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Watch people lose their minds over SpaceX rocket debris lighting up the sky – BGR

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Chances are, your social media feeds on Thursday night probably included some pictures and videos of the night sky from the Pacific Northwest, thanks to scores of people there aiming their smartphones at a stunning yet mysterious light show unfolding high above them. They raced to capture video of … whatever this was, marveling at the display that looked like something truly dazzling and ethereal. “Ummm … just caught this flying over my home in SW Portland,” one Twitter user wrote. Tweeted another: “Shooting stars? Debris? Anyone else see this in Seattle just now?”

There was a bit of confusion and speculation at first about what was actually taking place — if it was a meteor shower, for example, or some kind of space debris falling through the atmosphere. Plenty of people certainly caught sight of it, from Oregon to as far north as Canada, with video snippets posted across Facebook, YouTube, and Twitter. For now, the consensus seems to be that this was SpaceX rocket debris that people were seeing, according to info from authorities including the Seattle office of the National Weather Service.

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The Seattle office posted on Twitter that what people saw was debris from a SpaceX Falcon 9 rocket 2nd stage that did not successfully have a deorbit burn and re-enter the atmosphere after its launch earlier this month. “Based on the observed video, this looks more likely than a bolide meteor or similar object as they would be moving far faster on impact with our atmosphere.” the office’s official Twitter account added. “There are NO expected impacts on the ground in our region at this time. More info will be posted as it becomes available.”

SpaceX, at least as of the time of this writing, hasn’t confirmed that’s what it was. Nevertheless, people quickly gravitated to this assumption anyway, including news sources. “We got a really good show tonight thanks to SpaceX,” James Davenport, an astronomer from the University of Washington, told NBC-affiliate KING5. “This was the top end, what we call the second stage, of a Falcon 9 rocket. It was actually launched about three weeks ago and it did exactly what it was supposed to do: it put satellites in orbit.”

“The only failure it had was it didn’t complete its de-orbit burn, so it didn’t come down when and where we expected it. It’s just been waiting to fall for the last three weeks and we got lucky and it came right over head.”

This launch that this debris stems from happened on March 4th, and it sent another batch of SpaceX Starlink satellites into orbit. Fun fact: Jonathan McDowell, an astronomer at the Center for Astrophysics, tweeted a thread about the debris that people saw, a thread in which he explained that this re-entry of debris actually happens more often than you might think: “This is the 14th piece of space junk with a mass over one (ton) that has reentered since Jan 1st this year,” McDowell wrote.

Meantime, enjoy some of the reactions to this event:

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Andy is a reporter in Memphis who also contributes to outlets like Fast Company and The Guardian. When he’s not writing about technology, he can be found hunched protectively over his burgeoning collection of vinyl, as well as nursing his Whovianism and bingeing on a variety of TV shows you probably don’t like.

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NASA's Voyager 1 resumes sending engineering updates to Earth – Phys.org

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NASA’s Voyager 1 spacecraft is depicted in this artist’s concept traveling through interstellar space, or the space between stars, which it entered in 2012. Credit: NASA/JPL-Caltech

For the first time since November, NASA’s Voyager 1 spacecraft is returning usable data about the health and status of its onboard engineering systems. The next step is to enable the spacecraft to begin returning science data again. The probe and its twin, Voyager 2, are the only spacecraft to ever fly in interstellar space (the space between stars).

Voyager 1 stopped sending readable science and engineering data back to Earth on Nov. 14, 2023, even though mission controllers could tell the was still receiving their commands and otherwise operating normally. In March, the Voyager engineering team at NASA’s Jet Propulsion Laboratory in Southern California confirmed that the issue was tied to one of the spacecraft’s three onboard computers, called the flight data subsystem (FDS). The FDS is responsible for packaging the science and engineering data before it’s sent to Earth.

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The team discovered that a responsible for storing a portion of the FDS memory—including some of the FDS computer’s software code—isn’t working. The loss of that code rendered the science and engineering data unusable. Unable to repair the chip, the team decided to place the affected code elsewhere in the FDS memory. But no single location is large enough to hold the section of code in its entirety.

So they devised a plan to divide affected the code into sections and store those sections in different places in the FDS. To make this plan work, they also needed to adjust those code sections to ensure, for example, that they all still function as a whole. Any references to the location of that code in other parts of the FDS memory needed to be updated as well.

