Security teams log 54% of successful attacks and alert on just 14%. The rest move through your environment unseen.
The Picus whitepaper shows how breach and attack simulation tests your SIEM and EDR rules so threats stop slipping by detection.
Today’s U.S. electrical grid, among the largest, most complex systems ever built, is operating at its limit. The combination of rapid industrial growth, more frequent extreme weather, and a record surge in electricity use has pushed the grid to its breaking point, according to the U.S. Department of Energy.
Built decades ago for a more predictable world in which power came mostly from centralized coal or gas plants and electricity use grew at a steady pace, the grid faces unanticipated strain due in part to growing demand from data centers. The jobs of professionals managing the infrastructure have evolved from traditional engineering tasks to complex, fast-moving challenges.
Industry reports show that millions of modern digital sensors, smart meters, and grid monitors are generating nonstop waves of information. The sheer volume of data requires instant, automated computer analysis because human operators cannot process it fast enough.
Pressure on utilities stems from two sources: a spike in electricity demand and a shift in how power is generated.
An example of the operational strain can be seen at the regional level. With the recent deployment of artificial intelligence tools and high-performance computing, data centers require immense amounts of energy to operate. The largest power transmission utility in Texas recently reported a staggering 220 gigawatts of new connection requests, driven largely by a surge in AI and cloud-computing facilities, according to a CNBC report.
Alongside the rise in regional demand, global energy networks are absorbing an unpredictable variety of weather-dependent renewable energy such as wind and solar. The switch creates a volatile operating environment wherein supply and demand are balanced, second by second, to prevent blackouts.
The challenges are compounded by the vulnerability of the grid’s physical and digital framework.
More-frequent severe weather events cause costly disruptions, such as the devastating winter freeze that crippled the Texas grid and record-breaking heat waves that have overloaded transformers.
Simultaneously, the energy networks’ digital architecture faces threats. As utilities replace outdated analog equipment with smart meters and control systems, they are increasingly vulnerable to cyberattacks.
To overcome physical and digital vulnerabilities, grid reliability organizations, such as those conducting North American security simulations like GridEx, emphasize that the grid must become smarter, more agile, and completely automated. Energy researchers are noting that the key to this change lies in integrating AI across every layer of utilities’ operations.
According to energy industry experts, using AI to manage power systems is no longer a futuristic research project; it has become a baseline operational necessity. Grid analysts emphasize that traditional grid-planning methods are too slow to handle rapid energy dynamics or to balance volatile renewable energy in real time within decentralized power systems such as microgrids.
AI can fill the gap by processing vast amounts of data instantly. Machine learning algorithms can quickly analyze information from thousands of sensors, historical usage patterns, and weather forecasts to predict issues before they happen.
An industrial digitization study conducted by McKinsey & Co. indicated that integrating advanced data and automation across infrastructure networks could reduce system design errors, decrease equipment downtime by up to 50 percent through predictive maintenance, and extend the lifespan of power machinery by up to 40 percent.
From forecasting energy spikes to automatically fixing localized voltage drops, AI acts as the digital backbone of a self-healing grid, experts say. Deploying the complex systems requires a new workforce: power engineers who understand data science, as well as data scientists who understand electricity.
To bridge the gap between groundbreaking AI research and practical field deployment, IEEE Educational Activities, in partnership with the IEEE Power & Energy Society, has launched the online Artificial Intelligence for Power and Energy Systems course program.
The program explores core challenges threatening modern utilities. Rather than treating AI as an unverified black box that operates without human supervision, the curriculum focuses on safety, asset preservation, and strict reliability standards.
The curriculum is designed to educate power system engineers, utility managers, and data scientists tasked with modernizing the grid. The program was developed by Fangxing “Fran” Li, professor of electrical engineering and computer science at the University of Tennessee in Knoxville and chair of the IEEE Working Group on Machine Learning for Power Systems.
The program breaks down the technical transition into five modules that bridge high-level theory with real-world solutions:
AI fundamentals. This module teaches engineers how basic machine learning models apply to power grids. It discusses how specialized neural networks solve complex power-flow calculations and how AI models can safely transition from computer simulations to physical, high-voltage equipment.
