|
|
Line 2: |
Line 2: |
|
| |
|
| We define: | | We define: |
| By definition:
| |
|
| |
|
| <math>\rho(\overrightarrow{r},t)=\sum\rho_{i}(\overrightarrow{r},t)</math> | | <math>\rho(\overrightarrow{r},t)=\sum\rho_{i}(\overrightarrow{r},t)</math> |
Line 15: |
Line 14: |
|
| |
|
| Solution: | | Solution: |
| | By definition: |
|
| |
|
| <math>\frac{\partial\rho}{\partial t}=\frac{\partial}{\partial t}\sum_{i}\rho_{i}(\overrightarrow{r},t)</math> | | <math>\frac{\partial\rho}{\partial t}=\frac{\partial}{\partial t}\sum_{i}\rho_{i}(\overrightarrow{r},t)</math> |
Assume that the Hamiltonian for a system of N particles is
, and
is the wave fuction.
We define:
Prove the following relation:
Solution:
By definition:
,