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The research focuses on magic - the practice of performing tricks and illusions on stage aiming at entertaining the audience. In the late XIX-early XX century magic achieved an outstanding social recognition and became an important artistic phenomenon. This study aims to analyze the work of the most prominent magicians of the late XIX-early XX centuries and to define the historical role of magicians in the history of culture and art.
Using methods of art history and cultural studies, I analyze the autobiographies of magicians, the literature on magic published during the period in question, and contemporary press. I approach the history of magic from three different perspectives: magic as a branch of show business, magic as a cultural phenomenon, and magic as a type of performing art. It allowed me to create a detailed account of magic as a social, cultural and artistic phenomenon.
I argue that magic became a highly influential cultural phenomenon of the late 19th- early 20th centuries in Great Britain that represented the idea of real magic on stage. Magic shows reflected a complex relationship between rational and magical thinking that existed in society and produced narratives about science and the supernatural.
Moreover, very few studies have focused on the question of defining magic as an art form. In the thesis, I analyzed the theoretical works on magic written by magicians and developed a framework for further research on magic from the perspective of the history of art.
This paper reports on Monte Carlo simulation results for future measurements of the moduli of time-like proton electromagnetic form factors, |GE | and |GM|, using the ¯pp → μ+μ− reaction at PANDA (FAIR). The electromagnetic form factors are fundamental quantities parameterizing the electric and magnetic structure of hadrons. This work estimates the statistical and total accuracy with which the form factors can be measured at PANDA, using an analysis of simulated data within the PandaRoot software framework. The most crucial background channel is ¯pp → π+π−,due to the very similar behavior of muons and pions in the detector. The suppression factors are evaluated for this and all other relevant background channels at different values of antiproton beam momentum. The signal/background separation is based on a multivariate analysis, using the Boosted Decision Trees method. An expected background subtraction is included in this study, based on realistic angular distribuations of the background contribution. Systematic uncertainties are considered and the relative total uncertainties of the form factor measurements are presented.