The Linkielist

Linking ideas with the world

The Linkielist

Electric Dump Truck Produces More Energy Than It Uses

Electric vehicles are everywhere now. It’s more than just Leafs, Teslas, and a wide variety of electric bikes. It’s also trains, busses, and in this case, gigantic dump trucks. This truck in particular is being put to work at a mine in Switzerland, and as a consequence of having an electric drivetrain is actually able to produce more power than it consumes. (Google Translate from Portugese)

This isn’t some impossible perpetual motion machine, either. The dump truck drives up a mountain with no load, and carries double the weight back down the mountain after getting loaded up with lime and marl to deliver to a cement plant. Since electric vehicles can recover energy through regenerative braking, rather than wasting that energy as heat in a traditional braking system, the extra weight on the way down actually delivers more energy to the batteries than the truck used on the way up the mountain.

The article claims that this is the largest electric vehicle in the world at 110 tons, and although we were not able to find anything larger except the occasional electric train, this is still an impressive feat of engineering that shows that electric vehicles have a lot more utility than novelties or simple passenger vehicles.

Source: Electric Dump Truck Produces More Energy Than It Uses | Hackaday

IBM open sources Adverserial Robustness 360 toolbox for AI

This is a library dedicated to adversarial machine learning. Its purpose is to allow rapid crafting and analysis of attacks and defense methods for machine learning models. ART provides an implementation for many state-of-the-art methods for attacking and defending classifiers.

Documentation for ART: https://adversarial-robustness-toolbox.readthedocs.io

https://github.com/IBM/adversarial-robustness-toolbox

IBM releases AI Fairness 360 tool open source

The AI Fairness 360 toolkit is an open-source library to help detect and remove bias in machine learning models. The AI Fairness 360 Python package includes a comprehensive set of metrics for datasets and models to test for biases, explanations for these metrics, and algorithms to mitigate bias in datasets and models.

The AI Fairness 360 interactive experience provides a gentle introduction to the concepts and capabilities. The tutorials and other notebooks offer a deeper, data scientist-oriented introduction. The complete API is also available.

Being a comprehensive set of capabilities, it may be confusing to figure out which metrics and algorithms are most appropriate for a given use case. To help, we have created some guidance material that can be consulted.

https://github.com/IBM/AIF360

IBM releases AI Explainability tools

The AI Explainability 360 toolkit is an open-source library that supports interpretability and explainability of datasets and machine learning models. The AI Explainability 360 Python package includes a comprehensive set of algorithms that cover different dimensions of explanations along with proxy explainability metrics.

The AI Explainability 360 interactive experience provides a gentle introduction to the concepts and capabilities by walking through an example use case for different consumer personas. The tutorials and example notebooks offer a deeper, data scientist-oriented introduction. The complete API is also available.

There is no single approach to explainability that works best. There are many ways to explain: data vs. model, directly interpretable vs. post hoc explanation, local vs. global, etc. It may therefore be confusing to figure out which algorithms are most appropriate for a given use case. To help, we have created some guidance material and a chart that can be consulted.

Github link

ITER is making a mini sun to power the earth

In southern France, 35 nations are collaborating to build the world’s largest tokamak, a magnetic fusion device that has been designed to prove the feasibility of fusion as a large-scale and carbon-free source of energy based on the same principle that powers our Sun and stars.
The experimental campaign that will be carried out at ITER is crucial to advancing fusion science and preparing the way for the fusion power plants of tomorrow.
ITER will be the first fusion device to produce net energy. ITER will be the first fusion device to maintain fusion for long periods of time. And ITER will be the first fusion device to test the integrated technologies, materials, and physics regimes necessary for the commercial production of fusion-based electricity.
Thousands of engineers and scientists have contributed to the design of ITER since the idea for an international joint experiment in fusion was first launched in 1985. The ITER Members—China, the European Union, India, Japan, Korea, Russia and the United States—are now engaged in a 35-year collaboration to build and operate the ITER experimental device, and together bring fusion to the point where a demonstration fusion reactor can be designed.
[…]
Three conditions must be fulfilled to achieve fusion in a laboratory: very high temperature (on the order of 150,000,000° Celsius); sufficient plasma particle density (to increase the likelihood that collisions do occur); and sufficient confinement time (to hold the plasma, which has a propensity to expand, within a defined volume).


