself can already achieve one exaFLOPS, but only in lower precision modes.

The consensus among the experts we spoke to is that a single machine will breach the exascale barrier within the next 6 - 24 months, unlocking a wealth of possibilities in the fields of medical research, climate forecasting, cybersecurity and more.

But what is an exaFLOPS? And what will it mean to break the exascale milestone, pursued doggedly for more than a decade?

To understand what it means to achieve exascale computing, its important to first understand what is meant by FLOPS, which stands for floating point operations per second.

A floating point operation is any mathematical calculation (i.e. addition, subtraction, multiplication or division) that involves a number containing a decimal (e.g. 3.0 - a floating point number), as opposed to a number without a decimal (e.g. 3 - a binary integer). Calculations involving decimals are typically more complex and therefore take longer to solve.

An exascale computer can perform 10^18 (one quintillion/100,000,000,000,000,000) of these mathematical calculations every second.

For context, to equal the number of calculations an exascale computer can process in a single second, an individual would have to perform one sum every second for 31,688,765,000 years.

The PC Im using right now, meanwhile, is able to reach 147 billion FLOPS (or 0.00000014723 exaFLOPS), outperforming the fastest supercomputer of 1993, the Intel Paragon (143.4 billion FLOPS).

This both underscores how far computing has come in the last three decades and puts into perspective the extreme performance levels attained by the leading supercomputers today.

The key to building a machine capable of reaching one exaFLOPS is optimization at the processing, storage and software layers.

The hardware must be small and powerful enough to pack together and reach the necessary speeds, the storage capacious and fast enough to serve up the data and the software scalable and programmable enough to make full use of the hardware.

For example, there comes a point at which adding more processors to a supercomputer will no longer affect its speed, because the application is not sufficiently optimized. The only way governments and private businesses will realize a full return on HPC hardware investment is through an equivalent investment in software.

Organizations such as the Exascale Computing Project (EPC) the ExCALIBUR programme are interested in solving precisely this problem. Those involved claim a renewed focus on algorithm and application development is required in order to harness the full power and scope of exascale.

Achieving the delicate balance between software and hardware, in an energy efficient manner and avoiding an impractically low mean time between failures (MTBF) score (the time that elapses before a system breaks down under strain) is the challenge facing the HPC industry.

15 years ago as we started the discussion on exascale, we hypothesized that it would need to be done in 20 mega-watts (MW); later that was changed to 40 MW. With Fugaku, we see that we are about halfway to a 64-bit exaFLOPS at the 40 MW power envelope, which shows that an exaFLOPS is in reach today, explained Brent Gorda, Senior Director HPC at UK-based chip manufacturer Arm.

We could hit an exaFLOPS now with sufficient funding to build and run a system. [But] the size of the system is likely to be such that MTBF is measured in single digit number-of-days based on todays technologies and the number of components necessary to reach these levels of performance.

When it comes to building a machine capable of breaching the exascale barrier, there are a number of other factors at play, beyond technological feasibility. An exascale computer can only come into being once an equilibrium has been reached at the intersection of technology, economics and politics.

One could in theory build an exascale system today by packing in enough CPUs, GPUs and DPUs. But what about economic viability? said Gilad Shainer of NVIDIA Mellanox, the firm behind the Infiniband technology (the fabric that links the various hardware components) found in seven of the ten fastest supercomputers.

Improvements in computing technologies, silicon processing, more efficient use of power and so on all help to increase efficiency and make exascale computing an economic objective as opposed to a sort of sporting achievement.

According to Paul Calleja, who heads up computing research at the University of Cambridge and is working with Dell on the Open Exascale Lab, Fugaku is an excellent example of what is theoretically possible today, but is also impractical by virtually any other metric.

If you look back at Japanese supercomputers, historically theres only ever been one of them made. They have beautifully exquisite architectures, but theyre so stupidly expensive and proprietary that no one else could afford one, he told TechRadar Pro.

[Japanese organizations] like these really large technology demonstrators, which are very useful in industry because it shows the direction of travel and pushes advancements, but those kinds of advancements are very expensive and not sustainable, scalable or replicable.

So, in this sense, there are two separate exascale landmarks; the theoretical barrier, which will likely be met first by a machine of Fugakus ilk (a technological demonstrator), and the practical barrier, which will see exascale computing deployed en masse.

