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Awesome cameras everywhere.

Watch the #ISOCELLUnroll 2021 event introducing the new #ISOCELL JN1, #Samsung’s 50MP image sensor with 0.64μm pixels. Equipped with innovative pixel technologies, the ISOCELL JN1 delivers awesome detail and colors in an ultra-slim package.

00:00 ISOCELL Unroll.
00:31 Opening.
01:08 Welcome speech.
02:56 Introduction: ISOCELL JN1
04:27 Awesome detail: 50MP with 0.64μm pixels.
07:22 Awesome light: ISOCELL 2.0 and Tetrapixel.
08:59 Awesome colors: Smart-ISO and HDR
10:13 Awesome focus: Double Super PD
12:06 Q&A
14:10 Closing remarks.

Circa 2020


The behind-the-scenes tales of hit products and creations from Japan: this is Japan’s Top Inventions. This time, an invention that uses magnetic force to help freeze food without destroying its cell structure: a “fresh freezing” system. It was developed by a Japanese venture firm in 1995 as a technology that would help freeze food without altering its flavor. We look into the story behind its creation, inspired in part by microwaves, and learn about the latest versions.

Circa 2017


Scientists in the Netherlands say they are close to a breakthrough which will allow crops to be grown in deserts. Many say this could completely alter life on the African continent and even end hunger.

World leaders meeting at the climate talks in Germany are being urged to commit to more funding for new agricultural projects in drought-stricken parts of the world.

An XPRIZE Rapid COVID test from U smell it honored Scratch n Sniff can detect COVID-19 by Smell.


Guilford, CT, USA; U-Smell-It™ LLC, a Guilford-based company specializing in innovative COVID detection techniques, has announced that it has won the $6M XPRIZE Rapid Covid Testing, a global effort to develop breakthrough COVID testing methods.

XPRIZE Rapid COVID Testing is a $6 million dollar, 6-month competition to develop faster, cheaper, and easier to use COVID-19 testing methods at scale.

Chosen from more than 700 international companies, the XPRIZE judges awarded U-Smell-It™ the award based on scalability, ease of use, and cost.

Much of human invention and innovation has been the result of our discovery and replication of natural phenomena, from birds in flight to whales that dive deep into the ocean. For the first time, researchers have captured at the nanometer level the gliding machinery of the bacterium Mycoplasma mobile. Their findings were published in mBio. It illuminates the origin and operating principle of motility, which could serve as a basis for the next generation of nanoscale devices and pharmaceuticals.

“My lab has been studying the molecular nature of bacteria from the Mycoplasma genus for years,” states Professor Makoto Miyata from the Graduate School of Science, Osaka City University and lead of the research group. “And we have developed a conceptualization of how some of these parasitic bacteria ‘glide’ around their hosts.”

For example, Mycoplasma mobile forms a protrusion at one end giving the bacterium a flask shape. At the tapered end are external appendages that bind to , and in concert with an internal mechanism, cause the bacterium to glide across the surface of its host to find nutrient-rich sites and escape the host’s immune response.

Deepmind, Co-founder and CEO, Demis Hassabis discusses how we can avoid bias being built into AI systems and what’s next for DeepMind, including the future of protein folding, at WIRED Live 2020.

“If we build it right, AI systems could be less biased than we are.”

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Our recent look at the possibility of technosignatures at Alpha Centauri is now supplemented with a new study on the detectability of artificial lights on Proxima Centauri b. The planet is in the habitable zone, roughly similar in mass to the Earth, and of course, it orbits the nearest star, making it a world we can hope to learn a great deal more about as new instruments come online. The James Webb Space Telescope is certainly one of these, but the new work also points to LUVOIR (Large UV/Optical/IR Surveyor), a multi-wavelength space-based observatory with possible launch in 2035.

Authors Elisa Tabor (Stanford University) and Avi Loeb (Harvard) point out that a (presumably) tidally locked planet with a permanent nightside would need artificial lighting to support a technological culture. As we saw in Brian Lacki’s presentation at Breakthrough Discuss (see Alpha Centauri and the Search for Technosignatures), coincident epochs for civilizations developing around neighboring stars are highly unlikely, making this the longest of longshots. On the other hand, a civilization arising elsewhere could be detectable through its artifacts on worlds it has chosen to study.

We learn by asking questions and looking at data. In this case, asking how we would detect artificial light on Proxima b involves factoring in the planet’s radius, which is on the order of 1.3 Earth radii (1.3 R) as well as that of Proxima Centauri itself, which is 0.14 that of the Sun (0.14 R). We also know the planet is in an 11 day orbit at 0.05 AU. Other factors influencing its lightcurve would be its albedo and orbital inclination. Tabor and Loeb use recent work on Proxima Centauri c’s inclination (citation below) to ballpark an orbital inclination for the inner world.

Even as a chip shortage is causing trouble for all sorts of industries, the semiconductor field is entering a surprising new era of creativity, from industry giants to innovative start-ups seeing a spike in funding from venture capitalists that traditionally avoided chip makers.


While a variety of industries struggle with supplies, semiconductor experts say there are plenty of new ideas and, most surprising, start-ups.