No energy to spare? This book is here to help. Readers will discover how cool temperatures help to keep a taiga wet, and the relationship between a taiga animal's wide feet and pressure. Each experiment follows the scientific method, and can be completed in an hour or less. Many experiments also include ideas for more detailed science fair projects.
Explores the physical characteristics, climate, plants and animals of the world's northern coniferous forests, or taigas, details the effect of human activity, and features hands-on projects and information on preservation
Did your readers wait until the last minute to get started? No problem. Each experiment in this book follows the scientific method and can be completed in an hour or less. Readers make a climatogram for a city in the grasslands, experiment to find out why grasslands in the United States have seasons and find out how a prairie wind affects the evaporation of water. Experiments also include ideas for science fair projects in case readers have extra time.
Do your readers wait until the last minute to start their science project? Don't worry, award-winning author Robert Gardner has everyone covered. Most of these experiments about the desert biome can be done in an hour or less. There are also a few longer experiments for the budding scientist and ideas for science fair projects in case readers have more time.
Do your readers wait until the last minute to start their science project? Don't worry, award-winning author Robert Gardner has everyone covered. Each experiment in this book follows the scientific method, and can be completed in an hour or less. Readers will explore leaf anatomy, use a tree's shadow to measure its height, and find out how old that tree is. Most experiments also include ideas for science fair projects, in case readers have more time than they originally thought.
This book sets out a paradigm of experimental geographical ecology and its core—landscape ecology—providing a number of empirical statistical models and ecological geographical concepts developed on the basis of these. It highlights the mechanisms of formation of regional- and local-level landscape-ecological systems, their natural and anthropogenic dynamics, and their evolutionary trends. It presents numerical methods of making landscape-ecological forecasts and assessing forest sustainability, and provides quantitative estimates of local and regional biotic regulation of the carbon cycle according to the scenarios of modern temperature growth and mitigation of warming, set out by the Paris (2015) Agreement on Climate Change. As such, the book will be a useful source of reference for field research, statistical and cartographic processing of the obtained data, mathematical modeling, geoecological interpretation of results, and the creation of theoretical schemes of geosystem analysis. It will appeal to specialists in the fields of geographical ecology, landscape-ecological modeling, and environmental forecasting.
No energy to spare? This book is here to help. Readers will discover how cool temperatures help to keep a taiga wet, and the relationship between a taiga animal's wide feet and pressure. Each experiment follows the scientific method, and can be completed in an hour or less. Many experiments also include ideas for more detailed science fair projects.