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Showing posts with label Science. Show all posts
Showing posts with label Science. Show all posts

Monday, December 12, 2022

ESnet Launches Next-Generation Network to Enhance Collaborative Science

Better Networks Built for Research.

ACM TECHNEWS

ESnet Launches Next-Generation Network to Enhance Collaborative Science

By Berkeley Lab News Center, October 18, 2022

“ESnet6 represents a transformational change in the way networks are built for research, with improved capacity, resiliency, and flexibility,” said ESnet executive director Inder Monga.

The Energy Sciences Network (ESnet) has rolled out the latest generation of the U.S. Department of Energy's (DOE) high-performance science network, dubbed ESnet6.

ESnet links all DOE's national laboratories, DOE-funded researchers, and its scientific instruments and supercomputing centers so that data can move quickly between them.

ESnet6 features bandwidth of over 46 terabits per second, a dedicated fiber optic cable footprint spanning 15,000 miles, and network backbone links ranging from 400 gigabits per second to 1 terabit per second, among other things.

Said ESnet's Inder Monga, "ESnet6 provides the foundation for the future of the DOE mission science as we enter an age where discoveries will rely on the integration of scientific experimental facilities, supercomputers, and global science teams operating together as if they are colocated: one instrument in one location. ESnet6 interconnects all of these resources to create a holistic science discovery system."

From Berkeley Lab News Center

View Full Article     


Tuesday, December 06, 2022

Three Key Takeaways from Meta's Galactica AI

Galactica AI,  general idea is good, navigating complex forms of data is useful.  One of our early AI successes did exactly this for key internal knowledge.  Make it easy to easy to use, and importantly make it easy to validate and update in changing contexts.

Three Takeaways from Meta's Galactica AI

By TechTalks, November 23, 2022

We should look at Galactica's initial failure as another scientific experiment...and, every failed experiment brings us one step closer to success.

Meta's most recent large language model (LLM) release, Galactica, was supposed to help scientists navigate tons of published scientific information. Its developers presented it as being able to find citations, summarize academic literature, solve math problems, and perform other tasks that help scientists in research and writing papers.

However, three days after the release, Meta had to shut down the online demo following a deluge of criticism by scientists and tech media about the model's incorrect and biased output. While Galactica was obviously not a success, its short history provides us with some useful lessons about LLMs and the future of AI research.

From TechTalks   View Full Article    

Saturday, July 09, 2022

Physicists Rewrite the Fundamental Law That Leads to Disorder

Technical and intriguing

The second law of thermodynamics is among the most sacred in all of science, but it has always rested on 19th century arguments about probability. New arguments trace its true source to the flows of quantum information.

Is the rise of entropy merely probabilistic, or can it be straightened out by use of clear quantum axioms?

By Maggie Chiang for Quanta Magazine

In all of physical law, there’s arguably no principle more sacrosanct than the second law of thermodynamics — the notion that entropy, a measure of disorder, will always stay the same or increase. “If someone points out to you that your pet theory of the universe is in disagreement with Maxwell’s equations — then so much the worse for Maxwell’s equations,” wrote the British astrophysicist Arthur Eddington in his 1928 book The Nature of the Physical World. “If it is found to be contradicted by observation — well, these experimentalists do bungle things sometimes. But if your theory is found to be against the second law of thermodynamics I can give you no hope; there is nothing for it but to collapse in deepest humiliation.” No violation of this law has ever been observed, nor is any expected.

But something about the second law troubles physicists. Some are not convinced that we understand it properly or that its foundations are firm. Although it’s called a law, it’s usually regarded as merely probabilistic: It stipulates that the outcome of any process will be the most probable one (which effectively means the outcome is inevitable given the numbers involved).

Yet physicists don’t just want descriptions of what will probably happen. “We like laws of physics to be exact,” said the physicist Chiara Marletto of the University of Oxford. Can the second law be tightened up into more than just a statement of likelihoods?