At extreme temperatures, electrons are separated from nuclei and a gas becomes a plasma—often referred to as the fourth state of matter. Fusion plasmas provide the environment in which light elements can fuse and yield energy.


In a tokamak device, powerful magnetic fields are used to confine and control the plasma.

[…]

The tokamak is an experimental machine designed to harness the energy of fusion. Inside a tokamak, the energy produced through the fusion of atoms is absorbed as heat in the walls of the vessel. Just like a conventional power plant, a fusion power plant will use this heat to produce steam and then electricity by way of turbines and generators.

The heart of a tokamak is its doughnut-shaped vacuum chamber. Inside, under the influence of extreme heat and pressure, gaseous hydrogen fuel becomes a plasma—the very environment in which hydrogen atoms can be brought to fuse and yield energy. (You can read more on this particular state of matter here.) The charged particles of the plasma can be shaped and controlled by the massive magnetic coils placed around the vessel; physicists use this important property to confine the hot plasma away from the vessel walls. The term “tokamak” comes to us from a Russian acronym that stands for “toroidal chamber with magnetic coils.”

First developed by Soviet research in the late 1960s, the tokamak has been adopted around the world as the most promising configuration of magnetic fusion device. ITER will be the world’s largest tokamak—twice the size of the largest machine currently in operation, with ten times the plasma chamber volume.

[…]
Taken together, the ITER Members represent three continents, over 40 languages, half of the world’s population and 85 percent of global gross domestic product. In the offices of the ITER Organization and those of the seven Domestic Agencies, in laboratories and in industry, literally thousands of people are working toward the success of ITER.
[…]
ITER’s First Plasma is scheduled for December 2025.


That will be the first time the machine is powered on, and the first act of ITER’s multi-decade operational program.


On a cleared, 42-hectare site in the south of France, building has been underway since 2010. The ground support structure and the seismic foundations of the ITER Tokamak are in place and work is underway on the Tokamak Complex—a suite of three buildings that will house the fusion experiments. Auxiliary plant buildings such as the ITER cryoplant, the radio frequency heating building, and facilities for cooling water, power conversion, and power supply are taking shape all around the central construction site.

[…]

ITER Timeline


2005
Decision to site the project in France
2006
Signature of the ITER Agreement
2007
Formal creation of the ITER Organization
2007-2009
Land clearing and levelling
2010-2014
Ground support structure and seismic foundations for the Tokamak
2012
Nuclear licensing milestone: ITER becomes a Basic Nuclear Installation under French law

2014-2021
Construction of the Tokamak Building (access for assembly activities in 2019)
2010-2021
Construction of the ITER plant and auxiliary buildings for First Plasma
2008-2021
Manufacturing of principal First Plasma components
2015-2023
Largest components are transported along the ITER Itinerary

2020-2025
Main assembly phase I
2022
Torus completion
2024
Cryostat closure
2024-2025
Integrated commissioning phase (commissioning by system starts several years earlier)
Dec 2025
First Plasma
2026
Begin installation of in-vessel components
2035
Deuterium-Tritium Operation begins

Throughout the ITER construction phase, the Council will closely monitor the performance of the ITER Organization and the Domestic Agencies through a series of high-level project milestones. See the Milestones page for a series of incremental milestones on the way to First Plasma.

Source: What is ITER?

From the FAQ: The EU seems to be paying $17bn (and is responsible for almost half the project costs). There is around $1bn in deactivation and decomissioning costs, making the total around $35bn – as far as they can figure out. That’s a staggering science project!

Lenovo Solution Centre can turn users into Admins – Lenovo changes end of life for LSC until before the last release in response.

Not only has a vulnerability been found in Lenovo Solution Centre (LSC), but the laptop maker fiddled with end-of-life dates to make it seem less important – and is now telling the world it EOL’d the vulnerable monitoring software before its final version was released.

The LSC privilege-escalation vuln (CVE-2019-6177) was found by Pen Test Partners (PTP), which said it has existed in the code since it first began shipping in 2011. It was bundled with the vast majority of the Chinese manufacturer’s laptops and other devices, and requires Windows to run. If you removed the app, or blew it away with a Linux install, say, you’re safe right now.

[…]

he solution? Uninstall Lenovo Solution Centre, and if you’re really keen you can install Lenovo Vantage and/or Lenovo Diagnostics to retain the same branded functionality, albeit without the priv-esc part.

