Scatter 2


Book Description

This book deconstructs the whole lineage of political philosophy, showing the ways democracy abuts and regularly undermines the sovereignist tradition across a range of texts from the Iliad to contemporary philosophy. Politics is an object of perennial difficulty for philosophy—as recalcitrant to philosophical mastery as is philosophy’s traditional adversary, poetry. That difficulty makes it an attractive topic for any deconstructive approach to the tradition from which we inherit our language and our concepts. Scatter 2 pursues that deconstruction, often starting with, and sometimes departing from, the work of Jacques Derrida by attending to the concepts of sovereignty on the one hand and democracy on the other. The book begins by following the fate of a line from Homer’s Iliad, where Odysseus asserts that “the rule of many is no good thing, let there be one ruler, one king.” The line, Bennington shows, is quoted, misquoted, and progressively Christianized by Aristotle, Philo Judaeus, Suetonius, the early Church Fathers, Aquinas, Dante, Ockham, Marsilius of Padua, Jean Bodin, Etienne de la Boétie, up to Carl Schmitt and Erik Peterson, and even one of the defendants at the Nuremberg trials, before being discussed by Derrida himself. In the book’s second half, Bennington begins again with Plato and Aristotle and tracks the concept of democracy as it regularly abuts and undermines that sovereignist tradition. In detailed readings of Hobbes and Rousseau, Bennington develops a notion of “proto-democracy” as a possible name for the scatter that underlies and drives the political as such and that will always prevent politics from achieving its aim of bringing itself to an end.




The Brunonian


Book Description




‘A Mersshy Contree Called Holdernesse’: Excavations on the Route of a National Grid Pipeline in Holderness, East Yorkshire


Book Description

Presents the results of excavations along the route of a national grid pipeline in Holderness, East Yorkshire shedding light on rural life in the claylands to the east of the Yorkshire Wolds, from the Mesolithic to the Iron Age and Roman periods, and beyond.













Interfacial Engineering in Functional Materials for Dye-Sensitized Solar Cells


Book Description

Offers an Interdisciplinary approach to the engineering of functional materials for efficient solar cell technology Written by a collection of experts in the field of solar cell technology, this book focuses on the engineering of a variety of functional materials for improving photoanode efficiency of dye-sensitized solar cells (DSSC). The first two chapters describe operation principles of DSSC, charge transfer dynamics, as well as challenges and solutions for improving DSSCs. The remaining chapters focus on interfacial engineering of functional materials at the photoanode surface to create greater output efficiency. Interfacial Engineering in Functional Materials for Dye-Sensitized Solar Cells begins by introducing readers to the history, configuration, components, and working principles of DSSC It then goes on to cover both nanoarchitectures and light scattering materials as photoanode. Function of compact (blocking) layer in the photoanode and of TiCl4 post-treatment in the photoanode are examined at next. Next two chapters look at photoanode function of doped semiconductors and binary semiconductor metal oxides. Other chapters consider nanocomposites, namely, plasmonic nanocomposites, carbon nanotube based nanocomposites, graphene based nanocomposites, and graphite carbon nitride based nanocompositesas photoanodes. The book: Provides comprehensive coverage of the fundamentals through the applications of DSSC Encompasses topics on various functional materials for DSSC technology Focuses on the novel design and application of materials in DSSC, to develop more efficient renewable energy sources Is useful for material scientists, engineers, physicists, and chemists interested in functional materials for the design of efficient solar cells Interfacial Engineering in Functional Materials for Dye-Sensitized Solar Cells will be of great benefit to graduate students, researchers and engineers, who work in the multi-disciplinary areas of material science, engineering, physics, and chemistry.




Health Physics in the Healing Arts


Book Description







Statistics and Data Visualization in Climate Science with R and Python


Book Description

A comprehensive overview of essential statistical concepts, useful statistical methods, data visualization, and modern computing tools for the climate sciences and many others such as geography and environmental engineering. It is an invaluable reference for students and researchers in climatology and its connected fields who wish to learn data science, statistics, R and Python programming. The examples and exercises in the book empower readers to work on real climate data from station observations, remote sensing and simulated results. For example, students can use R or Python code to read and plot the global warming data and the global precipitation data in netCDF, csv, txt, or JSON; and compute and interpret empirical orthogonal functions. The book's computer code and real-world data allow readers to fully utilize the modern computing technology and updated datasets. Online supplementary resources include R code and Python code, data files, figure files, tutorials, slides and sample syllabi.