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Éditeur Springer
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| Titre : |
Classical mechanics:Systems of Particles and Hamiltonian Dynamics |
| Type de document : |
texte imprimé |
| Auteurs : |
Walter Greiner, Auteur |
| Editeur : |
Springer |
| Année de publication : |
2010 |
| Importance : |
579p. |
| Présentation : |
ill.,couv. ill.en coul. |
| Format : |
19.5*26cm |
| ISBN/ISSN/EAN : |
978-3-642-03433-6 |
| Note générale : |
Classical mechanics;Systems of Particles;Hamiltonian Dynamics |
| Langues : |
Français (fre) Langues originales : Français (fre) |
| Mots-clés : |
Classical mechanics Systems of Particles Hamiltonian Dynamics |
| Index. décimale : |
physique du solide 53.1 |
| Résumé : |
The series of texts on Classical Theoretical Physics is based on the highly successful courses given by Walter Greiner. The volumes provide a complete survey of classical theoretical physics and an enormous number of worked out examples and problems |
| En ligne : |
https://m.media-amazon.com/images/I/51UUDbpE-ML._SY425_.jpg |
Classical mechanics:Systems of Particles and Hamiltonian Dynamics [texte imprimé] / Walter Greiner, Auteur . - Springer, 2010 . - 579p. : ill.,couv. ill.en coul. ; 19.5*26cm. ISBN : 978-3-642-03433-6 Classical mechanics;Systems of Particles;Hamiltonian Dynamics Langues : Français ( fre) Langues originales : Français ( fre) |  |
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| Titre : |
Thermal Stress Resistance of Materials |
| Type de document : |
texte imprimé |
| Auteurs : |
Anatoly Lanin, Auteur ; Ivan Fedik, Auteur |
| Editeur : |
Springer |
| Année de publication : |
2008 |
| Importance : |
235p |
| Présentation : |
ill.couv ill.en coul |
| Format : |
15.5*24cm |
| ISBN/ISSN/EAN : |
978-3-642-09055-4 |
| Note générale : |
Thermal Stress Resistance;Strain Condition of Bodies;Mechanism of Crack Propagation |
| Langues : |
Français (fre) Langues originales : Français (fre) |
| Mots-clés : |
Thermal Stress Resistance Strain Condition of Bodies Mechanism of Crack Propagation |
| Index. décimale : |
physique du solide 53.1 |
| Résumé : |
This book deals with the problem of a bearing capacity and fracture of thermally loaded materials. The treatise is based on extensive experimental and technological data of materials-development processes for high-temperature nuclear reactors and aerospace nuclear-rocket engines. New regularities and irregularities of fracture at various modes of local and combined thermal loading using electron-beam, induction and ionic-beam technique of heating, and also with traditional methods of measuring the thermal stress resistance are discussed. New criteria for the estimation of the bearing capacity of bodies in inhomogeneous fields of thermal and residual stresses are developed on the basis of fracture mechanics. Changes in the thermal stress resistance of carbides (ZrC, NbC, and SiC), graphite, Si3N4, Y2O3, Sc2O3 Al2O3 and single crystals of sapphire are considered. Possible technological methods for the improvement of thermal stress resistance are also presented |
| En ligne : |
https://m.media-amazon.com/images/I/616Xg1-L95L._SL1252_.jpg |
Thermal Stress Resistance of Materials [texte imprimé] / Anatoly Lanin, Auteur ; Ivan Fedik, Auteur . - Springer, 2008 . - 235p : ill.couv ill.en coul ; 15.5*24cm. ISBN : 978-3-642-09055-4 Thermal Stress Resistance;Strain Condition of Bodies;Mechanism of Crack Propagation Langues : Français ( fre) Langues originales : Français ( fre)
| Mots-clés : |
Thermal Stress Resistance Strain Condition of Bodies Mechanism of Crack Propagation |
| Index. décimale : |
physique du solide 53.1 |
| Résumé : |
This book deals with the problem of a bearing capacity and fracture of thermally loaded materials. The treatise is based on extensive experimental and technological data of materials-development processes for high-temperature nuclear reactors and aerospace nuclear-rocket engines. New regularities and irregularities of fracture at various modes of local and combined thermal loading using electron-beam, induction and ionic-beam technique of heating, and also with traditional methods of measuring the thermal stress resistance are discussed. New criteria for the estimation of the bearing capacity of bodies in inhomogeneous fields of thermal and residual stresses are developed on the basis of fracture mechanics. Changes in the thermal stress resistance of carbides (ZrC, NbC, and SiC), graphite, Si3N4, Y2O3, Sc2O3 Al2O3 and single crystals of sapphire are considered. Possible technological methods for the improvement of thermal stress resistance are also presented |
| En ligne : |
https://m.media-amazon.com/images/I/616Xg1-L95L._SL1252_.jpg |
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مكتبة كلية العلوم والتكنولوجيا |
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