Accelerating grid control. Learners are taught to leverage deep reinforcement learning, an AI approach that uses trial and error, to accelerate automated grid adjustments during emergency power events.
Forecasting and data analytics. Using predictive modeling, engineers learn how to predict sudden demand surges, variable wind and solar outputs, and fluctuating wholesale electricity market prices to keep power affordable and available.
Physics-informed and safe AI. To address trust—a barrier to utility AI adoption—this course covers AI models hard-coded to obey the laws of physics. The approach is designed to ensure that automated algorithms never make erratic choices that damage grid equipment.
Generative AI and next-generation tech. Learners can explore the frontier of utility technology, including graph neural networks and large language models. This module highlights how generative AI can process complex, interdisciplinary data to streamline utility planning, emergency responses, and regulatory reporting.
The algorithmic literacy and practical execution tools provided by the course program can help convert systemic risks into grid resilience.
For individual access, visit the IEEE Learning Network. If you are looking for customized organizational options, contact a content specialist to discuss volume pricing.
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£110 off Apple’s newest MacBook Pro is a discount that rarely shows up this early after launch, and Currys has it live right now.
The 14-inch MacBook Pro with Apple’s M5 chip has dropped from £1,359 to £1,249 at Currys, a saving of £110 and perfect timing for thinking about back-to-school tech.
Apple’s MacBook Pro just got a really good price cut, saving you £110
Apple’s MacBook Pro has just landed a genuinely impressive price cut, knocking a full £110 off and making now a great time to buy.

New Apple silicon rarely gets discounted this quickly, since Apple tends to hold firm on pricing for months after a launch, which makes catching the M5 Pro £110 cheaper within its first sale window feel like unusually good timing.
That timing matters more once you look at what’s actually inside, since the M5 chip pairs a faster CPU with a more powerful GPU and a 16-core Neural Engine, meaning quicker exports, smoother multitasking across heavy apps and Apple Intelligence features that respond instantly rather than lag.
Our tech expert Jessica Gorringe compared the Pro against the new MacBook Air M5 and found it pulling ahead in exactly the areas that matter for heavier work, with a sharper Liquid Retina XDR display, a longer claimed battery life and noticeably more ports.


That XDR display hits up to 1,600 nits at its peak, runs an adaptive refresh rate up to 120Hz through ProMotion and covers the full P3 colour range, which makes editing photos or watching HDR content look noticeably richer than on a standard panel.
Apple also rates this MacBook Pro for up to 24 hours of video streaming, which in real terms means it can realistically get you through a full working day or a long-haul flight without you needing to go looking for an outlet.
That same confidence about staying unplugged carries over to the port selection, with three Thunderbolt 4 ports, an HDMI output and an SDXC card slot meaning fewer dongles cluttering your desk when you’re actually trying to get work done.
Day to day, Apple Intelligence runs natively on that same chip to help with writing and everyday tasks, backed by privacy protections Apple says keep your data off limits to everyone, including itself, while Touch ID and FileVault handle the security side in the background.
Apple rarely lets its newest hardware sit on sale for long, so anyone weighing up whether the extra ports and display actually justify the Pro price tag now has a much shorter list of reasons to keep waiting.
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Home Depot is a one-stop shopping destination for all things related to home improvement, but you’ve likely visited the store for more than just renovation supplies. Big Orange also carries appliances, furniture, lawn and garden supplies, holiday decorations, home decor and more.
But if you pick up the wrong tool or a ceiling fan that doesn’t fit your space, Home Depot has a generous return policy for most items, but if you’re a regular customer, take note — the store recently changed the rules for a few products. If you enjoy scaring trick or treaters with fake skeletons at Halloween or decking the halls at Christmas, be aware that any holiday decor purchased at Home Depot must now be returned within 30 days. It also cannot be used, and you must have a proof of purchase.
