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Make Toons That Sell Without Selling Out 10th Anniversary Edition

Karst without Boundaries

Environmental Chemistry of Arsenic

Metal Ions in Biological Systems Volume 43 - Biogeochemical Cycles of Elements

Soil and Climate

Soil and Climate

Climate is a soil-forming factor and soil can mitigate climate change through a reduction in the emissions of greenhouse gases and sequestration of atmospheric CO2. Thus there is a growing interest in soil management practices capable of mitigating climate change and enhancing environmental quality. Soil and Climate addresses global issues through soil management and outlines strategies for advancing Sustainable Development Goals (SDGs). This volume in the Advances in Soil Science series is specifically devoted to describe state-of-the-knowledge regarding the climate–soil nexus in relation to:Soil Processes: weathering decomposition of organic matter erosion leaching salinization biochemical transformations gaseous flux and elemental cycling Soil Properties: physical chemical biological and ecological Atmospheric Chemistry: gaseous concentrations of (CO2 CH4 N2O) water vapors soot dust and particulate matter Mitigation and Adaptation: source and sink of GHGs (CO2 CH4 N2O) land use and soil management soil C sink capacity permafrost Soil Management: sequestration of organic and inorganic C nutrient requirements water demands coupled cycling of H2O N P S andPolicy and Outreach: carbon farming payments for ecosystem services COP21 SDGs land degradation neutrality Special topics on soil as a source or sink of CO2 silicate weathering and carbon sequestration nutrients required for carbon sequestration physical protection and the mean resident time and predicting soil carbon stocks are discussed in detail throughout the book.

GBP 44.99
1

Peatland Biogeochemistry and Watershed Hydrology at the Marcell Experimental Forest

Peatland Biogeochemistry and Watershed Hydrology at the Marcell Experimental Forest

The Marcell Experimental Forest (MEF) in Minnesota serves as a living laboratory and provides scientists with a fundamental understanding of peatland hydrology acid rain impacts nutrient and carbon cycling trace gas emissions and controls on mercury transport in boreal watersheds. Its important role in scientific research continues to grow as the data gathered offers invaluable insight into environmental changes over the last century and goes far in answering many of today’s pressing questions at landscape and global scales. Synthesizing five decades of research Peatland Biogeochemistry and Watershed Hydrology at the Marcell Experimental Forest includes hundreds of research publications dozens of graduate theses and even some previously unpublished studies. Research at the MEF has been at the forefront of many scientific disciplines and these 15 chapters offer the depth and breadth of long-term studies on hydrology biogeochemistry ecology and forest management on peatland watersheds at the MEF. Focusing on peatlands lakes and upland landscapes the book begins with the pioneering research on hydrology done during the 1960s. It presents the innovative 1970’s studies of atmospheric deposition; the 1980’s research into nutrient cycles including carbon nitrogen and methane emissions; and the 1990’s investigations into mercury deposition. The book concludes with a look at the latest and on-going studies such as this century’s research into controls on methylmercury production and landscape-level carbon storage and cycling. Covering 50 years of research and written by a veritable who’s who in peatland and forestry science this important milestone in the collection of ecological data highlights bright prospects for future research including the continuation of existing long-term measurements the initiation of new monitoring programs and plans for unprecedented studies on climate change.

