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Showing posts with label Sabine Hossenfelder. Show all posts
Showing posts with label Sabine Hossenfelder. Show all posts

Saturday, March 11, 2023

I Believe Chatbots Understand Part of What they say. Let me Explain.

Physicist Sabine Hossenfelder does a good job in comparing the understanding exhibited by chatbot  with our understanding of quantum Mechanics, along the way describes the 'Chinese Room' model used in early AI thoughts.    Once Again, some great thoughts.  She writes: 

I believe chatbots understand part of what they say. Let me explain. 

Youtube:  https://www.youtube.com/watch?v=cP5zGh2fui0

Do Chatbots Understand YOU?      By Sabine Hossenfelder

Subscribed  5.8K   27,823 views  Mar 11, 2023 

Try out my quantum mechanics course (and many others on math and science) on Brilliant using the link https://brilliant.org/sabine. You can get started for free, and the first 200 will get 20% off the annual premium subscription.

I used to think that today's so-called "artificial intelligences" are actually pretty dumb. But I've recently changed my mind. In this video I want to explain why I think that they do understand some of what they do, if not very much. And since I was already freely speculating, I have added some thoughts about how the situation with AIs is going to develop.

  @sabinehossenfelder  

00:00 Intro

01:15 The Chinese Room

03:05 The Quantum Room

04:14 How Do Chatbots Learn?

07:15 What Does "Understanding" Mean?

15:46 Do We "Understand" Quantum Mechanics?

18:21 Where Will The AI Boom Lead Us?

20:30 Check Out My Quantum Mechanics Course

............

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#science #philosophy

Saturday, February 18, 2023

The Promise and Difficulty of Geothermal Energy

 Have a long time interest in Geothermal Energy.  Seen it in successful operation in Iceland.  I see that Physicist Sabine Hossenfelder has a good state of the technology view of this effort in Youtube at:  https://youtu.be/l6UGpaKnkS0 

Sabine Hossenfelder  @SabineHossenfelder  

37,633 views  Feb 18, 2023  #science

Also, Check out Brian Keating's Channel: https://www.youtube.com/c/DrBrianKeating 

Sign up for Brian's Newsletter here: http://briankeating.com/list

There is a lot of energy right under our feet, a relic from Earth's hot past as a ball of plasma. But how much can geothermal energy realistically do for us? What technologies are currently being pursued, what are the risks, and is it even carbon neutral? In this video we have collected all the relevant facts and numbers for you.

The footage of Staufen at the beginning of the video comes from Tom Scott's video that you can watch in full here: https://www.youtube.com/watch?v=zOgle...  

Topics:

00:00 Intro

00:53 How Much Geothermal Energy is There?

06:37 What are the Challenges?

13:08 What Can New Technology Do?

16:07 What Are the Risks?

19:51 Summary

20:21 Into The Impossible With Brian Keating


Monday, December 26, 2022

Reading Existential Physics

Just started reading ...  good intro .... 

Understanding physics and its practical application is becoming important.  Book about how quantum effects are being applied in computing and cryptography. 

Existential Physics: A Scientist's Guide to Life's Biggest Questions Audible Logo Audible Audiobook – Unabridged

By Sabine Hossenfelder (Author), Gina Daniels (Narrator), Penguin Audio (Publisher)

A contrarian scientist wrestles with the big questions that modern physics raises, and what physics says about the human condition.

Not only can we not currently explain the origin of the universe, it is questionable we will ever be able to explain it. The notion that there are universes within particles, or that particles are conscious, is ascientific, as is the hypothesis that our universe is a computer simulation. On the other hand, the idea that the universe itself is conscious is difficult to rule out entirely. 

