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'flip-flop' design makes quantum computers more affordabe

2 hours ago, TidaLWaveZ said:

Why do I feel like quantum computing just poses a threat humanity?

That you can only answer yourself since no respectable scientist is on your side … ;)

It's not like AI. Quantum computers don't just work on their own and make decisions. They do exactly what they're programmed to do – when they're finally here since those D-Wave machines receive some scepticism about actually being quantum computers.

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14 minutes ago, bowrilla said:

That you can only answer yourself since no respectable scientist is on your side … ;)

It's not like AI. Quantum computers don't just work on their own and make decisions. They do exactly what they're programmed to do – when they're finally here since those D-Wave machines receive some scepticism about actually being quantum computers.

That(A.I.) is not in the slightest bit what I'm talking about and I'd like a signed note from every respectable scientist saying that they have no fear of the potential impact of the rise of quantum computing. :P

 

The ability to brute force the strongest encryption in a short amount of time breeds the potential for things like nuclear war.

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2 hours ago, TidaLWaveZ said:

Why do I feel like quantum computing just poses a threat humanity?

Because we don't even fully understand the technology so someone will think to put an AI on the job. Then the AI has solved it, it will have the power to crack any existing method of cryptology and it's the next step toward the AI singularity.. BE  AFRAID.

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Always felt that qc will really take off only when ibm or even those dwave fellas figure out how to implement more then 4/2 basic instruction sets into those. And then yes, you will be able to run crisys on it, in full vr via neurolink or something. There is alot of work being done on adapting the sofrware to run on risc chips. And qc is currently the most extreme example of a risc arch, so one day, possibly when all of us are already long dead, qc will have enough instructions to run whatever and kids gonna be playing cod 2000: cleanse the sandpeople in capsules

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Let's be clear, this is likely for purposes like D-wave's Quantum "computers". They're intended only to solve these NP-Hard and NP-intermediate problems, need to be specially programmed with very limited APIs and hardware interfaces, and can't really be applied to general purpose tasks.

 

The more interesting kind of Quantum Computer that would be useful for consumers and data centers, general purpose quantum computers, are still in the research stages and have not actually gotten to any usable level.

 

While there are plenty of conspiracy theories about general purpose quantum computers being squirreled away at the NSA, there's no real proof of it, and it would be kind of silly to stockpile all these exploits if you had machines that could brute force the software for you.

 

General purpose quantum computers that can run a traditional kernel and OS are still a looooooooooooooong ways out for even enterprise, much less consumers.

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1 hour ago, hobobobo said:

Always felt that qc will really take off only when ibm or even those dwave fellas figure out how to implement more then 4/2 basic instruction sets into those. And then yes, you will be able to run crisys on it, in full vr via neurolink or something. There is alot of work being done on adapting the sofrware to run on risc chips. And qc is currently the most extreme example of a risc arch, so one day, possibly when all of us are already long dead, qc will have enough instructions to run whatever and kids gonna be playing cod 2000: cleanse the sandpeople in capsules

Again: quantum computers rely on a differnt kind of logic. All of our current computer technology is solely based on binary logic. Quantum computers have more states and that's their very whole point. You could try and translate that binary algorithms into a language a quantum computer could understand but it will not run any faster at all. You can expect quite the opposite since that's not what a quantum computer is made for. 


Heck, there isn't even a "proper" quantum computer based on quantum entanglement. D-Wave's systems are adiabatic quantum computers or so they claim (there's still a lot of controversy going on). That's why it can't run Shor algorithm which relies on actual qubits. Such a computer would indeed break any current form of cryptography based on the sole complexity of prime factorization (like RSA). It would be naive to believe that no scientist was actually working on Shor-proof cryptography. 

 

Don't believe it? Sure, then just listen to an actual Professor (Prof. Andrea Morello, University of New South Wales) explaining it to you:

 

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17 hours ago, Godlygamer23 said:

I imagine quantum computers are useful for any task where you can have multiple answers.

They sound perfect for the ultimate RPG gaming rig.

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21 hours ago, Eclypseon said:

Quantum Computing (theoretically) offers some new options for cryptography... possibly allowing for improved encryption schemes at the consumer/business level. 

 

Also... possibly allowing for more impressive crypto-cracking :/  --double edged sword I suppose. Then again, maybe I don't understand the tech enough. :P 

A quantum computer can crack the hardest encryption in the world in a matter of seconds. So government will buy these like hot cakes

ƆԀ S₱▓Ɇ▓cs: i7 6ʇɥפᴉƎ00K (4.4ghz), Asus DeLuxe X99A II, GT҉X҉1҉0҉8҉0 Zotac Amp ExTrꍟꎭe),Si6F4Gb D???????r PlatinUm, EVGA G2 Sǝʌǝᘉ5ᙣᙍᖇᓎᙎᗅᖶt, Phanteks Enthoo Primo, 3TB WD Black, 500gb 850 Evo, H100iGeeTeeX, Windows 10, K70 R̸̢̡̭͍͕̱̭̟̩̀̀̃́̃͒̈́̈́͑̑́̆͘͜ͅG̶̦̬͊́B̸͈̝̖͗̈́, G502, HyperX Cloud 2s, Asus MX34. פN∩SW∀S 960 EVO

Just keeping this here as a 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4 hours ago, BuckGup said:

A quantum computer can crack the hardest encryption in the world in a matter of seconds. So government will buy these like hot cakes

Theoretically... yes. So it does pose some concern. However, as with so many discoveries of science... it is a tool as much as a weapon. The power of non-binary quantum computing allows for higher levels of encryption as well, possibly by providing keys with multiple states based on how they are run. Additionally, quantum computers cannot necessarily overcome physical obstructions (air gaps, etc.) So, hopefully, the end is not necessarily nigh, as they say.

 

Where I hope to see some pretty impressive utility is in the advances of biological science and medicine. A computational system that can simulate far more variables and conditions in a non-static state offers incredible opportunity in epigenetic and protein structural research (see Fold@Home, and other distributed computing research).

 

A quantum computer, theoretically allows the processes of many, many computations to occur simultaneously (as we all know). And from a purely idealistic 'benefit humankind' perspective, I'm excited :). The more efficient, smaller, and lower cost the capability become, I hope, the more we can learn about our world (for good, of course. #DontBeEvil)

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