Showing posts with label hi tech. Show all posts
Showing posts with label hi tech. Show all posts

Thursday, March 2, 2023

In the Future Matter Is Intelligent


Floppy or not: AI predicts properties of complex metamaterials
Nov 2022, phys.org

With infinite options, infinite intelligence?

Also words:
Artificial materials - These are engineered materials whose properties are determined by their geometrical structure rather than their chemical composition [like origami].

I must have missed the part when we started calling them artificial materials, I thought they were all metamaterials.

Designing these materials is a combinatorial problem, which means it's hard. You can't really predict what will happen, you just have to do it. But artificial intelligence can do it virtually, all day, and find the ones that work. 

via University of Amsterdam: Ryan van Mastrigt et al, Machine Learning of Implicit Combinatorial Rules in Mechanical Metamaterials, Physical Review Letters (2022). DOI: 10.1103/PhysRevLett.129.198003



Clear window coating could cool buildings without using energy
Nov 2022, phys.org

A "transparent radiative cooler" could lower the temperature inside buildings, without expending a single watt of energy. 

The team constructed computer models of TRCs consisting of alternating thin layers of common materials like silicon dioxide, silicon nitride, aluminum oxide or titanium dioxide on a glass base, topped with a film of polydimethylsiloxane. They optimized the type, order and combination of layers using an iterative approach guided by machine learning and quantum computing, which stores data using subatomic particles. 

Cooling accounts for about 15% of global energy consumption; this thing can potentially reduce cooling energy consumption by 31% compared with conventional windows.

via Notre Dame: High-Performance Transparent Radiative Cooler Designed by Quantum Computing, ACS Energy Letters (2022). DOI: 10.1021/acsenergylett.2c01969


Photovoltaic windows unlock goal of increased energy efficiency for skyscrapers
Nov 2022, phys.org

Energy use climbs when a building has more windows than wall space, yet larger floor-to-floor height coupled with PV glazing reduces building energy use. 

via National Renewable Energy Laboratory: Vincent M. Wheeler et al, Photovoltaic windows cut energy use and CO2 emissions by 40% in highly glazed buildings, One Earth (2022). DOI: 10.1016/j.oneear.2022.10.014


New study suggests mobile data collected while traveling over bridges could help evaluate their integrity
Nov 2022, phys.org

I can see a future where we intercept wifi signals from building occupants, and measure their interactions to determine not only the building materials getting hit by the wifi waves, but their changes over time:

"Information about structural health of bridges can be extracted from smartphone-collected accelerometer data"

via MIT: Thomas Matarazzo, Crowdsourcing bridge dynamic monitoring with smartphone vehicle trips, Communications Engineering (2022). DOI: 10.1038/s44172-022-00025-4.

AI Art - Fibonacci Alien Library 1 - 2022

Centimeter-scale multicolor printing with a pixelated optical cavity
Nov 2022, phys.org

"pixelated optical cavity"

The colorful image with multiple color components is first converted to a predefined grayscale pattern and then engraved on the photoresist layer by controlling the exposure dose during the grayscale laser writing process.

Pixelated photoresist spacer layers are sandwiched by two semitransparent sliver thin films to form the Fabry–Perot cavities (pixelated optical cavities). The transmission color can be continuously tuned in the visible spectral regime by finely controlling the thickness of the photoresist layer. 

via Southern University of Science and Technology in Shenzhen: Yu Chen et al, Centimeter scale color printing with grayscale lithography, Advanced Photonics Nexus (2022). DOI: 10.1117/1.APN.1.2.026002


Team creates crystals that generate electricity from heat
Nov 2022, phys.org

This novel synthetic material is composed of copper, manganese, germanium, and sulfur, and it is produced by simple ball-milling and then heating to 600 degrees Celsius. 

It's called a "thermoelectric material" because it converts heat to electricity. 

via Normandie University: V. Pavan Kumar et al, Engineering Transport Properties in Interconnected Enargite‐Stannite Type Cu 2+ x Mn 1− x GeS 4 Nanocomposites, Angewandte Chemie International Edition (2022). DOI: 10.1002/anie.202210600


Mimicking life: A breakthrough in non-living materials
Nov 2022, phys.org

Artificial Life - Ok they're calling them all kinds of things, now including "non-living materials", also related to soft robotics:

New process that uses fuel to control non-living materials at a specified rate, similar to what living cells do

"Ultimately you'd want a robot to be able to control itself. You can program our cycle into a particle in advance, then leave it alone, and it performs its function independently as soon as it encounters a signal to do so."

