Structural Dynamics

Structural Dynamics

Structural Dynamics via YouTube Direct link

W01M01 Introduction of Structural Dynamics

1 of 67

1 of 67

W01M01 Introduction of Structural Dynamics

Class Central Classrooms beta

YouTube playlists curated by Class Central.

Classroom Contents

Structural Dynamics

Automatically move to the next video in the Classroom when playback concludes

  1. 1 W01M01 Introduction of Structural Dynamics
  2. 2 W01M02 Static and Dynamic load Types of Analysis
  3. 3 W01M03 Degrees of Freedom
  4. 4 W01M04 Vibrations of SDOF Systems
  5. 5 W01M05 Dynamic Equilibrium Equation and its Solution
  6. 6 W01M06 Undamped free Vibration
  7. 7 What is MATLAB [Structural Dynamics]
  8. 8 Getting Started with MATLAB Online [Structural Dynamics]
  9. 9 MATLAB Variables [Structural Dynamics]
  10. 10 MATLAB as a Calculator Structural Dynamics
  11. 11 MATLAB Functions [Structural Dynamics]
  12. 12 Creating Vectors [Structural Dynamics]
  13. 13 Creating Uniformly Spaced Vectors LINSPACE [Structural Dynamics]
  14. 14 Accessing Elements of a Vector [Structural Dynamics]
  15. 15 Calculations with Vectors [Structural Dynamics]
  16. 16 Creating Matrices [Structural Dynamics]
  17. 17 Matrix Creation Functions [Structural Dynamics]
  18. 18 Accessing Elements of a Matrix [Structural Dynamics]
  19. 19 Matrix Multiplication [Structural Dynamics]
  20. 20 If Else Statement [Structural Dynamics]
  21. 21 Logical Operators [Structural Dynamics]
  22. 22 FOR Loop [Structural Dynamics]
  23. 23 Writing a While Loop [Structural Dynamics]
  24. 24 Line Plots [Structural Dynamics]
  25. 25 Annotating Graphs [Structural Dynamics]
  26. 26 Exploring Figures in MATLAB Online [Structural Dynamics]
  27. 27 W02M01 Damped free vibration
  28. 28 W02M02 Types of Damping
  29. 29 W02M03 Logarithmic decrement equation
  30. 30 W02M04 Dynamic equilibrium equation by energy method
  31. 31 W03M01 UnDamped Forced Vibrations
  32. 32 W03M02 Forced Damped Vibration
  33. 33 W03M03 Relationship Between Rd, Rv, Ra
  34. 34 W03M04 Resonant Frequency & Half Power Band Width
  35. 35 W03M05 Transmissibility
  36. 36 W04M01 Response to Arbitrary Force
  37. 37 W04M02 Special Cases in Arbitrary Force
  38. 38 W4M03 Fourier Transformation
  39. 39 W05M01 Numerical Methods
  40. 40 W05M02 Methods Based on Interpolation of Excitation
  41. 41 W05M03 Central Difference Method
  42. 42 W05M04 Numerical Methods based on Variation of Acceleration Newmark's Method
  43. 43 W05T01 Central Difference Method
  44. 44 W06M01 Response Spectrum
  45. 45 W06M02 Special Cases of Response Spectrum
  46. 46 W06M03 Development of Tripartite Plot
  47. 47 W07M01 Multi Degree of Freedom Systems
  48. 48 W07M02 Multi Degree of Freedom System Solution of Equilibrium Equation
  49. 49 W07M03 Multi Degree of Freedom System Modal Orthogonality
  50. 50 W07M04 Approximate Methods For Finding Natural Frequency
  51. 51 W07T01 Generation of Mass Matrix
  52. 52 W07T02 Eigen Vectors and Modal Orthagonality
  53. 53 W08M01 Time History Analysis
  54. 54 W08M02 Response Spectrum Analysis
  55. 55 W09M01 Three Dimensional Dynamic Analysis
  56. 56 W09M02 Generation of Elastic Design Response Spectra
  57. 57 W09T01 Centre of Mass & Centre of Stiffness
  58. 58 W10M01 Vibration of Continuous Systems
  59. 59 W10M02 Example Problem on Continuous system
  60. 60 W10M03 Theory of Seismometer
  61. 61 W11M01 Dynamics of Non Structural Elements
  62. 62 W11M02 Non Structural Elements Example
  63. 63 W11T01 Non Structural Elements
  64. 64 W12M01 Classical and Non Classical Damping
  65. 65 W12M02 Vibration Control
  66. 66 W12M03 Base Isolation
  67. 67 W12M04 Tuned Mass Damper

Never Stop Learning.

Get personalized course recommendations, track subjects and courses with reminders, and more.

Someone learning on their laptop while sitting on the floor.