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AI is now part of our world. Uni graduates should know how to use it responsibly

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Artificial intelligence is rapidly becoming an everyday part of lives. Many of us use it without even realising, whether it be writing emails, finding a new TV show or managing smart devices in our homes.

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Rachel Fitzgerald, The University of Queensland and Caitlin Curtis, The University of Queensland

It is also increasingly used in many professional contexts – from helping with recruitment to supporting health diagnoses and monitoring students’ progress in school.

But apart from a handful of computing-focused and other STEM programs, most Australian university students do not receive formal tuition in how to use AI critically, ethically or responsibly.

Here’s why this is a problem and what we can do instead.

AI use in unis so far

A growing number of Australian universities now allow students to use AI in certain assessments, provided the use is appropriately acknowledged.

But this does not teach students how these tools work or what responsible use involves.

Using AI is not as simple as typing questions into a chat function. There are widely recognised ethical issues around its use including bias and misinformation. Understanding these is essential for students to use AI responsibly in their working lives.

So all students should graduate with a basic understanding of AI, its limitations, the role of human judgement and what responsible use looks like in their particular field.

We need students to be aware of bias in AI systems. This includes how their own biases could shape how they use the AI (the questions they ask and how they interpret its output), alongside an understanding of the broader ethical implications of AI use.

For example, does the data and the AI tool protect people’s privacy? Has the AI made a mistake? And if so, whose responsibility is that?

What about AI ethics?

The technical side of AI is covered in many STEM degrees. These degrees, along with philosophy and psychology disciplines, may also examine ethical questions around AI. But these issues are not a part of mainstream university education.

This is a concern. When future lawyers use predictive AI to draft contracts, or business graduates use AI for hiring or marketing, they will need skills in ethical reasoning.

Ethical issues in these scenarios could include unfair bias, like AI recommending candidates based on gender or race. It could include issues relating to a lack of transparency, such as not knowing how an AI system made a legal decision. Students need to be able to spot and question these risks before they cause harm.

In healthcare, AI tools are already supporting diagnosis, patient triage and treatment decisions.

As AI becomes increasingly embedded in professional life, the cost of uncritical use also scales up, from biased outcomes to real-world harm.

For example, if a teacher relies on AI carelessly to draft a lesson plan, students might learn a version of history that is biased or just plain wrong. A lawyer who over-relies on AI could submit a flawed court document, putting their client’s case at risk.

How can we do this?

There are international examples we can follow. The University of Texas at Austin and University of Edinburgh both offer programs in ethics and AI. However, both of these are currently targeted at graduate students. The University of Texas program is focused on teaching STEM students about AI ethics, whereas the University of Edinburgh’s program has a broader, interdiscplinary focus.

Implementing AI ethics in Australian universities will require thoughtful curriculum reform. That means building interdisciplinary teaching teams that combine expertise from technology, law, ethics and the social sciences. It also means thinking seriously about how we engage students with this content through core modules, graduate capabilities or even mandatory training.

It will also require investment in academic staff development and new teaching resources that make these concepts accessible and relevant to different disciplines.

Government support is essential. Targeted grants, clear national policy direction, and nationally shared teaching resources could accelerate the shift. Policymakers could consider positioning universities as “ethical AI hubs”. This aligns with the government-commissioned 2024 Australian University Accord report, which called for building capacity to meet the demands of the digital era.

Today’s students are tomorrow’s decision-makers. If they don’t understand the risks of AI and its potential for error, bias or threats to privacy, we will all bear the consequences. Universities have a public responsibility to ensure graduates know how to use AI responsibly and understand why their choices matter.The Conversation

Rachel Fitzgerald, Associate Professor and Deputy Associate Dean (Academic), Faculty of Business, Economics and Law, The University of Queensland and Caitlin Curtis, Research Fellow, Centre for Policy Futures, The University of Queensland

This article is republished from The Conversation under a Creative Commons license. Read the original article.

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SoftBank plans acquisition of DigitalBridge for AI expansion

SoftBank advances towards acquiring DigitalBridge to boost AI infrastructure amid soaring global data center demand

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SoftBank advances towards acquiring DigitalBridge to boost AI infrastructure amid soaring global data center demand

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In Short:
– SoftBank may acquire DigitalBridge to enhance its AI infrastructure amid rising global data centre demand.
– The deal could control $108 billion in digital assets, with financial details yet to be disclosed.

SoftBank Group is reportedly in advanced talks to acquire DigitalBridge Group, a move that would dramatically expand the Japanese conglomerate’s control over critical AI infrastructure as global demand for data centres accelerates. The potential deal, which could be announced within days, would give SoftBank exposure to roughly $108 billion in digital infrastructure assets, including data centres, cell towers and fibre networks. While financial terms remain undisclosed, the talks are said to be at an advanced stage.

