(a) for the case of two qubits, briefly explain the main difference between product states and entangled states. provide one example of each. (b) show that the identity between spin angular momentum operators s+s- = s2- s2 ± hs, holds. data: s s tisy, [se, sy] = ihs2, [sy, s2] = ihs, [s2, s = ihsy. (c) an s = 1/2 particle at t =0 is prepared in the following state x with respect to the eigen-spinors of s2: x= a 2 (e)r= where a is a normalisation constant. imagine many copies of the state x are prepared and measured. describe the possible outcomes of measurements of s2 and their probabilities (d) show that for a normalised trial state, vtrial), the ground state energy, eg. s., of a hamiltonian, h, is bounded as (trial|h\btrial). hence, prove that the first order perturbation theory estimate of the eg. s. ground state energy never under-estimates the true ground state energy.
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(a) for the case of two qubits, briefly explain the main difference between product states and entan...
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