Particles man.

via Delft University of Technology: Benjamin Klemm et al, Temporally programmed polymer—solvent interactions using a chemical reaction network, Nature Communications (2022). DOI: 10.1038/s41467-022-33810-y


Discovery reveals 'brain-like computing' at molecular level is possible
Nov 2022, phys.org

Brains all the way down:

"Intelligent molecular materials"

Disruptive new alternative to conventional silicon-based digital switches that can only ever be either on or off. It displays all the mathematical logic functions necessary for deep learning.

"The community has long known that silicon technology works completely differently to how our brains work and so we used new types of electronic materials based on soft molecules to emulate brain-like computing networks."

via  University of Limerick's Bernal Institute: Enrique del Barco, Dynamic molecular switches with hysteretic negative differential conductance emulating synaptic behaviour, Nature Materials (2022). DOI: 10.1038/s41563-022-01402-2

AI Art - Mobius in an Escher Room with Penrose Triangles - 2022

Self-assembled nanoscale architectures could feature improved electronic, optical, and mechanical properties
Nov 2022, phys.org

Internet of Everything 

"Self-assembly is a really beautiful way to make structures," Yager said. "You design the molecules, and the molecules spontaneously organize into the desired structure."

via Department of Energy's Brookhaven National Laboratory's Center for Functional Nanomaterials: Sebastian T. Russell et al, Priming self-assembly pathways by stacking block copolymers, Nature Communications (2022). DOI: 10.1038/s41467-022-34729-0


Breakthrough algorithm expands the exploration space for materials by orders of magnitude
Nov 2022, phys.org

Algorithm that predicts the structure and dynamic properties of any material—whether existing or new—almost instantaneously.

It's called M3GNet and it was used to develop matterverse.ai, a database of more than 31 million yet-to-be-synthesized materials with properties predicted by machine learning algorithms. 

via University of California San Diego: Chi Chen, A universal graph deep learning interatomic potential for the periodic table, Nature Computational Science (2022). DOI: 10.1038/s43588-022-00349-3


Kirigami technique hints at promising outcomes for breast reconstruction
Dec 2022, phys.org

Kirigami boobs

via University of Pennsylvania: Young‐Joo Lee et al, Natural Shaping of Acellular Dermal Matrices for Implant‐Based Breast Reconstruction via Expansile Kirigami, Advanced Materials (2022). DOI: 10.1002/adma.202208088

Tuesday, May 17, 2022

The Lifecycle of Hype Cycles


This is one of the craziest scifi books I've ever read. I am totally swallowed-up by it, but I feel like someone in the 1950's reading about nuclear energy and space travel -- it's all so new and unfamiliar that you could say anything and I'd be into it. This guy is talking about intelligent entities (digipets) and quantum computers (prisms) in a way that has me totally sold. I highly recommend that everyone read it, at least twice:

Exhalation
An Anthology by Ted Chiang, Vintage, 2019

The Lifecycle of Software Objects
I've been waiting for this to come out in print for years. One of the main ideas is that in order to make a robot more like a person, you need to let it be a person; you can't just pump it full of if-thens. This is part of the idea that we will not be able to create artificial olfaction without artificial bodies to experience it first.
"She wants to tell them that Blue Gamma was more right than it knew; experience isn't merely the best teacher, it's the only teacher. If she's learned anything raising Jax, it's that there are no shortcuts, if you want to create the common sense that comes from twenty years of being in the world, you need to devote twenty years to the task. You can't assemble an equivalent collection of heuristics i less time; experience is algorithmically incompressible." (p163)

Anxiety is the Dizzyness of Freedom
Quantum computers are real and they open portals to parallel universes where we can communicate with our para-selves as they separate further and further from us with every decision we make, and then we get either jealous or schadenfreude at their lives in comparison.
"She switched to video mode, and the text on the screen was replaced by a grainy image of her own face looking back at her. Her parallel self nodded at her and said, "Mic test."" (p271)

The Truth of Fact, the Truth of Feeling
On recording everything and then going back to check.
"We don't normally think of it as such, but writing is a technology, which means that a literate person is someone who's thought processes are technologically mediated. We became cognitive cyborgs as soon as we became fluent readers, and the consequences of that were profound." (p226)

Tuesday, September 14, 2021

The Fingerbot


Using the human hand as a powerless infrared radiation source
Apr 2021, phys.org

The future is so obvious once it happens.