Geopolitical factors will also play a role in how quickly the exascale barrier is breached. Researchers and engineers might focus exclusively on the technological feat, but the institutions and governments funding HPC research are likely motivated by different considerations.

Exascale computing is not just about reaching theoretical targets, it is about creating the ability to tackle problems that have been previously intractable, said Andy Grant, Vice President HPC & Big Data at IT services firm Atos, influential in the fields of HPC and quantum computing.

Those that are developing exascale technologies are not doing it merely to have the fastest supercomputer in the world, but to maintain international competitiveness, security and defence.

In Japan, their new machine is roughly 2.8x more powerful than the now-second place system. In broad terms, that will enable Japanese researchers to address problems that are 2.8x more complex. In the context of international competitiveness, that creates a significant advantage.

In years gone by, rival nations fought it out in the trenches or competed to see who could place the first human on the moon. But computing may well become the frontier at which the next arms race takes place; supremacy in the field of HPC might prove just as politically important as military strength.

Once exascale computers become an established resource - available for businesses, scientists and academics to draw upon - a wealth of possibilities will be unlocked across a wide variety of sectors.

HPC could prove revelatory in the fields of clinical medicine and genomics, for example, which require vast amounts of compute power to conduct molecular modelling, simulate interactions between compounds and sequence genomes.

In fact, IBM Summit and a host of other modern supercomputers are being used to identify chemical compounds that could contribute to the fight against coronavirus. The Covid-19 High Performance Computing Consortium assembled 16 supercomputers, accounting for an aggregate of 330 petaFLOPS - but imagine how much more quickly research could be conducted using a fleet of machines capable of reaching 1,000 petaFLOPS on their own.

Artificial intelligence, meanwhile, is another cross-disciplinary domain that will be transformed with the arrival of exascale computing. The ability to analyze ever-larger datasets will improve the ability of AI models to make accurate forecasts (contingent on the quality of data fed into the system) that could be applied to virtually any industry, from cybersecurity to e-commerce, manufacturing, logistics, banking, education and many more.

As explained by Rashid Mansoor, CTO at UK supercomputing startup Hadean, the value of supercomputing lies in the ability to make an accurate projection (of any variety).

The primary purpose of a supercomputer is to compute some real-world phenomenon to provide a prediction. The prediction could be the way proteins interact, the way a disease spreads through the population, how air moves over an aerofoil or electromagnetic fields interact with a spacecraft during re-entry, he told TechRadar Pro.

Raw performance such as the HPL benchmark simply indicates that we can model bigger and more complex systems to a greater degree of accuracy. One thing that the history of computing has shown us is that the demand for computing power is insatiable.

Other commonly cited areas that will benefit significantly from the arrival of exascale include brain mapping, weather and climate forecasting, product design and astronomy, but its also likely that brand new use cases will emerge as well.

The desired workloads and the technology to perform them form a virtuous circle. The faster and more performant the computers, the more complex problems we can solve and the faster the discovery of new problems, explained Shainer.

What we can be sure of is that we will see the continuous needs or ever growing demands for more performance capabilities in order to solve the unsolvable. Once this is solved, we will find the new unsolvable.

By all accounts, the exascale barrier will likely fall within the next two years, but the HPC industry will then turn its attention to the next objective, because the work is never done.

Some might point to quantum computers, which approach problem solving in an entirely different way to classical machines (exploiting symmetries to speed up processing), allowing for far greater scale. However, there are also problems to which quantum computing cannot be applied.

Mid-term (10 year) prospects for quantum computing are starting to shape up, as are other technologies. These will be more specialized where a quantum computer will very likely show up as an application accelerator for problems that relate to logistics first. They wont completely replace the need for current architectures for IT/data processing, explained Gorda.

As Mansoor puts it, on certain problems even a small quantum computer can be exponentially faster than all of the classical computing power on earth combined. Yet on other problems, a quantum computer could be slower than a pocket calculator.

The next logical landmark for traditional computing, then, would be one zettaFLOPS, equal to 1,000 exaFLOPS or 1,000,000 petaFLOPS.

