Once you really solve a problem like direct brain-computer interface ... when brains and computers can interact directly, that's it, that's the end of history, that's the end of biology as we know it. Nobody has a clue what will happen once you solve this. If life can break out of the organic realm into the vastness of the inorganic realm, you cannot even begin to imagine what the consequences will be, because your imagination at present is organic. So if there is a point of Singularity, by definition, we have no way of even starting to imagine what's happening beyond that.
BITNATION is a fully inclusive governance system. BITNATION offers a full range of services traditionally done by governments. We provide a cryptographically secure ID system, blockchain based dispute resolution, marriage and divorce, land registery, education, insurance, security, diplomacy, and more through a fully distributed platform.
...Today, you can send a design to a fab lab and you need ten different machines to turn the data into something. Twenty years from now, all of that will be in one machine that fits in your pocket. This is the sense in which it doesn't matter. You can do it today. How it works today isn't how it's going to work in the future but you don't need to wait twenty years for it. Anybody can make almost anything almost anywhere.
...Finally, when I could own all these machines I got that the Renaissance was when the liberal arts emerged—liberal for liberation, humanism, the trivium and the quadrivium—and those were a path to liberation, they were the means of expression. That's the moment when art diverged from artisans. And there were the illiberal arts that were for commercial gain. ... We've been living with this notion that making stuff is an illiberal art for commercial gain and it's not part of means of expression. But, in fact, today, 3D printing, micromachining, and microcontroller programming are as expressive as painting paintings or writing sonnets but they're not means of expression from the Renaissance. We can finally fix that boundary between art and artisans.
Not long ago, after you bought a new vehicle, the manufacturer had very little contact with you for years until it was time to sell you another car. The Internet of Things is changing all that. The IoT-enabled “connected car” turns the vehicle itself into a hub for an entire ecosystem of connected services that offer consumers a wealth of benefits including enhanced safety and security, a richer user experience and a new suite of product offerings. From the manufacturer’s perspective, this also helps establish an ongoing customer relationship as well as incremental revenue streams over the life of the vehicle.
As humans, we can perceive less than a ten-trillionth of all light waves. “Our experience of reality,” says neuroscientist David Eagleman, “is constrained by our biology.” He wants to change that. His research into our brain processes has led him to create new interfaces -- such as a sensory vest -- to take in previously unseen information about the world around us.
Apple Pay is up and running and digital wallets are back in the limelight. Are merchants, consumers, and the market ready for mass adoption of digital wallets? Google Wallet’s poor early uptake comes to mind four years after its launch in 2011.
The self-organisation of collective behaviours often manifests as dramatic patterns of emergent large-scale order. This is true for relatively “simple” entities such as microbial communities and robot “swarms,” through to more complex self-organised systems such as those displayed by social insects, migrating herds, and many human activities. The principle of stigmergy describes those self-organised phenomena that emerge as a consequence of indirect communication between individuals of the group through the generation of persistent cues in the environment. Interestingly, despite numerous examples of multicellular behaviours of bacteria, the principle of stigmergy has yet to become an accepted theoretical framework that describes how bacterial collectives self-organise. Here we review some examples of multicellular bacterial behaviours in the context of stigmergy with the aim of bringing this powerful and elegant self-organisation principle to the attention of the microbial research community.
Bacterial Stigmergy: An Organising Principle of Multicellular Collective Behaviours of Bacteria Erin S. Gloag, Lynne Turnbull, and Cynthia B. Whitchurch
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