Computers require new encrypting algorithms.
The quantum computers can calculate multiple calculations in the same time. The AI can use the group of binary computers as a virtual quantum computer, which can be a more powerful system than ever before. The virtual quantum computer means that the AI cuts the Riemann conjecture that is used to make the binary number series at certain points.
And then those binary computers will act with a certain part of that binary number series. In that case, the group of binary computers acts like quantum computers, and even if they are slower, the system is more powerful than regular binary computers. The AI can also attack 24/7 without breaks. And the system can change the IP address that the attacker uses. That makes it harder to deny those attacks.
The thing that makes next-generation data security more challenging is that attackers more often work for governments. That means hackers can have access to the quantum computers. Even the low-power quantum computer can break codes faster than anything before. The only thing that can protect networks against the quantum computer attack is another quantum computer that controls the system protocols and creates so long quantum decimals that they stand against other quantum computers.
Hackers who operate for governments are people who will never get prosecutions. Those hackers have resources like quantum computers that regular hackers cannot even imagine. Today nothing denies delivering confidential information over the net. The other thing is that net spying is an effective and cost-efficient method.
That the government can use to hack opponents' information. The most wanted information that the Russian and Chinese governments can get consists of effective military technology. Things like AI-based physical and electronic surveillance systems and code-generators are also in a high position on the hacker's lists. Those systems are the most effective tools that hackers can ever get in their hands.
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