Volker Schlöndorff’s Cinema: Adaptation, Politics and the “Movie-Appropriate”examines the work of major postwar Germandirector Volker Schlöndorff in historical, economic, and artistic contexts. . In spite of Schlöndorff’s successes with films like The Lost Honor ofKatharina Blum and The Tin Drum, as well as his acclaimed work in the U.S. with Death of a Salesman, Gathering of Old Men and The Handmaid’s Tale, this is the first in-depthcritical study of the filmmaker’s career.
In The Deuteronomist’s History, Hans Ausloos provides for the first time a detailed status quaestionis concerning the relationship between the books Genesis–Numbers and the so-called Deuteronom(ist)ic literature. After a presentation of the origins of the 18th and 19th century hypothesis of a Deuteronom(ist)ic redaction, specific attention is paid to the argumentation used during the last century. Particular interest also is paid to the concept of the proto-Deuteronomist and the mostly tentative approaches of the Deuteronom(ist)ic ‘redaction’ of the Pentateuch during the last decades. The book concludes with a critical review and preview of the Deuteronom(ist)ic problem. Each phase in the Deuteronomist’s history is illustrated on the basis of the epilogue of the Book of the Covenant (Exod. 23:20-33).
Werner Heisenberg is one of the greatest scientists of our century. His work extends over a period of fifty years, ranging from turbulence theory, the establishment of quantum mechanics, its fundamental applications in atomic and solid state physics, to the theory of cosmic ray phenomena and of elementary particles. He recognized early the epistemological significance of the new discoveries. He was able to place the radical changes in the foundation of physics of this century in the historical context of natural philosophy. His thoughts on language as the medium to grasp scientific truth, artistic truth, religious truth, truth in general, reached many auditors and readers, scientists as well as non-scientists. In the 75 years of his life the political and social structure of his home country, of Europe and the world over underwent drastic changes. He grew up in Imperial Germany, made his great contributions to quantum mechanics during the period of the Weimar Republic and was engaged in nuclear physics when the potentates of the Third Reich tried to discredit relativity and quantum theory as "degenerate" science; in World War II he participated in the German effort to develop a nuclear reactor. After the war, he devoted himself mainly to the physics of elementary particles. In addition, he acted in many official capacities: for the promotion of research, the reconstruction of science in the Federal Republic of Germany, and the advancement of international collabora tion.
This open access book presents a structural model and an associated test instrument designed to provide a detailed analysis of professional competences for teaching mathematical modelling. The conceptualisation is based on the COACTIV model, which describes aspects, areas and facets of professional competences of teachers. The manual provides an overview of the essential teaching skills in application-related contexts and offers the tools needed to capture these aspects. It discusses the objectives and application areas of the instrument, as well as the development of the test. In addition, it describes the implementation and evaluates the quality and results of the structural equation analysis of the model. Teaching mathematical modelling is a cognitively challenging activity for (prospective) teachers. Thus, teacher education requires a detailed analysis of professional competence for teaching mathematical modelling. Measuring this competence requires theoretical models that accurately describe requirements placed upon teachers, as well as appropriate evaluation tools that adequately capture skills and abilities in this field. This book presents an instrument that measures the professional competences in a sample of 349 prospective teachers.
No century in modern European history has built monuments with more enthusiasm than the 19th. Of the hundreds of monuments erected, those which sprang from a nation-wide initiative and addressed themselves to a nation, rather than part of a nation, we may call national monuments. Nelson's Column in London or the Arc de Triomphe in Paris are obvious examples. In Germany the 19th century witnessed a veritable flood of monuments, many of which rank as national monuments. These reflected and contributed to a developing sense of national identity and the search for national unity; they also document an unsuccessful effort to create a «genuinely German» style. They constitute a historical record, quite apart from aesthetic appeal or ideological message. As this historical record is examined, German national monuments of the 19th century are described and interpreted against the background of the nationalism which gave birth to them.
The main goal of this book is to elucidate what kind of experiment must be performed in order to determine the full set of independent parameters which can be extracted and calculated from theory, where electrons, photons, atoms, ions, molecules, or molecular ions may serve as the interacting constituents of matter. The feasibility of such perfect' and-or `complete' experiments, providing the complete quantum mechanical knowledge of the process, is associated with the enormous potential of modern research techniques, both, in experiment and theory. It is even difficult to overestimate the role of theory in setting of the complete experiment, starting with the fact that an experiment can be complete only within a certain theoretical framework, and ending with the direct prescription of what, and in what conditions should be measured to make the experiment `complete'. The language of the related theory is the language of quantum mechanical amplitudes and their relative phases. This book captures the spirit of research in the direction of the complete experiment in atomic and molecular physics, considering some of the basic quantum processes: scattering, Auger decay and photo-ionization. It includes a description of the experimental methods used to realize, step by step, the complete experiment up to the level of the amplitudes and phases. The corresponding arsenal includes, beyond determining the total cross section, the observation of angle and spin resolved quantities, photon polarization and correlation parameters, measurements applying coincidence techniques, preparing initially polarized targets, and even more sophisticated methods. The `complete' experiment is, until today, hardly to perform. Therefore, much attention is paid to the results of state-of-the-art experiments providing detailed information on the process, and their comparison to the related theoretical approaches, just to mention relativistic multi-configurational Dirac-Fock, convergent close-coupling, Breit-Pauli R-matrix, or relativistic distorted wave approaches, as well as Green's operator methods. This book has been written in honor of Herbert Walther and his major contribution to the field but even to stimulate advanced Bachelor and Master students by demonstrating that obviously nowadays atomic and molecular scattering physics yields and gives a much exciting appreciation for further advancing the field.
This book covers key concepts of cryptography, from encryption and digital signatures to cryptographic protocols, presenting techniques and protocols for key exchange, user ID, electronic elections and digital cash. Advanced topics include bit security of one-way functions and computationally perfect pseudorandom bit generators. Assuming no special background in mathematics, it includes chapter-ending exercises and the necessary algebra, number theory and probability theory in the appendix. This edition offers new material including a complete description of the AES, a section on cryptographic hash functions, new material on random oracle proofs, and a new section on public-key encryption schemes that are provably secure against adaptively-chosen-ciphertext attacks.
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