According to Sabine Hossenfelder, it is not a coincidence that quantum entanglement and vacuum energy have become the go-to explanations of alternative healers, or that people believe their deceased grandmother is still alive because of quantum mechanics. Science and religion have the same roots, and they still tackle some of the same questions: Where do we come from? Where do we go to? How much can we know? The area of science that is closest to answering these questions is physics. Over the last century, physicists have learned a lot about which spiritual ideas are still compatible with the laws of nature. Not always, though, have they stayed on the scientific side of the debate. 

In this lively, thought-provoking book, Hossenfelder takes on the biggest questions in physics: Does the past still exist? Do particles think? Was the universe made for us? Has physics ruled out free will? Will we ever have a theory of everything? She lays out how far physicists are on the way to answering these questions, where the current limits are, and what questions might well remain unanswerable forever. Her book offers a no-nonsense yet entertaining take on some of the toughest riddles in existence, and will give the listener a solid grasp on what we know—and what we don’t know.

* This audiobook includes a downloadable PDF with key visual figures included in the book. 

PLEASE NOTE: When you purchase this title, the accompanying PDF will be available in your Audible Library along with the audio.

©2022 Sabine Hossenfelder (P)2022 Penguin Audio

Sunday, December 18, 2022

Fake News, Echo Chambers & Polarization: How Bad Is Social Media?

Sabrine Hossenfelder does a good job in covering a number of research papers on this important topic, and analyzes them.    A fairly balanced look as I see it.   Including references to a number of studies that have been made in the US and elsewhere.   Link to her YouTube is right below.   I am reading her new book: 'Existential Physics', available most anywhere and in libraries.

Link to the Youtube:  https://www.youtube.com/watch?v=XDqESkPiV4E

Does fake news spread better than true news? Do bots spread fake news? What can we do against fake news? Does social media increase political polarization? Is it true that we all live in political echo chambers? In this video, we look at what scientific studies have found and what we can learn from that.

👉 Transcript and References on Patreon ➜ https://www.patreon.com/Sabine

💌 Sign up for my weekly science newsletter. It's free!  ➜ https://sabinehossenfelder.com/newsle...

📖 Check out my new book "Existential Physics" ➜ http://existentialphysics.com/

🔗 Join this channel to get access to perks ➜ 

https://www.youtube.com/channel/UC1yN...

The two browser games I mentioned are "Go Viral" https://www.goviralgame.com

And "Get Bad News" https://www.getbadnews.com/

00:00 Intro

01:30 Fake News 

09:38 Information Literature

10:16 Echo Chambers

13:15 Polarization

16:38 Summary

17:19 MEL Science: Experiments By Subscription

#science

Monday, December 05, 2022

Existential Physics Reading

 Understanding physics and its practical application is becoming important.   Here a good intro I am reading,  notably about how quantum effects are being applied in computing and cryptography. 

Existential Physics: A Scientist's Guide to Life's Biggest Questions Audible Logo Audible Audiobook – Unabridged

By Sabine Hossenfelder (Author), Gina Daniels (Narrator), Penguin Audio (Publisher)

4.4 out of 5 stars    289 ratings

A contrarian scientist wrestles with the big questions that modern physics raises, and what physics says about the human condition.

Not only can we not currently explain the origin of the universe, it is questionable we will ever be able to explain it. The notion that there are universes within particles, or that particles are conscious, is ascientific, as is the hypothesis that our universe is a computer simulation. On the other hand, the idea that the universe itself is conscious is difficult to rule out entirely. 

According to Sabine Hossenfelder, it is not a coincidence that quantum entanglement and vacuum energy have become the go-to explanations of alternative healers, or that people believe their deceased grandmother is still alive because of quantum mechanics. Science and religion have the same roots, and they still tackle some of the same questions: Where do we come from? Where do we go to? How much can we know? The area of science that is closest to answering these questions is physics. Over the last century, physicists have learned a lot about which spiritual ideas are still compatible with the laws of nature. Not always, though, have they stayed on the scientific side of the debate. 

