Breathtaking Technologies
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Selected topics about software and technologies, including operating systems, security, mobile devices and Internet.

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Big Rooter Power: New 1.2 GW Solar Farm in Bremond

Construction has kicked off for Panamint Capital's massive new solar energy project in Bremond, Texas, which will eventually generate 1.2 GW of power. This installation aims to change how we use industrial land by placing clean energy infrastructure directly alongside active fossil fuel operations.

The project, known as Big Rooter Power, will be built on the site of the Twin Oaks power station. Instead of clearing the land, the developers will install 2,000,000 solar panels around the existing coal mining facilities. This $1.7 billion development is divided into three distinct steps to manage the transition:

🔹 The first phase, Big Rooter West, adds 491 MW of capacity by August 2028.
🔹 The second phase, Big Rooter East, adds 658 MW, with construction starting in December 2026 and finishing by August 2029.
🔹 The entire project will create over 800 construction jobs in the region.

While other energy initiatives like the Gateway Solar & Storage site in Illinois have paved the way for reusing older industrial land, this site is set to become the largest solar array ever built at an active coal mine in North America. It is a practical test of how to squeeze more life and electricity out of land that is already tied to the power grid.

Repurposing old industrial sites is the next logical step for grid growth.


#energy #texas #solar

Canary Media

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China's 15th Five-Year Plan to Add 370GW of Green Energy

China just finalized its energy roadmap for the years 20262030. The State Council, along with the National Development and Reform Commission and National Energy Administration, is set to add over 370GW of new wind and solar capacity by 2030. 🚀

This plan is about more than just installing gear. It focuses on building massive solar projects in deserts and upgrading how the power grid moves electricity. The State Council also released the 15th Five-Year Carbon Peaking Action Plan to help guide this shift. By 2030, the country expects total renewable energy consumption to reach about 1.8 billion tonnes of standard coal equivalent.

The targets are quite specific when compared to the recent past. The plan calls for a 17% reduction in CO2 emissions per unit of GDP compared to 2025 levels. It also aims to boost non-fossil energy use to 25% of the total energy mix.

A massive pivot to green energy infrastructure.


Can the grid really handle such a rapid transformation?

#China #RenewableEnergy #Energy

Energy Storage News

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TeraWulf Inc. (WULF) is One of the Worst AI Stocks Under $30, According to Short Sellers

TeraWulf Inc. (NASDAQ:WULF) is one of the 10 worst artificial intelligence stocks under $30 according to short sellers. Back on May 26, Terawulf Inc. (NASDAQ...

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#News ⚡️ #AI ⚡️ #Tech
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Lithium-hunting fish robots

Engineers in the United States are designing nanorobots that look like tiny fish to solve our battery supply chain issues. They aim to pull lithium directly from seawater, a source that holds an estimated 230 billion tons of the metal. 🚀

These bots don't use hooks or nets. Instead, they use special surfaces that grab lithium ions as they swim through the ocean currents.

The robot design mimics the efficient swimming motion of real fish, allowing them to cover more area and collect lithium far better than static filter systems.


This approach aims to secure the raw materials we need for high-capacity batteries without tearing up the earth.

Currently, we rely heavily on mining operations like those in the Atacama Desert. Those sites use massive evaporation ponds that waste water and disrupt local habitats, making this ocean-based method a much cleaner path forward.

If this scales, we might look at the ocean as a battery mine rather than just a place to swim.

Plenty of fish in the sea.


#Tech #Sustainability #Batteries

Interesting Engineering

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Intel Corporation (INTC)’s Stock Has Surged but Needs an Engineering Revival

Intel Corporation (NASDAQ:INTC) is among the Best Semiconductor Stocks. On June 23, The Wall Street Journal reported that Intel Corporation (NASDAQ:INTC)’s s...

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#News ⚡️ #AI ⚡️ #Tech
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U.S. Air Force designs hypersonic VTOL bombers

The U.S. Air Force is currently exploring the development of a reusable, hypersonic bomber capable of vertical take-off and landing. This concept focuses on eliminating the dependency on traditional runways by using VTOL technology to launch from virtually any secure location.

Hypersonic flight involves speeds exceeding 5 times the speed of sound. By removing the requirement for long tarmac strips, the military aims to increase its tactical flexibility significantly. This platform would allow for strike missions from small or unprepared sites, forcing opponents to rethink how they track potential threats.

Unlike current bombers such as the B-21 Raider or the long-serving B-52 Stratofortress, which require massive, fixed-location airbases to operate, this craft could theoretically deploy from almost anywhere. It represents a major pivot toward decentralized, high-speed aerial warfare.

The sheer engineering effort required to make a massive bomber hover like a helicopter is a staggering prospect. It is a bold leap that turns the quietest patch of land into a frontline base.