A number of independent groups appear to have done just that. They may have woven the second law out of the fundamental principles of quantum mechanics — which, some suspect, have directionality and irreversibility built into them at the deepest level. According to this view, the second law comes about not because of classical probabilities but because of quantum effects such as entanglement. It arises from the ways in which quantum systems share information, and from cornerstone quantum principles that decree what is allowed to happen and what is not. In this telling, an increase in entropy is not just the most likely outcome of change. It is a logical consequence of the most fundamental resource that we know of — the quantum resource of information.  ... ' 


Saturday, June 18, 2022

Talking Science Writing

Great piece by Sabine Hossenfelder, a favorite physics and science writer I read.     She rightly points out the main problems with popular science writing today. I admit to many of the errors she mentions.  It is hard to do many of these things .   I am more of an alerter to science  Its difficult  to put error bars on everything you write or quote.   I hope this inspires me and others to do better.  

By Sabine Hossenfelder

Why does Science News Suck So Much?
Her main topics and examples:

0:00 Intro
00:39 Show me your uncertainty estimate
1:43 Cite your sources
3:07 Put a date on it
3:52 Tell me the history
4:42 Don't oversimply it
5:44 It depends, but on what?
6:46 Tell me the whole story
7:37 Spare me the human interest stuff
8:13 Don't forget that science is fallible
8:59 Science doesn't work by consensus
11:14 Sponsor message

Friday, June 10, 2022

AI Is Ushering In a New Scientific Revolution

interesting connection between causes and new approaches.    Can we relate this to statistical methods as well? 

AI Is Ushering In a New Scientific Revolution    By The Gradient, June 9, 2022

Through automation and algorithms, artificial intelligence (AI) can link together causes and correlations that no human could connect. But AI is more than a just powerful tool in the hands of scientists and partners on this search. The technology is also transforming the scientific process, automating and adding to what people can accomplish using it.

AI is ushering in a new scientific revolution by making remarkable breakthroughs in a number of fields, unlocking new approaches to science, and accelerating the pace of science and innovation. As partners in discovery, AI and scientists can explore more of science's endless frontier together than either could alone.

From The Gradient     View Full Article

Monday, May 23, 2022

Has Science-based Marketing taken a Pandemic hit?

 Surprised at the suggestion, but interesting. 

Has science-based marketing taken a pandemic hit?

May 20, 2022    In Retailwire  by Tom Ryan

Surveys show that trust in scientists took a hit during the pandemic and it may be impacting science-based marketing claims.

Recent research from John Costello, a marketing professor at Notre Dame’s Mendoza College of Business, along with researchers at Simon Fraser University and Ohio State University, explored how invoking science in the marketing of consumer products can backfire.

The research generally found science-based claims are effective when marketers try to sell the practicality of the product. When trying to sell based on sensory pleasure, consumers are less likely to buy it when it is described as developed using science.

“The reason this occurs is because people stereotype the scientific process as being competent but cold, similar to how they stereotype scientists,” said Prof. Costello in a press release. If consumers become aware that science is necessary in making the product, the backlash against the science claim doesn’t occur, according to the findings.

The research further found those who work in STEM industries (science, technology, engineering and math) don’t exhibit the “science backfire effect.” Researchers, however, also cited public polling concluding that a growing number of Americans have lower trust in science, suggesting that segmentation strategies may be beneficial for marketing managers.

“Our studies suggest that many consumers have mixed feelings about science in product development, despite the fact that societally, we increasingly rely on products produced by science,” Prof. Costello said. “As a result, marketers need to exercise caution when discussing the scientific process used to create products that consumers are buying for taste, enjoyment and other types of pleasure.”

Researchers assessed trust in scientists based on a Pew Research Center December 2021 survey that found only 29 percent of U.S. adults have a great deal of confidence in scientists to act in the best interests of the public, down from 39 percent from a November 2020 survey.  .... ' 

Monday, April 18, 2022

James Webb Will Stare at Jupiter for Knowledge Expansion

Not normally in this space, but a link to my astrophysics interests.   An example of how you can expand masses of sensor data from historical probes, with new technology.  Ways to expand patterns of data in new ways.  Ways to do this in other domains?    Will try to make the case in coming year.  Good to see this, will be following.

The James Webb Space Telescope Is Going to Stare Straight Into Jupiter  In Futureism.com

There's a lot we know about Jupiter. But even more we don't.

/ Hard Science/ James Webb Space Telescope/ Jupiter/ JWST  NASA   .... 

After launching late last year, NASA’s revolutionary James Webb Space Telescope is finally getting ready to fixate its numerous golden mirrors on distant targets.

