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doc/pub/week5/html/week5-bs.html

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@@ -322,6 +322,9 @@ <h2 id="plans-for-the-week-of-february-16-20-2026" class="anchor">Plans for the
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<p>The first part of the lecture will focus</p>
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<ul>
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<li> Review from last week, one-qubit gates and one-qubit Hamiltonian rewritten in term of Pauli matrices (using slides from last week)</li>
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</ul>
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<p>Then we move on to</p>
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<ul>
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<li> Two-qubit Hamiltonians and how to encode them in terms of Pauli matrices</li>
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<li> The variational quantum eigensolver algorithm (VQE) and project 1</li>
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<li> Discussion of project 1 during the lecture and the exercise session

doc/pub/week5/html/week5-reveal.html

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@@ -199,6 +199,10 @@ <h2 id="plans-for-the-week-of-february-16-20-2026">Plans for the week of Februar
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<p>The first part of the lecture will focus</p>
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<ul>
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<p><li> Review from last week, one-qubit gates and one-qubit Hamiltonian rewritten in term of Pauli matrices (using slides from last week)</li>
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</ul>
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<p>
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<p>Then we move on to</p>
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<ul>
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<p><li> Two-qubit Hamiltonians and how to encode them in terms of Pauli matrices</li>
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<p><li> The variational quantum eigensolver algorithm (VQE) and project 1</li>
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<p><li> Discussion of project 1 during the lecture and the exercise session

doc/pub/week5/html/week5-solarized.html

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@@ -258,6 +258,9 @@ <h2 id="plans-for-the-week-of-february-16-20-2026">Plans for the week of Februar
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<p>The first part of the lecture will focus</p>
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<ul>
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<li> Review from last week, one-qubit gates and one-qubit Hamiltonian rewritten in term of Pauli matrices (using slides from last week)</li>
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</ul>
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<p>Then we move on to</p>
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<ul>
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<li> Two-qubit Hamiltonians and how to encode them in terms of Pauli matrices</li>
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<li> The variational quantum eigensolver algorithm (VQE) and project 1</li>
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<li> Discussion of project 1 during the lecture and the exercise session

doc/pub/week5/html/week5.html

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@@ -335,6 +335,9 @@ <h2 id="plans-for-the-week-of-february-16-20-2026">Plans for the week of Februar
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<p>The first part of the lecture will focus</p>
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<ul>
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<li> Review from last week, one-qubit gates and one-qubit Hamiltonian rewritten in term of Pauli matrices (using slides from last week)</li>
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</ul>
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<p>Then we move on to</p>
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<ul>
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<li> Two-qubit Hamiltonians and how to encode them in terms of Pauli matrices</li>
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<li> The variational quantum eigensolver algorithm (VQE) and project 1</li>
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<li> Discussion of project 1 during the lecture and the exercise session
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