| 1. |
Introduction Overview of electron microscopes
|
Read the syllubus |
10minutes |
| 2. |
Amplitude, phase, wave length and wave number of waves. |
Review the trigonometric functions |
180minutes |
| 3. |
Wave nature of electrons. |
Study the properties of elemental particles |
180minutes |
| 4. |
Mathematical expression of waves. |
Review Euler's formula |
180minutes |
| 5. |
Fourier transformation and convolution operations. |
Review mathematics, such as integrations |
180minutes |
| 6. |
Propagation and interference of waves. |
Review the calculation methods for complex numbers |
180minutes |
| 7. |
Fresnel and Fraunhofer diffractions. |
Review the Huygens–Fresnel principle |
180minutes |
| 8. |
Structure of electron microscopes (1) electron gun, condenser lens
|
Study the types of electron microscopes |
180minutes |
| 9. |
Structure of electron microscopes (2) imaging lens, aperture
|
Study the principles of electron microscopes |
180minutes |
| 10. |
Interactions between electron and substance. |
Review the structure of atoms |
180minutes |
| 11. |
Mathematical expression of lens. |
Study the aberrations of lenses |
180minutes |
| 12. |
Transmission electron microscopy. |
Study the structure of optical microscopes |
180minutes |
| 13. |
Scanning electron microscopy. |
Study the types of electron guns |
180minutes |
| 14. |
Submission of term paper, and related explanations. |
Review all the content of this course |
480minutes |
| Total. |
- |
- |
2650minutes |