Technology
Emergency Chrome security update amid cyber espionage threats
Google Chrome is the most popular browser in the world, and it is used by billions of people. However, its widespread usage also makes it a prime target for bad actors who exploit various methods, such as malicious extensions, phishing links and fake websites. The latest attack involves hackers exploiting a browser vulnerability to conduct espionage. Google has acknowledged the security flaw and has released an update to fix it.
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A man using Google Chrome on his laptop (Kurt “CyberGuy” Knutsson)
About the attack
Cybersecurity researchers at Kaspersky recently discovered a sophisticated cyber espionage campaign exploiting a previously unknown vulnerability in Google Chrome. The attack was triggered when victims unknowingly clicked on a phishing link in an email, launching a malicious site in their browser. Shockingly, no further action was required. Simply opening the link was enough to infect the system.
According to Kaspersky’s report, the malware was based on a zero-day vulnerability, later identified as CVE-2025-2783. Researchers say they analyzed the exploit, reverse-engineered its logic and uncovered that it allowed attackers to bypass Chrome’s built-in security features as if they didn’t exist.
The vulnerability exploited Chrome’s inter-process communication framework, known as Mojo, which is crucial for the browser’s functionality. This allowed the attackers to execute malicious code across different processes within Chrome, effectively bypassing its security measures.
“We have discovered and reported dozens of zero-day exploits actively used in attacks, but this particular exploit is certainly one of the most interesting we’ve encountered,” Kaspersky noted.
The cybersecurity team also highlighted the stealthy nature of the attack, which primarily targeted media professionals, educational institutions and government agencies. Dubbed “Operation ForumTroll,” the campaign appeared to have espionage as its primary goal.
Google Chrome on a phone (Kurt “CyberGuy” Knutsson)
CLICKFIX MALWARE TRICKS YOU INTO INFECTING YOUR OWN WINDOWS PC
Google’s response to the attack
Once Kaspersky reported the vulnerability, Google released an emergency fix. The company has updated Chrome’s Stable channel for Windows, with the update gradually rolling out to users over the next few days and weeks. Meanwhile, the Extended Stable channel has also been updated.
As with most security updates, Google is keeping the details under wraps until the majority of users have installed the fix. This is a standard precaution to prevent other hackers from exploiting the flaw, while some users are still unprotected. If the bug also affects third-party software, Google will continue restricting details until those platforms release their own patches.
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How to update Google Chrome
While the malware is affecting the Windows version of Google Chrome, it’s a good idea for everyone who uses Google Chrome to update their browsers. Below, we’ve listed steps to update the browser on Windows and other devices. To learn more about how to update other browsers like Safari, see my guide here.
Windows
- Open Chrome browser
- At the top right, click More
- Click Help, then About Google Chrome
- Select Update Google ChromeNote: If you do not see the “Update Google Chrome” button, then your browser is already updated
- Click Relaunch to complete
Google Chrome update on Windows (Kurt “CyberGuy” Knutsson)
macOS
- Open Google Chrome on your Mac
- Click the three dots in the upper-right corner of the browser window
- Navigate to Help > About Google Chrome from the dropdown menu
- The browser will automatically check for updates. If an update is available, it will begin downloading immediately
- Once the update is downloaded, click Relaunch to apply it
- If the above steps fail, or you do not see the update option, visit google.com/chrome to download the latest version manually, then open the installer file and follow the on-screen instructions to install Chrome
iPhone/iPad
- Open the App Store on your iPhone or iPad
- Tap your profile picture in the top-right corner of the screen
- Scroll down to Available Updates and look for Google Chrome in the list of apps with pending updates
- If you see Chrome listed, tap the Update button next to it
- If you don’t see Chrome under Available Updates, use the search bar at the top of the App Store and type Google Chrome, then tap on Google Chrome in the search results and check if an Update button is available. If so, tap it
- Once updated, a small blue dot will appear next to Chrome’s app name on your home screen, indicating that it has been recently updated
- You can also confirm that Chrome is up to date by reopening the App Store, scrolling down to Updated Recently and checking if Google Chrome appears there with today’s date
Android
Settings may vary depending on your Android phone’s manufacturer.