Chinese researchers predicted in 2018 that the first zettascale system will come online in 2035, paving the way for new computing paradigms. The paper itself reads like science fiction, at least for the layman:

To realize these metrics, micro-architectures will evolve to consist of more diverse and heterogeneous components. Many forms of specialized accelerators are likely to co-exist to boost HPC in a joint effort. Enabled by new interconnect materials such as photonic crystal, fully optical interconnecting systems may come into use.

Assuming one exaFLOPS is reached by 2022, 14 years will have elapsed between the creation of the first petascale and first exascale systems. The first terascale machine, meanwhile, was constructed in 1996, 12 years before the petascale barrier was breached.

If this pattern were to continue, the Chinese researchers estimate would look relatively sensible, but there are firm question marks over the validity of zettascale projections.

While experts are confident in their predicted exascale timelines, none would venture a guess at when zettascale might arrive without prefacing their estimate with a long list of caveats.

Is that an interesting subject? Because to be honest with you, its so not obtainable. To imagine how we could go 1000x beyond [one exaFLOPS] is not a conversation anyone could have, unless theyre just making it up, said Calleja, asked about the concept of zettascale.

Others were more willing to theorize, but equally reticent to guess at a specific timeline. According to Grant, the way zettascale machines process information will be unlike any supercomputer in existence today.

[Zettascale systems] will be data-centric, meaning components will move to the data rather than the other way around, as data volumes are likely to be so large that moving data will be too expensive. Regardless, predicting what they might look like is all guesswork for now, he said.

It is also possible that the decentralized model might be the fastest route to achieving zettascale, with millions of less powerful devices working in unison to form a collective supercomputer more powerful than any single machine (as put into practice by the SETI Institute).

As noted by Saurabh Vij, CEO of distributed supercomputing firm Q Blocks, decentralized systems address a number of problems facing the HPC industry today, namely surrounding building and maintenance costs. They are also accessible to a much wider range of users and therefore democratize access to supercomputing resources in a way that is not otherwise possible.

There are benefits to a centralized architecture, but the cost and maintenance barrier overshadows them. [Centralized systems] also alienate a large base of customer groups that could benefit, he said.

We think a better way is to connect distributed nodes together in a reliable and secure manner. It wouldnt be too aggressive to say that, 5 years from now, your smartphone could be part of a giant distributed supercomputer, making money for you while you sleep by solving computational problems for industry, he added.

However, incentivizing network nodes to remain active for a long period is challenging and a high rate of turnover can lead to reliability issues. Network latency and capacity problems would also need to be addressed before distributed supercomputing can rise to prominence.

Ultimately, the difficulty in making firm predictions about zettascale lies in the massive chasm that separates present day workloads and HPC architectures from those that might exist in the future. From a contemporary perspective, its fruitless to imagine what might be made possible by a computer so powerful.

We might imagine zettascale machines will be used to process workloads similar to those tackled by modern supercomputers, only more quickly. But its possible - even likely - the arrival of zettascale computing will open doors that do not and cannot exist today, so extraordinary is the leap.

In a future in which computers are 2,000+ times as fast as the most powerful machine today, philosophical and ethical debate surrounding the intelligence of man versus machine are bound to be played out in greater detail - and with greater consequence.

It is impossible to directly compare the workings of a human brain with that of a computer - i.e. to assign a FLOPS value to the human mind. However, it is not insensible to ask how many FLOPS must be achieved before a machine reaches a level of performance that might be loosely comparable to the brain.

Back in 2013, scientists used the K supercomputer to conduct a neuronal network simulation using open source simulation software NEST. The team simulated a network made up of 1.73 billion nerve cells connected by 10.4 trillion synapses.

While ginormous, the simulation represented only 1% of the human brains neuronal network and took 40 minutes to replicate 1 seconds worth of neuronal network activity.

However, the K computer reached a maximum computational power of only 10 petaFLOPS. A basic extrapolation (ignoring inevitable complexities), then, would suggest Fugaku could simulate circa 40% of the human brain, while a zettascale computer would be capable of performing a full simulation many times over.

Digital neuromorphic hardware (supercomputers created specifically to simulate the human brain) like SpiNNaker 1 and 2 will also continue to develop in the post-exascale future. Instead of sending information from point A to B, these machines will be designed to replicate the parallel communication architecture of the brain, sending information simultaneously to many different locations.

