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- Fact boxes on every spread highlight fascinating information and key concepts. - Hands-on activities in every volume allow students to use science to understand natural phenomena. - A glossary in every volume. - Key content words appear in boldface in the main text and are defined in the glossary. - An index in every volume. Titles include: Forces of Nature Blizzards Droughts Earthquakes Forest Fires Floods Heat Waves Hurricanes, Typhoons, & Other Tropical Cyclones Ice Storms Landslides, Mudslides, & Avalanches Pandemics Thunderstorms Tornadoes Tsunamis and Seiches Volcanoes
Assessment of risk and uncertainty is crucial for natural hazard risk management, facilitating risk communication and informing strategies to successfully mitigate our society's vulnerability to natural disasters. Written by some of the world's leading experts, this book provides a state-of-the-art overview of risk and uncertainty assessment in natural hazards. It presents the core statistical concepts using clearly defined terminology applicable across all types of natural hazards and addresses the full range of sources of uncertainty, the role of expert judgement and the practice of uncertainty elicitation. The core of the book provides detailed coverage of all the main hazard types and concluding chapters address the wider societal context of risk management. This is an invaluable compendium for academic researchers and professionals working in the fields of natural hazards science, risk assessment and management and environmental science, and will be of interest to anyone involved in natural hazards policy.
Students learn about notable natural disasters, both recent and in the distant past. These books will encourage classroom discussion of natural disasters, the science behind them, and how societies cope with them.
Discusses, in graphic novel format, avalanches and landslides that have occurred through time and what steps are taken to control them and reduce their effects.
This book takes a thrilling look at an avalanche in Washington State that buried two trains and killed ninety-six people; a landslide in Peru that sent millions of tons of rock and ice cascading at 60 mph down a mountainside, destroying villages in its path; and a mudslide in the Philippines that destroyed a village on the island of Leyte. The combination of a graphic nonfiction format with the high-interest topic of avalanches is perfect for your reluctant readers.
"A discussion of major types of natural disaster, including descriptions of some of the most destructive; explanations of these phenomena, what causes them, and where they occur; and information about how to prepare for and survive these forces of nature. Features include an activity, glossary, list of resources, and index"--Provided by publisher.
"A discussion of major types of natural disaster, including descriptions of some of the most destructive; explanations of these phenomena, what causes them, and where they occur; and information about how to prepare for and survive these forces of nature. Features include an activity, glossary, list of resources, and index"--Provided by publisher.
When landslides and avalanches happen, they leave a trail of destruction in their paths. Readers get a front row seat to these natural disasters and learn how they affect wildlife, plant life, and humans. Essential earth science topics are made accessible through this engaging and educational look at two natural disasters that can drastically change the way the earth looks. Intense, full-color photographs add a thrilling element to this exploration of earth science, and informative fact boxes and helpful diagrams are also included to deepen readers' understanding of dangerous landslides and avalanches.
Presents information about landslides and avalanches, including their causes, their aftereffects, rescue efforts, and case studies of actual past disasters caused by them.
This volume brings together, from a wide range of experience, such information as may be useful in recognizing, avoiding, controlling, designing for, and correcting movement. Current geologic concepts and engineering principles and techniques are introduced, and both the analysis and control of soil and rock-slopes are addressed. New methods of stability analysis and the use of computer techniques in implementing these methods are included. Rock slope engineering and the selecting of shear-strength parameters for slope-stability analyses are covered in separate chapters.