All straightforward. However, it went a bit awry when PTP reported the vuln to Lenovo. “We noticed they had changed the end-of-life date to make it look like it went end of life even before the last version was released,” they told us.

Screenshots of the end-of-life dates – initially 30 November 2018, and then suddenly April 2018 after the bug was disclosed – can be seen on the PTP blog. The last official release of the software is dated October 2018, so Lenovo appears to have moved the EOL date back to April of that year for some reason.

Source: Security gone in 600 seconds: Make-me-admin hole found in Lenovo Windows laptop crapware. Delete it now • The Register

Why do tech companies file so many weird patents?

There are lots of reasons to patent something. The most obvious one is that you’ve come up with a brilliant invention, and you want to protect your idea so that nobody can steal it from you. But that’s just the tip of the patent strategy iceberg. It turns out there is a whole host of strategies that lead to “zany” or “weird” patent filings, and understanding them offers a window not just into the labyrinthine world of the U.S. Patent and Trademark Office and its potential failings, but also into how companies think about the future. And while it might be fun to gawk at, say, Motorola patenting a lie-detecting throat tattoo, it’s also important to see through the eye-catching headlines and to the bigger issue here: Patents can be weapons and signals. They can spur innovation, as well as crush it.

Let’s start with the anatomy of a patent. Patents have many elements—the abstract, a summary, a background section, illustrations, and a section called “claims.” It’s crucial to know that the thing that matters most in a patent isn’t the abstract, or the title, or the illustrations. It’s the claims, where the patent filer has to list all the new, innovative things that her patent does and why she in fact deserves government protection for her idea. It’s the claims that matter over everything else.

[…]

For a long time, companies didn’t really worry about the PR that patents might generate. Mostly because nobody was looking. But now, journalists are using patents as a window into a company’s psyche, and not always in a way that makes these companies look good.

So why patent something that could get you raked across the internet coals? In many cases, when a company files for a patent, it has no idea whether it’s actually going to use the invention. Often, patents are filed as early as possible in an idea’s life span. Which means that at the moment of filing, nobody really knows where a field might go or what the market might be for something. So companies will patent as many ideas as they can at the early stages and then pick and choose which ones actually make sense for their business as time goes by.

[…]

In some situations, companies file for patents to blanket the field—like dogs peeing on every bush just in case. Many patents are defensive, a way to keep your competitors from developing something more than a way to make sure you can develop that thing. Will Amazon ever make a delivery blimp? Probably not, but now none of its competitors can. (Amazon seems to be a leader in these patent oddities. Its portfolio also includes a flying warehouse, self-destructing drones, an underwater warehouse, and a drone tunnel.

[…]

David Stein, a patent attorney, says that he sees this at companies he works with. He tells me that once he was in a meeting with inventors about something they wanted to patent, and he asked one of his standard questions to help him prepare the patent: What products will this invention go into? “And they said, ‘Oh, it won’t.’ ” The team that had invented this thing had been disbanded, and the company had moved to a different solution. But they had gone far enough with the patent application that they might as well keep going, if only to use the patent in the future to keep their competitors from gaining an advantage. (It’s almost impossible to know how many patents wind up being “useful” to a company or turn up in actual products.)

As long as you have a budget for it (and patents aren’t cheap—filing for one can easily cost more than $10,000 all told), there’s an incentive for companies to amass as many as they can. Any reporter can tell you that companies love to boast about the number of patents they have, as if it’s some kind of quantitative measure of brilliance. (This makes about as much sense as boasting about how many lines of code you’ve written—it doesn’t really matter how much you’ve got, it matters if it actually works.) “The number of patents a company is filing has more to do with the patent budget than with the amount they’re actually investing in research,” says Lisa Larrimore Ouellette, a professor at Stanford Law School

[…]

This patent arm wrestling doesn’t just provide low-hanging fruit to reporters. It also affects business dealings. Let’s say you have two companies that want to make some kind of business deal, Charles Duan, a patent expert at the R Street Institute, says. One of their key negotiation points might be patents. If two giant companies want to cut a deal that involves their patent portfolios, nobody is going to go through and analyze every one of those patents to make sure they’re actually useful or original, Duan says, since analyzing a single patent thoroughly can cost thousands of dollars in legal fees. So instead of actually figuring out who has the more valuable patents, “the [company] with more patents ends up getting more. I’m not sure there’s honestly much more to it.”

