I wanted ChatGPT to help me. So why did it advise me how to kill myself?

ChatGPT wrote a woman a suicide note and another AI chatbot role-played sexual acts with children, BBC finds.

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Woman ‘strung along’ seriously ill man over kidney donation

Nicola Hutton was sentenced to five months in prison after being convicted of a false communication offence.

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Nancy Pelosi Announces Retirement From Congress

WASHINGTON — Representative Nancy Pelosi (Democrat, California) announced on Thursday that she won’t run for reelection in 2026, marking the end of her decades-long run in the House and capping off her legacy as one of the Democratic Party’s most powerful and effective leaders.

“I have truly loved serving as your voice in Congress,” Pelosi said in a six-minute video that showcases her tenure and her city’s history.

“That is why I want you, my fellow San Franciscans, to be the first to know. I will not be seeking reelection to Congress,” she says. “With a grateful heart, I look forward to my final year of service as your proud representative.”

Pelosi, 85, has represented her progressive San Francisco district since 1987. First coming to the Congress to tackle the AIDS crisis devastating her community, she rose through the ranks of her party to make history, again and again. She was the first woman elected House minority whip in 2001, the first woman elected House minority leader in 2002, and, most notably, the first woman to become House speaker in 2007, and again in 2019.

As party leader, Pelosi kept a tight grip on her colleagues for decades. She was known for her mastery of vote-counting and legislative strategy, and her ability to bring wavering Democrats on board with her plans by hauling them into private meetings, plying them with pieces of dark chocolate and cutting a deal before they walked out the door.

Pelosi has been a boon to Democratic fundraising for decades. In 2014, for example, one news outlet suggested she was single-handedly keeping House Democrats afloat that year.

Her legacy as speaker includes her strong opposition to the Iraq War during President George W. Bush’s tenure and her pivotal role in passing landmark legislation under President Barack Obama. She was key to some of his greatest successes, including the Affordable Care Act, the Dodd-Frank Wall Street reform bill, the repeal of the military’s “don’t ask, don’t tell” policy, and the American Recovery and Reinvestment Act, which infused $841 billion into the economy to stave off pain from the 2007-09 recession.

During President Donald Trump’s first term, Pelosi was his most formidable adversary. She routinely called him out for his lies and recklessness, and threw up barriers to his many efforts that Democrats opposed. Trump was no fan of hers, often calling “sick” or “crazy,” but even he praised her political savvy when Democrats retook the House in 2018, saying she deserved “a lot of credit.”

Pelosi weathered numerous intra-party scuffles as leader. She angered progressives in 2019 by refusing to support impeachment proceedings against Trump, though she later agreed to hold hearings and Trump went on to be impeached later that year. She also upset some Democrats last year by not-so-subtly signalling that then-President Joe Biden should drop his bid for reelection after his disastrous debate performance against Trump in June.

The California Democrat had been fueling speculation about her future for weeks. She said last month that she’d be making an announcement on whether she was running again, but only after the November 4 elections. She was waiting to see the outcome of a California ballot initiative she strongly supported: Proposition 50, a statewide redistricting measure that Democrats are pushing as a counter to gerrymandering in Republican-led states. It passed.

There’s not an obvious successor for Pelosi’s House seat. Democrats currently running for this seat include California state Senator Scott Wiener and Saikat Chakrabarti, a former tech executive who was also former chief of staff to Rep. Alexandria Ocasio-Cortez (Democrat, New York).

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Jennifer Lawrence Teases More Of Her New Miss Piggy Movie

Jennifer Lawrence is opening up more about the new film she’s producing based on screen icon, Miss Piggy.

Earlier this week, the Die, My Love star teased during an interview on the podcast Las Culturistas that she and fellow Oscar winner Emma Stone were co-producing a new film centred around the legendary Muppets character, which Tony recipient Cole Escola would write.

Naturally, this news was met with a lot of buzz, with Jimmy Fallon grilling her about it further when she stopped by The Tonight Show on Wednesday.

