Fundamentals of Engineering Structural Dynamics with Python
by
Dr Seán Carroll
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1. Introduction and course overview
Fundamentals of Engineering Structural Dynamics with Python
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Statics versus Dynamics
Fundamentals of Engineering Structural Dynamics with Python
Leverage fundamental structural dynamics to build your own flexible numerical solutions in Python
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Table of contents
Fundamentals of Engineering Structural Dynamics with Python
by
Dr Seán Carroll
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Statics versus Dynamics
Statics versus Dynamics
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1. Introduction and course overview
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1. Introduction and course overview
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2. Our approach to Python
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2. Our approach to Python
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3. Getting started with Jupyter Notebooks
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3. Getting started with Jupyter Notebooks
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4. Static versus dynamic analysis
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4. Static versus dynamic analysis
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5. Introducing inertia
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5. Introducing inertia
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6. Dynamic response and inertia
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6. Dynamic response and inertia
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Free vibration of single degree of freedom systems
Free vibration of single degree of freedom systems
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7. Section overview
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7. Section overview
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8. Lumped mass analysis
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8. Lumped mass analysis
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9. The spring mass damper model
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9. The spring mass damper model
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10. The equation of motion
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10. The equation of motion
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11. Undamped free vibration
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11. Undamped free vibration
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12. Natural frequency
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12. Natural frequency
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13. Damped free vibration
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13. Damped free vibration
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14. Critically damped and over-damped systems
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14. Critically damped and over-damped systems
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15. Under-damped systems
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15. Under-damped systems
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16. Damped natural frequency
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16. Damped natural frequency
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17. Logarithmic decrement
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17. Logarithmic decrement
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Notebook - Worked Example #1.zip
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Notebook - Worked Example #1.zip
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18. Worked Example #1
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18. Worked Example #1
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Notebook - Worked Example #2.zip
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Notebook - Worked Example #2.zip
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19. Worked Example #2
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19. Worked Example #2
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Harmonic Excitation
Harmonic Excitation
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20. Section overview
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20. Section overview
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21. Harmonic Forcing
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21. Harmonic Forcing
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22. Solving the equation of motion
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22. Solving the equation of motion
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23. Characterising the steady-state response
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23. Characterising the steady-state response
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Notebook - Dynamic Magnification Factor.zip
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Notebook - Dynamic Magnification Factor.zip
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24. Dynamic magnification factor and resonance
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24. Dynamic magnification factor and resonance
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Notebook - Worked Example #3.zip
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Notebook - Worked Example #3.zip
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25A. Worked Example #3 - Part A
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25A. Worked Example #3 - Part A
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25B. Worked Example #3 - Part B
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25B. Worked Example #3 - Part B
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25C. Worked Example #3 - Part C
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25C. Worked Example #3 - Part C
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General Dynamic Excitation
General Dynamic Excitation
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26. Section overview
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26. Section overview
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27. General dynamic loading and feedback
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27. General dynamic loading and feedback
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28. The Piecewise Exact Method - concept
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28. The Piecewise Exact Method - concept
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Notebook - Piecewise Exact Method - development.zip
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Notebook - Piecewise Exact Method - development.zip
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29. The Piecewise Exact Method - development
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29. The Piecewise Exact Method - development
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Notebook - Piecewise Exact Method - implementation.zip
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Notebook - Piecewise Exact Method - implementation.zip
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30. Implementing the Piecewise Exact Method
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30. Implementing the Piecewise Exact Method
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Notebook - Force segmentation.zip
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Notebook - Force segmentation.zip
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31. Force Segmentation
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31. Force Segmentation
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Notebook - Time discretisation.zip
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Notebook - Time discretisation.zip
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32. Time Discretisation
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32. Time Discretisation
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33. Course wrap up
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33. Course wrap up
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