Wild Mushrooming


Book Description

Fungi are diverse, delicious and sometimes deadly. With interest in foraging for wild food on the rise, learning to accurately identify fungi reduces both poisoning risk to humans and harm to the environment. This extensively illustrated guide takes a 'slow mushrooming' approach – providing the information to correctly identify a few edible species thoroughly, rather than many superficially. Wild Mushrooming: A Guide for Foragers melds scientific and cultural knowledge with stunning photography to present a new way of looking at fungi. It models 'ecological foraging' – an approach based on care, conservation and a deep understanding of ecosystem dynamics. Sections on where, when and how to find fungi guide the forager in the identification of 10 edible species. Diagnostic information on toxic fungi and lookalike species helps to differentiate the desirable from the deadly. Wild Mushrooming then takes us into the kitchen with cooking techniques and 29 recipes from a variety of cuisines that can be adapted for both foraged and cultivated fungi. Developing the skills to find fungi requires slowness, not speed. This guide provides the necessary information for the safe collection of fungi, and is essential reading for fungus enthusiasts, ecologists, conservationists, medical professionals and anyone interested in the natural world.




Mushrooming Without Fear


Book Description

Eight rules of mushroom gathering, color photographs, identification checklist, recipes, advice on handling, and...




Mushrooming with Confidence


Book Description

Picking mushrooms in the woods on a sunny day can be fun for the whole family . . . but only if you do it safely! There are thousands of different species of fungi, so it can be hard to tell which are edible and which are poisonous when you are picking them for yourself in the wild. Safe and unsafe species often closely resemble each other, and worrying about which mushrooms are safe and which might be deadly can take all the fun out of mushrooming. Enter Mushrooming with Confidence! Improving on the usual overwhelming and exhaustive wild plant guidebook, Mushrooming with Confidence is a slim, handy manual that focuses on the tastiest and most common mushrooms, so that you can easily spot those that are not only safe to eat, but also a delight to cook and share! Here mushrooms are divided into four identification categories so that anyone will be able to recognize what he or she is looking at quickly and correctly. Thirty of the most common and delicious types are explained in detail, from the common field mushroom to the pretty purple amethyst deceiver and the prolific and tasty charcoal burner. Each mushroom includes a “Positive ID Checklist” that the reader can go through to be absolutely certain they have the right species, and more than 300 color photographs make it a snap to know exactly what kind of mushroom you’ve found . . . and whether you really want to pick it! With lists of the best tools for mushrooming, the best techniques for getting a mushroom out of the ground in one piece, and even how to remove worms, Mushrooming with Confidence will extinguish any fear or doubt that might stop you from hunting down your own delicious mushrooms. This will prove a fun and essential guide for novice and experienced pickers alike!




Start Mushrooming


Book Description

Get this perfect book for beginners who want to try mushrooming but don't know how to start. It's a unique approach that focuses on six of the most unmistakable edible mushrooms in North America. The content is organized in an easy-to-use layout.




Mushroom’S Mushrooming Business


Book Description

Mushrooms Mushrooming Business is Stephanie Marbellas winning manuscript at the 2011 Tucson Festival of Books Young Writers Competition. The book aims to promote the idea of protecting the earth from pollution. It tells about the importance of keeping the environment clean and safe. This book comes to life with colorful illustrations from the author herself.




Crashworthiness of Composite Thin-Walled Structures


Book Description

FROM THE INTRODUCTION Vehicle crashworthiness has been improving in recent years with attention mainly directed towards reducing the impact of the crash on the passengers. Effort has been spent in experimental research and in establishing safe theoretical design criteria on the mechanics of crumpling, providing to the engineers the ability to design vehicle structures so that the maximum amount of energy will dissipate while the material surrounding the passenger compartment is deformed, thus protecting the people inside. During the last decade the attention given to crashworthiness and crash energy management has been centered on composite structures. The main advantages of fibre reinforced composite materials over more conventional isotropic materials, are the very high specific strengths and specific stiffness which can be achieved. Moreover, with composites, the designer can vary the type of fibre, matrix and fibre orientation to produce composites with proved material properties. Besides the perspective of reduced weight, design flexibility and low fabrication costs, composite materials offer a considerable potential for lightweight energy absorbing structures; these facts attract the attention of the automotive and aircraft industry owing to the increased use of composite materials in various applications, such as frame rails used in the apron construction of a car body and the subfloor of an aircraft, replacing the conventional materials used. Our monograph is intended to provide an introduction to this relatively new topic of structural crashworthiness for professional engineers. It will introduce them to terms and concepts of it and acquaint them with some sources of literature about it. We believe that our survey constitutes a reasonably well-balanced synopsis of the topic.













Joining of Polymer-Metal Hybrid Structures


Book Description

A comprehensive introduction to the concepts of joining technologies for hybrid structures This book introduces the concepts of joining technology for polymer-metal hybrid structures by addressing current and new joining methods. This is achieved by using a balanced approach focusing on the scientific features (structural, physical, chemical, and metallurgical/polymer science phenomena) and engineering properties (mechanical performance, design, applications, etc.) of the currently available and new joining processes. It covers such topics as mechanical fastening, adhesive bonding, advanced joining methods, and statistical analysis in joining technology. Joining of Polymer-Metal Hybrid Structures: Principles and Applications is structured by joining principles, in adhesion-based, mechanical fastened, and direct-assembly methods. The book discusses such recent technologies as friction riveting, friction spot joining and ultrasonic joining. This is used for applications where the original base material characteristics must remain unchanged. Additional sections cover the main principles of statistical analysis in joining technology (illustrated with examples from the field of polymer-metal joining). Joining methods discussed include mechanical fastening (bolting, screwing, riveting, hinges, and fits of polymers and composites), adhesive bonding, and other advanced joining methods (friction staking, laser welding, induction welding, etc.). Provides a combined engineering and scientific approach used to describe principles, properties, and applications of polymer-metal hybrid joints Describes the current developments in design of experiments and statistical analysis in joining technology with emphasis on joining of polymer-metal hybrid structures Covers recent innovations in joining technology of polymer-metal hybrid joints including friction riveting, friction spot joining, friction staking, and ultrasonic joining Principles illustrated by pictures, 3D-schemes, charts, and drawings using examples from the field of polymer-metal joining Joining of Polymer-Metal Hybrid Structures: Principles and Applications will appeal to chemical, polymer, materials, metallurgical, composites, mechanical, process, product, and welding engineers, scientists and students, technicians, and joining process professionals.