During the interview, Jen hailed Piggy as a “feminist icon”, and explained that the germ of the idea for the new movie came during lockdown, at a time when so-called “cancel culture” was being debated extensively, and a friend suggested: “It would be so funny if Miss Piggy got cancelled.”

“Now, that is not the plot [of the film], necessarily,” the former Hunger Games actor was quick to clarify. “But it got the wheels turning. [We realised], ’wait, there hasn’t actually been, like, a feminist Miss Piggy starring [role]. So I started producing it.”

She revealed she then turned to Emma Stone for help with co-producing as she considers herself more of an “ideas guy”, while the Poor Things star is both a “Muppets-head” and a “shark”.

“I went to her to be like, ‘what do we do?’,” Jennifer added. “So now, Cole is writing it, and they are perfect. And yeah!”

Asked if she’ll also star in the project, she replied: “I think so. I mean, I have to be. I mean, I want to be.”

Miss Piggy first shot to fame in the 1970s, when she was introduced as the resident diva on The Muppet Show.

In the decades since, she’s become one of the franchise’s most cherished stand-out characters, most recently appearing in 2021’s Muppets Haunted Mansion.

Next year, she’s set to share the screen with Sabrina Carpenter in a one-off special revival of The Muppet Show, commemorating 50 years since the first episode aired, which will be written by Emmy winner Seth Rogen.

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Reform UK ‘In Chaos’ After Losing One In Six Members On Flagship Council

Reform UK has lost nine councillors on a flagship local authority in just six months, it has emerged.

The party won 57 of the 81 seats up for grabs on Kent County Council in a landmark victory in May.

Reform bosses said the council would be “the biggest advert” for how the party would run the country if it wins the next general election.

But since then, the party has been hit by a wave of controversy which has seen their number of councillors slashed to 48.

The most recent departure was Isabella Kemp, who was suspended by Reform on Thursday.

It is the latest in a string of suspensions since a video showing Kent County Council leader Linden Kemkaran shouting and swearing at members was leaked to The Guardian.

Councillors Bill Barrett, Paul Thomas, Brian Black and Oliver Bradshaw have since been removed – while Maxine Fothergill remains suspended by Reform HQ, who linked all five to the video leak.

They were said to have “undermined the interests of the party” and have been called “dishonest” by the Reform leadership.

Kemkaran said: “Some had quit because they couldn’t hack it, others have been thrown out for bad behaviour, because they weren’t good enough or they weren’t team players – not up to the challenge or were simply unable or unwilling to accept discipline.”

She added: “Believe me, we are much stronger and we are totally battle fit.”

Antony Hook, the Lib Dem leader on the council, mocked Reform on Bluesky.

A Labour Party spokesperson said: “Reform’s leader in Kent said that Reform councils were ‘the biggest advert’ for what a Nigel Farage government would look like. It’s now clear that means total chaos.

“Reform promised to cut council waste and tax, but instead, in council after council, Reform are cutting services and putting council tax up. In Kent, Reform’s flagship council is in meltdown and it’s local residents who will pay the price.

“Reform have shown they aren’t serious and can’t be trusted.”

Reform UK have been contacted for comment.

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UK facing long, tough flu season, NHS chiefs warn

Vulnerable urged to come forward for flu jab quickly as virus has come early this year.

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The Universe may have already started slowing down

The universe may not be speeding up after all. According to a new study, its expansion could actually be slowing down, challenging one of modern cosmology’s most fundamental ideas.

The findings, published November 6 in Monthly Notices of the Royal Astronomical Society, question the long-accepted belief that a mysterious force known as “dark energy” is pushing galaxies apart at an ever-increasing rate. Instead, researchers found no convincing evidence that the universe is still accelerating.

If confirmed, the results could reshape scientists’ understanding of dark energy, help resolve the long-standing “Hubble tension,” and transform theories about the universe’s past and future.