The home improvement store offers an even shorter return window for some items, allowing only seven days for air conditioners, dehumidifiers, and gas generators. Effective July 2026, Home Depot added pumps, portable evaporation products, and portable heaters to its seven-day return policy. Again, they must be unused and have proof of purchase. For many products, the store’s typical 90-day return policy remains in place.
While the home improvement store didn’t issue any official statement on the updated return policies, they are likely intended to stop shoppers from abusing these policies or using products for scams. Some shoppers may attempt to buy an item, use it for a short period, and then return it for a full refund. This is most common with seasonal decor, high-value items or tools with a specific use that you may only need for one job.
If you’re worried about the return window for a specific item, check Home Depot’s return policy online. The store maintains that “most merchandise” falls under its 90-day return window, provided you have a receipt or other proof of purchase. However, the store also has 30-day, seven-day, and even 48-hour windows for specific items. Major appliances, for example, have only a two-day return window, while the store offers 30 days for consumers to return furniture and consumer electronics. Most plants can be returned within 90 days.
Meanwhile, customers who have a Home Depot consumer credit card, the Pro Xtra credit card, or a commercial account with the store. Purchases made with those cards have a year-long return window, unless they fall under those shorter return windows listed on Home Depot’s website!
Longtime Slashdot reader AmiMoJo shares a report from Electrek: Waymo co-CEO Dmitri Dolgov laid out the clearest technical case yet for why cameras alone can’t take a self-driving system to full autonomy, arguing that “weak sensing” hits a safety ceiling long before it reaches superhuman performance. […] Dolgov made the comments in a talk at Y Combinator’s Startup School, walking through the lessons Waymo has learned building its driver over close to two decades. He put the sensor question on the table plainly: “there’s been a long-standing debate about what kind of sensors do you actually need for autonomous driving.”
His answer draws the line that camera-only advocates tend to skip right past. “Humans of course can drive with just eyes, so there’s that proof of existence,” he said. “If the goal were to just approximately match human performance or to build an assist product, that’s a very reasonable way to go.” Then the catch. If you’re targeting full autonomy and strongly superhuman performance, he said, “you find that weak sensing just leads to a safety curve that flattens out way too early.” Dolgov said that cameras, lidar, and radar are complementary rather than redundant: “These different sensing modalities, they’re not backups to each other,” and combining them produces a view “vastly superior to what you get with any one sensor.” He said multiple sensor types also protect against physical failures, such as a leaf or branch blocking a camera, while helping Waymo climb the “exponential ladder of nines” required for fully driverless safety.
Dolgov warned that camera-only systems may improve quickly before plateauing “way before the performance that is required by your product.” He also pushed back on the cost argument against lidar, calling it “a number that has a fairly short shelf life” as hardware costs continue to fall.
Read more of this story at Slashdot.
If we asked you what tools a cowboy in the Wild West needed most, you’d probably say their spurs, their saddle, their Stetson hat, and perhaps the lasso. You’d be right, too, but just as our modern misconceptions about cowboys give us a historically warped view of how they really were, spurs and saddles aren’t the whole story. Cowboys during the Wild West — roughly the latter half of the 19th century — relied on a lot more than just the stereotypical accouterments of their mythologized career. Some of the tools they relied on weren’t always for the reasons you’re thinking — and of course, there’s a lot of interesting history behind each and every one that’s worth digging into.
We want to take a very brief look at Wild West-era tech that would have played an important role in a cowboy’s life, even if only indirectly. Some of the most groundbreaking innovations in human history came about during the westward-moving American frontier. Thus, America’s beloved cattle drivers came to rely on them in some fashion. Let’s take a look at these five items in particular.
Throughout history, humans did think up some quick, long-distance communication methods, like semaphores. The telegraph took that to the next level. The electric telegraph, as we know it, sent its first official message in 1844. For the first time in history, a message could travel the miles at virtually the speed of light. You can still send a telegram today if you really want to.