Several people I spoke with for this story described patent strategy as “an arms race” in which businesses all want to amass as many patents as they can to protect themselves and bolster their position in these negotiations. “There’s not that many companies that are willing to engage in unilateral disarmament,”

[…]

While disarmament might be unlikely, many companies have chosen not to engage in the patent warfare at all. In fact, companies often don’t patent technologies they’re most interested in. A patent necessarily lays out how your product works, information that not all companies want to divulge. “We have essentially no patents in SpaceX,” Elon Musk told Chris Anderson at Wired. “Our primary long-term competition is in China. If we published patents, it would be farcical, because the Chinese would just use them as a recipe book.”

[…]

In most cases, once the inventors and engineers hand over their ideas and answer some questions, it’s the lawyer’s job to build those things out into an actual patent. And here is where a lot of the weirdness actually enters the picture, because the lawyer essentially has to get creative. “You dress up science fiction with words like ‘means for processing’ or ‘data storage device,’ ” says Mullin.

Even the actual language of the patents themselves can be misleading. It turns you actually can write fan fiction about your own invention in a patent. Patent applications can include what are called “prophetic examples,” which are descriptions of how the patent might work and how you might test it. Those prophetic examples can be as specific as you want, despite being completely fictional. Patents can legally describe a “46-year-old woman” who never existed and say that her “blood pressure is reduced within three hours” when that never actually happened. The only rule about prophetic examples is that they cannot be written in the past tense. Which means that when you’re reading a patent, the examples written in the present tense could be real or completely made up. There’s no way to know.

If this sounds confusing, it is, and not just to journalists trying to wade through these documents. Ouellette, who published a paper in Science about this problem recently, admitted that even she wouldn’t necessarily be able to tell whether experiments described in a patent had actually been conducted.

Some people might argue that these kinds of speculative patents are harmless fun, the result of a Kafkaesque kaleidoscope of capitalism, competition, and bureaucracy. But it’s worth thinking about how they can be misused, says Mullin. Companies that are issued vague patents can go after smaller entities and try to extract money from them. “It’s like beating your competitor over the head with a piece of science fiction you wrote,” he says.

Plus, everyday people can be misled about just how much to trust a company based on its patents. One study found that out of 100 patents cited in scientific articles or books that used only prophetic examples (in other words, had no actual data or evidence in them), 99 were inaccurately described as having been based on real data.

[…]

Stein says that recently he’s had companies bail on patents because they might be perceived as creepy. In fact, in one case, Stein says that the company even refiled a patent to avoid a PR headache.* As distrust of technology corporations mounts, the way we read patents has changed. “Everybody involved in the patent process is a technologist. … We don’t tend to step back and think, this could be perceived as something else by people who don’t trust us.” But people are increasingly unwilling to give massive tech companies the benefit of the doubt. This is why Google’s patent for a “Gaze tracking system” got pushback—do you really want Google to know exactly what you look at and for how long?

[…]

there is still real value in reading the patents that companies apply for—not because doing so will necessarily tell you what they’re actually going to make, but because they tell you what problems the company is trying to solve. “They’re indicative of what’s on the engineer’s mind,” says Duan. “They’re not going to make the cage, but it does tell you that they’re worried about worker safety.” Spotify probably won’t make its automatic parking finder, so you don’t have to pause your music in a parking garage while you hunt for a spot. But it does want to figure out how to reduce interruptions in your music consumption. So go forth and read patents. Just remember that they’re often equal parts real invention and sci-fi.

Source: Why do tech companies file so many weird patents?

That science fiction concepts can be patented is new for me. So you can whack companies around with patents that you thought of but didn’t implement. Sounds like a really good idea. Not.

Complex quantum teleportation achieved for the first time

Researchers from the Austrian Academy of Sciences and the University of Vienna have experimentally demonstrated what was previously only a theoretical possibility. Together with quantum physicists from the University of Science and Technology of China, they have succeeded in teleporting complex high-dimensional quantum states. The research teams report this international first in the journal Physical Review Letters.

