Uploaded June 2013 | Updated September 2026, 2 hours ago
For more on spin, check out: youtu.be/v1_-LsQLwkA
This video was supplied by Veritasium youtube.com/user/1veritasium
A quantum computer works in a totally different way from a classical computer. Quantum bits or 'qubits' can exist in a superposition state of both zero and one simultaneously. This means that a set of two qubits can be in a superposition of four states, which therefore require four numbers to uniquely identify the state. So the amount of information stored in N qubits is two to the power of N classical bits.
Thank you to Andrea Morello and UNSW. For more info, check out: bit.ly/17wZ7lt
For more on spin, check out: youtu.be/v1_-LsQLwkA
This video was supplied by Veritasium youtube.com/user/1veritasium
A quantum computer works in a totally different way from a classical computer. Quantum bits or 'qubits' can exist in a superposition state of both zero and one simultaneously. This means that a set of two qubits can be in a superposition of four states, which therefore require four numbers to uniquely identify the state. So the amount of information stored in N qubits is two to the power of N classical bits.
Thank you to Andrea Morello and UNSW. For more info, check out: bit.ly/17wZ7lt










