Quantum computers were supposed to just be "fast computers." They are not. In this video, we count down 7 real experiments that produced results nobody fully expected — from a wormhole simulated on 9 qubits, to a chip that briefly ran time backward, to a Google researcher quietly announcing that breaking the internet's encryption now requires 20 times fewer qubits than we thought. And then there's the experiment at number one, where a senior Google scientist suggested the only coherent explanation for the result is that the computation happened in parallel universes. He hasn't walked it back.
These are real experiments. Real machines. Real results that the field is still trying to fully understand.
#QuantumComputing #QuantumPhysics #Google #QuantumMechanics #Physics #Science #Technology #IBM #Microsoft #Encryption #ArtificialIntelligence #Willow #Majorana #QuantumAdvantage #Supercomputer #QuantumEntanglement #Multiverse #ManyWorlds #Cybersecurity #FutureTech
Quantum computers were supposed to just be "fast computers." They are not. In this video, we count down 7 real experiments that produced results nobody fully expected — from a wormhole simulated on 9 qubits, to a chip that briefly ran time backward, to a Google researcher quietly announcing that breaking the internet's encryption now requires 20 times fewer qubits than we thought. And then there's the experiment at number one, where a senior Google scientist suggested the only coherent explanation for the result is that the computation happened in parallel universes. He hasn't walked it back.
These are real experiments. Real machines. Real results that the field is still trying to fully understand.
#QuantumComputing #QuantumPhysics #Google #QuantumMechanics #Physics #Science #Technology #IBM #Microsoft #Encryption #ArtificialIntelligence #Willow #Majorana #QuantumAdvantage #Supercomputer #QuantumEntanglement #Multiverse #ManyWorlds #Cybersecurity #FutureTech