Since the American West was so vast, so far from the eastern seat of government, and still expanding, the telegraph closed the distance, in a sense. Updated prices, standardized time zones, train schedules, it could all be sent much faster than even the Pony Express. Since cowboys worked primarily as cattle drivers directing cattle to railway depots, from whence they’d go east to the slaughterhouses, the telegrams were the superior means of communication over these vast distances; the telegraph affected supply chains of all kinds, like cotton and textiles, in some cases completely upheaving how they’d functioned previously. The telegraph might transmit the price of beef and coordinate the rail, and thus would have been a pivotal — even if unspoken — technological advancement underpinning a cowboy’s career.
Aside from that, the telegraph would have helped a cowboy in other ways. News, for example. News could arrive as it happened, so cowboys no longer had to wait on riders or word of mouth. They also had the ability to wire money orders via Western Union as early as 1870.
Nowadays we don’t think twice about canned food. It’s so commonplace and dull that it doesn’t even merit a conversation, but it’s hard to overstate just how big of a technological advance this was in the 19th century. Food spoils quickly, so before canning — heating food and sealing it in an airtight container — there were massive constraints on how and where food could be stored, how it was transported, and how long you could safely eat it. After canning, long journeys halfway around the globe without frequent stops for provisions became possible. It changed how people fed their families, how wars were fought, and unsurprisingly, how cowboys lived.
Canned food quickly became available in the American West, for obvious reasons. Cowboys might have enjoyed meat, fish, vegetables, and fruit thanks to it while out on cattle drives far from anywhere that would sell it fresh. They often ate from chuck wagons, white-topped wagons carrying enough to feed everyone on the trail (via NCSU). Some of the brands you’re most familiar with (Campbell’s Soup, for one) started out in the late 19th century. It’s entirely possible a cowboy over 100 years ago was enjoying the tomato soup that you now take for granted as part of your emergency supply in the pantry.
Granted, not all their food was canned, and it wasn’t sacrosanct; during that period, there were times when poorly done canning led to rotten food and consequently, a public mistrust of the process.
Guns loaded with bullets in brass cartridges have been the norm for over a century. Prior to that, a trained soldier needed a full minute to breech-load a musket with a paper cartridge and a single shot. Battles up to and including the American Civil War (a war already deploying submarines) were fought in lines of men standing in open fields while they shot, reloaded, and shot. All of that changed in the mid-19th century with the proliferation of metallic cartridges. Aside from being faster to reload, metallic cartridges made guns safer to shoot and kept powder dry for longer (via American Rifleman).
For one, if cowboys were attacked on the trail, it usually was an ambush, likely necessitating a gun that can load and fire quickly. The term “vigilante” originates from that time since law enforcement was scarce in the regions where cowboys might have worked. Dangers on the trail included predators, cattle thieves (better known as rustlers), and in some cases Native American tribes, so a cowboy armed himself for self-defense and to protect his boss’ herds (via NCSU). Further, cowboys were on long cattle trails that pitted them against wet weather, so paper cartridges wouldn’t be ideal.
The irony is that cowboys did need guns, but not for the reasons you’d suspect. The reality was cowboys shooting an attacking bear, or rustlers knowing there wasn’t a lawman for miles who’d punish the crime.
Alongside metallic cartridges, guns made significant strides around the same time. Guns went from single-shot affairs to weapons that a person could shoot and reload in quick succession, particularly repeater rifles and revolvers. Gun manufacturers like Smith & Wesson and Winchester became household names at this time. As such, a cowboy might have access to a Winchester 1873 or a Colt 1873 (known as the Colt Single Action Army), a repeating rifle and revolver, respectively (via Lamar University Press).
Coupled with metallic cartridges, the benefits are clear: cowboys had guns they could shoot and reload quickly. As previously stated, a cowboy faced several threats where a firearm would be essential. However, there’s a lot more nuance to cowboys and guns than most may realize. For one, these early repeating weapons were finicky. Misfires could happen, and generally speaking, gunshot injuries were more often accidental than not.
Then there’s the less spoken-of side to the Wild West: gun control. Gun violence wasn’t as rampant as many believe, but people at the time were still fed up with it. In some cases, cowboy gangs were the main aggressors. Cities like Tombstone enacted strict laws on ownership and open carrying, in response (via Smithsonian). If you’re imagining a Hollywood movie where a cowboy struts into town with a six-shooter bouncing on his hip, the reality is more likely that he’d make a beeline to the local officer and surrender it for the duration of his stay. If he didn’t, he might spend his last moments looking down that officer’s barrel.
