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Probability Based High Temperature Engineering

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Probability Based High Temperature Engineering
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16 040,00 JPY
Typowa cena2 773,09 PLN
Najniższa (90 dni)95,50 PLN
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Ostatnia aktualizacja1 tydzień temu
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2026-08-08 2026-08-15
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ZaktualizowanoCena
2026-08-0895,50
2026-08-15132,00
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SP SpringerNatureLink Shop INT 16 015,00 JPY 25,00 JPY 16 040,00 JPY Dostępny 4 dni temu Zobacz ofertę
SP Springer Nature Author 16 015,00 JPY 0 zł 16 015,00 JPY Dostępny 1 tydzień temu Zobacz ofertę
SP SpringerNatureLink Shop INT 132,00 EUR 0 zł 132,00 EUR Dostępny 4 dni temu Zobacz ofertę

Ceny i dostępność mogą ulec zmianie. Ostatnia aktualizacja: 08.08.2026 23:27.

EAN 9783319419091
Springer Nature
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This volume on structural fire resistance is for aerospace, structural, and fire prevention engineers; architects, and educators. It bridges the gap between prescriptive- and performance-based methods and simplifies very complex and comprehensive computer analyses to the point that the structural fire resistance and high temperature creep deformations will have a simple, approximate analytical expression that can be used in structural analysis and design. The book emphasizes methods of the theory of engineering creep (stress-strain diagrams) and mathematical operations quite distinct from those of solid mechanics absent high-temperature creep deformations, in particular the classical theory of elasticity and structural engineering. Dr. Razdolsky’s previous books focused on methods of computing the ultimate structural design load to the different fire scenarios. The current work is devoted to the computing of the estimated ultimate resistance of the structure taking into account the effect of high temperature creep deformations. An essential resource for aerospace structural engineers who wish to improve their understanding of structure exposed to flare up temperatures and severe fires, the book also serves as a textbook for introductory courses in fire safety in civil or structural engineering programs, vital reading for the PhD students in aerospace fire protection and structural engineering, and a case study of a number of high-profile fires (the World Trade Center, Broadgate Phase 8, One Meridian Plaza; Mandarin Towers). Probability Based High Temperature Engineering: Creep and Structural Fire Resistance successfully bridges the information gap between aerospace, structural, and engineers; building inspectors, architects, and code officials.

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