Modern iterations are already used to help neuroscientists better understand the mysteries of the brain and future versions, aided by advances in artificial intelligence, will inevitably be used to construct a faithful and fully-functional replica.

The ethical debates that will arise with the arrival of such a machine - surrounding the perception of consciousness, the definition of thought and what an artificial uber-brain could or should be used for - are manifold and could take generations to unpick.

The inability to foresee what a zettascale computer might be capable of is also an inability to plan for the moral quandaries that might come hand-in-hand.

Whether a future supercomputer might be powerful enough to simulate human-like thought is not in question, but whether researchers should aspire to bringing an artificial brain into existence is a subject worthy of discussion.

Continued here:

I confess, I'm scared of the next generation of supercomputers - TechRadar

Bradykinin Hypothesis of COVID-19 Offers Hope for Already-Approved Drugs – BioSpace

A group of researchers at Oak Ridge National Lab in Tennessee used the Summit supercomputer, the second-fastest in the world, to analyze data on more than 40,000 genes from 17,000 genetic samples related to COVID-19. The analysis took more than a week and analyzed 2.5 billion genetic combinations. And it came up with a new theory, dubbed the bradykinin hypothesis, on how COVID-19 affects the body.

Daniel Jacobson, a computational systems biologist at Oak Ridge, noted that the expression of genes for significant enzymes in the renin-angiotensin system (RAS), which is involved in blood pressure regulation and fluid balance, was abnormal. He then tracked the abnormal RAS in the lung fluid samples to the kinin cascade, which is an inflammatory pathway closely regulated by the RAS.

In the kinin system, bradykinin, which is a key peptide, causes blood vessels to leak, allowing fluid to accumulate in organs and tissue. And in COVID-19 patients, this system was unbalanced. People with the disease had increased gene expression for the bradykinin receptors and for enzymes known as kallikreins that activate the kinin pathway.

Jacobson and his team published the research in the journal eLife. They believe that this research explains many aspects of COVID-19 that were previously not understood, including why there is an abnormal accumulation of fluid in the patients lungs.

From the research, SARS-CoV-2 infection typically starts when the virus enters the body via ACE2 receptor in the nose, where they are common. The virus then moves through the body, integrating into cells that also have ACE2, including the intestines, kidneys and heart. This is consistent with some of COVID-19s cardiac and gastrointestinal symptoms.

But the virus does not appear to stop there. Instead, it takes over the bodys systems, upregulating ACE2 receptors in cells and tissues where theyre not common, including the lungs. Or as Thomas Smith writes in Medium, COVID-19 is like a burglar who slips in your unlocked second-floor window and starts to ransack your house. Once inside, though, they dont just take your stuffthey also throw open all your doors and windows so their accomplices can rush in and help pillage more efficiently.

The final result of all this is what is being called a bradykinin storm. When the virus affects the RAS, the way the body regulates bradykinin runs amuck, bradykinin receptors are resensitized, and the body stops breaking down bradykinin, which is typically degraded by ACE. They believe it is this bradykinin storm that is responsible for many of COVID-19s deadliest symptoms.

The researchers wrote that the pathology of COVID-19 is likely the result of Bradykinin Storms rather than cytokine storms, which have been observed in COVID-19 patients, but that the two may be intricately linked.

Another researcher, Frank van de Veerdonk, an infectious disease researcher at the Radboud University Medical Center in Netherlands, had made similar observations in mid-March. In April, he and his research team theorized that a dysregulated bradykinin system was causing leaky blood vessels in the lungs, which was a potential cause of the excess fluid accumulation.

Josef Penninger, director of the Life Sciences Institute at the University of British Columbia in Vancouver, who identified that ACE2 is the essential in vivo receptor for SARS, told The Scientist that he believes bradykinin plays a role in COVID-19. It does make a lot of sense. And Jacobsons study supports the hypothesis, but additional research is needed for confirmation. Gene expression signatures dont tell us the whole story. I think it is very important to actually measure the proteins.

Another aspect of Jacobsons study is that via another pathway, COVID-19 increases production of hyaluronic acid (HLA) in the lungs. HLA is common in soaps and lotions because it absorbs more than 1,000 times its weight in fluid. Taking into consideration fluid leaking into the lungs and increased HLA, it creates a hydrogel in the lungs of some COVID-19 patients, which Jacobson describes as like trying to breathe through Jell-O.