In this lively, thought-provoking book, Hossenfelder takes on the biggest questions in physics: Does the past still exist? Do particles think? Was the universe made for us? Has physics ruled out free will? Will we ever have a theory of everything? She lays out how far physicists are on the way to answering these questions, where the current limits are, and what questions might well remain unanswerable forever. Her book offers a no-nonsense yet entertaining take on some of the toughest riddles in existence, and will give the listener a solid grasp on what we know—and what we don’t know.

* This audiobook includes a downloadable PDF with key visual figures included in the book. 

PLEASE NOTE: When you purchase this title, the accompanying PDF will be available in your Audible Library along with the audio.

©2022 Sabine Hossenfelder (P)2022 Penguin Audio


Friday, November 25, 2022

Quantum Microscope Soon?

Intro, see also in Sabine Hossenfelder's  Youtube here:  https://youtu.be/fkXSCNDfj14   Where she points to a paper https://doi.org/10.1038/s41586-021-03528-w  suggesting early prototype designs.  

The quantum microscope revolution is here    in CosmosMagazine   By Lauren Fuge 

New entanglement-based sensor surpasses light-based microscopes.

University of Queensland researchers have built a quantum microscope based on the strange phenomenon Albert Einstein once called “spooky action at a distance”.

This new device takes advantage of quantum entanglement to illuminate living samples safely – unlike conventional microscopes, which use potentially damaging high-intensity light. Warwick Bowen, a quantum physicist at the University of Queensland, says this is the first entanglement-based sensor that supersedes non-quantum technology.

“This is exciting – it’s the first proof of the paradigm-changing potential of entanglement for sensing,” says Bowen, who is lead author on the new paper published in Nature.

Since their invention in the seventeenth century, traditional light-based microscopes have revolutionised our understanding of life by revealing the microscopic structures and behaviours of living systems. The field of microscopy took a big leap when lasers were introduced to more brightly illuminate samples; some recent technologies have even been able to peer down to resolutions nearly at the scale of atoms.

But the best microscopes are limited by the “noisiness” of photons – the tiny packets of energy that make up light. The random times at which individual photons hit a detector introduces noise, which affects the sensitivity, resolution and speed of microscopes. The noise can be reduced by increasing the intensity of light – which fries cells.

“The best light microscopes use bright lasers that are billions of times brighter than the sun,” Bowen explains. “Fragile biological systems like a human cell can only survive a short time in them

“We’re hitting the limits of what you can do just by increasing the intensity of your light.”

Bowen and team’s new microscope may just kickstart the next revolution in microscopy, because they’ve evaded these limitations by introducing quantum entanglement.

But how does this device actually work? Well, it’s down to quantum physics, so buckle in.

Quantum entanglement is a strange beast to get your head around. The idea is that two particles can become “entangled”, or linked, and will thereafter always mirror each other’s properties – what happens to one instantly happens to the other, even if they’re light-years apart. This instantaneous coordination seems to rebel against common sense; physicists don’t yet know exactly how this works, only that it does.

And this phenomenon can be harnessed in microscopy.

Physicists have known for a while that quantum correlations can be used to extract information from photons – in fact, these correlations used to improve laser interferometric gravitational wave detectors like LIGO, among many other things. They even suspected that quantum correlations could help improve microscopy, but until now they couldn’t build bright enough light sources with quantum correlations that could be interfaced with a microscope.

“However, all previous experiments used optical intensities more than 12 orders of magnitude lower than those for which biophysical damage typically arises, and far below the intensities typically used in precision microscopes,” the authors explain in their paper.

This new set-up uses a coherent Raman scattering microscope – existing technology that probes the vibrational signals of living molecules, giving specific information about their chemical makeup.

But the team custom-designed the microscope so quantum correlations improved the light source illuminating the sample, making the light extremely “quiet”.

“What entanglement allows us to do is basically train the photons in that light so that they arrive at the detector in a nice uniform sort of way,” Bowen says.