The idea of your fingers manipulating computer screens floating in mid air seems pretty natural. I never thought of my finger as a remote control, but it does make perfect sense. This also reminds me of the Nintendo Wii hack from many years ago, where you place the Wii controller in a stationary position, and have it read an IR light pen as you draw on a surface with it. The light-point is followed by the Wii, and translated into lines on a projected screen. You use the Wii backwards to write on the projected surface in real time. Graffiti Research Labs took this a step further with their Laser Tag project. Now we can imagine doing that with our fingers. No Wii necessary, only some basic intelligence in your camera, and it will be able to learn how to see your fingers and take direction from them. 

via Shanghai Jiao Tong University: Shun An et al. Human hand as a powerless and multiplexed infrared light source for information decryption and complex signal generation, Proceedings of the National Academy of Sciences (2021). DOI: 10.1073/pnas.2021077118

Image credit: It's a fingerbot, so you can inject an analog loop into your IoT wifi smart home mesh network. But they changed the name to switchbot; probably a good idea. 

Post Script:
Speaking of Laser Tag...
This is the EyeWriter, which allows paralyzed graffiti artists to write graffiti with their eyeballs.

And this is his graffiti, TEMPT circa 2009.

Monday, July 26, 2021

Meta-Materials Mega-Thread

The phrase "metallic-organic framework" (MOF) has been appearing in headlines with more frequency, seemingly out of nowhere. Then again, when the material science revolution is fully underway, we will also wonder where the heck it came from. 

MOFs fall into the same general category as meta-materials, related to nano-this and graphene-that. These articles are a reminder that we're in for a whole new world. Kind of like what plastic did for the post-war world we live in today, or the synthetic chemical revolution of the late 1800's that gave our world "colors". 

Image credit: Metal Organic Framework by Mike Gipple at NETL

Programmable synthetic materials
Aug 2020, phys.org
In the future, MOFs could form the basis of programmable chemical molecules: for instance, an MOF could be programmed to introduce an active pharmaceutical ingredient into the body to target infected cells and then break down the active ingredient into harmless substances once it is no longer needed. Or MOFs could be programmed to release different drugs at different times.

via University of California Berkeley: Sequencing of metals in multivariate metal-organic frameworks, Science (2020). DOI: 10.1126/science.aaz4304 
Breakthrough technology purifies water using the power of sunlight
Aug 2020, phys.org
Metal-organic frameworks are a class of compounds consisting of metal ions that form a crystalline material with the largest surface area of any material known. In fact, MOFs are so porous that they can fit the entire surface of a football field in a teaspoon.

via Monash University: A sunlight-responsive metal–organic framework system for sustainable water desalination, Nature Sustainability (2020). DOI: 10.1038/s41893-020-0590-x
Study shows promising material can store solar energy for months or years
Dec 2020, phys.org
In tests, the researchers exposed the material to UV light, which causes the azobenzene molecules to change shape to a strained configuration inside the MOF pores. This process stores the energy in a similar way to the potential energy of a bent spring. Importantly, the narrow MOF pores trap the azobenzene molecules in their strained shape, meaning that the potential energy can be stored for long periods of time at room temperature.

The energy is released again when external heat is applied as a trigger to 'switch' its state, and this release can be very quick—a bit like a spring snapping back straight. This provides a heat boost which could be used to warm other materials of devices.

Further tests showed the material was able to store the energy for at least four months. This is an exciting aspect of the discovery as many light-responsive materials switch back within hours or a few days. The long duration of the stored energy opens up possibilities for cross-seasonal storage.

via by Lancaster University: Kieran Griffiths et al, Long-Term Solar Energy Storage under Ambient Conditions in a MOF-Based Solid–Solid Phase-Change Material, Chemistry of Materials (2020). DOI: 10.1021/acs.chemmater.0c02708
Physicists create tunable superconductivity in twisted graphene 'nanosandwich'
Feb 2021, phys.org

Come on with that name though.

via Massachusetts Institute of Technology: Tunable strongly coupled superconductivity in magic-angle twisted trilayer graphene, Nature (2021). DOI: 10.1038/s41586-021-03192-0

Flash graphene rocks strategy for plastic waste
Oct 2020, phys.org
It's called flashing -- expose plastic waste to eight seconds of high-intensity alternating current, followed by the DC jolt. You'll get turbostratic graphene. Yes, graphene from garbage. $125 of electricity turns a ton of plastic into a ton of graphene.
via Rice University: Wala A. Algozeeb et al, Flash Graphene from Plastic Waste, ACS Nano (2020). DOI: 10.1021/acsnano.0c06328
Researchers use origami to solve space travel challenge
Dec 2020, phys.org