Evidence for a Cosmic Slowdown

Lead researcher Professor Young-Wook Lee of Yonsei University in South Korea said, “Our study shows that the universe has already entered a phase of decelerated expansion at the present epoch and that dark energy evolves with time much more rapidly than previously thought.

“If these results are confirmed, it would mark a major paradigm shift in cosmology since the discovery of dark energy 27 years ago.”

For nearly three decades, astronomers have believed that the universe’s expansion was accelerating due to dark energy, a mysterious force acting as a kind of “anti-gravity.” This conclusion was originally based on measurements of distant type Ia supernovae, a discovery that earned the 2011 Nobel Prize in Physics.

Rethinking the Universe’s “Standard Candles”

The new research from Yonsei University challenges that foundation. Type Ia supernovae, long considered reliable “standard candles” for measuring cosmic distances, appear to be influenced by the age of the stars that create them.

Even after standardizing their brightness, the team found that supernovae originating from younger stars tend to look fainter, while those from older stars appear brighter. Analyzing data from 300 host galaxies, the researchers confirmed this age effect with an extraordinary level of confidence (99.999%).

This means that part of the dimming once attributed to cosmic acceleration could actually result from stellar population differences rather than universal expansion.

A New Model Emerges

When the team corrected for this age-related bias, the supernova data no longer fit the standard ΛCDM model, which assumes a constant form of dark energy. Instead, it matched more closely with a newer model supported by the Dark Energy Spectroscopic Instrument (DESI) project.

This alternative model draws on baryonic acoustic oscillations (BAO) — essentially ancient sound waves from the Big Bang — and data from the cosmic microwave background (CMB). Both sources suggest that dark energy is not constant but instead weakens and changes over time.

When researchers combined the corrected supernova data with BAO and CMB results, the evidence became overwhelming: the universe does not appear to be accelerating anymore, but has entered a phase of decelerated expansion.

A Universe Already Slowing

Professor Lee explained, “In the DESI project, the key results were obtained by combining uncorrected supernova data with baryonic acoustic oscillations measurements, leading to the conclusion that while the universe will decelerate in the future, it is still accelerating at present.

“By contrast, our analysis — which applies the age-bias correction — shows that the universe has already entered a decelerating phase today. Remarkably, this agrees with what is independently predicted from BAO-only or BAO+CMB analyses, though this fact has received little attention so far.”

Testing the Findings

To strengthen their conclusions, the Yonsei team is performing what they call an “evolution-free test.” This approach examines only supernovae from young, coeval galaxies — those with stars of similar ages — across the entire redshift range. Early results already support the main finding.

“Within the next five years, with the Vera C. Rubin Observatory discovering more than 20,000 new supernova host galaxies, precise age measurements will allow for a far more robust and definitive test of supernova cosmology,” said research professor Chul Chung, a co-lead author of the study, along with PhD candidate Junhyuk Son.

The Vera C. Rubin Observatory and the Future of Cosmology

Located high in the Chilean Andes, the Vera C. Rubin Observatory houses the world’s most powerful digital camera. Having begun scientific operations this year, it is expected to revolutionize our understanding of both the solar system and the broader universe.

After the Big Bang, roughly 13.8 billion years ago, the universe expanded rapidly before gravity slowed it down. Then, around nine billion years after its birth, scientists discovered that expansion had begun speeding up again. This was attributed to dark energy, which is believed to make up about 70 percent of the universe.

Dark Energy’s Mystery Deepens

Despite decades of study, dark energy remains one of science’s most puzzling enigmas. Last year, data from DESI in Tucson, Arizona hinted that the influence of dark energy might have changed over time, an idea now gaining traction with the Yonsei team’s new results.

With advanced instruments like DESI and the Vera C. Rubin Observatory, astronomers hope to finally uncover what dark energy really is — and how it shapes the fate of the universe.

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Astronomers discover dying stars eating their planets

A new study from astronomers at UCL (University College London) and the University of Warwick suggests that aging stars may be destroying the giant planets orbiting closest to them.

When stars like the Sun exhaust their hydrogen fuel, they begin to cool and expand, transforming into red giants. For our Sun, this dramatic phase is expected to occur in roughly five billion years.