The acquisition fits squarely into founder Masayoshi Son’s renewed bet on artificial intelligence and computing capacity. DigitalBridge manages investments in major data centre operators such as Vantage Data Centers, Switch, DataBank and AtlasEdge, placing SoftBank at the centre of the infrastructure powering next-generation AI. The company is also a key participant in Stargate, a $500 billion private-sector AI initiative announced earlier this year, and recently agreed to buy ABB’s robotics division as part of its broader push into physical AI.

Intensifying competition

Markets have reacted strongly to the prospect of the deal, with DigitalBridge shares surging as much as 47% after the initial reports emerged. The rally highlights intensifying competition for data centre assets, as AI drives unprecedented demand for computing power. McKinsey estimates AI-related infrastructure spending could reach $6.7 trillion by 2030, while Goldman Sachs forecasts global data centre power consumption will rise 175% from 2023 levels by the end of the decade. If completed, the acquisition would mark SoftBank’s return to direct ownership of a major digital infrastructure platform at a pivotal moment in the AI race.


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Italy orders Meta to open WhatsApp to AI competitors

Italy orders Meta to allow rival AI chatbots on WhatsApp amid regulatory battle over market dominance

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Italy orders Meta to allow rival AI chatbots on WhatsApp amid regulatory battle over market dominance

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In Short:
– Italy’s antitrust authority requires Meta to allow access to rival AI chatbots on WhatsApp during an investigation.
– Meta plans to appeal the ruling, claiming it disrupts their system and questioning WhatsApp’s role as an AI service platform.

Italy’s antitrust authority has ordered Meta to allow competing AI chatbots access to WhatsApp, suspending rules that blocked rivals. The decision comes amid concerns that Meta’s policies could limit competition and harm consumers in the rapidly growing AI services market. Meta plans to appeal, calling the ruling “fundamentally flawed” and arguing that WhatsApp wasn’t designed to support third-party AI chatbots.

The Italian Competition Authority began investigating Meta after its March 2025 launch of Meta AI on WhatsApp, later expanding the probe to cover updated business terms that excluded rival AI providers, such as ChatGPT, Microsoft Copilot, and Perplexity. The European Commission has launched a parallel investigation, highlighting growing regulatory scrutiny on tech giants in Europe.

Europe’s stricter stance on Big Tech has sparked pushback from the industry and political figures in the U.S., including former President Donald Trump. Meta maintains that its Business API restrictions still allow AI for customer support and order tracking, but says general-purpose chatbot distribution falls outside its intended use.


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China’s maglev breakthrough hits 700 km/h in seconds, reshaping the future of transport

China sets world record with maglev train hitting 700 km/h in just two seconds, revolutionising ultra-high-speed transport

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China sets world record with maglev train hitting 700 km/h in just two seconds, revolutionising ultra-high-speed transport

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In Short:
– Chinese researchers set a world record, accelerating a test vehicle to 700 km/h in two seconds.
– This milestone positions China as a leader in ultra-high-speed maglev technology and future transport developments.

China has set a new world record in magnetic levitation technology after accelerating a ton-class superconducting maglev test vehicle to 700 kilometres per hour in just two seconds. The achievement, reported by state broadcaster CCTV, marks the fastest acceleration ever recorded for an electric maglev system and cements China’s position at the forefront of ultra-high-speed transport innovation.

The test was conducted by researchers at the National University of Defense Technology on a 400-metre track, where footage showed the vehicle flashing across the rail-like structure in a blur, leaving a misty trail behind it. The breakthrough follows more than a decade of research tackling complex challenges such as ultra-high-speed electromagnetic propulsion, electric suspension guidance systems, and high-field superconducting magnets, all of which are critical to stable travel at extreme speeds.

Hyperloop technology

Beyond headline-grabbing velocity, the milestone opens the door to future transport systems, including vacuum-tube maglev networks, commonly referred to as hyperloop technology. Scientists say the same advancements could also be applied to aerospace launch assistance, electromagnetic launch systems, and advanced experimental testing. According to Professor Li Jie from the National University of Defense Technology, the successful trial will significantly accelerate China’s research into frontier technologies, with future work focusing on pipeline-based high-speed transport and aerospace equipment testing.

While China now leads in superconducting maglev acceleration, global competition remains fierce. Japan still holds the record for the fastest manned train, with its L0 Series maglev reaching 603 kilometres per hour during testing in 2015. China, however, operates the world’s only commercial maglev service — the Shanghai Maglev — which currently runs at 300 kilometres per hour after its top speed was reduced from 431 kilometres per hour in 2021.

The December test builds on earlier progress made this year, including a 1.1-ton test sled that reached 650 kilometres per hour in seven seconds over a 600-metre track in June 2025. Together, these developments signal rapid momentum in China’s push toward next-generation transport systems that could redefine how people and payloads move across the planet.


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