NASA’s Voyager 1 resumes sending engineering updates to Earth
After receiving data about the health and status of Voyager 1 for the first time in five months, members of the Voyager flight team celebrate in a conference room at NASA’s Jet Propulsion Laboratory on April 20. Credit: NASA/JPL-Caltech

The team started by singling out the responsible for packaging the spacecraft’s engineering data. They sent it to its new location in the FDS memory on April 18. A radio signal takes about 22.5 hours to reach Voyager 1, which is over 15 billion miles (24 billion kilometers) from Earth, and another 22.5 hours for a signal to come back to Earth. When the mission flight team heard back from the spacecraft on April 20, they saw that the modification had worked: For the first time in five months, they have been able to check the health and status of the spacecraft.

During the coming weeks, the team will relocate and adjust the other affected portions of the FDS software. These include the portions that will start returning science data.

Voyager 2 continues to operate normally. Launched over 46 years ago, the twin Voyager spacecraft are the longest-running and most distant spacecraft in history. Before the start of their interstellar exploration, both probes flew by Saturn and Jupiter, and Voyager 2 flew by Uranus and Neptune.

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Osoyoos commuters invited to celebrate Earth Day with the Leg Day challenge – Oliver/Osoyoos News – Castanet.net

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Osoyoos commuters can celebrate Earth Day as the Town joins in on a national commuter challenge known as “Leg Day,” entering a chance to win sustainable transportation prizes.

The challenge, from Earth Day Canada, is to record 10 sustainable commutes taken without a car.

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“Cars are one of the biggest contributors to gas emissions in Canada,” reads an Earth Day Canada statement. “That’s why, Earth Day Canada is launching the national Earth Day is Leg Day Challenge.”

So far, over 42.000 people have participated in the Leg Day challenge.

Participants could win an iGo electric bike, public transportation for a year, or a gym membership.

The Town of Osoyoos put out a message Monday promoting joining the national program.

For more information on the Leg Day challenge click here.

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Early bird may dodge verticillium woes in potatoes – Manitobe Co-Operator

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Verticillium wilt is a problem for a lot of crops in Manitoba, including canola, sunflowers and alfalfa.

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Field stress can translate to potato skin flaws.

In potatoes, the fungus Verticillium dahlia is the main cause of potato early die complex. In a 2021 interview with the Co-operator, Mario Tenuta, University of Manitoba soil scientist and main investigator with the Canadian Potato Early Dying Network, suggested the condition can cause yield loss of five to 20 per cent. Other research from the U.S. puts that number as high as 50 per cent.

It also becomes a marketing issue when stunted spuds fall short of processor preferences.

Verticillium in potatoes can significantly reduce yield and, being soil-borne, is difficult to manage.

Preliminary research results suggest earlier planting of risk-prone fields could reduce losses, in part due to colder soil temperatures earlier in the season.

Unlike other potato fungal issues that can be addressed with foliar fungicide, verticillium hides in the soil.

“Commonly we use soil fumigation and that’s very expensive,” said Julie Pasche, plant pathologist with North Dakota State University.

There are options. In 2017, labels expanded for the fungicide Aprovia, Syngenta’s broad-spectrum answer for leaf spots or powdery mildews in various horticulture crops. In-furrow verticillium suppression for potatoes was added to the label.

There has also been interest in biofumigation. Mustard has been tagged as a potential companion crop for potatoes, thanks to its production of glucosinolate and the pathogen- and pest-inhibiting substance isothiocyanate.

Last fall, producers heard that a new, sterile mustard variety specifically designed for biofumigation had been cleared for sale in Canada, although seed supplies for 2024 are expected to be slim. AAC Guard was specifically noted for its effectiveness against verticillium wilt.

Timing is everything

Researchers at NDSU want to study the advantage of natural plant growth patterns.

“What we’d like to look at are other things we can do differently, like verticillium fertility management and water management, as well as some other areas and how they may be affected by planting date,” Pasche said.

The idea is to find a chink in the fungus’s life cycle.

Verticillium infects roots in the spring. From there, it colonizes the plant, moving through the root vascular tissue and into the stem. This is the cause of in-season vegetative wilting, Pasche noted.

As it progresses, plant cells die, leaving behind tell-tale black dots on dead tissue. Magnification of those dots reveals what look like dark bunches of grapes — tiny spheres containing melanized hyphae, a resting form of the fungus called microsclerotia.

The dark colour comes from melanin, the same pigment found in human skin. This pigmentation protects the microsclerotia from ultraviolet light.

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