Locomotive engines rose to prominence in the 19th century, changing everything as the telegraph did. Now, heavy cargo could be taken long distances relatively quickly, safely, and reliably, and the average person had access to cheaper goods from faraway places. Beef was one of these things. The demand for beef from growing cities in the east could be sated with the immense herds of longhorns in the sprawling west. All that was needed was cowboys to drive herds (numbering in the thousands) between mountains, across plains and rivers, to their cattle cars. Cowboys took long routes such as the famous Chisholm Trail to guide cattle safely from pastures to the rail, with all the environmental, animal, and human dangers that entailed.
Cow towns (or cattle towns) arose as a direct result of this, to service tired cowboys at the end of their route (via Kansas Historical Society). These cow towns epitomized the Wild West idea of a town we all have in our heads: hoof-churned streets, roisterous saloons, and violent clashes between the law and armed men. Even once the cows stopped coming, many of these towns found new sources of prosperity.
The train made a lucrative business out of bringing beef to places that didn’t have much. That business needed burly men who could be trusted to get a horde of stubborn animals from point A to B safely. So even though many cowboys probably rarely — if ever — set foot on a train, many of them would have had no employment without it.
A Canadian man pleaded guilty today to his role in accessing company accounts at cloud storage provider Snowflake and stealing data from at least 165 organizations in a scheme to extort millions of dollars from victims.
26-year-old Connor Riley Moucka, also known as Alexander Moucka and Waifu, was arrested on October 30, 2024, for stealing data of hundreds of millions of individuals from companies using Snowflake’s storage service.
Between February and October 2024, Moucka and John Erin Binns, also indicted for these attacks, accessed Snowflake accounts not protected by multi-factor authentication (MFA) using logins stolen via infostealer malware.
Without MFA enabled, the threat actor needed only the correct usernames and passwords to log into customer accounts.
According to court documents, the unauthorized access was used to identify valuable information (e.g., organization name, user roles, IP addresses) in cloud storage instances using custom software.
Moucka and Binn tried to extort multiple companies after stealing terabytes of data from their Snowflake tenant environments and obtained at least $2.5 million in bitcoin from at least three victims.
The following information was stolen from the breached accounts:
They also advertised on various hacker forums to sell the information for fiat currency or cryptocurrency, and Moucka obtained at least $ 495,000 this way.
In a press release today, the U.S. Department of Justice says that “in at least one instance, Moucka re-extorted a victim with threats of further disclosure of the victim’s stolen data.”
“Moucka used the stolen data of a government officer and members of a then-former government officer’s immediate family in this re-extortion attempt.”
The DoJ says that victim companies suffered more than $9.5 million in losses and more than 100 million individuals have been affected by the Snowflake attacks.
Moucka pleaded guilty to four counts of the indictment (computer fraud, wire fraud, aggravated identity theft, and a related conspiracy) and is scheduled for sentencing on October 27.
He faces a maximum sentence of 32 years in prison.
At the time of the attacks, Binns resided in Turkey, where he was arrested. A local court approved an extradition request from U.S. prosecutors but it was contested.
The list of impacted companies includes AT&T, Ticketmaster, Santander, Pure Storage, Advance Auto Parts, Los Angeles Unified, QuoteWizard/LendingTree, and Neiman Marcus.
Following these data breaches, Snowflake announced it would enforce MFA protection and require all passwords to be at least 14 characters long.
Security teams log 54% of successful attacks and alert on just 14%. The rest move through your environment unseen.
The Picus whitepaper shows how breach and attack simulation tests your SIEM and EDR rules so threats stop slipping by detection.
Maksim Silnikau, the creator and administrator of the Ransom Cartel ransomware operation, was sentenced to 16 years in prison for his role in ransomware attacks against at least 18 companies worldwide.