A runway-free future is coming.


#AirForce #Aviation #Tech

Interesting Engineering

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Floating wind turbines at the University of Queensland get cheaper

Researchers at the University of Queensland have developed an engineering fix that reduces the cost of building floating wind turbines by 40% through a simple redesign of their geometric structure.

By using simpler shapes, the team found they can use much less steel while keeping the massive towers stable in rough ocean conditions. This reduces the expenses for companies looking to build wind farms in deep waters.

The team managed to maintain structural stability while slashing the amount of raw material required for the platforms.


Floating projects have historically cost significantly more than traditional fixed-bottom turbines. While fixed structures are anchored directly into the shallow seabed, floating designs need complex buoys to stay upright. This optimization brings the price of these floating bases much closer to their fixed counterparts, potentially opening up vast, deep-water areas for energy generation.

This shift makes offshore wind power much more practical on a larger scale 🚀.

Better geometry is unlocking cheaper offshore energy.


Will we soon see floating wind farms popping up in deep waters around the globe?

#energy #engineering #technology

Interesting Engineering

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Mexico’s Victory Over Ecuador Made the Ground Shake. Was It an Artificial Earthquake?

Fans’ euphoric reactions to the Mexican national team’s recent victory in the 2026 World Cup caused a series of unusual vibrations that were detected by seismic warning systems.

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#News ⚡️ #AI ⚡️ #Tech
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Court Ruling Speeds Up Power Grid Connections
The D.C. Circuit Court of Appeals has officially upheld FERC Order 2023, clearing a major legal hurdle to modernize the national energy grid. This decision mandates critical reforms to shorten the years-long waiting lines for new clean energy projects to join the power network.

Right now, plugging a wind farm or solar plant into the grid is a slow process. Developers often wait years just to get approved. Think of it like trying to join a busy highway where the on-ramp is permanently closed. The new order forces grid operators to prioritize projects that are actually ready to build, rather than letting speculative plans block the line.

Previously, the system relied on a "first-come, first-served" approach that allowed stalled projects to clog the queue for years. The Federal Energy Regulatory Commission struggled to manage this growing backlog, which blocked new capacity. By contrast, the new rules implement a "first-ready, first-served" standard. This change effectively cuts the red tape that previously prevented renewable energy from reaching homes efficiently. 🚀

Infrastructure just got a green light to move faster.


#Energy #Grid #Infrastructure

CleanTechnica

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MTG Marvel Super Heroes' Most Valuable Cards

From heroes to villains and that all-important Infinity Stone, here are the priciest cards in Magic's new Marvel Super Heroes set.

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#News ⚡️ #AI ⚡️ #Tech
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State Power Investment Corp ships 3,750 tonnes of green ammonia

State Power Investment Corp has set a global record for green ammonia transport by shipping 3,750 tonnes of the fuel to South Korea in a single batch. 🚀

Green ammonia is hydrogen processed into a liquid form. This makes it much easier to store and move across the ocean. The fuel burns without releasing carbon, which makes it a strong contender to replace dirty fuel oils in power plants and large cargo ships. This shipment marks a major step from small, experimental trials toward actual industrial supply chains.

While previous international hydrogen projects were limited to symbolic, tiny quantities, this successful delivery proves that modern tankers and port infrastructure can handle significant commercial volumes. It suggests that moving green fuels is shifting from a theoretical concept to a functioning reality.

This is the kind of progress needed to move clean energy from the drawing board into the power grid.

Big things have small beginnings.


#GreenEnergy #Hydrogen #Logistics

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Neon Rescues Sam Altman Movie After Amazon Drops It

Amazon MGM said the reportedly unsympathetic portrayal of OpenAI's CEO "will be better served if it were released by a different studio."

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#News ⚡️ #AI ⚡️ #Tech
The Fall of the Theorem Economy

How AI could destroy mathematics and barely touch it

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#News ⚡️ #AI ⚡️ #Tech
Base Power Gets $1 Billion for Its Core Home Battery 🔋

The startup Base Power has secured $1 billion to launch its new giant home battery called Core. 🚀

This huge battery has a capacity of 39.2 kWh. For comparison, that is enough electricity to keep your entire house running for up to 36 hours during a blackout. Instead of waiting days for technicians to set it up, the company promises to install the entire system in under 1 hour. It connects directly to your home's main power box.

To put this in perspective, a standard Tesla Powerwall 3 holds only 13.5 kWh of energy. You would need 3 of those popular devices to match the capacity of just one Core system, and installing them usually takes a full day.

Imagine never worrying about sudden storm blackouts or rising electricity rates again. Having a power grid in your own backyard is an incredible step toward real energy independence.