In their study, the researchers teleported the of one photon (light particle) to another distant one. Previously, only two-level states (“qubits”) had been transmitted, i.e., information with values “0” or “1”. However, the scientists succeeded in teleporting a three-level state, a so-called “qutrit”. In , unlike in classical computer science, “0” and “1” are not an ‘either/or’ – both simultaneously, or anything in between, is also possible. The Austrian-Chinese team has now demonstrated this in practice with a third possibility “2”.

[…]

The quantum state to be teleported is encoded in the possible paths a photon can take. One can picture these paths as three optical fibers. Most interestingly, in quantum physics a single photon can also be located in all three optical fibers at the same time. To teleport this three-dimensional quantum state, the researchers used a new experimental method. The core of quantum teleportation is the so-called Bell measurement. It is based on a multiport beam splitter, which directs photons through several inputs and outputs and connects all optical fibers together. In addition, the scientists used auxiliary photons—these are also sent into the multiple beam splitter and can interfere with the other photons.

Through clever selection of certain interference patterns, the quantum information can be transferred to another photon far from the input photon, without the two ever physically interacting. The experimental concept is not limited to three dimensions, but can in principle be extended to any number of dimensions, as Erhard emphasizes.

Higher information capacities for quantum computers

With this, the international research team has also made an important step towards practical applications such as a future quantum internet, since high-dimensional quantum systems can transport larger amounts of information than qubits. “This result could help to connect quantum computers with information capacities beyond qubits”, says Anton Zeilinger, quantum physicist at the Austrian Academy of Sciences and the University of Vienna, about the innovative potential of the new method.

[…]

In future work, the will focus on how to extend the newly gained knowledge to enable teleportation of the entire quantum state of a single or atom.

Source: Complex quantum teleportation achieved for the first time

Quantum radar has been demonstrated for  – MIT Technology Review

thanks to the work of Shabir Barzanjeh at the Institute of Science and Technology Austria and a few colleagues. This team has used entangled microwaves to create the world’s first quantum radar. Their device, which can detect objects at a distance using only a few photons, raises the prospect of stealthy radar systems that emit little detectable electromagnetic radiation.

The device is simple in essence. The researchers create pairs of entangled microwave photons using a superconducting device called a Josephson parametric converter. They beam the first photon, called the signal photon, toward the object of interest and listen for the reflection.

Quantum radar

In the meantime, they store the second photon, called the idler photon. When the reflection arrives, it interferes with this idler photon, creating a signature that reveals how far the signal photon has traveled. Voila—quantum radar!

This technique has some important advantages over conventional radar. Ordinary radar works in a similar way but fails at low power levels that involve small numbers of microwave photons. That’s because hot objects in the environment emit microwaves of their own.

In a room temperature environment, this amounts to a background of around 1,000 microwave photons at any instant, and these overwhelm the returning echo. This is why radar systems use powerful transmitters.

Entangled photons overcome this problem. The signal and idler photons are so similar that it is easy to filter out the effects of other photons. So it becomes straightforward to detect the signal photon when it returns.

Of course, entanglement is a fragile property of the quantum world, and the process of reflection destroys it.  Nevertheless, the correlation between the signal and idler photons is still strong enough to distinguish them from background noise.

[…]

A big advantage is the low levels of electromagnetic radiation required. “Our experiment shows the potential as a non-invasive scanning method for biomedical applications, e.g., for imaging of human tissues or non-destructive rotational spectroscopy of proteins,” say Barzanjeh and co.

Then there is the obvious application as a stealthy radar that is difficult for adversaries to detect over background noise. The researchers say it could be useful for short-range low-power radar for security applications in closed and populated environments.

Source: Quantum radar has been demonstrated for the first time – MIT Technology Review

Russia’s floating nuclear plant sails to its destination

Russia’s first floating nuclear power plant sailed Friday to its destination on the nation’s Arctic coast, a project that environmentalists have criticized as unsafe.

The Akademik Lomonosov is a 140-meter (459-foot) long towed platform that carries two 35-megawatt nuclear reactors. On Friday, it set out from the Arctic port of Murmansk on the Kola Peninsula on a three-week journey to Pevek on the Chukotka Peninsula more than 4,900 kilometers (about 2,650 nautical miles) east.

Its purpose is to provide power for the area, replacing the Bilibino nuclear power plant on Chukotka that is being decommissioned.

The Russian project is the first floating nuclear power plant since the U.S. MH-1A, a much smaller reactor that supplied the Panama Canal with power from 1968-1975.