Origami bellow-bag fuel storage containers.

via Washington State University: Kjell Westra et al, Compliant Polymer Origami Bellows in Cryogenics, Cryogenics (2020). DOI: 10.1016/j.cryogenics.2020.103226

DNA origami enables fabricating superconducting nanowires
Jan 2021, phys.org
 
via the American Institute of Physics: "DNA origami-based superconducting nanowires" AIP Advances, aip.scitation.org/doi/10.1063/5.0029781

Researchers turn coal powder into graphite in microwave oven
Jan 2021, phys.org
Using copper foil, glass containers and a conventional household microwave oven, University of Wyoming researchers have demonstrated that pulverized coal powder can be converted into higher-value nano-graphite.

"By cutting the copper foil into a fork shape, the sparks were induced by the microwave radiation, generating an extremely high temperature of more than 1,800 degrees Fahrenheit within a few seconds," says Masi, lead author of the paper. "This is why you shouldn't place a metal fork inside a microwave oven."

via University of Wyoming: Christoffer A. Masi et al, Converting raw coal powder into polycrystalline nano-graphite by metal-assisted microwave treatment. Nano-Structures & Nano-Objects Volume 25, 2021, 100660, ISSN 2352-507X, doi.org/10.1016/j.nanoso.2020.100660
'Magnetic graphene' forms a new kind of magnetism
Feb 2021, phys.org

via University of Cambridge: Matthew J. Coak et al. 'Emergent Magnetic Phases in Pressure-Tuned van der Waals Antiferromagnet FePS3.' Physical Review X (2021). DOI: 10.1103/PhysRevX.11.011024

A new way to make wood transparent, stronger and lighter than glass
Feb 2021, phys.org
The conventional method for making wood transparent involves using chemicals to remove the lignin—a process that takes a long time, produces a lot of liquid waste and results in weaker wood. In this new effort, the researchers have found a way to make wood transparent without having to remove the lignin.

The process involved changing the lignin rather than removing it. The researchers removed lignin molecules that are involved in producing wood color. First, they applied hydrogen peroxide to the wood surface and then exposed the treated wood to UV light (or natural sunlight). The wood was then soaked in ethanol to further clean it. Next, they filled in the pores with clear epoxy to make the wood smooth.

via University of Maryland: Qinqin Xia et al. Solar-assisted fabrication of large-scale, patternable transparent wood, Science Advances (2021). DOI: 10.1126/sciadv.abd7342
Japan developing wooden satellites to cut space junk
Dec 2020, BBC News

Thursday, July 1, 2021

Climate Change Makes Robowrapper More Than Just Fashion

I don't know about you, but I'm ok wearing a spacesuit while still on Earth, as long as it has air conditioning. And persistent surveillance of my health data, of course. 

Not that I want to, but I'm ok with it. And I'm not talking Apollo marshmallow man spacesuit. This suit is actually integrated into your own skin. At some point, it will be hard to distinguish between our clothes and our skin. To "wear" something will have a different meaning, and you won't be able to function without a nano-networked-supercomputer covering your entire body (never mind not being able to live without an air-conditioned bodysuit simply because it's too hot). 

Emerging wearable technology uses tiny fibers that can track your blood pressure, heart rate, and more
Dec 2020, phys.org
"It could be a handkerchief which you put on your wrist and it starts giving data."

via American Institute of Physics: "Micro/nano fiber-based non-invasive devices for health monitoring diagnosis and rehabilitation," Applied Physics Reviews, aip.scitation.org/doi/10.1063/5.0010766
Researchers create powerful unipolar carbon nanotube muscles
Jan 2021, phys.org

"Electrochemically driven carbon nanotube (CNT) muscles" sound like a morph suit that's also an exoskeleton.

via University of Texas at Dallas: "Unipolar stroke, electroosmotic pump carbon nanotube yarn muscles" Science (2021). https://science.sciencemag.org/content/371/6528/494

