| 課程大綱 Syllabus |
學生學習目標 Learning Objectives |
單元學習活動 Learning Activities |
學習成效評量 Evaluation |
備註 Notes |
序 No. | 單元主題 Unit topic |
內容綱要 Content summary |
| 1 | General principle |
Fundamental of mechanics |
Fundamental of mechanics |
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| 2 | Concurrent force systems |
1. Resultant of two and more concurrent forces
2. Resolution of force into components
3. Rectangular components of froce |
1. Resultant of two and more concurrent forces
2. Resolution of force into components
3. Rectangular components of froce |
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| 3 | Equilibrium: concurrent force systems |
1. Free-body diagram
2. Equilibrium of a particle |
1. Free-body diagram
2. Equilibrium of a particle |
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| 4 | Equilibrium: concurrent force systems |
1. Free-body diagram
2. Equilibrium of a particle |
1. Free-body diagram
2. Equilibrium of a particle |
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| 5 | Stress, strain, and deformation of axial loading |
1. Stresses
2. Strains
3. Stresses on an inclined plane
4. Statically indeterminate axially loaded problems |
1. Stresses
2. Strains
3. Stresses on an inclined plane
4. Statically indeterminate axially loaded problems |
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| 6 | Stress, strain, and deformation of axial loading |
1. Stresses
2. Strains
3. Stresses on an inclined plane
4. Statically indeterminate axially loaded problems |
1. Stresses
2. Strains
3. Stresses on an inclined plane
4. Statically indeterminate axially loaded problems |
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| 7 | Stress, strain, and deformation of axial loading |
1. Stresses
2. Strains
3. Stresses on an inclined plane
4. Statically indeterminate axially loaded problems |
1. Stresses
2. Strains
3. Stresses on an inclined plane
4. Statically indeterminate axially loaded problems |
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| 8 | Equilibrium force/moment systems |
1. Moment
2. Couples
3. Centroids of volumes, areas, and lines |
1. Moment
2. Couples
3. Centroids of volumes, areas, and lines |
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| 9 | Midterm exam |
Midterm exam |
Midterm exam |
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| 10 | Equilibrium: rigid and deformable bodies |
1. Equilibrium in two dimensions
2. Equilibrium in three dimensions |
1. Equilibrium in two dimensions
2. Equilibrium in three dimensions |
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| 11 | Equilibrium: rigid and deformable bodies |
1. Equilibrium in two dimensions
2. Equilibrium in three dimensions |
1. Equilibrium in two dimensions
2. Equilibrium in three dimensions |
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| 12 | Equilibrium: rigid and deformable bodies |
1. Equilibrium in two dimensions
2. Equilibrium in three dimensions |
1. Equilibrium in two dimensions
2. Equilibrium in three dimensions |
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| 13 | Torsional loading: shafts |
1. Torsional shearing strain
2. Torsional shearing stress
3. Statically interminate problems |
1. Torsional shearing strain
2. Torsional shearing stress
3. Statically interminate problems |
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| 14 | Torsional loading: shafts |
1. Torsional shearing strain
2. Torsional shearing stress
3. Statically interminate problems |
1. Torsional shearing strain
2. Torsional shearing stress
3. Statically interminate problems |
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| 15 | Mohr's circle |
1. Stresses at a general point
2. plane stress and plane strain
3. Mohr's circle for plane stress |
1. Stresses at a general point
2. plane stress and plane strain
3. Mohr's circle for plane stress |
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| 16 | Mohr's circle |
1. Stresses at a general point
2. plane stress and plane strain
3. Mohr's circle for plane stress |
1. Stresses at a general point
2. plane stress and plane strain
3. Mohr's circle for plane stress |
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| 17 | Mohr's circle |
1. Stresses at a general point
2. plane stress and plane strain
3. Mohr's circle for plane stressms |
1. Stresses at a general point
2. plane stress and plane strain
3. Mohr's circle for plane stress |
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| 18 | Final Exam |
Final Exam |
Final Exam |
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