Class schedule | HW assignments (Including preparation and review of the class.) | Amount of Time Required | |
---|---|---|---|
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 |
small exam | final report | Total. | |
---|---|---|---|
1. | 10% | 30% | 40% |
2. | 5% | 20% | 25% |
3. | 5% | 30% | 35% |
Total. | 20% | 80% | - |
Work experience | Work experience and relevance to the course content if applicable |
---|---|
N/A | N/A |