Wearable plasmonic-metasurface sensor for universal molecular fingerprint detection on biointerfaces
Feb 2021, phys.org
The system contained a flexible sweat extraction process to noninvasively extract and fingerprint analytes inside the body based on their unique Raman scattering spectra. 
Light-emitting tattoo engineered for the first time
Feb 2021, phys.org
The technology, which uses organic light-emitting diodes (OLEDs), is applied in the same way as water transfer tattoos. That is, the OLEDs are fabricated on to temporary tattoo paper and transferred to a new surface by being pressed on to it and dabbed with water. ... could be combined with other tattoo electronics to, for instance emit light when an athlete is dehydrated, or when we need to get out of the sun to avoid sunburn. OLEDs could be tattooed on packaging or fruit to signal when a product has passed its expiry date or will soon become inedible, or used for fashion in the form of glowing tattoos.

via University College London: Jonathan Barsotti et al. Ultrathin, Ultra‐Conformable, and Free‐Standing Tattooable Organic Light‐Emitting Diodes, Advanced Electronic Materials (2021). DOI: 10.1002/aelm.202001145
'Smart clothes' that can measure your movements
Mar 2021, phys.org

via MIT: Yiyue Luo et al. Learning human–environment interactions using conformal tactile textiles, Nature Electronics (2021). DOI: 10.1038/s41928-021-00558-0

Post Script:
Researchers find space station's surface microbial profile resembles skin of its crew members
May 2020, phys.org

We will be the spaceship. It will become our bodies, rather, our bodies will become a ship.

via Lawrence Livermore National Laboratory: Aram Avila-Herrera et al. Crewmember microbiome may influence microbial composition of ISS habitable surfaces, PLOS ONE (2020). DOI: 10.1371/journal.pone.0231838

Fungal ghosts protect skin, fabric from toxins, radiation
Mar 2021, phys.org

There's a fungus that naturally makes melanin, which is protective against ultraviolet radiation, and so they grow the melanin, then etch away the fungus, leaving only the melanin cell. The leftovers are called fungal ghosts, and can become a kind of artificial skin. And also for, you know, "potential for applications in long distance space flight."

via Northwestern University: "Allomelanin: A Biopolymer of Intrinsic Microporosity." Journal of the American Chemical Society.

Wednesday, June 16, 2021

On Quantum Updates and the Photon Revolution


Quantum things are a big deal these days, but you know what's even more of a big deal? Photons. Just wait, you'll be getting upgraded from the Verizon Quantum plan to the Verizon Photon plan in like 2 years tops. Photons, i.e., light, is the electricity of the 21st century. 

^That image btw: "Stimulated Photon Emission" -- Illustration of a gold-covered probe tip injecting electrons into a carefully located imperfection in an atomically thin material. The energy from each electron causes the highly localized emission of a single photon, which may then be guided to a detector. Credit: Ignacio Gaubert, 2020.

Time-reversal of an unknown quantum state
Aug 2020, phys.org

Stochastic baths, who can say no?
Abstract - In the present work, the scientists propose using a thermodynamic reservoir at finite temperatures to form a high-entropy stochastic bath to thermalize a given quantum system and experimentally increase thermal disorder or entropy in the system. 
-A. V. Lebedev et al. Time-reversal of an unknown quantum state, Communications Physics (2020). DOI: 10.1038/s42005-020-00396-0
-Seth Lloyd et al. Quantum principal component analysis, Nature Physics (2014). DOI: 10.1038/nphys3029
-Gonzalo Manzano et al. Quantum Fluctuation Theorems for Arbitrary Environments: Adiabatic and Nonadiabatic Entropy Production, Physical Review X (2018). DOI: 10.1103/PhysRevX.8.031037
An electrical trigger fires single, identical photons
Oct 2020, phys.org

First time we're seeing "memory" used as an analogy for quantum coherence.

Also, "photons on demand"; wait for it.

via: Bruno Schuler et al, Electrically driven photon emission from individual atomic defects in monolayer WS2, Science Advances (2020). DOI: 10.1126/sciadv.abb5988

Quantum entanglement demonstrated aboard orbiting CubeSat
Jun 2020, phys.org

Quantum computing in outer space.
In a critical step toward creating a global quantum communications network, researchers have generated and detected quantum entanglement onboard a CubeSat nanosatellite weighing less than 2.6 kilograms and orbiting the Earth.
The coldest computers in the world
Aug 2020, BBC News

Also in outer space.

The world's first integrated quantum communication network
Jan 2021, phys.org

Yes they have; via the University of Science and Technology of China.