Intriguingly, though, one of its 13 early targets isn’t so distant at all — at least in the grand scheme of things. It’ll be looking at Jupiter, the iconic gas giant in our own star system. Of course, we already know quite a bit about the planet already— so why investigate it using the JWST if it can have a closer look at far more distant objects?

“We’ve been there with several spacecraft and have observed the planet with Hubble and many ground-based telescopes at wavelengths across the electromagnetic spectrum (from the UV to meters wavelengths),” Berkeley astronomer Imke de Pater, leader of the Jupiter observation team, told Digital Trends, “so we’ve learned a tremendous amount about Jupiter itself, its atmosphere, interior, and about its moons and rings.” ...

Monday, March 28, 2022

Dyson on Science

Via Cliff Pickover    @Pickover

“The public has a distorted view of science because children are taught in school that science is a collection of firmly established truths. In fact, science is not a collection of truths. It is a continuing exploration of mysteries.”     ~Freeman Dyson, bit.ly/36PUNai

Agree, should be but almost never taught this way ...

Monday, March 14, 2022

Good Advanced Science explaining: By Sabine Hossenfelder

Relatively recently discovered, science but mostly what would be called physics.    Well done, but relatively technical.  Ideal to catch up on the updates of the physics you learned in high school or college. 

In her channel "Science without the gobbledygook," Sabine talks straight about science: No hype, no spin, no tip-toeing around inconvenient truths. New video each Saturday.

Sabine Hossenfelder has a PhD in physics and is presently a Research Fellow at the Frankfurt Institute for Advanced Studies (FIAS). She is author of the book "Lost in Math: How Beauty Leads Physics Astray" (Basic Books, 2018) and blogs at backreaction.blogspot.com

This is a personal channel. Opinions expressed here do not represent the opinions of FIAS.....

https://www.youtube.com/c/SabineHossenfelder  on yYoutube


Friday, February 25, 2022

Decentralized Science

 Decentralized science, new to me as a concept.

A Guide to DeSci, the Latest Web3 Movement   By Sarah Hamburg

A growing number of scientists and entrepreneurs are leveraging blockchain tools, including smart contracts and tokens, in an attempt to improve modern science. Collectively, their work has become known as the decentralized science movement, or DeSci.

Still in its infancy, DeSci lies at the intersection of two broader trends: 1) efforts within the scientific community to change how research is funded and knowledge is shared, and 2) efforts within the crypto-focused movement to shift ownership and value away from industry intermediaries. But what exactly does DeSci entail? 

I’m a neuroscientist and cofounder of a startup that uses the blockchain to provide users of wearables with full ownership and control over their biometric data (including brain data). I recently published a short letter in the journal Nature encouraging scientists across all disciplines to join DeSci. As the movement grows, so does the need for open public discussion. To that end, I’ve put together an introductory guide that covers how DeSci came to be, what its defining features are, what the major debates and open questions are within the movement, and where the greatest opportunities and challenges lie.

DeSci drivers

The DeSci movement aims to enhance scientific funding; unleash knowledge from silos; eliminate reliance on profit-hungry intermediaries such as publisher conglomerates; and increase collaboration across the field. 

Funding is an especially acute pain point for scientists, who spend up to half their time writing grant proposals. Success in getting funding is heavily tied to metrics such as the h-index, which quantifies the impact of a scientist’s published work. The resulting pressure to “publish or perish” incentivizes the pursuit of novel research over work that’s critical but less likely to grab headlines. Ultimately, inadequate and unreliable funding not only reduces the amount of science being done, but also biases which projects scientists choose, contributing to issues such as the replication crisis.

Information access is another much-lamented problem. Despite the fact that science is the epitome of a global public good, a lot of scientific knowledge is trapped behind journal paywalls and inside private databases. Making all types of data more accessible is the main objective of the Open Science movement, which emerged over a decade ago.

Open Science initiatives have had far-reaching effects, including mandates by the National Institutes of Health and other funding sources to publish open-access findings. But the extent to which science has improved as a result is a matter of debate. For example, journals responded to these mandates with pay-to-publish business models. Now, instead of paying to read other people’s studies, publicly funded scientists pay to publish their own research. (Nature charges over $11,000 per paper.) Some academics have argued that open access mandates increasingly concentrate power in the hands of major publishers.

