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Geochronology and Thermochronology
  • Language: en
  • Pages: 490

Geochronology and Thermochronology

This book is a welcome introduction and reference for users and innovators in geochronology. It provides modern perspectives on the current state-of-the art in most of the principal areas of geochronology and thermochronology, while recognizing that they are changing at a fast pace. It emphasizes fundamentals and systematics, historical perspective, analytical methods, data interpretation, and some applications chosen from the literature. This book complements existing coverage by expanding on those parts of isotope geochemistry that are concerned with dates and rates and insights into Earth and planetary science that come from temporal perspectives. Geochronology and Thermochronology offers...

Perspectives on the Age of the Earth and Why They Matter
  • Language: en
  • Pages: 580

Perspectives on the Age of the Earth and Why They Matter

Polls show almost half of US adults believe that Earth is only 10,000 years old, whereas scientists consider our planet to be 4.56 billion years old. Examining these conflicting views illuminates aspects of the perceived conflict between religion and science, and helps us understand the battles between “evolutionist” and “creationist” advocates. This book examines how we approach knowledge, and how we look at certainty. It disentangles the threads of the traditional knowledge we are taught from the knowledge we gain from our own investigation of truth. It argues that nature, the basis of science, and scripture, the basis of religion, derive from a single source. Because of their shar...

Petrochronology
  • Language: en
  • Pages: 596

Petrochronology

Petrochronology is a rapidly emerging branch of Earth science that links time (ages or rates) with specific rock-forming processes and their physical conditions. It is founded in petrology and geochemistry, which define a petrogenetic context or delimit a specific process, to which chronometric data are then linked. This combination informs Earth’s petrogenetic processes better than petrology or geochronology alone. This volume and the accompanying short courses address three broad categories of inquiry. Conceptual approaches chapters include petrologic modeling of multi-component chemical and mineralogic systems, and development of methods that include diffusive alteration of mineral chem...

Deciphering Earth's History: the Practice of Stratigraphy
  • Language: en
  • Pages: 71

Deciphering Earth's History: the Practice of Stratigraphy

Stratigraphy allows us to establish and communicate the timings for the course of Earth history and provides the means to determine the duration and rates of Earth processes. Deciphering Earth’s History: the Practice of Stratigraphy focuses on how to apply the wide spectrum of stratigraphical techniques. It also explains how these techniques can be integrated and details their individual strengths and limitations. Chapters are laid out in a step-by-step style, guiding the reader through a recommended approach and explaining the factors to be considered. The methods are illustrated with flow charts, marginal top tips, checklists, worked examples and over 200 figures. Authors from academia, ...

Under a Crimson Sun
  • Language: en
  • Pages: 331

Under a Crimson Sun

Gliese 581 is a red dwarf star some 20.3 light years from Earth. Red dwarfs are among the most numerous stars in the galaxy, and they sport diverse planetary systems. At magnitude 10, Gliese 581 is visible to amateur observers but does not stand out. So what makes this star so important? It is that professional observers have confirmed that it has at least four planets orbiting it, and in 2009, Planet d was described in the letters of The Astrophysical Journal as “the first confirmed exoplanet that could support Earth-like life.” Under a Crimson Sun looks at the nature of red dwarf systems such as Gliese as potential homes for life. Realistically, what are prospects for life on these dis...

A Vision for NSF Earth Sciences 2020-2030
  • Language: en
  • Pages: 145

A Vision for NSF Earth Sciences 2020-2030

The Earth system functions and connects in unexpected ways - from the microscopic interactions of bacteria and rocks to the macro-scale processes that build and erode mountains and regulate Earth's climate. Efforts to study Earth's intertwined processes are made even more pertinent and urgent by the need to understand how the Earth can continue to sustain both civilization and the planet's biodiversity. A Vision for NSF Earth Sciences 2020-2030: Earth in Time provides recommendations to help the National Science Foundation plan and support the next decade of Earth science research, focusing on research priorities, infrastructure and facilities, and partnerships. This report presents a compelling and vibrant vision of the future of Earth science research.

Tropical Arctic
  • Language: en
  • Pages: 153

Tropical Arctic

A journey into the past -- Forests of a lost landscape -- Crisis and collapse -- Recovery of a tropical Arctic.

Treatise on Geochemistry
  • Language: en
  • Pages: 14787

Treatise on Geochemistry

  • Type: Book
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  • Published: 2013-10-19
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  • Publisher: Newnes

This extensively updated new edition of the widely acclaimed Treatise on Geochemistry has increased its coverage beyond the wide range of geochemical subject areas in the first edition, with five new volumes which include: the history of the atmosphere, geochemistry of mineral deposits, archaeology and anthropology, organic geochemistry and analytical geochemistry. In addition, the original Volume 1 on "Meteorites, Comets, and Planets" was expanded into two separate volumes dealing with meteorites and planets, respectively. These additions increased the number of volumes in the Treatise from 9 to 15 with the index/appendices volume remaining as the last volume (Volume 16). Each of the origin...

From the Guajira Desert to the Apennines, and from Mediterranean Microplates to the Mexican Killer Asteroid
  • Language: en
  • Pages: 618

From the Guajira Desert to the Apennines, and from Mediterranean Microplates to the Mexican Killer Asteroid

"This volume pays tribute to the career and scientific accomplishments of Walter Alvarez with papers related to the many topics he has covered: tectonics of microplates, structural geology, paleomagnetics, Apennine sedimentary sequences, geoarchaeology and Roman volcanics, Big History, and the discovery of evidence for a large asteroidal impact event at the Cretaceous-Tertiary (now Cretaceous-Paleogene) boundary site in Gubbio, Italy"--

Identifying Future-Proof Science
  • Language: en
  • Pages: 332

Identifying Future-Proof Science

Is science getting at the truth? The sceptics - those who spread doubt about science - often employ a simple argument: scientists were 'sure' in the past, and then they ended up being wrong. Through a combination of historical investigation and philosophical-sociological analysis, Identifying Future-Proof Science defends science against this potentially dangerous scepticism. Indeed, we can confidently identify many scientific claims that are future-proof: they will last forever, so long as science continues. How do we identify future-proof claims? This appears to be a new question for science scholars, and not an unimportant one. Peter Vickers argues that the best way to identify future-proof science is to avoid any attempt to analyse the relevant first-order scientific evidence, instead focusing purely on second-order evidence. Specifically, a scientific claim is future-proof when the relevant scientific community is large, international, and diverse, and at least 95% of that community would describe the claim as a 'scientific fact'. In the entire history of science, no claim meeting these criteria has ever been overturned, despite enormous opportunity.