Using drones to create local quantum networks
Jan 2021, phys.org

This is what it will be like:
A team of researchers affiliated with several institutions in China has used drones to create a prototype of a small airborne quantum network. In their paper published in the journal Physical Review Letters, the researchers describe sending entangled particles from one drone to another and from a drone to the ground.
Robots learn faster with quantum technology
Mar 2021, phys.org
"We are just at the beginning of understanding the possibilities of quantum artificial intelligence" says Philip Walther, head of an international collaboration of experimental physicists, "and thus every new experimental result contributes to the development of this field, which is currently seen as one of the most fertile areas for quantum computing."
Fertile, indeed.

Photon Avalanche, Mikołaj Łukaszewicz at Polish Academy of Sciences, 2021

'Multiplying' light could be key to ultra-powerful optical computers
Feb 2021, phys.org

Using polaritons - which are half-light and half-matter

Heat-free optical switch would enable optical quantum computing chips
Mar 2021, phys.org

Molybdenum disulfide ushers in era of post-silicon photonics
Mar 2021, phys.org

Study suggests that silicon could be a photonics game-changer
Apr 2021, phys.org

In addition to being good for controlling electronic information, silicon is also good for controlling light, which will be integral to quantum computing. 

Discovered by mistake of course:
"Our finding was lucky because we weren't looking for it. We were trying to understand how a very small number of phosphorus atoms in a silicon crystal could be used for making a quantum computer and how to use light beams to control quantum information stored in the phosphorus atoms.

"We were astonished to find that the phosphorus atoms were re-emitting light beams that were almost as bright as the very intense laser we were shining on them. We shelved the data for a couple of years while we thought about proving where the beams were coming from. It's a great example of the way science proceeds by accident, and also how pan-European teams can still work together very effectively."

via University of Surrey: Nils Dessmann et al, Highly efficient THz four-wave mixing in doped silicon, Light: Science & Applications (2021). DOI: 10.1038/s41377-021-00509-6

Wafer-scale production of graphene-based photonic devices
Feb 2021, phys.org

It's here, graphene chips to the rescue.

via Graphene Flagship: Marco A. Giambra et al, Wafer-Scale Integration of Graphene-Based Photonic Devices, ACS Nano (2021). DOI: 10.1021/acsnano.0c09758

Friday, January 31, 2020

Seeing Around Corners


I try to think of what things will be like in the future. And so I try to come up with the most impossible thing, and then explain it backwards. In the future, we will be able to see in old photographs other things not in the frame of the picture. All the information in the whole room will be available in the photons recorded in the picture plane. How? I don't know, photon interference and artificial intelligence, that's how.

And then I get headlines like this:
Deep learning enables real-time imaging around corners
Jan 2020, phys.org

Never far enough; it's already here.

This doesn't see invisible objects in old pictures, but it does shoot lasers in real-time and then read the interference patterns of those lasers on themselves as they bounce off of other objects not "visible."

image source: Hyperspace Bypass Construction Zone

Notes:
Deep-Inverse Correlography: Towards Real-Time High-Resolution Non-Line-of-Sight Imaging.
Chris Metzler et al. Optica (2019). DOI: 10.1364/OPTICA.374026

Polysemiosis


Parking this here, from the year 2032:
Polysemiosis is a disease that hobbles artificial intelligence entities, or intelligentities, by infecting their lexicon with a polybot that makes every word have multiple meanings so the logic system can no longer make sense of itself or the world around it.

Monday, January 13, 2020

Computing Without a Computer


This is a repeat, but worth it.

I'm reading Isaac Asimov's Opus 100, which details his course through a writing career that changed the world of science fiction forever. In the chapter on Mathematics, he recounts a story called "The Feeling of Power" where a character is trying to explain to a space age military how he can navigate their ships without computers, which are at the time susceptible to enemy interference:

"Nine times seven, thought Shuman with deep satisfaction, is sixty-three, and I don't need a computer to tell me so. The computer is in my head." 
"Computing without a computer, said the President, is a contradiction in terms."

Post Script
Also from Asimov's Opus 100, on the topic of Words:
"New Jersey"
The state of New Jersey is named after the birthplace of George Carteret, who was given the territory by Charles II of England. He was born on the island of Jersey, the largest of the Channel Islands between England and France, and originally called "Caesar's Island" until barbarians garbled it into "Jersey".

Sunday, December 8, 2019

Universe Machine and The Metaversal Omnibot

aka Deep Takeover

DeepMind AI achieves Grandmaster status at Starcraft 2
Oct 2019, BBC News

"This all took place across 44 days. But because the process was carried out at high speed, it represented about 200 years of human gameplay."