Where DeSci comes in:  ... ' 

Thursday, December 09, 2021

Using Non Fungible Tokens (NFT) Outside the Art Word to Science: LAB Gallery

Connected briefly with Foresight.  Below quite interesting, taking NFT's from the art world to other kinds of creation.  If NFTs work then they can be used for any kind of creation that is described in a complex way. Interesting in seeing Foresight involved in this, they were formerly mostly in nanotech, which we experimented with. . Or is this the play? here? Examining.

Foresight's LAB Gallery Sells NFTs to Support Science  

By Foresight Institute, December 8, 2021

Jonathan Monaghan's Enoptomancer NFT

Bidding for Jonathan Monaghan's NFT created for LAB Gallery opened at 0.3 ETH (US$1,287.18).

The Foresight Institute has launched LAB Gallery, a digital platform that sells artists' NFTs to philanthropists to support scientists and technologies.  Users can bid on and acquire new non-fungible tokens (NFTs), with proceeds going to the development of transformative technologies.

The LAB is a "purpose driven digital art gallery" that connects "technology innovators, digital creators, and philanthropic collectors to steer together towards grand outcomes." Sales will support nanotechnology, biotechnology, computer science, machine learning, and cryptography, the LAB says. The NFTs "provide a unique piece of collectible art as proof of support."

From Foresight Institute

View Full Article  (more in depth)

Wednesday, September 08, 2021

CMU Cloud Lab Links Automation to Labor

 The linking of labor intensive needs is particularly interesting to testallternatives. 

Carnegie Mellon's Cloud Lab to Automate Labor-Intensive Science Experiments

The Wall Street Journal, Sara Castellanos,  August 30, 2021

Carnegie Mellon University (CMU) and remote technology access provider Emerald Cloud Lab have partnered on a $40-million laboratory to automate experiments in robotics and artificial intelligence. CMU's Rebecca Doerge said the "Cloud Lab" will be the first-ever university-owned cloud lab, in which scientists may access software to design experiments that are conducted remotely by about 200 different kinds of robots. Emerald Cloud Lab's Brian Frezza said researchers can design experiments from anywhere with the company's proprietary software, which instructs machines via the cloud. CMU researchers are developing artificial intelligence systems that can automatically suggest ways to calibrate the equipment to carry out tests optimally. .... 

Monday, July 12, 2021

Spy Agencies look to Science

When there are no direct solutions, look to emerging tech.  But do they have the same goals?   Same limitations? 

Spy Agencies Turn to Scientists as They Wrestle With Mysteries

By The New York Times via CACM   July 9, 2021

The nation's intelligence agencies are looking for ways to increase their expertise in a range of scientific disciplines as they struggle to answer unexplained questions — about the origins of the coronavirus pandemic, unidentified phenomenon observed by Navy pilots, and mysterious health ailments affecting spies and diplomats around the world.

Traditional spycraft has failed to make significant progress on those high-profile inquiries, and many officials have grown convinced that they require a better marriage of intelligence gathering and scientific examination.

Intelligence officials in the Biden administration came into office pledging to work on areas traditionally dominated by science, like studying the national security implications of climate change and future pandemics. But as the other issues have cropped up, the spy agencies have had to confront questions that are as much scientific mysteries as they are challenges of traditional intelligence collection.

The White House has given the intelligence community until later this summer to report the results of a deep dive into the origins of the coronavirus, including an examination of the theory that it was accidentally leaked from a Chinese lab studying the virus as well as the prevailing view that it was transmitted from animals to humans outside a lab.

In the NYT

Thursday, June 17, 2021

Making Sense of Contradictory Science Results

How do we make make sense of contradictory results?

How to Make Sense of Contradictory Science Papers  in Nautil.us

Published research is less about conclusions than science at play.

BY HAIXIN DANG & LIAM KOFI BRIGHT

The science you can come across today can often appear to be full of contradictory claims. One study tells you red wine is good for your heart; another tells you it is not. Over the past year, COVID-19 research has offered conflicting reports about the overall effectiveness of wearing a mask. As scientists debate what policy best suits the current moment, they will be drawing on hundreds of studies; some that say masks are effective1 and some that say masks alone are not enough.

