Reflectance Spectroscopy in Planetary Science

Reflectance Spectroscopy in Planetary Science PDF Author:
Publisher:
ISBN:
Category : Astronomical spectroscopy
Languages : en
Pages : 52

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Reflectance Spectroscopy in Planetary Science

Reflectance Spectroscopy in Planetary Science PDF Author:
Publisher:
ISBN:
Category : Astronomical spectroscopy
Languages : en
Pages : 52

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Book Description


Reflectance Spectroscopy in Planetary Science

Reflectance Spectroscopy in Planetary Science PDF Author: Thomas B. McCord
Publisher:
ISBN:
Category : Astronomical spectroscopy
Languages : en
Pages : 53

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Reflectance Spectroscopy in Planetary Science

Reflectance Spectroscopy in Planetary Science PDF Author:
Publisher:
ISBN:
Category : Astronomical spectroscopy
Languages : en
Pages : 0

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Theory of Reflectance and Emittance Spectroscopy

Theory of Reflectance and Emittance Spectroscopy PDF Author: Bruce Hapke
Publisher: Cambridge University Press
ISBN: 0521883490
Category : Nature
Languages : en
Pages : 529

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Book Description
An essential reference for researchers and students of planetary remote sensing on the interaction of electromagnetic radiation with planetary surfaces.

Remote Compositional Analysis

Remote Compositional Analysis PDF Author: Janice L. Bishop
Publisher: Cambridge University Press
ISBN: 110718620X
Category : Language Arts & Disciplines
Languages : en
Pages : 655

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Book Description
Comprehensive overview of the spectroscopic, mineralogical, and geochemical techniques used in planetary remote sensing.

Spectroscopy and Radiative Transfer of Planetary Atmospheres

Spectroscopy and Radiative Transfer of Planetary Atmospheres PDF Author: Kelly Chance
Publisher: Oxford University Press
ISBN: 0191638218
Category : Science
Languages : en
Pages : 145

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Book Description
Spectroscopy and radiative transfer are rapidly growing fields within atmospheric and planetary science with implications for weather, climate, biogeochemical cycles, air quality on Earth, as well as the physics and evolution of planetary atmospheres in our solar system and beyond. Remote sensing and modeling atmospheric composition of the Earth, of other planets in our solar system, or of planets orbiting other stars require detailed knowledge of how radiation and matter interact in planetary atmospheres. This includes knowledge of how stellar or thermal radiation propagates through atmospheres, how that propagation affects radiative forcing of climate, how atmospheric pollutants and greenhouse gases produce unique spectroscopic signatures, how the properties of atmospheres may be quantitatively measured, and how those measurements relate to physical properties. This book provides this fundamental knowledge to a depth that will leave a student with the background to become capable of performing quantitative research on atmospheres. The book is intended for graduate students or for advanced undergraduates. It spans across principles through applications, with sufficient background for students without prior experience in either spectroscopy or radiative transfer. Courses based on this book are intended to be accompanied by the development of increasing sophisticated atmospheric and spectroscopic modeling capability (ideally, the student develops a computer model for simulation of atmospheric spectra from microwave through ultraviolet).

Asteroids

Asteroids PDF Author: Thomas H. Burbine
Publisher: Cambridge University Press
ISBN: 1107096847
Category : Mathematics
Languages : en
Pages : 411

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Book Description
An overview of asteroid science, summarising the astronomical and geological characteristics of asteroids, for students and researchers.

Reflectance Spectroscopy

Reflectance Spectroscopy PDF Author: Gustav Kortüm
Publisher: Springer
ISBN:
Category : Science
Languages : en
Pages : 384

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Book Description
Reflectance spectroscopy is the investigation of the spectral composi tion of surface-reflected radiation with respect to its angularly dependent intensity and the composition of the incident primary radiation. Two limiting cases are important: The first concerns regular (specular) reflection from a smooth surface, and the second diffuse reflection from an ideal matte surface. All possible variations are found in practice between these two extremes. For the two extreme cases, two fundamentally different methods of reflectance spectroscopy are employed: The first of these consists in evaluating the optical constants n (refractive index) and x (absorption index) from the measured regular reflection by means of the Fresnel equations as a function of the wave A. This rather old and very troublesome procedure, which is length incapable of very accurate results, has recently been modified by Fahren fort by replacing the air-sample phase boundary by the phase boundary between a dielectric of higher refractive index (n ) and the sample (n ). 1 2 If the sample absorbs no radiation and the angle of incidence exceeds a certain definite value, total reflection occurs. On close optical contact between the two phases, a small amount of energy is transferred into the less dense phase because of diffraction phenomena at the edges of the incident beam. The energy flux in the two directions through the phase boundary caused by this is equal, however, so that 'total reflection takes place.

Machine Learning for Planetary Science

Machine Learning for Planetary Science PDF Author: Joern Helbert
Publisher: Elsevier
ISBN: 0128187220
Category : Science
Languages : en
Pages : 234

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Book Description
Machine Learning for Planetary Science presents planetary scientists with a way to introduce machine learning into the research workflow as increasingly large nonlinear datasets are acquired from planetary exploration missions. The book explores research that leverages machine learning methods to enhance our scientific understanding of planetary data and serves as a guide for selecting the right methods and tools for solving a variety of everyday problems in planetary science using machine learning. Illustrating ways to employ machine learning in practice with case studies, the book is clearly organized into four parts to provide thorough context and easy navigation. The book covers a range of issues, from data analysis on the ground to data analysis onboard a spacecraft, and from prioritization of novel or interesting observations to enhanced missions planning. This book is therefore a key resource for planetary scientists working in data analysis, missions planning, and scientific observation. Includes links to a code repository for sharing codes and examples, some of which include executable Jupyter notebook files that can serve as tutorials Presents methods applicable to everyday problems faced by planetary scientists and sufficient for analyzing large datasets Serves as a guide for selecting the right method and tools for applying machine learning to particular analysis problems Utilizes case studies to illustrate how machine learning methods can be employed in practice

Reflective Spectroscopy in Planetary Science

Reflective Spectroscopy in Planetary Science PDF Author: United States. National Aeronautics and Space Administration. Scientifc and Technical Branch
Publisher:
ISBN:
Category :
Languages : en
Pages :

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