- Open the Google Play Store app on your device
- Tap your profile icon in the top-right corner of the screen
- Select Manage apps & device from the menu
- Under Updates available, tap See details to view a list of apps with pending updates
- Locate Google Chrome in the list and tap the Update button next to it
- If you don’t see Chrome listed under updates, search for Google Chrome in the Play Store search bar, then tap on Chrome in the results and check if an Update button is available. If so, tap it
- Once updated, tap Open to launch the latest version of Chrome
OUTSMART HACKERS WHO ARE OUT TO STEAL YOUR IDENTITY
3 additional ways to protect your privacy
While updating Chrome should fix the vulnerability, below are some security tips you can follow to further bolster your privacy and security.
1) Have strong antivirus software: Hackers often gain access to devices by sending infected emails or documents or by tricking you into clicking a link that downloads malware. You can avoid all of this by installing strong antivirus software that will detect any potential threat before it can take over your device. Get my picks for the best 2025 antivirus protection winners for your Windows, Mac, Android and iOS devices.
2) Enable two-factor authentication (2FA): Many online accounts, including Google, offer two-factor authentication as an extra security measure. Enabling 2FA ensures that even if a hacker obtains your password, they still need a second form of verification, such as a code sent to your phone, to access your account. This simple step significantly reduces the chances of unauthorized access.
3) Use a secure password manager: A strong password is crucial, but remembering multiple complex passwords can be difficult. A password manager generates, stores and autofills strong passwords for your accounts, reducing the risk of password-related breaches. Avoid using the same password across different sites and always opt for long, unique passwords. Get more details about my best expert-reviewed password managers of 2025 here.
Kurt’s key takeaway
This incident serves as yet another reminder that even the most secure systems are never truly invulnerable, especially when state-backed or highly skilled actors are in play. While Google’s quick response is commendable, it also highlights the never-ending cat-and-mouse game between security teams and cybercriminals. If you are using Chrome, update it now.
Do you think Google is doing enough to protect users from security threats? Let us know by writing us at Cyberguy.com/Contact.
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Technology
Microsoft’s carbon emissions went up 25 percent last year
Microsoft may once again be struggling to keep up with its own climate goals, according to its 2026 sustainability report. As reported by GeekWire, the report states that Microsoft’s carbon emissions increased 25 percent in 2025, totalling 34 million metric tons “without select interventions.” Microsoft says this was “driven primarily by the expansion of our datacenter infrastructure,” as well as the company’s decision last February to stop purchasing “non-additional, unbundled renewable energy certificates.”
Several years ago, Microsoft set itself a goal to be carbon negative by 2030, meaning it will need to remove more carbon emissions than it produces. This isn’t the first time Microsoft has faced setbacks toward accomplishing that goal, as its 2024 sustainability report showed a similar rise in climate pollution. This year’s report admits that, “While AI infrastructure is driving demand for energy, water, land, and materials, sustainability solutions are not scaling fast enough to meet demand.”
Technology
Google turns old phones into cloud servers
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That old phone sitting in your drawer may have more life left in it than you think. You may look at it and see a dead battery, an outdated camera or a screen that no longer feels worth using. Google and researchers at the University of California San Diego see something else: a tiny computer that may still have useful processing power.
Their idea is called phone cluster computing. Instead of treating retired smartphones as electronic waste, researchers remove the motherboard and redeploy it as part of a low-carbon computing system.
Google says UC San Diego plans to launch a data center built from 2,000 Pixel smartphones in fall 2026. The goal is to provide low-cost cloud computing for students and researchers while reducing the need for newly manufactured server hardware.
That means the next chapter for an old phone may not be a junk drawer. It may be a server rack.
YOU COULD GET PAID FROM GOOGLE’S ANDROID DATA LAWSUIT
Researchers plan to launch a 2,000-phone data center at UC San Diego in fall 2026 to support students and research workloads. (Kurt “CyberGuy” Knutsson)
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What is phone cluster computing?
Phone cluster computing takes retired smartphones and turns their core hardware into a computing platform. The process starts by stripping each phone down to the motherboard. That board holds the processor, memory and storage. The display, battery, cameras, chassis and other phone-specific parts are removed.
That step is important because a full phone does not belong in a data center. Batteries can create safety issues. Screens and cameras waste space. The motherboard is the part that still offers computing value.
Once the board is removed, researchers load a general-purpose Linux system onto it. Android already runs on Linux at its core, but Android is built for mobile apps and personal devices. A data center needs something more flexible for cloud workloads. After that, the phone boards can be grouped into clusters. Many small boards then work together like a collection of tiny servers.