Naturally, given its outsized influence on society—especially during a pandemic—people tend to regard published science highly. This means that many of us expect scientists to be prudent in reporting their results. These ought to be true and justified by evidence, right? And surely, at a bare minimum, the researchers themselves ought to believe in what they are publishing, yes? Maybe not. The bar for publishing might, counter-intuitively, be lower than one might expect. “Scientific conclusions,” as we titled our recent paper,3 “need not be accurate, justified, or believed by their authors.”

Why might it be worth worrying about how and when scientists decide to share their work?

We’re not saying scientists generally lie about their published results (this has nothing to do with misconduct). Rather, we argue that scientific papers fulfill a useful social role by doing more than merely reporting on true discoveries. It’s enough for them to draw attention to an idea that is worth pursuing further—and an idea need not be true, well-justified given all our evidence, nor even believed by the scientist in order to pass that test. The peer-review process is, in fact, designed, not to detect fraud or data manipulation, but to select for what is noteworthy.4 What is considered unexpected and thought-provoking will not always track our all-things-considered judgments of what is true, but local community standards of best scientific practice having to do with how to go about data gathering and statistical testing.

For scientists to collectively inquire effectively, they need to communicate interesting ideas to each other that are worth pursuing. Consider Avi Loeb, a theoretical astrophysicist who proposed the provocative hypothesis, not without some supporting data, that ‘Oumuamua wasn’t a comet but an alien light-sail. He, presumably, knew that more data would need to be gathered, and a more thorough study would need to be conducted, before the hypothesis could be justifiably believed.

Nonetheless, perhaps it was appropriate for Loeb to publish his data and his hypothesis. He himself might even be agnostic toward the truth of the hypothesis. He likely knew that most of his colleagues would dispute his interpretation of the data, and with good cause. In spite of all this, it was still valuable for him to publicly communicate the possibility of a new hypothesis, because it can—and maybe actually did—spur more research into, and garner attention for, astronomy. Publishing those findings was not about communicating the truth but about saying that there is something exciting and interesting that requires further inquiry.  ... "


Thursday, December 03, 2020

Detecting Scientific Conflicts of Interest

 With other kinds of application in compliance.   But see the note about subjective aspects. 

Do You Have a Conflict of Interest? This Robotic Assistant May Find It First

The New York Times, Dalmeet Singh Chawla

Frontiers, a Swiss publisher of open-access journals, has rolled out the Artificial Intelligence Review Assistant (AIRA) to check for potential conflicts of interest. The software flags whether the authors of a manuscript, as well as the editors and peer reviewers handling it, have been co-authors on previous papers. Said Frontiers' Kamila Markram, "AIRA is designed to direct the attention of human experts to potential issues in manuscripts." Other publications are using similar artificial intelligence (AI) tools, but some researchers note that conflicts of interest can be subjective and difficult to unravel. Canada's McGill University computer scientist Kaleem Siddiqi noted, "There's no real solution."  .... 

Friday, October 16, 2020

Exceptions to the Law of Entropy

More of a Science idea, but we actually found it useful to include in creativity work.   And in work that related  to the application of AI to process.   I post it here to remind myself of the connection and pass it along to others out there.  Is it creeping into other 'engineering' efforts.  For example, is Quantum an aspect of the below?

Stochastic thermodynamics finds exceptions to the law of entropy  By Tim Andersen, Ph.D.  in Medium

 Thermodynamics is one of the most venerable physical theories. 18th and 19th century physicists like Carnot, Clausius, Gibbs, Helmholtz, and Boltzmann established it as a cornerstone of how macroscopic systems made of many, many constituent particles behave, how heat is transported from one system to another, and how engines do work and with what efficiency.

It is from thermodynamics that we get laws like: there are no perpetual motion machines (machines with 100% or more efficiency or that have non-zero efficiency in thermal equilibrium).

Unlike the laws of mechanics or many field theories, however, thermodynamics has always been recognized as containing both strict and de facto laws. The primary laws are:

   - Energy can be neither created nor destroyed. (Strict)

   - Entropy can never decrease. (De Facto)

There are qualifiers to this. In the 1st law, the system must be closed. For the second, we are talking about bringing two or more isolated systems together.

The conservation of energy is a consequence of time translation symmetry of our universe. All times in physical laws can be shifted by a constant amount. We get that from Emmy Noether’s theorem. No physical law breaks the conservation of energy.

