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## page was renamed from Homework
= Final Project =

 * ~+'''Final Project Guidelines'''+~, ~-Submit when you meet the instructor-~: <<la("final.PDF")>>

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 * ~+'''Mid-term Exam 1 Solutions'''+~, ~-Feb 1-~: <<la("MIDSOL.pdf", "Chapters 7 and 8: Quantum and Atomic Physics")>>  * ~+'''Mid-term Exam 1 Solutions'''+~, ~-Feb 1-~: <<la("MIDSOLSC.pdf", "Chapters 7 and 8: Quantum and Atomic Physics with scoring guide")>>
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 * ~+'''Homework 2 Solutions'''+~, ~-due Jan 30-~: <<la("HW2SOL.pdf", "Schrodinger Equation and Hydrogen Atom")>>  * ~+'''Homework 2 Solutions'''+~, ~-due Jan 30-~: <<la("HW2SOLSC.pdf", "Schrodinger Equation and Hydrogen Atom with scoring guide")>>

 * ~+'''Homework 3'''+~, ~-due Feb 13-~: <<la("HW3.pdf", "Statistical Physics")>>

Final Project

  • Final Project Guidelines, Submit when you meet the instructor: «a: final.PDF»

Exam

Homework

  • Homework 1, due Jan 20: Potential step, well

    • Revised (marked by the red text in the file)
      • Correction: Problem 4(a), $B > 0$ when $U_0 > 0$ and $B < 0$ when $U_0 < 0$.

      • Correction: Problem 4(b), "the similarity" → "the similarity or the difference".

  • Homework 1 Solutions, due Jan 20: Potential step, well

  • Homework 2, due Jan 30: Schrodinger Equation: Hydrogen Atom

    • Revised (marked by the red text in the file)
      • Addition: Problem 3: Hamiltonian and invariance relationships are discussed to help you solve the problem.

      • Correction: Problem 4: $\Phi (\pm 1) = \frac{1}{\sqrt{2\pi}} e^{\pm i \phi}; \Phi (\pm 2) = \frac{1}{\sqrt{2\pi}} e^{\pm 2 i \phi}$

      • Addition: Problem 5: The way to test orthogonality between the two wave functions is added.

  • Homework 2 Solutions, due Jan 30: Schrodinger Equation and Hydrogen Atom with scoring guide

  • Homework 3, due Feb 13: Statistical Physics