GBP 69.99
1

Manual for Bryophytes Morphotaxonomy Diversity Spore Germination Conservation

Biogeochemistry of Wetlands Science and Applications

Biogeochemistry of Wetlands Science and Applications

The globally important nature of wetland ecosystems has led to their increased protection and restoration as well as their use in engineered systems. Underpinning the beneficial functions of wetlands are a unique suite of physical chemical and biological processes that regulate elemental cycling in soils and the water column. This book provides an in-depth coverage of these wetland biogeochemical processes related to the cycling of macroelements including carbon nitrogen phosphorus and sulfur secondary and trace elements and toxic organic compounds. In this synthesis the authors combine more than 100 years of experience studying wetlands and biogeochemistry to look inside the black box of elemental transformations in wetland ecosystems. This new edition is updated throughout to include more topics and provide an integrated view of the coupled nature of biogeochemical cycles in wetland systems. The influence of the elemental cycles is discussed at a range of scales in the context of environmental change including climate sea level rise and water quality. Frequent examples of key methods and major case studies are also included to help the reader extend the basic theories for application in their own system. Some of the major topics discussed are: Flooded soil and sediment characteristics Aerobic-anaerobic interfaces Redox chemistry in flooded soil and sediment systems Anaerobic microbial metabolism Plant adaptations to reducing conditions Regulators of organic matter decomposition and accretion Major nutrient sources and sinks Greenhouse gas production and emission Elemental flux processes Remediation of contaminated soils and sediments Coupled C-N-P-S processes Consequences of environmental change in wetlands# The book provides the foundation for a basic understanding of key biogeochemical processes and its applications to solve real world problems. It is detailed but also assists the reader with box inserts artfully designed diagrams and summary tables all supported by numerous current references. This book is an excellent resource for senior undergraduates and graduate students studying ecosystem biogeochemistry with a focus in wetlands and aquatic systems. | Biogeochemistry of Wetlands Science and Applications

GBP 140.00
1

Ehrlich's Geomicrobiology

Electronics in Textiles and Clothing Design Products and Applications

Electronics in Textiles and Clothing Design Products and Applications

Electronics in Textiles and Clothing: Design Products and Applications covers the fundamentals of electronics and their applications in textiles and clothing product development. The book emphasizes the interface between electronics and textile materials detailing diverse methods and techniques used in industrial practice. It explores ways to integrate textile materials with electronics for communicating/signal transferring applications. It also discusses wearable electronic products for industrial applications based on functional properties and end users in sectors such as defense medicine health monitoring and security. The book details the application of wearable electronics and outlines the textile fibres used for wearable electronics. It includes coverage of different yarn types and fabric production techniques and modifications needed on conventional machines for developing fabrics using specialty yarns. The coverage includes problems faced during the production processes and their solutions. Novel sensors specialty yarns Body Sensor Networks (BSN) and the development of flexible solar tents used for power generation round out the coverage. The book then concludes with discussions of the development of fabric-integrated wearable electronic products for use in mobihealth care systems smart cloth for ambulatory remote monitoring electronic jerkin heating gloves and pneumatic gloves. Based mainly on the authors’ projects and field work the book takes a practical approach to the issues involved in designing electronic circuits and their possibilities for signals giving you an understanding of problems that can occur when executing the work. It also describes the future scope of e-textiles using conductive materials for medical healthcare textile product development and safety aspects. The text provides guidelines for the development of wearable textiles giving a new meaning to the term human-machine symbiosis in the context of pervasive/invisible computing. | Electronics in Textiles and Clothing Design Products and Applications

GBP 44.99
1

Avoiding Inelastic Strains in Solder Joint Interconnections of IC Devices

Avoiding Inelastic Strains in Solder Joint Interconnections of IC Devices

Avoiding Inelastic Strains in Solder Joint Interconnections of IC Devices addresses analytical (mathematical) modeling approaches aimed at understanding the underlying physics and mechanics of the behavior and performance of solder materials and solder joint interconnections of IC devices. The emphasis is on design for reliability including probabilistic predictions of the solder lifetime. Describes how to use the developed methods of analytical predictive modeling to minimize thermal stresses and strains in solder joint of IC devices Shows how to build the preprocessing models in finite-element analyses (FEA) by comparing the FEA and analytical data Covers how to design the most effective test vehicles for testing solder joints Details how to design and organize in addition to or sometimes even instead of highly accelerated life tests (HALT) highly focused and highly cost-effective failure oriented accelerated testing (FOAT) to understand the physic of failure of solder joint interconnections Outlines how to convert the low cycle fatigue conditions into elastic fatigue conditions and to assess the fatigue lifetime in such cases Illustrates ways to replace time- and labor-consuming expensive and possibly misleading temperature cycling tests with simpler and physically meaningful accelerated tests This book is aimed towards professionals in electronic and photonic packaging electronic and optical materials materials engineering and mechanical design.

