Horizons in Earth Science Research. Volume 20 e-bog
3651,96 DKK
(ekskl. moms 2921,57 DKK)
Horizons in Earth Science Research. Volume 20 first provides an overview of geodesy throughout the past six decades, providing a short glimpse of emerging technology that is expected to enable rapid advances in many branches of science in the decades to come. Next, the performance of two wavelength dispersive X-ray fluorescence spectrometers possessing rhodium anode have been compared to assess...
E-bog
3651,96 DKK
Forlag
Nova
Udgivet
9 januar 2020
Længde
224 sider
Genrer
Earth sciences
Sprog
English
Format
pdf
Beskyttelse
LCP
ISBN
9781536171204
Horizons in Earth Science Research. Volume 20 first provides an overview of geodesy throughout the past six decades, providing a short glimpse of emerging technology that is expected to enable rapid advances in many branches of science in the decades to come. Next, the performance of two wavelength dispersive X-ray fluorescence spectrometers possessing rhodium anode have been compared to assess their usefulness in limnological studies, using bottom sediments from Araxa, Minas Gerais, Brazil. The authors review the applications of infrared absorption spectroscopy in the fields of condensed matter physics and earth sciences. Infrared absorption spectroscopy is mainly associated with interactions between atoms and vibrational phonons of materials. Additionally, a comparative study held at different drainage systems in Araxa, Minas Gerais, Brazil is presented with the aim of evaluating the performance of The Constant Flux: Constant Sedimentation and Constant Rate of Supply models. Following this, monazite and rutile geochronology and Zr-in-rutile thermometry are used to understand the thrust age and thermochronology of the Aracuai/Ribeira Orogenic System-Sao Francisco Craton transition in southeastern Brazil. Recent work on neurotoxin-producing microalgae (dinoflagellates) is presented wherein effects from space weather may display the hormetic dose-response, either through geomagnetic activity or solar X-ray flux. Lastly, the authors provide a soft-computing approach to forecast 30-year-ahead annual rainfall in Tehran, Iran. A time-series of yearly data covering more than one century was used for the design of ensemble projections to understand and quantify the uncertainty associated with intradecadal-to-interdecadal predictability.
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