The U.S. Department of Justice announced today that the 40-year-old Belarusian national was sentenced for conspiracy to commit offenses against the United States, conspiracy to commit wire fraud, and aggravated identity theft.
The DOJ says Silnikau had been active on Russian-speaking cybercrime forums since at least 2005 and used the aliases “J.P. Morgan,” “xxx,” and “lansky.”
He was also a member of the Direct Connection cybercrime website between 2011 and 2016, when the site was shut down following the arrest of its administrator.
According to court documents, Silnikau began developing the Ransom Cartel ransomware operation in May 2021 and recruited other cybercriminals through underground forums to participate in attacks.
He supplied members with information and tools used in the intrusions, including stolen credentials for compromised computers and software designed to encrypt victims’ computers.
Silnikau also operated an affiliate website that allowed members of the ransomware operation to manage attacks, communicate with each other, negotiate ransom demands, and distribute revenue shares after a ransom was paid.
Between 2021 and 2023, Ransom Cartel affiliates attacked at least 18 companies worldwide, including organizations in California, New York, Nebraska, and countries outside the United States.
During the attacks, the threat actors stole corporate data and demanded payments in exchange for decryption keys or promises that the stolen information would not be publicly leaked.
Federal prosecutors said the ransomware operation attempted to extort at least $5.2 million from its victims.
The United States identified more than $6.7 million in losses suffered by 18 known victims, although prosecutors said the total was likely higher because some victims had not reported their attacks.
In one August 2022 attack, Ransom Cartel reportedly disrupted the operations at a medical technology startup developing robotic surgical technology for two months. In May 2023, the gang also attacked infrastructure used by a group of law firms, causing business disruptions lasting from several days to multiple months.
One law firm paid a ransom worth $125,000 after being disrupted for nearly a month, while another suspended operations for almost a month before paying a $300,000 ransom.
Prosecutors said the combined losses associated with those attacks reached approximately $2.2 million.
Ransom Cartel launched publicly in December 2021 and shared code similarities with the REvil ransomware encryptor.
However, the lack of some of REvil’s obfuscation features led researchers to believe that it may have been created by a former core member of the operation who did not have access to the complete source code.
Silnikau reportedly held a central role in the ransomware-as-a-service operation, recruiting affiliates, working with initial access brokers who supplied access to compromised corporate networks, communicating with victims, and handling ransom payments.
He also transmitted ransom payments through cryptocurrency mixers to make it harder for law enforcement to trace the funds.
Silnikau was initially arrested in Spain on July 18, 2023, as part of an international law enforcement operation. However, he fled while awaiting extradition to the United States and was later captured while attempting to return to Belarus.
“The defendant fled Spanish authorities while awaiting extradition to the United States and was apprehended while trying to cross from Poland to his native Belarus,” prosecutors said in their sentencing filing.
Silnikau ultimately consented to extradition and was sent from Poland to the United States to face prosecution in the Eastern District of Virginia.
Security teams log 54% of successful attacks and alert on just 14%. The rest move through your environment unseen.
The Picus whitepaper shows how breach and attack simulation tests your SIEM and EDR rules so threats stop slipping by detection.
Counterfeit goods are becoming increasingly sophisticated, forcing brands to rely on expensive authentication systems that often require specialized scanners or proprietary hardware. Researchers now believe a smartphone could do much of that work instead. A team has developed a new printing system that creates responsive anti-counterfeit labels that are more durable, easier to mass-produce, and can be verified using nothing more than a phone. The research was published in the International Journal of Materials and Product Technology.
At first glance, the technology looks like another incremental improvement in product security. In reality, it addresses one of the biggest limitations of anti-counterfeit systems today: accessibility. If authentication only works with expensive equipment, it becomes difficult to deploy at scale. By enabling smartphone-based verification, the technology could make counterfeit detection practical for manufacturers, retailers, and even consumers.
The new system combines three technologies into a single printable label. Researchers developed temperature- and light-responsive microcapsules, paired them with a UV ink formulated for high-speed printing, and created a portable smartphone-based detection system capable of verifying authenticity. The microcapsules contain functional materials that react to environmental conditions, producing optical signatures that are difficult to replicate using conventional printing methods.

