| Week |
Course Content |
| Week 1 |
Introduction |
| Week 2 |
Ch1 Maquette strategy for creation of light- and redox-active proteins (1) |
| Week 3 |
Ch1 Maquette strategy for creation of light- and redox-active proteins (2) |
| Week 4 |
Ch2 Free, stalled, and controlled rotation single molecule experiments on F1-ATPase and their relationships (1) |
| Week 5 |
Ch2 Free, stalled, and controlled rotation single molecule experiments on F1-ATPase and their relationships (2) |
| Week 6 |
Ch3 The role of the H-channel in cytochrome c oxidase: a commentary (1) |
| Week 7 |
Ch3 The role of the H-channel in cytochrome c oxidase: a commentary (2) |
| Week 8 |
Ch4 Cytochrome c oxidase: insight into functions from studies of the yeast S. cerevisiae homologue (1) |
| Week 9 |
Ch4 Cytochrome c oxidase: insight into functions from studies of the yeast S. cerevisiae homologue (2) |
| Week 10 |
Ch5 Femtosecond infrared crystallography of photosystem II core complexes (1) |
| Week 11 |
Ch5 Femtosecond infrared crystallography of photosystem II core complexes (2) |
| Week 12 |
Ch6 Bioenergetics, water splitting and artificial photosynthesis (1) |
| Week 13 |
Ch6 Bioenergetics, water splitting and artificial photosynthesis (2) |
| Week 14 |
Ch8 Rubisco activase: the molecular chiropractor of the world’s most abundant protein (1) |
| Week 15 |
Ch8 Rubisco activase: the molecular chiropractor of the world’s most abundant protein (2) |
| Week 16 |
Ch9 Adaptive reorganization of the light harvesting antenna |
| Week 17 |
自主學習1: reading research article-1 of plant bioenergetics |
| Week 18 |
自主學習2: reading research article-2 of plant bioenergetics |