GBP 140.00
1

Urban Soils

The Metabolism of Arsenite

The Metabolism of Arsenite

Up to 200 million people in 70 countries are at risk from drinking water contaminated with arsenic which is a major cause of chronic debilitating illnesses and fatal cancers. Until recently little was known about the mobility of arsenic and how redox transformations determined its movement into or out of water supplies. Although human activities contribute to the release of arsenic from minerals it is now clear that bacteria are responsible for most of the redox transformation of arsenic in the environment. Bacterial oxidation of arsenite (to the less mobile arsenate) has been known since 1918 but it was not until 2000 that a bacterium was shown to gain energy from this process. Since then a wide range of arsenite-oxidizing bacteria have been isolated including aerobes and anaerobes; heterotrophs and autotrophs; thermophiles mesophiles and psychrophiles. This book reviews recent advances in the study of such bacteria. After a section on background—geology and health issues—the main body of the book concerns the cellular machinery of arsenite oxidation. It concludes by examining possible applications. Topics treated are: The geology and cycling of arsenic Arsenic and disease Arsenite oxidation: physiology enzymes genes and gene regulation. Community genomics and functioning and the evolution of arsenite oxidation Microbial arsenite oxidation in bioremediation Biosensors for arsenic in drinking water and industrial effluents | The Metabolism of Arsenite

GBP 69.99
1

Agroecology Ecosystems and Sustainability

Agroecology Ecosystems and Sustainability

We hear a lot about how agriculture affects climate change and other environmental issues but we hear little about how these issues affect agriculture. When we look at both sides of the issues we can develop better solutions for sustainable agriculture without adversely affecting the environment. Agroecology Ecosystems and Sustainability explores a modern vision of ecology and agricultural systems so that crop production can be sustainably developed without further environmental degradation. With contributions from experts from more than 20 countries the book describes how to make the transition to modern agroecology to help the environment. It examines the global availability of natural resources and how agroecology could allow the world population to reach the goal of global sustainable ecological agricultural and food production systems. The book discusses important principles that regulate agroecological systems including crop production soil management and environment preservation. Making the link between theory and practices the book includes examples of agroecology such as an interdisciplinary framework for the management of integrated production and conservation landscapes and the use of mechanized rain-fed farming and its ecological impact on drylands. An examination of how ecology and agriculture can be allied to ensure food production and security without threatening our environment the text shows you how natural resources can be used in a manner to create a symbiosis to preserve ecological systems and develop agriculture.

GBP 48.99
1

Non-Equilibrium Air Plasmas at Atmospheric Pressure

The Road to Einstein's Relativity Following in the Footsteps of the Giants

Insects and Society

Insects and Society

Recommended in CHOICE February 2021 Insects are all around us outweighing humanity by 17 times. Many are nuisances; they compete with us for food and carry some of our most devastating diseases. Many common pests have been transported worldwide by humans. Yet some recent reports suggest dramatic declines in some important groups such as pollinators and detritivores. Should we care? Yes we should. Without insect pollinators we’d lose 35% of our global food production; without detritivores we would be buried in un-decayed refuse. Insects are also critical sources for nutritional medical and industrial products. A world without insects would seem a very different and unpleasant place. So why do insects inspire such fear and loathing? This concise full-color text challenges many entrenched perceptions about insect effects on our lives. Beginning with a summary of insect biology and ecology that affect their interactions with other organisms it goes on to describe the various positive and negative ways in which insects and humans interact. The final chapters describe factors that affect insect abundance and approaches to managing insects that balance their impacts. The first textbook to cater directly to those studying Insect and Society or Insect Ecology modules this book will also be fascinating reading for anyone interested in learning how insects affect human affairs and in applying more sustainable approaches to managing insects. This includes K-12 teachers undergraduate students amateur entomologists conservation practitioners environmentalists as well as natural resource managers land use planners and environmental policy makers. | Insects and Society

GBP 49.99
1

Learning Electrocardiography A Complete Course

Arbuscular Mycorrhizal Fungi For Nutrient Abiotic and Biotic Stress Management in Rice