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Structural Analysis-2

Brand: Ashish Kumar
MPN: com.faadooengineers.free_structuralanalysis2
Category: #416935 in App (Science)
Price: $0.00
Availability: Available instantly on compatible devices
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Features

  • This unique free application is for all students across the world. It covers 110 topics of Structural Analysis 2 in detail. These 110 topics are divided in 5 units.
  • Each topic is around 600 words and is complete with diagrams, equations and other forms of graphical representations along with simple text explaining the concept in detail.
  • This USP of this application is "ultra-portability". Students can access the content on-the-go from anywhere they like.
  • Basically, each topic is like a detailed flash card and will make the lives of students simpler and easier.
  • Some of topics Covered in this application are:
  • 1. Development of Plastic Analysis
  • 2. Interpretation of Stiffness Matrix
  • 3. Truss Element Stiffness Matrix
  • 4. Introduction
  • 5. Mohr’s First Theorem (Mohr I)
  • 6. Mohr’s Second Theorem (Mohr II)
  • 7. Application to Determinate Structures
  • 8. Finding Deflections
  • 9. Application to Indeterminate Structures
  • 10. Find the location of the maximum deflection
  • 11. Continuous Beams: Introduction
  • 12. Analysis of Continuous Beams
  • 13. Incorporation of Moment Due to Reactions
  • 14. Pressure Line due to Prestressing Force
  • 15. METHOD OF CONSISTENT DEFORMATION: Basic Concept
  • 16. Choice of Released Structures
  • 17. Compatibility Equations for General Case
  • 18. Vector of kinematical conditions
  • 19. METHOD OF SLOPE-DEFLECTION EQUATIONS
  • 20. Computation of Fixed-end Moments
  • 21. THE MOMENT DISTRIBUTION METHOD
  • 22. DISTRIBUTION FACTOR
  • 23. STEPS INVOLVED IN MOMENT DISTRIBUTION METHOD
  • 24. Strain Energy
  • 25. Beams
  • 26. Analysis of two-hinged arch
  • 27. Influence line diagram
  • 28. Symmetrical two hinged arch
  • 29. Temperature effect
  • 30. Torque and thrust force in drilling
  • 31. MODEL OF DRILLING
  • 32. Introduction of Suspension Bridges
  • 33. Structural System
  • 34. Design of suspension bridge
  • 35. Wind-Resistant Design
  • 36. Design of Cable Section
  • 37. Field Measurement and Coatings
  • 38. Introduction of Stiffening Girder
  • 39. Design of Girder End
  • 40. Fabrication Technology
  • 41. Erection Technology
  • 42. All-Hinge Erection Method
  • 43. Moment-shear interaction of longitudinally stiffened girders
  • 44. EUROCODE DESIGN PROVISONS
  • 45. FINITE ELEMENT MODELING
  • 46. NON-LINEAR FINITE ELEMENT STUDY
  • 47. Alternative Form of Slope-deflection Equations
  • 48. Sign Convention
  • 49. Computation of Fixed-end Moments
  • 50. Slope-deflection Equations for Special Members
  • 51. Slope-deflection Equations for Special Members
  • 52. Symmetric member and Anti-symmetric member
  • 53. Analysis of Structures by Slope-deflection Equations
  • 54. End rotations and sway angle of members
  • 55. Determination of sway angle by instantaneous center of rotations (ICR)
  • 56. Set up equilibrium equations
  • 57. Equilibrium equations associated with sway degrees of freedom
  • 58. Equilibrium equations associated with sway degrees of freedom
  • 59. Solve for primary unknowns and determine other quantities
  • 60. Treatment of Special Structures
  • 61. Geometrically symmetric structures
  • 62. Geometrically symmetric structure under symmetrical loadings
  • 63. Geometrically symmetric structure under anti-symmetrical loadings
  • 64. Geometrically symmetric structure under general loadings
  • 65. Introductin of Matrix Stiffness Method
  • 66. Computer Programs to Support Learning
  • 67. Basic Approach
  • 68. Assemblies of Elements
  • 69. General Methodology
  • 70. Element Forces
  • 71. Plane Frame Element Stiffness Matrix
  • 72. Transformation to Global Coordinates
  • 73. Inter-nodal Loads
  • 74. Moment-Rotation Characteristics of General Cross Section
  • 75. Analysis of Rectangular Cross Section
  • 76. Shape Factor
  • 77. Formation of Hinges for Collapse
  • 78. Plastic Hinge Development
  • 79. Important Definitions
  • 80. Virtual Work in Plastic Analysis
  • 81. Theorems of Plastic Analysis
  • 82. Plastic Hinge Under the Load
  • 83. Plastic Design
  • 84. Summary of Important Points
  • 85. INTRODUCTION OF FINITE ELEMENT ANALYSIS
  • 86. Angle Under Shear Loading

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