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If C(1)=P, C(2)=C, C(3)=T, then | If C(1)=P, C(2)=C, C(3)=T, then | ||
C(n)={U:UQU\dagger=C(n-1),Q\epsilon C(1)} | C(n)={U:UQU\dagger=C(n-1),Q\epsilon C(1)} | ||
==Classical Quantum State | ===Superposition=== | ||
===Entanglement=== | |||
===Classical Quantum State=== | |||
===Density Matrices=== | ===Density Matrices=== | ||