Search results for ""Author Liang Wang""
Harvard University Press New Geographies, 12: Commons
The commons as a contested political idea has been continually articulated and reproduced in many disciplines and in relation to specific historical and geographical contexts. Since the 1960s, the concept of commons has started to play an increasingly important role in the field of urban studies. While commons are usually perceived as the material spaces of the city such as streets, parks, public spaces, etc., they are also perceived as the immaterial public realm—including subaltern and mainstream culture, knowledge, language, and modes of sociality. As the commoning process continuously involves the substance of urban spaces, be it physical or virtual, the concept of commons has actively contributed to reshaping spatial imaginaries such as urban islands, archipelagos, and thresholds.This issue of New Geographies proposes the concept of commons as a mode of thinking that challenges assumptions in the design disciplines such as public and private spaces, local and regional geographies, and capital and state interventions. It expands the production of space as the commons into a planetary territory all the way from the intimate and subjective scale of the body to the connected material and immaterial spaces. In doing so, NG 12 aims to foreground the significance of political thinking in the process of space production, and invites to imagine alternative social relations and modes of urbanization.
£24.26
APress Architecture of Advanced Numerical Analysis Systems: Designing a Scientific Computing System using OCaml
This unique open access book applies the functional OCaml programming language to numerical or computational weighted data science, engineering, and scientific applications. This book is based on the authors' first-hand experience building and maintaining Owl, an OCaml-based numerical computing library. You'll first learn the various components in a modern numerical computation library. Then, you will learn how these components are designed and built up and how to optimize their performance. After reading and using this book, you'll have the knowledge required to design and build real-world complex systems that effectively leverage the advantages of the OCaml functional programming language. What You Will Learn Optimize core operations based on N-dimensional arrays Design and implement an industry-level algorithmic differentiation module Implement mathematical optimization, regression, and deep neural network functionalities based on algorithmic differentiation Design and optimize a computation graph module, and understand the benefits it brings to the numerical computing library Accommodate the growing number of hardware accelerators (e.g. GPU, TPU) and execution backends (e.g. web browser, unikernel) of numerical computation Use the Zoo system for efficient scripting, code sharing, service deployment, and composition Design and implement a distributed computing engine to work with a numerical computing library, providing convenient APIs and high performance Who This Book Is For Those with prior programming experience, especially with the OCaml programming language, or with scientific computing experience who may be new to OCaml. Most importantly, it is for those who are eager to understand not only how to use something, but also how it is built up.
£40.49
John Wiley & Sons Inc Nanoporous Catalysts for Biomass Conversion
A comprehensive introduction to the design, synthesis, characterization, and catalytic properties of nanoporous catalysts for the biomass conversion With the specter of peak oil demand looming on the horizon, and mounting concerns over the environmental impact of greenhouse gas emissions, biomass has taken on a prominent role as a sustainable alternative fuel source. One critical aspect of the biomass challenge is the development of novel catalytic materials for effective and controllable biomass conversion. Edited by two scientists recognized internationally for their pioneering work in the field, this book focuses on nanoporous catalysts, the most promising class of catalytic materials for the conversion of biomass into fuel and other products. Although various catalysts have been used in the conversion of biomass-derived feedstocks, nanoporous catalysts exhibit high catalytic activities and/or unique product selectivities due to their large surface area, open nanopores, and highly dispersed active sites. This book covers an array of nanoporous catalysts currently in use for biomass conversion, including resins, metal oxides, carbons, mesoporous silicates, polydivinylbenzene, and zeolites. The authors summarize the design, synthesis, characterization and catalytic properties of these nanoporous catalysts for biomass conversions, discussing the features of these catalysts and considering future opportunities for developing more efficient catalysts. Topics covered include: Resins for biomass conversion Supported metal oxides/sulfides for biomass oxidation and hydrogenation Nanoporous metal oxides Ordered mesoporous silica-based catalysts Sulfonated carbon catalysts Porous polydivinylbenzene Aluminosilicate zeolites for bio-oil upgrading Rice straw Hydrogenation for sugar conversion Lignin depolymerization Timely, authoritative, and comprehensive, Nanoporous Catalysts for Biomass Conversion is a valuable working resource for academic researchers, industrial scientists and graduate students working in the fields of biomass conversion, catalysis, materials science, green and sustainable chemistry, and chemical/process engineering.
£130.95