The second law is a “de facto” law of physics. I use this term where others might use the word “statistical”. But to say it is statistical is an understatement compared to other fields like sociology. Until about 25 years ago, a violation of the 2nd law was almost thought to be impossible.   ... "

Wednesday, September 09, 2020

Considering the use of Falsification in Science

Here a link to an Opinion piece in the SciAM.   Worth a read along with responses.  Thinking this and its implications broadly for establishment and testing, and use of science.

The Idea That a Scientific Theory Can Be ‘Falsified’ Is a Myth
It’s time we abandoned the notion

By Mano Singham on September 7, 2020

J.B.S. Haldane, one of the founders of modern evolutionary biology theory, was reportedly asked what it would take for him to lose faith in the theory of evolution and is said to have replied, “Fossil rabbits in the Precambrian.” Since the so-called “Cambrian explosion” of 500 million years ago marks the earliest appearance in the fossil record of complex animals, finding mammal fossils that predate them would falsify the theory.

But would it really?
The Haldane story, though apocryphal, is one of many in the scientific folklore that suggest that falsification is the defining characteristic of science. As expressed by astrophysicist Mario Livio in his book Brilliant Blunders: "[E]ver since the seminal work of philosopher of science Karl Popper, for a scientific theory to be worthy of its name, it has to be falsifiable by experiments or observations. This requirement has become the foundation of the ‘scientific method.’”  ... "

Wednesday, July 29, 2020

Numbers, Mathematics and the Reality of Science

Why can numbers do such a good job of describing reality?   Can they describe all of reality?

Recently republished:  https://medium.com/@ruth.ym.ng/do-numbers-exist-251e9b61508

Do Numbers Exist?  by Ruth Ng
November 2nd 2018

In 1960, Eugene Wigner began the closing paragraph of his paper The Unreasonable Effectiveness of Mathematics in the Natural Sciences with a beautiful summary of the problem philosophers face when it comes to the existence of numbers. He said:

“The miracle of the appropriateness of the language of mathematics for the formulation of the laws of physics is a wonderful gift which we neither understand nor deserve.”

He’s talking about the sheer power, the disproportionate usefulness and beauty of mathematics. Its ability to seemingly describe reality in a way our ordinary language never could is uncanny.

The Collatz Conjecture is one such curiosity, as is the Fibonacci sequence. (If these sorts of things interest you, my favourite books on this kind of thing are Ian Stewart’s Incredible Numbers, Freiberger & Thomas’ Numericon and David Acheson’s 1089.) ... 

Monday, July 13, 2020

The Shifting Terrain of Scientific Inquiry

Scientific inquiry, in The Edge

The Shifting Terrain of Scientific Inquiry
A Conversation with David Kaiser

Most historians of science, certainly these days, consider themselves historians. That means we use historical methods of research. We comb through the published literature, investigate unpublished things—correspondence, notes, notebooks, grant proposals. For more recent periods, we interview people. (There's a colleague of mine who likes to say that the historian's job is reading dead people's mail, which captures a lot of what we try to do.) We are trying to figure out the texture of lived experience and how that informed the people about whose world we're trying to get our heads back into. On one hand, it is an interpretive effort squarely within the humanities and social sciences to make sense of our world in times and places gone by. With the history of science, we get to have this productive, ongoing discussion with much more contemporary events and efforts in the sciences today. Why do certain ideas take hold and become so prominent? Why do certain questions rise to prominence and get asked in one setting versus another? These are the larger questions about the present-day scientific enterprise that a lot of work in the history of science can help us better understand.  ... "

DAVID KAISER is the Germeshausen Professor of the History of Science and professor of physics at MIT. He is the author, most recently, of Quantum Legacies. David Kaiser's Edge Bio Page

Monday, May 18, 2020

Combining Museum and a Lab

When we built our retail innovation spaces, which sought to help us understand what the future of these spaces when inserting innovations,  we looked at several museum solutions.  One approach would be to allow remote interactions by different kinds of visitors.  Sometimes using the spaces as a display, sometimes as a lab,  This description reminded me of the process and how it would work in each way.

Take a virtual tour of the Museo Galileo in Florence, Italy
The museum holds one of the world's major collections of scientific instruments.
 By Jennifer Ouellette in Arstechnica  ...