Modern Physics
Modern Physics
2nd Edition
ISBN: 9780805303087
Author: Randy Harris
Publisher: Addison Wesley
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Chapter 7, Problem 78E
To determine

To Show:The probability density needs to have a coefficient of 12

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The following problem arises in quantum mechanics (see Chapter 13, Problem 7.21). Find the number of ordered triples of nonnegative integers a, b, c whose sum a+b+c is a given positive integer n. (For example, if n = 2, we could have (a, b, c) = (2, 0, 0) or (0, 2, 0) or (0, 0, 2) or (0, 1, 1) or (1, 0, 1) or (1, 1, 0).) Hint: Show that this is the same as the number of distinguishable distributions of n identical balls in 3 boxes, and follow the method of the diagram in Example 5.
Physics Department PHYS4101 (Quantum Mechanics) Assignment 2 (Fall 2020) Name & ID#. A three-dimensional harmonic oscillator of mass m has the potential energy 1 1 1 V(x.y.2) = ; mw*x² +mwży² +=mw;z? where w1 = 2w a. Write its general eigenvalues and eigenfunctions b. Determine the eigenvalues and their degeneracies up to the 4th excited state c. The oscillator is initially equally likely found in the ground, first and second excited states and is also equally likely found among the states of the degenerate levels. Calculate the expectation values of the product xyz at time t
You will now show that we can always convert quantum circuits with internal measurements into quantum circuits where all measurements occur at the end. This is nice because, as we know, a circuit without measurements just corresponds to multiplication by a unitary matrix. So suppose you have an n-qubit quantum circuit that does some internal measurements, and suppose the first measurement is at step t. It measures the state of the kth qubit in the standard basis and outputs a classical bit 6 € {0, 1} and the corresponding state collapses to the outcome. Now make two changes: 1. Introduce an (n + 1)st qubit to the circuit 2. Replace the measurement on qubit k by a CNOT gate whose control is the kth bit and the target bit is the new (n + 1)st qubit. Solve the following: (i) Show that this exactly simulates the original circuit's operation. (ii) Explain how this gives a way of taking any quantum circuit and converting it into one where all measurements occur only at the final step. (The…

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