Environmentalists have criticized the project as inherently dangerous and a threat to the pristine Arctic region. Russia’s state nuclear corporation Rosatom has dismissed those concerns, insisting that the floating nuclear plant is safe to operate.

Rosatom director, Alexei Likhachev, said his corporation hopes to sell floating reactors to foreign markets. Russian officials have previously mentioned Indonesia and Sudan among potential export customers.

Source: Russia’s floating nuclear plant sails to its destination

Scientists bioprint living tissue in a matter of seconds

Scientists at EPFL and University Medical Center Utrecht have developed an optical system that can bioprint complex, highly viable living tissue in “just a few seconds.” It would represent a breakthrough compared to the clunky, layer-based processes of today.

The approach, volumetric bioprinting, forms tissue by projecting a laser down a spinning tube containing hydrogel full of stem cells. You can shape the resulting tissue simply by focusing the laser’s energy on specific locations to solidify them, creating a useful 3D shape within seconds. After that, it’s a matter of introducing endothelial cells to add vessels to the tissue.

The resulting tissues are currently just a few inches across. That’s still enough to be “clinically useful,” EPFL said, and has already been used to print heart-like valves, a complex femur part and a meniscus. It can create interlocking structures, too.

While this definitely isn’t ready for real-world use, the applications are fairly self-evident. EPFL imagines a new wave of “personalized, functional” organs produced at “unprecedented speed.” This could be helpful for implants and repairs, and might greatly reduce the temptation to use animal testing — you’d just need to produce organs to simulate effects. This might be as much an ethics breakthrough as it is a technical one.

Source: Scientists bioprint living tissue in a matter of seconds

Uber And Lyft Take A Lot More From Drivers Than They Say

Ultimately, the rider paid $65 for the half-hour trip, according to a receipt viewed by Jalopnik. But Dave made only $15 (the fares have been rounded to anonymize the transaction).

Uber kept the rest, meaning the multibillion-dollar corporation kept more than 75 percent of the fare, more than triple the average so-called “take-rate” it claims in financial reports with the Securities and Exchange Commission.

Had he known in advance how much he would have been paid for the ride relative to what the rider paid, Dave said he never would have accepted the fare.

“This is robbery,” Dave told Jalopnik over email. “This business is out of control.”

Dave is far from alone in his frustrations. Uber and Lyft have slashed driver pay in recent years and now take a larger portion of each fare, far larger than the companies publicly report, based on data collected by Jalopnik. And the new Surge or Prime Time pricing structure widely adopted by both companies undermines a key legal argument both companies make to classify drivers as independent contractors.

Jalopnik asked drivers to send us fare receipts showing a breakdown of how much the rider paid for the trip, how much of that fare Uber or Lyft kept, and what the driver earned.

In total, we received 14,756 fares. These came from two sources: the web form where drivers could submit fares individually, and via email where some drivers sent us all their fares from a given time period.

Of all the fares Jalopnik examined, Uber kept 35 percent of the revenue, while Lyft kept 38 percent. These numbers are roughly in line with a previous study by Lawrence Mishel at the Economic Policy Institute which concluded Uber’s take rate to be roughly one-third, or 33 percent.

Of the drivers who emailed us breakdowns for all of their fares in a given time period—ranging from a few months to more than a year—Uber kept, on average, 29.6 percent. Lyft pocketed 34.5 percent.

Those take rates are 10.6 percent and 8.5 percent higher than Uber and Lyft’s publicly reported figures, respectively.

Graphic: Jim Cooke — G/O Media

In regulatory filings, Uber has reported its so-called “take-rate” is actually going down, from 21.7 percent in 2018 to 19 percent in the second quarter of 2019 (Uber declined to offer U.S.-only figures for a more direct comparison to Jalopnik’s findings).

Source: Uber And Lyft Take A Lot More From Drivers Than They Say

Johnson & Johnson Ordered to Pay $572 Million in Landmark Opioid Trial

A judge in Oklahoma on Monday ruled that Johnson & Johnson had intentionally played down the dangers and oversold the benefits of opioids, and ordered it to pay the state $572 million in the first trial of a drug manufacturer for the destruction wrought by prescription painkillers.

The amount fell far short of the $17 billion judgment that Oklahoma had sought to pay for addiction treatment, drug courts and other services it said it would need over the next 20 years to repair the damage done by the opioid epidemic.