Why Google wants old Pixel phones for cloud computing
The AI boom has created a huge appetite for computing power. Data centers need more chips, more electricity and more cooling. At the same time, billions of phones fall out of use around the world.
This Google-backed project takes that conversation in a different direction by asking whether some useful computing can come from hardware we already made.
The project focuses on embodied carbon. That means the emissions created before a device ever turns on. Mining, manufacturing and shipping all add to that carbon footprint.
If a phone motherboard already exists, reusing it can avoid some of the environmental cost tied to manufacturing new hardware. Google says the motherboard accounts for about half of a phone’s embodied carbon, which makes it the most valuable part to recover.
How retired smartphones become low-carbon servers
You cannot plug a pile of old phones into a rack and call it a data center. The process requires careful teardown, new software and a way to manage many boards at once. Google says the project uses containerized applications managed by Kubernetes. That helps coordinate the work across many devices.
The phones are organized into self-managing clusters of about 25 to 50 boards. Each board works as a small Linux machine. Together, they can handle tasks that would otherwise run on traditional cloud servers. That does not make one phone equal to one server. A server has many more processor cores, more memory and data center-grade hardware. A phone board has fewer resources and tighter limits. Still, some jobs do not need a giant machine. They need enough compute to run efficiently without wasting resources.
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Google and UC San Diego are testing a cloud computing system built from retired Pixel phone motherboards, giving old smartphones a possible second life. (Google)
Can old phone processors handle cloud workloads?
The technical case is stronger than you may expect. Google says the single-threaded performance of modern smartphone performance cores can match or beat the per-core performance of some modern multicore servers. In one comparison, a 2023 Pixel Fold was tested against an ASUS RS720A-E11 server using SPEC benchmarks. The Pixel Fold’s performance cores beat the baseline data center server core on many of the tests. That sounds impressive, but there is an important catch.
A smartphone board has a smaller memory limit and fewer cores. It also lacks the management tools and hardware durability that servers are built around. So the project needs the right workloads.
UC San Diego is starting with educational and research computing. That makes sense because many classroom tasks can run on small cloud instances. Google says early experiments showed that a 20-phone cluster could support peak submission rates for a class of more than 75 students. The grading latency also came in below the default AWS backend used in the comparison.
Why UC San Diego is testing a 2,000 Pixel phone data center
UC San Diego plans to use the 2,000-phone cluster to support computer science classes and research workloads. Google says the deployment could support about 100 classes at once. It also describes the system as providing about 50 server-equivalents worth of compute at a fraction of the usual cost.
For a university, that could be a major advantage. Cloud computing costs can rise quickly, especially when many students submit assignments at the same time. If a reused phone cluster can handle some of that load, schools may save money while reducing demand for newly manufactured servers.
This also gives researchers a chance to test phone-based computing at scale. A small lab demo can look promising. A 2,000-board deployment will show much more about reliability, maintenance and day-to-day performance.
Phone cluster computing still has big limits
Phone cluster computing sounds promising, but it still has a lot to prove. Your smartphone was made for daily use in your hand, not nonstop work inside a data center. Data center servers are built to run for years with steady cooling, fast repairs and constant monitoring. Phone motherboards come from devices made for pockets, backpacks and kitchen counters. That alone raises some big questions.
The boards could fail faster than expected. Cooling may also become a challenge once thousands of tiny processors run side by side. Then there is the labor problem, because someone has to safely remove batteries, screens and other parts before the boards can be reused. Cost will be the deciding factor. If teardown, maintenance and replacement work get too expensive, this idea may stay in the research lab.
Phone clusters also will not replace the massive GPU systems that power advanced AI training. They make more sense for smaller cloud jobs, classroom tools and research tasks that fit within smartphone hardware limits. That still leaves plenty of useful work. After all, not every cloud task needs the newest chip.
Why old smartphones could help cut e-waste
The world’s e-waste problem is growing fast. The Global E-waste Monitor projects that electronic waste could climb to 82 million tonnes by 2030, while formal collection and recycling rates are expected to fall to 20%. Old phones are a big part of that problem because many never make it to a proper recycling program. They sit in drawers, land in closets or get tossed out with valuable parts still inside. Even when a phone no longer feels useful to you, its processor, memory and storage may still have work left to do.
CyberGuy has covered related second-life ideas before, including old smartphones being turned into tiny data centers and repurposed EV batteries helping power AI data centers. The common theme is hard to ignore. Some of the hardware already in circulation may still have useful work left to do.
