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The fourth edition of Design of Structural Elements: Concrete,
Steelwork, Masonry and Timber Designs to Eurocodes is a concise
single-volume introduction to the design of structural elements in
concrete, steel, timber, masonry and composites. It provides design
principles and guidance in line with Eurocodes, current as of 2021.
Topics include the philosophy of design, sustainable development,
basic structural concepts, and material properties. After an
overview of structural design, the book contains self-contained
chapters with numerous diagrams and worked examples on design in
reinforced concrete, structural steelwork and steel/concrete
composites, masonry and timber based on EN 1990-1997. Selected
extracts from these publications assist familiarity. Elements
considered cover reinforced concrete and composite floors, isolated
foundation, cantilever retaining wall, load-bearing and panel
walls, stud wall and connections. The text is ideal for student
civil and structural engineers on degree and diploma courses, and
also practising civil and structural engineers and other built
environment professions. The online Support Materials for adopting
course instructors includes an extensive set of solutions to the
problems in the book and PowerPoint slides for use in lectures:
www.routledge.com/9781032076317.
The fourth edition of Design of Structural Elements: Concrete,
Steelwork, Masonry and Timber Designs to Eurocodes is a concise
single-volume introduction to the design of structural elements in
concrete, steel, timber, masonry and composites. It provides design
principles and guidance in line with Eurocodes, current as of 2021.
Topics include the philosophy of design, sustainable development,
basic structural concepts, and material properties. After an
overview of structural design, the book contains self-contained
chapters with numerous diagrams and worked examples on design in
reinforced concrete, structural steelwork and steel/concrete
composites, masonry and timber based on EN 1990-1997. Selected
extracts from these publications assist familiarity. Elements
considered cover reinforced concrete and composite floors, isolated
foundation, cantilever retaining wall, load-bearing and panel
walls, stud wall and connections. The text is ideal for student
civil and structural engineers on degree and diploma courses, and
also practising civil and structural engineers and other built
environment professions. The online Support Materials for adopting
course instructors includes an extensive set of solutions to the
problems in the book and PowerPoint slides for use in lectures:
www.routledge.com/9781032076317.
This book focuses on the utilization of bio-resources and their
conversion pathways for a sustainable future. Tapping into
bio-resources by means of thermochemical and biochemical processes
has attracted researchers from all over the world; it is a broad
area that has given birth to concepts like the biorefinery, as well
as a new stream known as biotechnology. Its scope includes
biochemical and microbiological engineering, biocatalysis and
biotransformation, biosynthesis and metabolic engineering,
bioprocess and biosystem engineering, bioenergy and biorefineries,
cell culture and biomedical engineering, food, agricultural and
marine biotechnology, bioseparation and biopurification
engineering, bioremediation and environmental biotechnology, etc.
The book discusses a host of new technologies now being used to tap
these resources with innovative bioprocesses. All chapters are
based on outstanding research papers selected for and presented at
the IconSWM 2018 conference.
Provision of water, food, energy, and shelter throughout the world
were integrated with bio-systems and was a sustainable approach for
the management of organic wastes as well as in the past. Increased
urbanisation an dependence on mechanical technologies coupled with
lifestyle changes and market driven economic centralism is
consuming resources in unsustainable ways. This urban-lifestyle and
commercial activity is often unconnected with surrounding
ecosystems and bio-systems. In questioning the sustainability of
lifestyle and commercial activities old approaches have been
reassessed and refined. Development of decentralised technologies
that mimic bio-systems have led to real commercial gains without
sacrificing a sustainable approach. Decentralised approa-systems
guarantee innovation. The use of bio-systems and models derived
from them can have real benefit to the environment and to the
economy. The papers in this book will be of interest to academics,
industries, policy makers and community workers who are worrying on
several aspects of utilising bio-systems and making it sustainable.
The topics discussed in this book are mainly on the technologies
related to the management of bio-systems.
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