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Scilab Textbook Companion Project
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Aeronautical/Aerospace Engineering/Civil Engineering/Industrial Engineering/Mechanical Engineering/Nuclear Engineering/Ocean Engineering/Production Engineering
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Applied Mechanics
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Title of the book
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Theory Of Machines (Written by B. K. Sarkar)
Theory Of Machines (Written by R. S. Khurmi And J. K. Gupta)
The Theory of Machines (Written by T. Bevan)
Solutions to Problems in Applied Mechanics (Written by A. N. Gobby)
Principles Of Geotechnical Engineering (Written by B. M. Das)
Engineering Mechanics: Dynamics (Written by J. L. Meriam, l. G. Kraige)
Aircraft Structures For Engineering Students (Written by T. H. G. Megson)
Elements of Mechanical Engineering (Written by N. M. Bhatt and J. R. Mehta)
Elements of Mechanical Engineering (Written by R. K. Rajput)
Engineering Basics (Written by T. Thyagarajan)
Engineering Mechancis-Schaum Series (Written by McLean)
Engineering Mechanics (Written by A. K. Tayal)
Introduction To Flight (Written by J. D. Anderson Jr.)
Modern Engineering Physics (Written by K. Vijaya Kumar, S. Chandralingam)
Engineering Mechanics (Written by S S Bhavikatti)
Metal Cutting Theory And Practice (Written by D. A. Stephenson And J. S. Agapiou)
Quantum Mechanics (Written by M. C. Jain)
A Textbook Of Engineering Mechanics (Written by R.S. Khurmi)
About the Book
About the Contributor
Author:
T. H. G. Megson
Title of the Book:
Aircraft Structures For Engineering Students
Publisher:
Butterworth - Heinemann (Elsevier)
Year:
2007
Edition:
4
ISBN:
0-750-667397
Contributor Name:
Mahesh Kumar, B. Tech., Others, IIT Bombay
College Teacher:
Madhu Belur
Reviewer:
Scilab TBC Team
No part of any book is reproduced through these links. These links only contain the Scilab code for the solved examples in the book.
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(Download the Scilab codes for all the solved examples)
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The pdf only contains the Scilab code for the solved examples in the book. No part of the book is reproduced in the pdf.
Title of the chapter
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1. Basic Elasticity
3. Torsion of Solid Section
4. Virtual work and Energy methods
5. Energy Methods
6. Matrix Methods
7. Bending of Thin plates
8. Columns
9. Thin plates
10. Oscillation of mass spring systems
12. Structural components of aircraft
14. Airframe Loads
15. Fatigue
16. Bending of open and closed thin walled beams
17. Shear of beams
18. Torsion of beams
19. Combined open and closed section beams
20. Structural idealization
21. Wing spars and box beams
22. Fuselages
23. Wings
24. Fuselage frames and wing ribs
25. Laminated composites
26. closed section beams
27. Open section beams
Example No. (Caption):
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