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STANDARD METHODS FOR AEROSPACE STRESS ANALYSIS
US $112.00
ApproximatelyS$ 145.25
Was US $140.00 (20% off)
Condition:
Brand New
A new, unread, unused book in perfect condition with no missing or damaged pages.
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Located in: Lansdale, PA, United States
Delivery:
Estimated between Fri, 17 Oct and Thu, 23 Oct to 94104
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No returns accepted.
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eBay item number:357414785327
Item specifics
- Condition
- Brand New: A new, unread, unused book in perfect condition with no missing or damaged pages. See all condition definitionsopens in a new window or tab
- Educational Level
- Adult & Further Education
- Personalized
- No
- Level
- Advanced
- Country/Region of Manufacture
- United States
- ISBN
- 9781394330188
About this product
Product Identifiers
Publisher
Wiley & Sons, Incorporated, John
ISBN-10
1394330189
ISBN-13
9781394330188
eBay Product ID (ePID)
7072899746
Product Key Features
Number of Pages
272 Pages
Publication Name
Standard Methods for Aerospace Stress Analysis
Language
English
Publication Year
2025
Subject
Mechanical, Structural, General, Aeronautics & Astronautics
Type
Textbook
Subject Area
Transportation, Technology & Engineering
Series
Aerospace Ser.
Format
Hardcover
Dimensions
Item Height
0.7 in
Item Weight
21.3 Oz
Item Length
10.1 in
Item Width
7.2 in
Additional Product Features
Intended Audience
Scholarly & Professional
LCCN
2025-020246
Synopsis
Standard Methods for Aerospace Stress Analysis Create safer, more reliable planes with this crucial guide Aerospace Stress Analysis is the field of research and engineering that evaluates stresses and strains on aerospace structures. By analyzing how different materials and components respond to forces, it helps aerospace engineers build for structural integrity and safety. Combining mathematical and computational models with experimental techniques, it's a crucial component of developing viable aerospace technologies. Standard Methods for Aerospace Stress Analysis offers a thorough, practical overview of the structural and stress analysis of both principal and secondary aircraft structures. It covers both fundamental concepts and advanced computational methods, along with key applications. With coverage of both interior and exterior structures, it's a one-stop shop for all major aspects of stress analysis. Standard Methods for Aerospace Stress Analysis features: Step-by-step examples for every aircraft section Detailed discussion of methods including Finite Element Analysis An overview of key information on static, fatigue, damage tolerance, buckling, and more Standard Methods for Aerospace Stress Analysis is ideal for professional mechanical and aerospace engineers working in the aircraft or space industries, as well as students in the field., Create safer, more reliable planes with this crucial guide Aerospace Stress Analysis is the field of research and engineering that evaluates stresses and strains on aerospace structures. By analyzing how different materials and components respond to forces, it helps aerospace engineers build for structural integrity and safety. Combining mathematical and computational models with experimental techniques, it's a crucial component of developing viable aerospace technologies. Standard Methods for Aerospace Stress Analysis offers a thorough, practical overview of the structural and stress analysis of both principal and secondary aircraft structures. It covers both fundamental concepts and advanced computational methods, along with key applications. With coverage of both interior and exterior structures, it's a one-stop shop for all major aspects of stress analysis. Standard Methods for Aerospace Stress Analysis readers will also find: Step-by-step examples for every aircraft section Detailed discussion of methods including Finite Element Analysis Overview of key information on static, fatigue, damage tolerance, buckling, and more Standard Methods for Aerospace Stress Analysis is ideal for professional mechanical and aerospace engineers working in the aircraft or space industries, as well as those studying to be.
LC Classification Number
TL574.P7J3 2025
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