

This looks extremely similar to Schedule 1, both the interface, the aesthetics and the growing fruit /mixing cocktails mechanics.
This looks extremely similar to Schedule 1, both the interface, the aesthetics and the growing fruit /mixing cocktails mechanics.
Ugh.
You can be a Swede and have a background or name from a different culture.
The gang he was leading was working in Sweden, i.e. a Swedish gang.
I wonder why they have those rigid “sails”, do they function like regular sails?
Interesting perspective. When you say any town, do you include places like Aarhus and Odense? If yes, what are the symptoms of the country dying there?
What small towns are you talking about specifically? There are definitely struggling places out there, in curious if we’re thinking of the same places.
Also what’s the issue with the prime minister drinking?
What was cool about Denmark 40 years ago?
Didn’t all the mink farms close?
What kind of game is it?
Interestingly, the value of the Danish krone is pegged to the value of the euro, meaning the job of the national bank is to ensure a more or less constant exchange rate of 1€ = 7.45DKK.
So when the euro performs well, the krone performs well.
I made the attempt, but couldn’t parse that first link.
Fair - it is indeed difficult for non-experts. But all you need to see from it is that it is a concrete example of a (small) actual quantum computer as reported on outside a corporate press release. The focus on error correction comes from the fact that this is the next big hurdle in the way of scaling up. But the machine is there!
This is just one more kind of chip that will be found in computers of the future.
Exactly - this was never meant to replace classical computers, but to do things that are impossible for classical computers to ever do.
Problem is, this only works for systems that have a known answer (like cryptography) with a verifiable result, otherwise the system never knows when the equation is “complete”.
This isn’t quite right. It’s true, there’s never 100% certainty you have the right answer, but 99.99999% is usually good enough. A classical computer also isn’t 100% certain since it’s also technically just a “physics experiment”, but it has an extremely low error rate, like 10^(-20).
when they talk about speed, they aren’t exactly being forthright
Sure, quantum computers aren’t faster than a classical computer for now, and won’t be for a while. But exponential speedup means that the problems we can eventually solve with a quantum computer are literally impossible for a physical computer to ever solve. This part of the corporate hype speak is true. It’s a purely physical fact. Though for sure we aren’t there yet!
it’s… not really useful in power expenditure or financially to do much beyond a large corporation or government breaking encryption.
Indeed, very likely nobody is ever going to be doing personal computing on these, but they were never meant for that, they are meant for supercomputing level calculations.
Hell yes! I’d love to share some stuff.
One good example of a quantum computer is the Lukin group neutral atoms work. As the paper discusses, they managed to perform error correction procedures making 48 actual logical qubits and performing operations on them. Still not all that practically useful, but it exists, and is extremely impressive from a physics experiment viewpoint.
There are also plenty of meaningful reports on non-emulated machines from the corporate world. From the big players examples include the Willow chip from Google and Heron from IBM being actual real quantum devices doing actual (albeit basic) operations. Furthermore there are a plethora of smaller companies like OQC and Pasqal with real machines.
On applications, this review is both extensive and sober, outlining the known applications with speedups, costs and drawbacks. Among the most exciting are Fermi-Hubbard model dynamics (condensed matter stuff), which is predicted to have exponential speedup with relatively few resources. These all depend on a relatively narrow selection of tricks, though. Among interesting efforts to fundamentally expand what tricks are available is this work from the Babbush group.
Let me know if that’s not what you were looking for.
Indeed I did. They seem to be pointing to the fact that current machines are not factoring primes in any serious way.
Does this contradict my point?
Prime factorisation is indeed nobody’s primary idea of what a quantum computer will be useful for in practice any time soon, but it cannot be denied that Shor’s algorithm is the first and only method of prime factorisation we have discovered which can finish in realistic time with realistic resources.
And that means that RSA is no longer as safe as it once was, justifying the process of finding alternatives.
Quantum science is not fraudulent, incredible leaps are being made with the immense influx of funding.
Quantum industry is a different beast entirely, with scientific rigour being corrupted by stock price management.
It’s an objective fact that quantum computers indeed exist now, but only at a very basic prototype level. Don’t trust anything a journalist says about them, but they are real, and they are based on technology we had no idea if would ever be possible.
Except quantum computers do indeed exist right now, and did not in the 90’s. Sadly, the hype and corporate interests still make it difficult to tell truth from nonsense.
Excellent, it works! Thank you, looking forward to playing!
Sounds good to me, go ahead! Thanks :)
Yes, I believe so. What details do you need?
Also, isn’t this a GOG giveaway?
Demilitarised zone implemented by a trusted third party
Wolfenstein: Old Blood (PC)
I really enjoyed the New Order game, wonderful world building and really satisfying over the top shooting. I even ended up checking out the math the scientist woman wrote on the walls in her room, turned out to just be random Taylor series, which is still pretty good!
Sounds like there’s some interesting new science happening.
I quite like Quanta Magazine, they at least manage to write some pretty good articles on quantum mechanics which are both approachable by layman and accurate.