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Jimmy and the Crawler - Raymond E. Feist - Bog - HarperCollins - Plusbog.dk

Jimmy and the Crawler - Raymond E. Feist - Bog - HarperCollins Publishers - Plusbog.dk

Dungeon Crawler Carl - Matt Dinniman - Bog - Penguin Putnam Inc - Plusbog.dk

Beast Quest: Teknos the Ocean Crawler - Adam Blade - Bog - Hachette Children's Group - Plusbog.dk

Jean Prouve - Maison Demontable 6x6 Demountable House - - Bog - Galerie Patrick Seguin - Plusbog.dk

Jean Prouve - Maison Demontable 6x6 Demountable House - - Bog - Galerie Patrick Seguin - Plusbog.dk

The first of nine monographs published by the Galerie Patrick Seguin on Prouvé''s housing modules Though lacking any formal education in architecture, Jean Prouvé (1901-1984) became one of the most influential architects of the twentieth century, boldly experimenting with new building designs, materials and methods. Prouvé was raised in an environment of artistic, socially motivated innovation: his father belonged to "l''École de Nancy," a collective that sought to unite art, industry and social awareness. He continued this practice throughout his adulthood, opening the Ateliers Jean Prouvé to manufacture standardized, economical goods on a mass scale--which, during World War II, included creating portable and demountable barracks. After the war, the French government commissioned Prouvé to design inexpensive, effective housing for the newly homeless, prompting him to perfect his patented axial portal frame to build easily constructed demountable houses. Despite their advantages, though, few of these architectural triumphs were built, and even fewer survive. In order to preserve Prouvé''s architectural and engineering legacy, the Galerie Patrick Seguin has worked tirelessly to promote Prouvé''s "constructional philosophy," exhibiting his designs and showcasing his ecologically responsible methodologies. Jean Prouvé: Maison Démontable 6x6 Demountable House , the first of nine monographs published by the Galerie Patrick Seguin on Prouvé''s housing modules, highlights the simplest of these modules. Introduced by Catherine Coley, renowned art and architectural historian, it contains Prouvé''s sketches, black-and-white photographs of the designer at work and detailed examples of the building process.

DKK 340.00
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Ultimate Equilibrium of RC Structures Using Mini-Max Principle - Yuri Ribakov - Bog - Nova Science Publishers Inc - Plusbog.dk

Ultimate Equilibrium of RC Structures Using Mini-Max Principle - Yuri Ribakov - Bog - Nova Science Publishers Inc - Plusbog.dk

This monograph analyses experimental and theoretical investigations in the field of reinforced concrete structures and elements from the viewpoint of a new mini-max principle and application of this principle for calculation of forces, strengths and critical buckling loads in RC shells, columns, plates, etc. The basis of the mini-max principle was developed during solving a problem of finding an RC shell load bearing capacity via a kinematic method. Forming the internal forces'' fields at the plastic stage of the structure leads to a problem, related to interaction between the normal forces and bending moments, but at this stage the compressed shell section has an unknown eccentricity. Therefore an additional equation should be found for separating the above-mentioned forces. The following idea was proposed: the section compressed zone depth (static parameter) should be selected so that the maximum load bearing capacity of the structure is realized simultaneously with minimizing the external load the failure zone dimension (kinematic parameter). Development of this idea resulted in formulating the mini-max principle. The essence of this principle is that real load bearing capacity of the structure is calculated (without under- and over-estimation). With this aim it is proposed to use in the same calculation both extreme features of failure load. At the same time just one method is used (static or kinematic). Thus, the mini-max principle became a way for realizing the unity theorem of the limit equilibrium method, which joints the static and kinematic approaches. The mini-max principle enabled to solve some problems in load bearing capacity of structures that had no solutions or were solved approximately. Additionally, the principle was used for solving some new problems in calculation of RC shells.

DKK 890.00
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