It is amazing to see how our Earth offers us so many vivid places to discover if only one observes. Even something as plain as frozen land full of ice has much in its abyss. PhD student Austin Carter (@austincarter642), from the Scripps Institution of Oceanography decided to take a camera through the East Antarctic ice sheet to explore the oldest layers of ice in the region. He collaborated with the Center for Old Ice Exploration (COLDEX), which aspires to extract the continent’s oldest ice. Carter’s aim was to travel to the bottom of the spot and see what lies underneath. Sharing the results in a video, Carter left the audience amazed by what his camera recorded. 

Representative Image Source: Pexels| Sandy
Representative Image Source: Pexels | Sandy

Carter and his team dug two boreholes of 314-foot and 672-foot to study the ice core to learn more about the Earth’s climate history, as per The Antarctic Sun. As the video started, the camera captured a glimpse of presumably him or his team member on the top surface of the ice sheet. He waved at the camera which slowly moved into a hole carved into the sheet. In the text overlay, Carter wrote, “You are now entering the East Antarctic Ice Sheet.” He revealed that he dug an ice core in Allan Hills to try and see how deep they can go and what they can find at the base of the same.

Representative Image Source: Pexels| Pixabay
Representative Image Source: Pexels | Pixabay

The camera moved through a tiny circle, just enough to fit and move the camera downwards in a straight line. The video was sped up to go through the many, many layers of ice and to reach the base. The curiosity to observe the ice core came after Carter and his team discovered one of the oldest ice ever, recorded to be 2.7 million years old. The camera kept moving downwards at a fast pace, and there was such a depth that it didn’t seem to end. One can only imagine how deep the hole must have been that despite having the video fast-forwarded, it took time to reach the base.


via GIPHY


The camera went through the hole, surrounded by ice and there wasn’t much visible except a hole going further down and a few cracks. Carter revealed that they hoped to find older ice, if at all, for further study. “We hope to find even older ice to learn about the fundamental properties of our climate system.” Finally, after feeling like one has been falling into nothing for a long, long time, the camera revealed the bottom of the ice core.

Image Source: TikTok|@ravenmoonshade
Image Source: TikTok | @ravenmoonshade

Image Source: TikTok| @e_v_e__
Image Source: TikTok | @e_v_e__

The view wasn’t too clear and there was some snow at the bottom of the core after which Carter mentioned, “You have reached the bottom of the ice core.” In a comment, Carter revealed that the bottom had rock along with some ice and deposits. Several people were curious and baffled at the same time. Many even tried to guess the depth of the core dug by Carter and his team. @terrawan said, “I would say something between 4-5 meters?” @idiotsayswhat_ wrote, “Felt like I was driving through an interdimensional portal.” @positivecookiesmedia added, “I felt cold just by watching.” @deejlishious remarked, “That’s beautiful, thank you for sharing.”



You can follow Austin Carter (@austincarter642) on TikTok for more content on the study of ice.

  • The drawer problem: Why so many of us can’t let go of our old electronics, and what we can do about it
    Photo credit: Peter Dazeley/Photodisc via Getty ImagesThis look familiar?

    Think about the last smartphone, tablet or smartwatch you stopped using. Odds are it is not in a recycling bin or a new owner’s hands; it is sitting in a drawer.

    From our survey of 4,000 American consumers, we found the single most common thing people did with a device they were finished with was nothing at all: 39% simply stored it. Recycling and reselling, outcomes better for the environment, each accounted for only about 1 in 10 devices. Throwing devices in the trash claimed another 9%.

    What people do with old electronics

    Funded by the National Science Foundation, our multidisciplinary team blended our expertise in causal inferencesustainability and cybersecurity, to work on the tangled question of what people do with their consumer electronics when they’re done using them. We used statistical models to connect what people say – that is, their stated knowledge and attitudes – to what they actually did.

    Why the drawer wins

    Two main forces keep devices in the drawer. The first is anxiety about data. People who worried that recycling or reselling a device would compromise their data were 14% and 9% more likely to store it instead.

    The second force is simply not knowing how to. People who did not know where to recycle were 10% more likely to hold onto a device, and many also kept old gadgets as a perceived data backup.

    Recycling and reselling electronics are a lot easier than a lot of people think. In the U.S., the national chain Best Buy accepts devices for recycling; reselling online is convenient with vendors such as Back Market and Gazelle.

    Just be sure to wipe data before parting with a phone or computer. Also, remove the device from your account, for instance with Apple or Android. Unless you do, the device stays locked to you, and no one else can use it.

    We also compared what people intended to do with what they had actually done. This led to a telling detail: Data security worries led to people storing devices at a greater rate than they said they intended to.

    In other words, the fear of leaking personal data kicks in only when someone is facing the real decision of whether to hand off their device to a recycler or secondhand buyer.

    Getting at why people don’t recycle

    Researchers have long studied why people do or don’t recycle electronics: Convenience, awareness and incentives showed up as affecting the decision. But prior work examined recycling as the only option.

    Instead of considering the issue as a yes-or-no vote on recycling, we treat it as a comparison between different options: Storing, reselling, donating, trading in, recycling and throwing away the device in the trash. When modeling this way, trade-offs became visible.

    Knowing where to recycle, for instance, made recycling 47% more likely, but it also pulled people away from reselling, which is often the more environmentally friendly choice. You can explore the survey results in our interactive dashboards.

    Getting people to let go

    Storage is the worst of both worlds: A device sitting unused for years loses its resale value, and erasing its data only gets harder over time. The good news is that the main barriers – data concerns and not knowing where to turn – can be addressed with better information.

    We are experimenting with information interventions that walk people through their options, including how to securely wipe their data. We are testing nudges with randomized, controlled trials to test what leads people to give their old electronics a second life.