Virtual 'universe machine' sheds light on galaxy evolution
Aug 2019, phys.org

"Universe Machine"
aka Dawn of the Anthroposphere

image source: gettyimages-1095967942

Wednesday, October 2, 2019

Nanodata


A future 'human brain/cloud interface' will give people instant access to vast knowledge via thought alone
Apr 2019, phys.org

Biodistribution and biocompatibility of nanoparticles, looking out for that.

Image Source: M.C.Escher - Bond of Union - 1956

Wednesday, July 24, 2019

Quantum Futures

It's been a while since we saw "Wegman Reading Two Books". This is one of my favorite pictures ever; I thought it made sense here.
I'm reading about quantum computers on the commute home from work. It's not the computers I'm interested in, and it's not the quantum part either. I'm not a computer scientist, or a quantum scientist. But I do like to think about the future, and if anything says "future", it's quantum computers.

There's a strong theme running in these articles though, the kind of thing I look for in articles about technology. In this case, the problem with quantum computing is that it works so differently from a classical computer, that we kind of don't even know what to do with it.

When tasked with devising a test to evaluate the performance of a quantum computer, a moment is revealed:
"I quickly ran into trouble trying to figure out how to run these [scripts] on the D-Wave machine. You need a huge shift in the way you think about problems, and I am a very straightforward thinker."
-Chris Lee for Ars Technica, 2019
It's a casual statement in a casual popular science article, but it's the unassuming bits like this that may be revealed as prescient in years to come. Like in 1890, "Why the heck would you want to screw anything else besides a lightbulb into this electrical light bulb socket??"
It's true, stuff like washing machines would be plugged into the 'light socket' via a cord designed specifically for a light socket; the dual-pronged plug that we are used to, in the US at least, didn't come until much later, and required a drastic paradigm shift in order to see electricity as serving anything but electric light.

Back to quantum computers. Things like this, when the technology forces us to reshape not only our thinking and not only the answers, but more importantly the questions that we ask, and the way we ask, and then ultimately the things we want and the things we care about, are what Kuhn was writing about in his Structures of Scientific Revolution.

Notes:
D-Wave 2000Q hands-on - Steep learning curve for quantum computing
Mar 2019, Ars Technica

Post Script:
The Structure of Scientific Revolutions
Thomas Kuhn, 1962

Science does not progress via linear accumulation of new knowledge, but undergoes periodic revolutions, also called "paradigm shifts" in which the nature of scientific inquiry within a particular field is abruptly transformed.

Thomas Kuhn - the man who changed the way the world looked at science
John Naughton, The Guardian, 2012


Sunday, March 10, 2019

Stranded in Space

It occurred to me today that we already live in outer space.

I live for moments like this. You read me the news, like any other day, when you come across a headline that might be interesting, you go ahead and read it through.

Somewhere along the way it occurs to you, that we already live in the future.

Here, a short news article about outer space. It's not hype, in fact it is an article of lamentation. Some computer servers are stuck on the International Space Station that orbits the Earth. They can't catch a ride on any of the transport vessels returning back to the surface.

It's one of those things that really shows you the nature of the world that you're already in. It's not a big deal, it's just a run of the mill article that in 30 years will be totally insignificant.

But if you just stop for one second, and roll it back 10 years even, it really gives you pause. It was 50 years ago now that we first sent people out to that forever distant, impossible destination. Now, we have people living there.

There's someone living there all the time. They're growing vegetables. They exercise. They communicate with their families everyday. There is a bit of a lag I'm sure, but they get to see their families everyday, not much different I imagine, from an international entrepreneur that is away from home often, or the military service member on duty.

It's right in between the mundane and the exceptional, the everyday and the out of this world. It puts you right in that spot where you can see the eyeballs themselves.

image source: The 2013 movie Gravity

Computer servers 'stranded' in space
Feb 2019, BBC

Monday, January 28, 2019

Wearable Eyeballs


From the microcosm to the macro, here's a couple headlines that are only related by their mention of solar panels.

Flea-sized solar panels embedded in clothes can charge a mobile phone
Dec 2018, phys.org

Team locates nearly all US solar panels in a billion images with machine learning
Dec 2018, phys.org

It sounds improbable that our clothes will one day power our electronic devices. But as our ability to draw electricity from the sun gets better, and as our devices demand less energy for more computation output, it seems inevitable.

The second headline reminds us that Big Data has found its match in Deep Learning. And this is one of the best examples, where satellites orbiting the Earth, their persistent gaze, from so omnipotent a vantage point, are generating data about us and our planet that we never thought we would see.