This provides a possible explanation for why ventilators have been less effective in severe COVID-19 than physicians originally expected. It reaches a point, Jacobson says, where regardless of how much oxygen you pump in, it doesnt matter, because the alveoli in the lungs are filled with this hydrogel. The lungs become like a water balloon.

The bradykinin hypothesis also explains why about 20% of COVID-19 patients have heart damage, because RAS controls aspects of cardiac contractions and blood pressure. It also supports COVID-19s neurological effects, such as dizziness, seizures, delirium and stroke, which is seen in as much as 50% of hospitalized patients. French-based research identified leaky blood vessels in the brains of COVID-19 patients. And at high doses, bradykinin can break down the blood-brain barrier.

On the positive side, their research suggests that drugs that target components of RAS are already FDA approved for other diseases and might be effective in treating COVID-19. Some, such as danazol (to treat endometriosis, fibrocystic breast disease, and hereditary angioedema), stanazolol (an anabolic steroid derived from testosterone), and ecallantide (marketed as Kalbitor for hereditary angioedema (HAE) and the prevention of blood loss in cardiothoracic surgery), decrease bradykinin production. Icatibant, also used to treat HAE, and is marketed as Firazyr, decreases bradykinin signaling and could minimize its effects once its in the body. Vitamin D may potentially be useful, because it is involved in the RAS system and may reduce levels of REN, another compound involved in the system.

The researchers note that the testing of any of these pharmaceutical interventions should be done in well-designed clinical trials.

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Bradykinin Hypothesis of COVID-19 Offers Hope for Already-Approved Drugs - BioSpace

Stranger than fiction? Why we need supercomputers – TechHQ

In2001: A Space Odyssey, the main villain is a supercomputer named Hal-9000 that was responsible for the death ofDiscovery Onescrew.

Need some help remembering Douglas Rains chilling voice as the sentient computer?

Even though HAL-9000 met with a slow, painful death by disconnection, it remains one of the most iconic supercomputers on screen and in fiction. The villainous systems display of humanity in its last moment, singing the lullaby of Daisy Bell urges viewers to recognize the strong sense of self that the machine possesses. However, in the real world, supercomputers are far less sentimental, if not far off in terms of their data processing and problem-solving ability.

What truly separates supercomputers from your not-so-super-computers is the way they process the workload. Supercomputers, fundamentally, adopt a technique called parallel processing that uses multiple compute resources to solve a computational problem. In contrast, our regular computers run on serial computing that solves computational problems one at a time, following a sequence.

For a sense of just how powerful these systems are, supercomputers are frequently used for simulating reality, including astronomical events like two galaxies colliding or predicting how a nuclear attack would play out.

Supercomputers can simulate astronomical events. Source: Unsplash

Now, scaling it down from the fate of the universe, supercomputers are also used for enterprise-wide applications.

Over the years, the power of supercomputers in simulating reality has given humankind a better ability to make predictions or boost product designs. In manufacturing, this ability users can test out countless product designs to discern which prototypes are best suited to the real world. In this sense, supercomputing significantly slashes the number of physical testing resources and helps organizations get products to market quicker, allowing them to seize opportunities to lead in their respective markets and gain extra profit.

Jack Dongarra, a leading supercomputer expert,noted that the industrial use of supercomputers is widespread: Industry gets it. They are investing in high-performance computers to be more competitive and to gain an edge on their competition. And they feel that money is well spent. They are investing in these things to help drive their products and innovation, their bottom line, their productivity, and their profitability, Dongarra said.

Supercomputers are also helping scientists and researchers in developing new life-saving medicines. Presently, supercomputers all over the world are united over the singular goal in the research and development of a COVID-19 vaccine.

Equipped with the capabilities of supercomputers, researches gain unique opportunities to explore the structure and behavior of the infamous virus at a molecular stage. Since a supercomputer can simulate a myriad of interactions between the virus and human body cells, researchers are able to forecast the spread of the disease and seek for promising treatments or vaccine materials.