Durability was another design priority. According to the researchers, nanotechnology-based linkers strengthen the polymer capsules, allowing the labels to remain stable under heat and humidity. The ink contains no volatile organic solvents, making it compatible with both screen and inkjet printing while remaining suitable for large-scale manufacturing. Even after repeated cold-storage testing, the labels retained more than 83% color fastness, suggesting they could withstand demanding supply chains.
Verification happens through a smartphone. A portable detector measures how light interacts with the printed label, and a machine-learning model then analyzes the captured data to determine whether the product is genuine. During testing, the system achieved nearly 97.5% accuracy, even when distinguishing between authentic labels and convincing counterfeits.
Counterfeit products affect industries ranging from luxury goods and pharmaceuticals to electronics and food packaging. While companies continue investing in holograms, QR codes, and RFID-based security features, many of those systems either add cost or require dedicated verification hardware.

A smartphone-compatible authentication system changes that equation. Because nearly every supply chain participant already carries a smartphone, the barrier to verifying products becomes dramatically lower. That could make authentication faster at warehouses, easier for retailers, and potentially accessible to consumers checking a product before making a purchase.
The researchers believe the technology could eventually be used across multiple packaging industries, though commercial deployment will depend on manufacturers integrating the printing process into existing production lines. If that happens, the next generation of anti-counterfeit labels may not rely on increasingly complex security features alone. Instead, they may simply rely on the device already sitting in your pocket.
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For people on the road, keeping all your devices charged can be challenging. Unless, of course, you have your own solar panel with you. There are plenty of compact solar panels from reputable manufacturers that you can plug directly into your mobile phones, cameras, fans, or laptops. But if you need a solar panel that can also work with your power tool system, you might want to take a look at Ryobi.
One of the brand’s many backpack-sized offerings, Ryobi now offers two foldable solar panels, one 14-watt ($79) and the other 21-watt ($99). When folded, both models measure 12.25 inches by 6.5 inches, which make them even more compact than a 13-inch MacBook Air. Both options share a lot of core features, such as USB-A and USB-C output ports, compatibility with Ryobi power sources, and multiple usage options. You can either lay them flat on the ground or hang them from something with their built-in loops.
Although they do have a few key differences. First and most obvious is that the 21-Watt model is slightly thicker when folded, since it has three panels instead of two. While it is half a pound heavier than the 14W, the 21W model is more efficient and Ryobi claims it can charge your phone about 30 minutes faster. Both are covered under Ryobi’s 3-Year Limited Warranty.
There aren’t many reviews yet for either unit, but early feedback has been generally positive. For the 14W model, it has a perfect 5-star rating on the Ryobi website, where one owner said that they used it more often than they thought they would. They praised its size and said, “I highly recommend this product to anyone who spends time outdoors!” On Home Depot, it has a slightly lower rating of 4.4 stars from 15 people.
As for the 21W model, it has a slightly higher rating of 4.9 stars from 7 people on the Ryobi website, but it does have a significantly lower rating on Home Depot, wherein it holds 3.8 stars from 43 reviewers. One reviewer noted that it does take some time to charge devices, but also highlighted how it worked for both their personal and professional needs. They said it was a great companion from the beach to the job site.
Another customer on the 14 watt model’s page mentioned that they bought and loved both. Apart from the thickness, they said both worked as expected. While they’re not as powerful as the 60W foldable solar panels, both seem to hit the mark for many users. Apart from charging your small electronic devices regularly, it’s also capable of charging your Ryobi 18V ONE+ power sources.
One popular option that Ryobi lists as compatible is the 18V ONE+ 150W Battery Power Source and Charger Kit. Priced at $129, this kit includes a 150-watt power source and charger, 2Ah battery, and dual-port wall plug. For output, it has a pair of USB-A ports and a 120V outlet, plus an external LED lamp. It’s also a product we’ve previously recommended to level up your fishing game. As of July 2026, more than 170 people have rated it an impressive 4.8 stars on average on the Ryobi website. On the other hand, it holds a 4.6-star average from 870 Home Depot customers.
