Solving Statistical Mechanics PS6: Consider N Oscillators

In summary, the conversation is discussing how to solve problem 2(a) on a problem set involving N independent quantum oscillators. The question is about calculating the partition function and how to sum over the energy levels. The response advises using the same method as for a single harmonic oscillator, but taking into account the N oscillators. It suggests writing out the partition function and seeking help with the math.
  • #1
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Homework Statement



Trying to solve 2(a) on this problem set:

http://docs.google.com/viewer?a=v&q...3AiZT6&sig=AHIEtbSSU6Yh_bICouU_44M_Vg-XlMBYTQ

Homework Equations





The Attempt at a Solution



The thing is..I\'m not sure how to calculate the partition function.

For a single SHO the energy levels are given by (n+1/2)hbar w so we sum over n = 0 to infinty and get the partition fn from which we can derive all thermodynamic quantities..what do we sum over here? how to do we get the partition fn?
Thanks!
 
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  • #2
You do the exact same thing you do for a single harmonic oscillator, but now there are N oscillators. Knowing that E = E1+E2+...+EN and [itex]e^{A+B}=e^A e^B[/itex], you can solve this problem very similarly to a single oscillator. I suggest first writing out the partition function, and you will get more help with the math.
 

1. What is Statistical Mechanics PS6?

Statistical Mechanics PS6 is a problem set that involves solving the equations of motion for a system of N oscillators. It is a common assignment in many physics and engineering courses.

2. How do I approach solving Statistical Mechanics PS6?

First, you should carefully read and understand the problem description and any given equations. Then, you can use mathematical techniques such as Lagrangian or Hamiltonian mechanics to solve the equations of motion and find the solutions.

3. What are N oscillators?

N oscillators refer to a system of N particles that are connected by springs and are able to oscillate back and forth around a certain equilibrium point. These oscillators can be described by mathematical equations and are commonly used to model physical systems such as atoms or molecules.

4. What are the main challenges in solving Statistical Mechanics PS6?

The main challenges in solving PS6 involve understanding and correctly applying the relevant mathematical concepts and equations. It may also require some creativity and problem-solving skills to find the best approach for solving the specific problem.

5. Are there any tips for solving Statistical Mechanics PS6?

Some tips for solving PS6 include breaking down the problem into smaller, manageable parts, drawing diagrams to visualize the system, and checking your work for errors. It can also be helpful to discuss the problem with classmates or seek assistance from a professor or tutor if needed.

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