Still, the decision, by Judge Thad Balkman of Cleveland County District Court, heartened lawyers representing states and cities — plaintiffs in many of the more than 2,000 opioid lawsuits pending across the country — who are pursuing a legal strategy similar to Oklahoma’s. His finding that Johnson & Johnson had breached the state’s “public nuisance” law was a significant aspect of his order.

Judge Balkman was harsh in his assessment of a company that has built its reputation as a responsible and family-friendly maker of soap, baby powder and Band-Aids.

In his ruling, he wrote that Johnson & Johnson had promulgated “false, misleading, and dangerous marketing campaigns” that had “caused exponentially increasing rates of addiction, overdose deaths” and babies born exposed to opioids.

Source: Johnson & Johnson Ordered to Pay $572 Million in Landmark Opioid Trial – The New York Times

London Transport asked people to write down their Oyster passwords – but don’t worry

London-dwelling Alfie Fresta wanted a National Rail travelcard discount added to his London Oyster card so the discount would work automatically with his pay-as-you-go smartcard.

He was startled when London Overground staff at New Cross Gate station handed him a paper form with a box on it asking for his online Oyster account password.

“I was in utter disbelief,” Fresta told El Reg, having just read about Oyster online accounts being breached by credential-stuffing crooks. “Having worked on a number of web apps, I know storing passwords in clear text is, for lack of a better word, a ginormous no-no.”

Oyster plain text password form from Arriva Rail London, which operates London Overground

The Arriva Rail London form handed to Fresta. ARL is the outsourced operator for TfL’s London Overground services. Click to enlarge

Just to check that this wasn’t a local misunderstanding by station staff, Fresta checked it out at other stations – and was again asked to write down his password in plain text for staff to read.

TfL did not deny that this is its standard procedure for staff adding discounts to Oyster cards, but insisted in a statement to The Register that it doesn’t store those passwords and lets customers take the completed form away afterwards.

A spokeswoman told us: “Customers can add discounts to their Oyster cards at all station ticket machines and our staff are on hand to support them with this process. If a customer prefers to do this via a ticket office rather than a machine, then a password is temporarily provided to the ticket office staff via a form.

“The password is always entered in the presence of the customer and the form is returned to them to ensure it can be disposed of securely. Customers are advised to change the password on first login, if setting up an online Oyster account. We recognise that where possible this process could be improved and work is under way to identify options.”

Fresta was not impressed with TfL’s customer service, telling us he wasn’t given “any explanation as to how the information [would] be handled or why”.

Source: Yes, TfL asked people to write down their Oyster passwords – but don’t worry, they didn’t inhale • The Register

That’s insane!

Indonesia unveils site of new capital on Borneo island

The capital of the world’s fourth most populous country, on the island of Java, is now home to 10 million people and is prone to floods, traffic gridlock and faces the risk of earthquakes.

The as-yet unnamed new capital will straddle the regions of North Penajam Paser and Kutai Kartanegara in Indonesia’s province of East Kalimantan on Borneo, President Joko Widodo told a news conference.

“It is a strategic location at the center of Indonesia, close to growing urban areas,” Widodo said at the presidential palace in Jakarta, adding that planning must start immediately if relocation is to begin in 2024.

The site of the new capital, 2,000 km (1,250 miles) northeast of Jakarta, is one of the regions least prone to the natural disasters that regularly hit the archipelago of 17,000 islands.

There are also economic and political reasons for moving the capital from Java, which Widodo said was home to 54% of Indonesia’s 260 million people and generated 58% of its gross domestic product.

But environmentalists fear the move will hasten the destruction of forests that are home to orangutans, sun bears and long-nosed monkeys, as well as increasing pollution already on the rise from coal mining and palm oil industries.

“The move will have an environmental impact,” said Greenpeace senior forest campaigner Jasmine Puteri. “Jakarta has suffered so many failures from pollution, water crisis, and flooding. We don’t want these problems in the new capital.”

FOREST CITY

Officials say they want the new capital to be “a smart city in the forest” and have set aside 180,000 hectares (445,000 acres) of government land.

Widodo said moving the administrative center would cost just under $33 billion, of which the state would fund 19%, with the rest coming from public-private partnerships and private investment. The price tag includes new government offices and homes for about 1.5 million civil servants.

Source: Indonesia unveils site of new capital on Borneo island – Reuters