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Rock surfaces provide a challenging habitat for a broad diversity of micro- or small-sized organisms. They interact with each other forming complex communities as well with their substrate causing biodeterioration of rock. Extreme fluctuation in light, temperature and hydration are the main factors that determine the rock surface habitats. The habitat includes epilithic organisms which thrive on the surface without penetrating the rock, endolithic organisms which live just beneath the surface using a thin layer of the rock surface for protection against adverse conditions of the environment (e.g. light protection, storage of water) and chasmo-endolithic organisms which use fractures of the rock surface for a more habitable environment. The book will provide an overview of the various organismal groups, from prokaryotes to vascular plants and arthropods, as well as survey organism-mediated interactions with the rock surface. The latter include biogenic weathering (biogeochemistry, state-of-the art imaging methods), photosynthesis and nitrogen fixation at and inside the rock surface.
Rock surfaces provide a challenging habitat for a broad diversity of micro- or small-sized organisms. They interact with each other forming complex communities as well with their substrate causing biodeterioration of rock. Extreme fluctuation in light, temperature and hydration are the main factors that determine the rock surface habitats. The habitat includes epilithic organisms which thrive on the surface without penetrating the rock, endolithic organisms which live just beneath the surface using a thin layer of the rock surface for protection against adverse conditions of the environment (e.g. light protection, storage of water) and chasmo-endolithic organisms which use fractures of the rock surface for a more habitable environment. The book will provide an overview of the various organismal groups, from prokaryotes to vascular plants and arthropods, as well as survey organism-mediated interactions with the rock surface. The latter include biogenic weathering (biogeochemistry, state-of-the art imaging methods), photosynthesis and nitrogen fixation at and inside the rock surface.
Early readers examine how volcanoes, earthquakes, and erosion change the surface of the Earth.
Drooling fanatic, n. 1. One who drools in the presence of beloved rock stars. 2. Any of a genus of rock-and-roll wannabes/geeks who walk around with songs constantly ringing in their ears, own more than 3,000 albums, and fall in love with at least one record per week. With a life that’s spanned the phonographic era and the digital age, Steve Almond lives to Rawk. Like you, he’s secretly longed to live the life of a rock star, complete with insane talent, famous friends, and hotel rooms to be trashed. Also like you, he’s content (sort of) to live the life of a rabid fan, one who has converted his unrequited desires into a (sort of) noble obsession. Rock and Roll Will Save Your Life traces Almond’s passion from his earliest (and most wretched) rock criticism to his eventual discovery of a music-crazed soul mate and their subsequent production of two little superfans. Along the way, Almond reflects on the delusional power of songs, the awkward mating habits of drooling fanatics, and why Depression Songs actually make us feel so much better. The book also includes: • sometimes drunken interviews with America’s finest songwriters • a recap of the author’s terrifying visit to Graceland while stoned • a vigorous and credibility-shattering endorsement of Styx’s Paradise Theater • recommendations you will often choose to ignore • a reluctant exegesis of the Toto song “Africa” • obnoxious lists sure to piss off rock critics But wait, there’s more. Readers will also be able to listen to a special free mix designed by the author, available online at www.stevenalmond.com, for the express purpose of eliciting your drool. For those about to rock—we salute you!
During geologic spans of time, Earth's shifting tectonic plates, atmosphere, freezing water, thawing ice, flowing rivers, and evolving life have shaped Earth's surface features. The resulting hills, mountains, valleys, and plains shelter ecosystems that interact with all life and provide a record of Earth surface processes that extend back through Earth's history. Despite rapidly growing scientific knowledge of Earth surface interactions, and the increasing availability of new monitoring technologies, there is still little understanding of how these processes generate and degrade landscapes. Landscapes on the Edge identifies nine grand challenges in this emerging field of study and proposes four high-priority research initiatives. The book poses questions about how our planet's past can tell us about its future, how landscapes record climate and tectonics, and how Earth surface science can contribute to developing a sustainable living surface for future generations.
Earth is constantly changing. Wind, water, and even humans change Earth's surface. The land is broken down and worn away by erosion. Introduce students to weathering and erosion with this science reader that features easy-to-read text. Nonfiction text features include a glossary, index, and detailed images to facilitate close reading and help students connect back to the text. Aligned to state and national standards, the book also includes a fun and engaging science experiment to develop critical thinking and help students practice what they have learned.
Full text e-book available as part of the Elsevier ScienceDirect Earth and Planetary Sciences subject collection.
"In this Very Short Introduction Jan Zalasiewicz looks at the structure and diversity of rocks, and the processes by which they form. He describes their formation during the birth of our planet; considers what rocks there might be in Earth's deep mantle and core and on other planets; and shows how humans are creating new rock types today."--
This multi-disciplinary book will cater to students and those who want to have a more critical look behind the scenes of Antarctic science. This book will take a systems approach to providing insights into Antarctic ecosystems and the geophysical environment. Further, the book will link these insights to a discussion of current issues, such as climate change, bio prospecting, environmental management and Antarctic politics. It will be written and edited by experienced Antarctic researchers and scientists from a wide range of disciplines. Academic references will be included for those who wish to delve deeper into the topics discussed in the book.