The research, published in the Monthly Notices of the Royal Astronomical Society, analyzed nearly half a million stars that had recently entered this “post-main sequence” stage of evolution.

Searching for Planets Around Evolving Stars

The team identified 130 planets and potential planet candidates (i.e., that still need to be confirmed) orbiting closely around these aging stars, including 33 new candidates never detected before.

They found that such planets were far less common around stars that had expanded and cooled enough to qualify as red giants (i.e., those further along in their post-main sequence evolution). This pattern suggests that many of these planets may already have been destroyed.

Evidence of Planetary Destruction

Lead author Dr. Edward Bryant (Mullard Space Science Laboratory at UCL and the University of Warwick) explained: “This is strong evidence that as stars evolve off their main sequence they can quickly cause planets to spiral into them and be destroyed. This has been the subject of debate and theory for some time but now we can see the impact of this directly and measure it at the level of a large population of stars.

“We expected to see this effect but we were still surprised by just how efficient these stars seem to be at engulfing their close planets.”

According to Dr. Bryant, the destruction occurs through a powerful gravitational struggle known as tidal interaction. As a star grows and expands, these forces intensify. “Just like the Moon pulls on Earth’s oceans to create tides, the planet pulls on the star,” he said. “These interactions slow the planet down and cause its orbit to shrink, making it spiral inwards until it either breaks apart or falls into the star.”

What It Means for the Solar System

Co-author Dr. Vincent Van Eylen (Mullard Space Science Laboratory at UCL) added perspective: “In a few billion years, our own Sun will enlarge and become a red giant. When this happens, will the solar system planets survive? We are finding that in some cases planets do not.

“Earth is certainly safer than the giant planets in our study, which are much closer to their star. But we only looked at the earliest part of the post-main sequence phase, the first one or two million years of it — the stars have a lot more evolution to go.

“Unlike the missing giant planets in our study, Earth itself might survive the Sun’s red giant phase. But life on Earth probably would not.”

To carry out their research, the team used data from NASA’s Transiting Exoplanet Survey Satellite (TESS). They employed an algorithm to identify small, repeated dips in starlight caused by planets passing in front of their stars. Their focus was on giant planets with short orbits (i.e., taking no more than 12 days to circle their star).

Starting with more than 15,000 possible signals, the researchers used rigorous checks to eliminate false positives, ultimately narrowing the list to 130 confirmed or candidate planets. Of these, 48 were already known, 49 were known candidates awaiting confirmation, and 33 were completely new discoveries.

Fewer Planets Around Older Stars

The researchers found that stars further along in their evolution were significantly less likely to host nearby giant planets. The overall occurrence rate was just 0.28%, with younger post-main sequence stars showing a higher rate (0.35%) comparable to main sequence stars. The most evolved stars — those classified as red giants — showed a sharp drop to 0.11%. (For this analysis, the smallest 12 of the 130 identified planets were excluded.)

Using TESS data, astronomers can estimate a planet’s size (radius). To confirm whether these objects are true planets or low-mass stars or brown dwarfs (“failed stars” that never ignited nuclear fusion), their mass must be determined.

This is done by measuring the tiny shifts in the motion of the host star caused by a planet’s gravitational pull. These “stellar wobbles” allow scientists to infer the planet’s mass.

Dr. Bryant added: “Once we have these planets’ masses, that will help us understand exactly what is causing these planets to spiral in and be destroyed.”

The research was supported by the UK Science and Technology Facilities Council (STFC).

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Scientists find hidden brain source that fuels dementia

Scientists at Weill Cornell Medicine have identified a surprising culprit that may contribute to dementia: free radicals generated in a particular region of brain support cells known as astrocytes. The study, published Nov. 4 in Nature Metabolism, found that blocking this specific site reduced inflammation and protected neurons. The results point toward a promising new strategy for treating neurodegenerative diseases such as frontotemporal dementia and Alzheimer’s disease.