Beginning a few years ago we saw a similar thing perhaps even more ingenious - satellite images were used to measure the extent of infrastructure in regions without organized or reliable records for such things. A metal roof shines differently than no roof at all. And roads covered in asphalt (which contains tiny, sparkling glass pieces) will also shine differently. So the data is there. What I will call low resolution data, digested on such a large scale, becomes high resolution data.


Notes:
Infrastructure Quality Assessment in Africa using Satellite Imagery and Deep
Learning [pdf]
Stanford et al, 2018

Saturday, July 7, 2018

Human Usurper Blurbs



Bringing a few headlines from the world beyond human capability:

Uber applies for patent to spot drunk passengers
Jun 2018, BBC News
Taxi app company Uber has applied for a patent to use artificial intelligence to determine how drunk potential passengers might be. 
The app used to summon rides could also feed other information to the driver, including a passenger's location, how accurately they are typing and even the angle they are holding their phone at. [...] 
Critics expressed concern that an app that could predict user behaviour could be used by drivers wishing to prey on vulnerable passengers. 

Cyan colour hidden ingredient in sleep
Jun 2018, BBC News
The colour cyan - between green and blue - is a hidden factor in encouraging or preventing sleep, according to biologists. 
University of Manchester researchers say higher levels of cyan keep people awake, while reducing cyan is associated with helping sleep. 
The impact was felt even if colour changes were not visible to the eye. [...]
When people were exposed to more or less cyan, researchers were able to measure different levels of the sleep hormone melatonin in people's saliva.
Prof Rob Lucas said that it was not necessary for someone to be able to see the difference in colours, as the body reacted to the change even if it was not visible to the naked eye.

Adobe says it can identify manipulated images using AI
July 2018, BBC News
The company behind the photo-editing program Photoshop says it has developed a tool that can detect if an image has been tampered with. [...] 
Existing verification tools can scan an image file's metadata - which contains information on when and where a photo was taken - for signs of mischief, and look for things like inconsistent lighting. 
But such tests are easily defeated. [...] 
"Each of these [manipulation] techniques tend to leave certain artefacts, such as strong contrast edges, deliberately smoothed areas, or different noise patterns," he notes. [Vlad Morariu, Adobe researcher]

image source: https://www.biosciencetechnology.com/article/2015/05/biodigital-human-exploring-health-3d

Sunday, July 1, 2018

Patrol the Skies


Today it will 'feel like' 107 degrees in the armpit of New Jersey. You don't know what you've got until it's gone. The backyard swimming pool my parents thoughtfully incorporated into our bucolic suburban domicile is a distant memory.

But Microsoft knows what's up, they put one of its servers underwater in an effort to cool the thing better. No you're not normally supposed to put your computers underwater. Thing is, one of the primary limits to the power of what a computer can do is heat. Computers don't sweat like we do, so we don't notice it, but they work really hard to do all that binary computation. [Today is Leibniz bday, thanks Google Doodle, he refined the binary number system, among many other things integral to our modern world.]

So if we could only figure out a way to keep computers cool. Air conditioning is very expensive, and lemonade doesn't really work (does that really work?). In fact, Microsoft is trying this as a part of their sustainability effort. I know you've recently heard how much energy is used to mine cryptocurrencies - it's more than the energy expenditure of some nations. So if we can figure out a way to cool these things down, that would help a lot.

Now to the main point: We will not stop by putting computers underwater, because there is a place much colder than that, and we've been going there a lot more than usual as of late. Yes, outerspace is the next frontier for high-efficiency computing.

SpaceX, seen above, is well on its way to giving us a cozy place in low earth orbit that we can call home to our global digital infrastructure. Seems to make more sense than dunking your mainframe in a bathtub. And now, if you will for a moment imagine our human future, as we leave the meat behind, to exist entirely in the digitally-mediated reality of a constellation of hundreds of thousands of computer satellites blinking in low earth orbit. 

Notes:
image source: Space Jellyfish from SpaceX launch

Microsoft sinks data centre off Orkne
Jun 2018, BBC

Saturday, May 5, 2018

Neologos


Word of the day:
"Ansible"
Ursula K. LeGuin coined this word in her seminal work The Left Hand of Darkness in 1969.
It is a contraction of "answerable", but other scifi writers use it to call any device for instantaneous or at least faster-than-light communication.

It's also the name of a software for platform automation, which is drowning your LeGuin results.

The Left Hand of Darkness
Ursula K. LeGuin, 1969