    It might be a good time to remember what old devices you’re holding onto and revisit your reasons for not letting go of them.

    This article originally appeared on The Conversation. You can read it here.

  • Solar-powered boat feasts on trash and could solve the ocean’s plastic waste problem
    Photo credit: Ocean Cleanup on YouTubeThe Interceptor boat-barge could significantly clean our waters.

    Our oceans have a plastic problem. While it’s difficult to put a 100% accurate number on it, scientists estimated about 4.8 to 12.7 million metric tons of plastic waste entered the ocean in 2010 alone according to the journal Science. This issue has caused scientists and engineers to create a boat-barge in Los Angeles that skims the oceans to gobble up the plastic we leave behind.

    Devised by the non-profit Ocean Cleanup organization, the garbage-gulping Interceptor boat-barge is actually a smaller platform nestled within a larger boat. A floating barrier moves collected trash into the device onto a conveyor belt. An automatic shuttle then collects the trash from the conveyor to send it to a separate barge where there are six dumpsters to hold it. The solar-powered system can hold up to 20,000 lbs. of garbage. The trash is then separated into different categories (plastics, metal, etc.) so they can be disposed of responsibly.

    Catching ocean trash from the source

    Ocean Cleanup hopes to make a dent cleaning the Great Pacific Garbage Patch in the Pacific Ocean. However, they decided to first attack the plastic ocean problem at its source: rivers. When it rains, a lot of trash from the hills and valleys washes down into the nearest river. While there is significant ocean trash taken from beaches, they have found that the lion’s share of garbage that floats into our oceans actually comes from rivers and tributaries that lead into it. Essentially, the plan is to get ocean trash before it even enters the ocean.

    “We have to turn the faucet off before we can scoop the ocean, or else all we’re doing is taking out legacy trash to replace it with new trash,” James Patterson, the operations manager of Ocean Cleanup said to The Guardian. “Before you can clean out the Great Pacific Garbage Patch, you really need to turn off the source.”

    How the Interceptor is helping Los Angeles and beyond

    There is an Interceptor already doing its work at the mouth of Ballona Creek in Culver City, California. Since 2025, the Interceptor has prevented 143,710 lbs. of trash from entering the ocean via the creek. As a bonus, the Interceptor’s trash sweeping has lowered government budgets for beach grooming. Since there is less trash, the beach doesn’t need to be cleaned as often.

    There are two more Interceptors planned to be at the mouths of the San Gabriel River and the Los Angeles River. This can help clean up the rivers for the upcoming 2028 Summer Olympics for aquatic events.

    There are currently 21 Interceptor systems throughout the globe. Countries using them include Indonesia, Vietnam, Jamaica, Guatemala, the Dominican Republic, and Malaysia.

    If this is an issue that speaks to you, you can help even if you don’t live near an ocean. There may be a nearby river or creek that could benefit from volunteer cleanups. Do some research to find an organization near you to volunteer. If you can’t locate one, groups like River Cleanup can help you organize your own group. Much like how a small drop contributes to a large ocean, a small pick-up can make a big difference.

  • As climate change causes flooding in London, experts found an effective, low-cost solution: beavers
    Photo credit: CanvaBeavers are solving several climate issues.

    West London’s Greenford Tube station had an ongoing problem. Due to climate change, the station would often flood during heavy rains. The rain would cause a nearby creek to overflow, flooding the ticket office and beyond. But in 2023, officials tried a natural method to help offset the flooding. All they had to do was bring back a vanished species to the area: beavers.

    A family of five beavers was released through the Ealing Beaver Project to act as “nature’s engineers” and help solve London’s flooding problem. Within weeks, the beavers built a dam in the creek, causing it to pool into a pond. Along with that, the beavers created new pathways and tributaries that further diverted water from the main creek. The small group of beavers not only built seven dams in their first year but also expanded biodiversity near populated areas.

    The combination of rerouting water and felling trees has brought new animals and species into the area. Some of the new additions inhabiting the creek are freshwater shrimp, two types of bats, a rare brownstreak butterfly species, and eight new species of birds. A whole new nature preserve is forming remarkably close to urban areas. In fact, the beavers are working just 100 meters behind a McDonald’s.

    What happened to the original beavers?

    The whole project is addressing the changing climate, but also undoing another man-made issue. The Eurasian beaver had been hunted to extinction in England and Wales more than 400 years ago. At the time, beavers were a valuable source of meat, fur for coats, and castoreum. Castoreum is a secretion from beavers that was used to enhance perfumes and flavor food. Had beavers still thrived, one could argue that the climate change-related flooding might not have occurred in the first place.

    The Ealing Beaver Project is one of several efforts to bring beavers back to the United Kingdom. One of the first attempts to repopulate beavers occurred in Scotland, where Norwegian beavers were introduced to Inverness-shire. Norwegian beavers were chosen because scientists determined they were the most genetically similar to the extinct U.K. beaver population.

    This beaver introduction hasn’t just solved a climate-related flooding problem, but it has also brought other benefits. Visitors and residents enjoy the newly biodiverse nature reserves by going on “beaver safaris” to see the creatures at work in person. Then there is the obvious benefit of the beavers solving these flooding problems effectively free of charge.

    Beavers are an international solution

    The U.K. isn’t the only place using beavers to address climate issues. Beavers were brought in to create dams and conserve river water during droughts in Utah. Similarly, beaver reintroduction into California’s streams and rivers was so beneficial that it was codified into state law.

    This shows that something as funny-looking as a swimming rodent with buck teeth and a paddle tail can make a huge difference in whether a place has enough natural water or too much. Humans just have to give a dam about them.

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