A true personal power plant for your home.


#BasePower #SmartHome #EnergyTech

Electrek

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Apple reportedly testing new iPad Pro models and redesigned entry-level MacBook Pro for 2027

Bloomberg reports that Apple is testing four new iPad Pro models for spring 2027, in addition to a revamped entry-level MacBook Pro slated for as early as the first half of next year.

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#News ⚡️ #AI ⚡️ #Tech
Directly probing the carrier transfer length in 2D-material transistors

Cross-sectional scanning tunnelling microscopy shows a 2 nm carrier transfer length in bismuth-contacted monolayer MoS2 transistors, defining metal-contact scaling limits for sub-10 nm 2D electronic devices.

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#News ⚡️ #AI ⚡️ #Tech
PJM Interconnection prepares for a 70 GW surge

The power grid operator PJM Interconnection has officially asked federal regulators at FERC to launch a new auction plan to secure extra electricity. This move is a direct response to the massive energy demands of AI data centers, which are projected to spike demand by 70 GW by 2038. ⚠️

This "backstop" auction acts as a safety net to prevent blackouts when demand jumps faster than the current grid can handle. The current system was built for a slower, more predictable increase in residential power use, but the arrival of AI infrastructure is changing the math entirely.

The plan forces new safeguards into place:
▪️ It requires states to prove they will shield regular families from paying the costs for new data center infrastructure.
▪️ It creates a fast-track procurement process to get new generators connected to the grid sooner.
▪️ It establishes a temporary fix to maintain reliability while long-term construction projects clear the approval process.

Unlike traditional grid expansions that relied on modest, steady residential growth, this new auction prepares for immediate, high-intensity loads that could otherwise crash existing supply chains without these strict cost protections.

The grid is now in a race to build capacity before the AI boom creates local shortages. Expect state leaders to begin pushing back on who bears the financial burden for this rapid, industrial-scale expansion.

The era of passive grid management is officially over.


#energy #ai #infrastructure

Utility Dive

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Cancer Research UK bets on Manchester with £6-million funding boost

The investment provides a ‘special opportunity’ to establish the Cancer Research UK Manchester Institute as a world leader in emerging oncology therapies.

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#News ⚡️ #AI ⚡️ #Tech
OpenAI to Build a 3.2-gigawatt Data Center in Georgia

Georgia Power, a subsidiary of Southern Co., has signed a 25-year agreement to supply electricity to a new 3.2-gigawatt data center for OpenAI. The facility, which is set to begin operations in 2028, will be located in Effingham County near Savannah, Georgia.

This project is a key addition to Southern Co.'s portfolio, which has seen its total contracted large power load grow to 17 GW since early 2026. To maintain grid reliability, the contract includes 1,000 megawatts of flexible demand response. This allows the utility to reduce power delivery to the site during periods of peak demand, a provision the company has not previously established with a data center customer.

The project represents an investment of $20 billion. Unlike typical industrial developments where local utilities must fund infrastructure upgrades, OpenAI has agreed to cover the full cost of the necessary electric work, which is intended to protect other customers from potential rate increases.

The facility can draw as much electricity as a small city, unless the grid needs it back.


#OpenAI #SouthernCo #DataCenter

Utility Dive

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TROP2 targeting reveals therapy-driven cell state dynamics in colorectal cancer

TROP2 marks poor-prognosis colorectal cancer cells with fetal-like, therapy-resistant states, and therapeutic targeting of TROP2 with antibody–drug conjugates in combination with chemotherapy enhances treatment efficacy by modulating tumour cell plasticity an…

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China targets 2.8 TW of green energy capacity 🔋

China is shifting its national energy strategy to prioritize battery storage to keep its power grid stable. The new five-year plan explicitly targets 2.8 terawatts of wind and solar capacity by 2030.

Integrating batteries is essential for reliability. Solar panels and wind turbines are inconsistent—the sun doesn't always shine and the wind doesn't always blow. "Grid-forming technology" works like a shock absorber for the power supply, keeping electricity flowing smoothly so the system remains stable. This update introduces new market-based revenue mechanisms, allowing producers to earn money more flexibly instead of just relying on rigid state contracts.

This approach marks a major departure from earlier strategies that focused almost entirely on raw installation counts. While older plans treated storage as an optional add-on, this new policy treats batteries as a core component, much like how modern electric vehicle manufacturers now integrate advanced software directly into the powertrain for better efficiency. 📈

Upgrading the infrastructure of an entire nation is a monumental feat of engineering. It’s a massive logistical undertaking, but at the end of the day, it's just about making sure your devices stay charged.

Reliability is the ultimate goal.


#China #Energy #Technology

PV Magazine

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