This is achieved using a “non-linear crystal”, which changes the light passing through; instead of a normal laser beam they used “squeezed light”, where the photons are intrinsically correlated. This reduced the amplitude of the light and, in turn, reduced the noise.

Uq's quantum microscope

UQ’s quantum microscope. Credit: the University of Queensland

For a fixed intensity of light, the set-up results in a higher signal-to-noise ratio and therefore higher contrast in the microscope. They were able to image a cell wall of yeast – around 10 nanometres thick.

“We could resolve a much larger region of that cell wall using quantum correlations than was possible using conventional microscopy, without destroying the cell,” Bowen explains.

The team were able to enhance the signal-to-noise ratio by 35%.”

“This removes a fundamental barrier to advances in coherent Raman microscopy and high-performance microscopy more broadly,” they write in their paper.

Bowen comments: “We’re really excited about it because it shows, for the first time, that it is possible to use quantum light to get an absolute advantage in microscopy – to measure something you could not measure in any other way.”

Sergei Slussarenko, a quantum physicist at Griffith University who was not involved in the study, says this is a great achievement. .... '

Friday, November 11, 2022

Is the Quantum (Computing) Bubble about to Burst?

Having read so much about working quantum computers, this really struck me  ... 

Full article at Youtube here: https://www.youtube.com/watch?v=CBLVtCYHVO8

The Quantum (Computing) Hype Bubble Is About To Burst,  By Sabine Hossenfelder

344,427 views  Nov 5, 2022

(For full links follow the link above) 

Try out my quantum mechanics course (and many others on math and science) on https://brilliant.org/sabine. You can get started for free, and the first 200 will get 20% off the annual premium subscription.

How much of what you hear about quantum computing is real promise and how much of it is hype? What is the "quantum winter" that so many physicists have been warning of? In this video I sort it out for you.

The Physics World article about quantum hype (which is a great read) is here: https://physicsworld.com/a/the-quantu...

The news item about IBMs mega fridge is here: https://research.ibm.com/blog/goldene...

The paper about factorizing 21 on a quantum computer is this: https://www.nature.com/articles/nphot...

Dyakonov's book is here: https://link.springer.com/book/10.100... 

The quote about the quantum winter from Hoofnagle and Garfinkel is from here: https://slate.com/technology/2022/01/...

And their book is available here:  https://www.cambridge.org/core/books/...

The Linkedin post from Galitski is here: https://www.linkedin.com/pulse/quantu...

The piece from Gourianov in the Financial Times is here: https://www.ft.com/content/6d2e34ab-f...

💌 Sign up for my weekly science newsletter. It's free!  ➜ https://sabinehossenfelder.com/newsle...

👉 Support me on Patreon ➜ https://www.patreon.com/Sabine

📖 My new book "Existential Physics" is now on sale ➜ http://existentialphysics.com/

🔗 Join this channel to get access to perks ➜ 

https://www.youtube.com/channel/UC1yN...

00:00 Intro

00:37 Quantum Hype

04:58 How Does a Quantum Computer Work?

07:20 Problems With Quantum Computers

12:57 Quantum Winter

17:40 What Does It Mean?

18:20 Check out my Quantum Mechanics Course on Brilliant

#quantum #physics #science

Saturday, September 17, 2022

On Metamaterials: Talk With Current Examples by Sabine Hossenfelder

As usual excellent YouTube talk on Physics and Related topics on MetaMaterials.  Notably superlenses and Earthquake cloaking.    The future of material design? 

Talk here:  https://www.youtube.com/watch?v=iNugreoNuo0&t=213s

By Sabine Hossenfelder,     542K subscribers

Try out my quantum mechanics course (and many others on math and science) on https://brilliant.org/sabine. You can get started for free, and the first 200 will get 20% off the annual premium subscription.

Metamaterials are the next technological stage “after” materials. It’s a research area that has progressed incredibly quickly in the past decade, and that includes superlenses, invisibility cloaks, earthquake protection, and also chocolate. Yes, chocolate. What are metamaterials, and what are they good for? That’s what we’ll talk about today.