If you want something that can power larger appliances, Ryobi also notes that it works with the 18V ONE+ 1,800W Power Station Kit. Retailing for $899, it can be quite the investment, but it does include a slew of practical features worth considering, since it can hold up to 8 batteries and even power full-sized fridges and television sets. On the Ryobi website, more than 20 people rated it 4.2 stars. On Home Depot, the unit itself has the same rating but from 260 people.
Both units are compatible with all 18V ONE+ batteries. When not used with the Ryobi solar panels, you can also power them via wall chargers and car adapters. Ryobi also sells different cables at different lengths between 4 inches to 10 inches that you can purchase.
Summer Apple Watch sales at Amazon and Walmart deliver discounts of up to $172 off SE 3, Series 11, and Ultra 3 styles.
Prices across Apple’s wearables line start at $219 this week, with standout offers being a $172 discount on the 42mm GPS + Cellular Apple Watch Series 11 at Walmart and a $100 markdown on the Apple Watch Ultra 3 at Amazon.
Grab Apple Watch deals from $219
42mm Apple Watch Series 11 deals
46mm Apple Watch Series 11 discounts
Apple Watch SE 3 savings
Apple Watch Ultra 3 markdowns
Several of the deals reflect the lowest prices seen in 30 days, with units in stock and eligible for expedited delivery through Amazon Prime or Walmart Plus. You can find even more price drops in our Apple Watch Price Guide, which is updated throughout the day.

Allen Millyard’s one-of-a-kind masterpiece, a bright red motorcycle powered by a full eight-liter Dodge Viper V10, sold at H&H Classics on July 22 for a final price of £149,500. When fees and premiums are included in, the total comes to almost $201,500. The hammer dropped for £130,000, or around $175,000, right in the middle of the pre-sale estimate.
Millyard’s project began in his Berkshire garage in 2004, with little more than a used Viper GTS engine. After five years of meticulous crafting, a road-legal machine made its premiere in 2009. The massive beast under the hood is a 20-valve 10-cylinder pushrod engine that generates an impressive 507 horsepower and 525 pound-feet of torque. The bike weighs a whopping 1,300 pounds overall, with the engine accounting for nearly 700 pounds of that total. The front suspension is supported by 75-millimeter stanchions taken from JCB hydraulic cylinders, while the rear suspension is supported by a set of heavily modified Yamaha R1 shocks. To keep up with the heat, he even created ceramic-coated exhaust headers by hand. As expected, this beast does not have a multi-speed transmission. A fixed ratio allows the massive low-end torque to do all of the work, with the rear sprocket selection dictating whether the bike is geared at roughly 160 mph or over 270 mph.
Sale
During testing at Bruntingthorpe, Bruce Dunn of Motorcycle News reached 207.101 mph. Years later, in May 2023, Millyard and Henry Cole (a TV celebrity) achieved 183.5 mph on the identical bike at Elvington Airfield, breaking the Guinness World Record for the fastest tandem motorcycle. It has driven approximately 10,000 miles on public roads and race circuits, including a lap of the Isle of Man TT course, visits to Guernsey and the Isle of Wight, and a few trips across Germany. Honestly, only a few people have sat on it throughout the years.

Millyard had decided that he’d done enough with it because the machine was getting increasingly difficult to handle due to his declining muscle strength, and he thought he’d checked off every box he set out to do with the bike. He described it as a painful decision, but the proceeds from the sale will free up some space and finances for other projects. When the audience requested to hear it run during the auction, he started the engine and ran it for them while TV cameras were filming a future edition of The Motorbike Show.

Tim Whittaker, a local collector and engineer, submitted the winning bid. He’s been eyeing this bike for years, and believe us, he didn’t want it to end up in some private collection and never see the light of day. Whittaker plans to ride the bike himself, starting on runways and progressing to public roadways as he builds confidence. He has already agreed to loan the motorcycle to the National Motorcycle Museum in Solihull for the winter months, allowing visitors to see it up close.
[Source]
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