Japans Fugaku supercomputer, located at the RIKEN Center for Computational Science in Kobe, was recently crowned the worlds fastest. Around 3,000 researchers use it to search and model new drugs, study weather, and natural disaster scenarios, even the fundamental laws of physics and nature. Recently, researchers have been experimenting with using Fugaku for COVID-19 research into diagnostics, therapeutics, and simulations that replicate the spread patterns of the virus.

Fugaku was developed based on the idea of achieving high performance on a variety of applications of great public interest [] and we are very happy that it has shown itself to be outstanding on all the major supercomputer benchmarks, Satoshi Matsuoka, director of the RIKEN Center, said. I hope that the leading-edge IT developed for it will contribute to major advances on difficult social challenges such as COVID-19.

InIBMs company blog, the Director of IBM Research, Dario Gil writes: The supercomputers will run myriad calculations in epidemiology, bioinformatics, and molecular modeling, in a bid to drastically cut the time of discovery of new molecules that could lead to a vaccine.

A supercomputers parallel computing makes it uniquely suited to screen through a deluge of data and, at its core, solve complex problems that require a lot of number-crunching. Erik Lindahl, a professor of biophysics,sharedto date, supercomputers enable scientists to see how liquids diffuse around the proteins, and no other experimental method is capable of that.

We could not do what we do without computers. The computers enable us to see things that we could never see in experiments otherwise.

While Hals infamous line Im sorry Dave, Im afraid I cant do that left viewers to debate if Hal was truly evil or just obeying orders, perhaps its time we bring this conversation back to life and focus on the extraordinary capabilities of these supercomputers.

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Stranger than fiction? Why we need supercomputers - TechHQ

Google Says It Just Ran The First-Ever Quantum Simulation of a Chemical Reaction – ScienceAlert

Of the many high expectations we have of quantum technology, one of the most exciting has to be the ability to simulate chemistry on an unprecedented level. Now we have our first glimpse of what that might look like.

Together with a team of collaborators, the Google AI Quantum team has used their 54 qubit quantum processor, Sycamore, to simulate changes in the configuration of a molecule called diazene.

As far as chemical reactions go, it's one of the simplest ones we know of.Diazene is little more than a couple of nitrogens linked in a double bond, each towing a hydrogen atom.

However, the quantum computer accurately described changes in the positions of hydrogen to form different diazene isomers.The team also used their system to arrive at an accurate description of the binding energy of hydrogen in increasingly bigger chains.

As straight-forward as these two models may sound, there's a lot going on under the hood. Forget the formulaic chemical reactions from your school textbooks - on a level of quantum mechanics, chemistry is a complicated mix of possibilities.

In some ways, it's the difference between knowing a casino will always make a profit, and predicting the outcomes of the individual games being played inside. Restricted to the predictable rules of classical computers, an ability to represent the infinite combinations of dice rolls and royal flushes of quantum physics has been just too hard.

Quantum computers, on the other hand, are constructed around these very same principles of quantum probability that govern chemistry on a fundamental level.

Logical units called qubits exist in a fuzzy state of 'either/or'. When combined with the 'maybe' states of other qubits in a system, it provides computer engineers with a unique way to carry out computations.

Algorithms specially formulated to take advantage of these quantum mechanics allow for shortcuts, reducing down to minutes that which would take a classical super computer thousands of years of grinding.

If we're to have a hope of modelling chemistry on a quantum level, we're going to need that kind of power, and some.

Just calculating the sum of actions that determine the energy in a molecule of propane would hypothetically take a supercomputer more than a week.But there's a world of difference between a snapshot of a molecule's energy, and calculating all the ways they might change.

The diazene simulation used 12 of the 54 qubits in the Sycamore processor to perform its calculations. This in itself was still twice the size of any previous attempts at chemistry simulations.

The team also pushed the limits on an algorithm designed to marry classical with quantum processes, one designed to iron out the errors that arise all too easily in the delicate world of quantum computing.

It all adds up to possibilities of increasingly bigger simulations in the future, helping us design more robust materials, sift out more effective pharmaceuticals, and even unlock more secrets of our Universe's quantum casino.

Diazene's wandering hydrogens is just the start of the kinds of chemistry we might soon be able to model in a quantum landscape.

This research was published in Science.

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Google Says It Just Ran The First-Ever Quantum Simulation of a Chemical Reaction - ScienceAlert