Friday, July 15, 2022

Quantum Games Explored

In Youtube:   Sabine Hossenfelder   Quantum Games  ... 

Physicist Sabine Talks about how a number of games have been developed to teach and demonstrate quantum concepts.    She describes and criticizes. ....   Interesting,  trying a few. ... 

Sunday, July 10, 2022

On Quantum Metrology

 Admit had not heard of this application. 

Sabine Hossenfelder Quantum Metrology

Quantum mechanics is famous for its uncertainty principle that limits what you can measure. But oddly enough, quantum effects can actually help scientists make *better* measurements. This is what the field of quantum metrology is concerned with. In this video I explain what quantum metrology is and go through a few examples of what you can do with it.

The paper I mention about quantum optical tomography is here:

0.54 Ξm resolution two-photon interference with dispersion cancellation for quantum optical coherence tomography

Masayuki Okano, Hwan Hong Lim, Ryo Okamoto, Norihiko Nishizawa, Sunao Kurimura & Shigeki Takeuchi 

Scientific Reports volume 5, Article number: 18042 (2016)

https://www.nature.com/articles/srep1...

And the paper about quantum enhanced magnetometry is here:

Geometric phase magnetometry using a solid-state spin

K. Arai, J. Lee, C. Belthangady, D. R. Glenn, H. Zhang & R. L. Walsworth 

Nature Communications volume 9, Article number: 4996 (2018)

https://www.nature.com/articles/s4146...

See also : Quantum Metrology

Saturday, July 02, 2022

Don't Fall for Quantum Hype: Hossenfelder

Another excellent short Youtube talk here: By Sabine Hossenfelder 

Don't Fall for quantum Hype  https://youtu.be/b-aGIvUomTA

Check out the physics courses that I mentioned (many of which are free!) and support this channel by going to https://brilliant.org/Sabine/ where you can create your Brilliant account. The first 200 will get 20% off the annual premium subscription.

What are the quantum technologies that are now attracting so much research funding? In this video I go through the most important ones: quantum computing, quantum metrology, the quantum internet, and quantum simulations. I explain what these are all about and how likely they are to impact our lives soon. I also tell you what frequently headline blunders to watch out for.

The White House report I mention at 10 mins 34 seconds is here:  https://www.quantum.gov/wp-content/up...

Please consider supporting our channel on Patreon:  https://www.patreon.com/Sabine?fan_la...

physics #science #education

Topics:  

0:00 Intro

0:49 Quantum Computing

3:50 The Quantum Internet

7:38 Quantum Metrology

8:36 Quantum Simulations

10:53 Sponsor Message

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

Tuesday, March 15, 2022

Has the Protein Folding Model Been Solved?

Now quite a long time ago we examined this problem and various solutions.  Here revisting. 

Deepmind Solves Protein Folding Problem with AI?

Not completely.  Talk by Sabine Hossenfelder   https://www.youtube.com/watch?v=yhJWAdZl-Ck&t=25s  overviews the solution mentioned above. 

Recently Deepmind made big headlines with its AlphaFold success. Did it really "solve" protein folding? What did actually happen? In this video I explain what the protein folding problem is, why it's important, and what the current situation is.

The protein animation shown at 1 mins 13 seconds goes back to this publication:

Structure of the Cdc48 segregase in the act of unfolding an authentic substrate.  Cooney I, Han H, Stewart MG, Carson RH, Hansen DT, Iwasa JH, Price JC, Hill CP, Shen PS.  Science, 365(6452): 502-505 (2019).   https://doi.org/10.1126/science.aax0486

Reused with permission.

#science #education #biochemistry

0:00 Intro

0:35 What's the problem?

1:49 Why does it matter?

5:07 How to try and solve it

6:27 The CASP Competition

8:10 Alphafold 2

9:07 What does this mean?

10:42 Sponsor Message

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