The present theoretical study analyzes the legacy of the Chicago School of Urban Sociology and evaluates it in the light of the growth and development of Chicago City and the establishment of sociology in it. Sociology has become an academic discipline recognized in the United States of America in the late nineteenth century, particularly, after the establishment of the first department of sociology in the University of Chicago in 1892. That was during the period of the rapid industrialization and sustainable growth of the Chicago City. The Chicago School relied on Chicago City in particular, as one of the American cities that grew and expanded rapidly in the first two decades of the twentieth century. At the end of the nineteenth century, the city witnessed the arrival of large numbers of immigrants from Europe and South America. Accordingly, this study aims to examine the heritage of the Chicago School in depth, focusing on its origin, genesis, and development of the Chicago School of Urban Sociology. It also sheds light on its emergence and dominance over the American academic edifice in the first two decades of the twentieth century. The study further aims to investigate the role of the pragmatic thought in the growth and development of this school as a prominent scientific edifice among all American universities. The golden age of this school and the creativity of its pioneers of the scholars continued until the mid-forties. Thus, the study is to explain the causes of its decline after the mid-forties of the last century. Then, it evaluates the reality of this school after the forties until the first two decades of the current millennium. The study concluded that although much of the urban sociology tradition in the Chicago School and its deeply rooted sub-fields was and remains important, constituting a centre to this discipline, this does not mean that the styles and methods of studies conducted under the Chicago School umbrella should be applied to the urban life of today’s cities. This is due to their inadequacy with the reality of urban life in industrial cities today. That is in return is because of the radical transformations at all levels, including economic, social, political and cultural, as well as the modern communication technologies that have changed the face of the world through what is called today globalization.
The synthesis, characterization and mesomorphic properties of two new series of triazine-core based liquid crystals have been investigated. The amino triazine derivatives were characterized by elemental analysis, Fourier transforms infrared (FTIR), 1HNMR and mass spectroscopy. The liquid crystalline properties of these compounds were examined by differential scanning calorimetry (DSC) and polarizing optical microscopy (POM). DSC and POM confirmed nematic (N) and columnar mesophase textures of the materials. The formation of mesomorphic properties was found to be dependent on the number of methylene unit in alkoxy side chains.
This research is devoted to study the effect of different in weight percentage of Sio2 particles and glass fibers (5, 10, 15, 20) wt. % on the wear rate epoxy resin. The results show that the value of hardness increase with the increase for the weight percentage of reinforcing particles and fibers, while the wear rate decrease with the increase the load level of the reinforcing particles and fibers . The largest value of the hardness, and the lowest value of the wear rate for epoxy reinforced with 20% of SiO2, the wear rate increase in general with increasing the applied load.
A partial temporary immunity SIR epidemic model involv nonlinear treatment rate is proposed and studied. The basic reproduction number is determined. The local and global stability of all equilibria of the model are analyzed. The conditions for occurrence of local bifurcation in the proposed epidemic model are established. Finally, numerical simulation is used to confirm our obtained analytical results and specify the control set of parameters that affect the dynamics of the model.
A novel welded demountable shear connector for sustainable steel-concrete composite structures is proposed. The proposed connector consists of a grout-filled steel tube bolted to a compatible partially threaded stud, which is welded on a steel section. This connector allows for an easy deconstruction at the end of the service life of a building, promoting the reuse of both the concrete slabs and the steel sections. This paper presents the experimental evaluation of the structural behavior of the proposed connector using a horizontal pushout test arrangement. The effects of various parameters, including the tube thickness, the presence of grout infill, and the concrete slab compressive strength, were assessed. A nonlinear finite element mode
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