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Google says reusing smartphone motherboards could cut hardware waste and reduce the carbon cost of building new data center servers. (Yawar Nazir/Getty Images)
How to safely recycle or reuse your old phone
This research does not mean you should toss your old phone into a random donation bin tomorrow. Before you recycle, donate, trade in or sell an old phone, you need to protect your data. Back up anything you want to keep. Then sign out of your accounts and securely wipe the device.
CyberGuy has a helpful guide on how to securely get rid of your old cell phone. Privacy comes first whenever you part with a device.
You can also consider trade-in programs, certified refurbishers or reputable electronics recycling programs. If the phone still works, buying refurbished can also keep devices in use longer. CyberGuy has covered what to know before buying refurbished electronics, which is helpful if you want to save money without taking a gamble. The key is to avoid letting old devices sit forgotten forever. A phone in a drawer helps no one.
What this means to you
That old phone in your drawer may not be as useless as it looks. Even if the battery is tired or the camera feels outdated, the processor inside may still have real value.
Now, you probably will not be mailing your old phone to a Google data center anytime soon. Still, this project points to a bigger shift in how we think about retired tech. Instead of sending every old device straight to recycling or letting it collect dust, companies, schools and researchers may find smarter ways to reuse the parts that still work.
There is also a money lesson here. If your current phone still runs well, you may not need to rush into an upgrade just because a newer model comes out. A battery replacement, trade-in or refurbished option could save you money while keeping perfectly good hardware in use longer. To me, that is the real takeaway. The phone you forgot about could possibly still have a job to do.
Watch the CyberGuy Live replay: Lock Down Your Phone in 30 Minutes
Your phone holds your email, passwords, photos, banking apps and personal data. In this free CyberGuy Live replay, Kurt the CyberGuy walks you step by step through simple phone security fixes you can do at your own pace. You’ll learn how to improve your privacy settings, spot the latest phone scams, use trusted security tools and walk away with a simple checklist to stay protected. Watch the replay and get our checklist here: CyberGuyLive.com.
Kurt’s key takeaways
Google and UC San Diego are testing how to turn retired Pixel phone motherboards into a low-carbon cloud computing platform. The project could give old smartphones a second life while reducing the need for newly manufactured servers. That is important as AI data centers keep demanding more computing power and more electricity. The first major test is expected in fall 2026 with a 2,000-phone data center at UC San Diego. If it works, the cluster could support students and researchers at a lower cost than traditional cloud infrastructure. However, this idea still has to prove it can handle the grind of daily use. Reliability, cooling, teardown labor and maintenance will determine whether phone cluster computing can grow beyond just research. To me, the most relatable part is sitting in your junk drawer. That old phone may seem useless, but its processor could still be powerful enough to help run cloud jobs. Maybe the future of computing starts with hardware we already forgot we owned.
Would you feel good knowing your old phone could help power cloud computing? Let us know by writing to us at CyberGuy.com.
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Technology
Google’s Nest Thermostat has hit its best price of the year
If you’re looking for a relatively affordable way to cut down on cooling costs, Google’s Nest Thermostat can help. It’s packed with smart controls and energy-saving features, and right now it’s on sale in white for $79 ($50 off), which is its best price of the year, at Amazon.
The smart thermostat is quick to install and makes it easy to adjust your home’s temperature whether you’re relaxing in bed or on your way home thanks to the Google Home app. You can also create schedules and control it with your voice using Google Assistant, Alexa, or another Matter-compatible voice assistant.
Once it’s set up, the Nest Thermostat can automatically turn the temperature down when you’re away to help reduce unnecessary energy use, while Google’s Savings Finder feature suggests additional ways to save over time. It also monitors your HVAC system and can alert you if something doesn’t seem right, making it easier to stay on top of maintenance before small issues become bigger, more expensive ones. If you’re eligible, Nest Renew can also automatically shift some of your heating and cooling to times when electricity is cleaner or cheaper.
That said, this is Google’s entry-level model from 2020, so you do miss out on some of the premium features found on the latest Nest Learning Thermostat. Unlike the flagship version, it won’t learn your schedule automatically over time, for example, and lacks support for Nest Temperature Sensors that let you prioritize the temperature in a specific room. Even so, if all you want is an easy way to adjust your home’s temperature remotely and potentially lower your energy bills, the Nest Thermostat is still a solid investment at this price.
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