“I’m really excited about the translational potential of this work,” said Dr. Anna Orr, the Nan and Stephen Swid Associate Professor of Frontotemporal Dementia Research in the Feil Family Brain and Mind Research Institute and member of the Appel Alzheimer’s Disease Research Institute at Weill Cornell, who co-led the study. “We can now target specific mechanisms and go after the exact sites that are relevant for disease.”

How Mitochondria and Free Radicals Affect the Brain

The research focused on mitochondria, the cell’s energy-producing structures that convert food into usable energy. In the process, mitochondria release reactive oxygen species (ROS) — molecules commonly known as free radicals. At normal levels, ROS help regulate essential cell functions, but excessive or poorly timed production can damage cells.

“Decades of research implicate mitochondrial ROS in neurodegenerative diseases,” said Dr. Adam Orr, an assistant professor of research in neuroscience in the Feil Family Brain and Mind Research Institute at Weill Cornell, who co-led the work.

Because of this connection, scientists have long tested antioxidants as a potential way to neutralize ROS and slow neurodegeneration. However, these clinical trials have largely failed. “That lack of success might be related to the inability of antioxidants to block ROS at their source and do so selectively without altering cell metabolism,” Dr. Adam Orr explained.

A New Way to Stop Harmful Free Radicals

As a postdoctoral researcher, Dr. Orr developed a drug discovery platform designed to find molecules that specifically suppress ROS at individual mitochondrial sites while leaving normal functions intact. Through this approach, the team identified a group of compounds called S3QELs (“sequels”), which showed potential to block harmful ROS activity.

The researchers focused on Complex III, a mitochondrial site known for producing ROS that can leak into the rest of the cell, potentially causing damage. To their surprise, the excess ROS did not originate from neurons, but from astrocytes — non-neuronal cells that provide structural and metabolic support to neurons.

“When we added S3QELs, we found significant neuronal protection but only in the presence of astrocytes,” said Daniel Barnett, a graduate student in the Orr lab and the study’s lead author. “This suggested that ROS coming from Complex III caused at least some of the neuronal pathology.”

Further experiments showed that when astrocytes were exposed to disease-related factors such as inflammatory molecules or proteins linked to dementia (including amyloid-beta), their mitochondrial ROS production increased dramatically. Treatment with S3QELs suppressed much of this rise, while blocking other ROS sources did not have the same effect.

Barnett discovered that ROS oxidized certain immune and metabolic proteins involved in neurological disease, altering the activity of thousands of genes tied to inflammation and dementia.

“The precision of these mechanisms had not been previously appreciated, especially not in brain cells,” said Dr. Anna Orr. “This suggests a very nuanced process in which specific triggers induce ROS from specific mitochondrial sites to affect specific targets.”

Promising Results in Animal Models

When the team administered the S3QEL compound to mice engineered to model frontotemporal dementia, they observed reduced astrocyte activation, lower levels of inflammatory gene expression, and a decrease in a tau modification linked to dementia. Remarkably, these effects appeared even when treatment began after symptoms had already started.

Extended treatment improved lifespan, was well tolerated, and produced no significant side effects. Dr. Anna Orr attributes this to the compound’s highly targeted action.

The team plans to continue developing the S3QEL compounds in collaboration with medicinal chemist Dr. Subhash Sinha, professor of research in neuroscience in the Brain and Mind Research Institute and member of the Appel Alzheimer’s Disease Research Institute at Weill Cornell.

They also intend to investigate how disease-associated genes influence ROS production and whether certain genetic variants that raise or lower dementia risk might do so by altering mitochondrial ROS activity.

Changing How Scientists Think About Free Radicals

“The study has really changed our thinking about free radicals and opened up many new avenues of investigation,” said Dr. Adam Orr. The potential of these findings to open new research approaches to inflammation and neurodegeneration is highlighted in the journal.

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How caffeine can help you manage headaches and other tips

If you’re getting a pattern of milder, recurring headaches here are four things you can do to help manage it.

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