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Satellite imagery / s.au.
Titre : Satellite imagery : from acquisition principles to processing of optical images for observing the Earth... Type de document : texte imprimé Auteurs : s.au., Auteur ; philippe,lier, Auteur ; christophe,valorage Editeur : Toulouse : Cépaduès éd. Année de publication : impr. 2012 Importance : 1 vol. (489 p.) Présentation : ill. en noir et en coul., couv. ill. en coul. Format : 24 *17cm ISBN/ISSN/EAN : 978-2-36493-036-0 Prix : 66 EUR Note générale : Éditeur : Cépaduès Éditions (18 octobre 2012)
Langue : Français
Broché : 492 pages
ISBN-10 : 2364930367
ISBN-13 : 978-2364930360
Poids de l'article : 862 g
Dimensions : 17 x 2.8 x 24 cm
Classement des meilleures ventes d'Amazon : 1,098,824 en Livres (Voir les 100 premiers en Livres)
4,365 en Astronomie (Livres)Langues : Anglais (eng) Langues originales : Français (fre) Mots-clés : Satellite imagery digital image earth mteorology mapping corona programme satellite optics detector system radiometric modelling traitment for inproving calibration the atmosphere Index. décimale : 621.38 Résumé : This book was written for students and engineers wishing to understand the basic principles behind the acquisition of optical imagery for Earth observation and the ways in which the quality of the images can be optimised.
Intended both for designers and downstream users, the book begins with a detailed explanation of the physical principles involved when a satellite acquires an optical image and then goes on to discuss image processing and its limits as well as the ultimate performance obtained. It also covers in depth the problems to be solved when designing and dimensioning observation systems so that the reader can become familiar with the various processes implemented for acquiring an optical image.
The book describes a very wide range of subjects from fundamental physics (radiation, electronics, optics) to applied mathematics (frequency analysis), geometry and technological issues. It draws on work done over many years by engineers from CNES (the French Space Agency), the IGN (the French National Geographic Institute) and ONERA (the French Aerospace Laboratory) in the field of satellite optical imagery. sommaire:some history-what is remote sensing?some examples of earth observation applications-a panorama of several earth obsevation missions-scope of this book-image geometry-radiometry-image resolutionNote de contenu : Notes bibliogr-annexe Satellite imagery : from acquisition principles to processing of optical images for observing the Earth... [texte imprimé] / s.au., Auteur ; philippe,lier, Auteur ; christophe,valorage . - Toulouse : Cépaduès éd., impr. 2012 . - 1 vol. (489 p.) : ill. en noir et en coul., couv. ill. en coul. ; 24 *17cm.
ISBN : 978-2-36493-036-0 : 66 EUR
Éditeur : Cépaduès Éditions (18 octobre 2012)
Langue : Français
Broché : 492 pages
ISBN-10 : 2364930367
ISBN-13 : 978-2364930360
Poids de l'article : 862 g
Dimensions : 17 x 2.8 x 24 cm
Classement des meilleures ventes d'Amazon : 1,098,824 en Livres (Voir les 100 premiers en Livres)
4,365 en Astronomie (Livres)
Langues : Anglais (eng) Langues originales : Français (fre)
Mots-clés : Satellite imagery digital image earth mteorology mapping corona programme satellite optics detector system radiometric modelling traitment for inproving calibration the atmosphere Index. décimale : 621.38 Résumé : This book was written for students and engineers wishing to understand the basic principles behind the acquisition of optical imagery for Earth observation and the ways in which the quality of the images can be optimised.
Intended both for designers and downstream users, the book begins with a detailed explanation of the physical principles involved when a satellite acquires an optical image and then goes on to discuss image processing and its limits as well as the ultimate performance obtained. It also covers in depth the problems to be solved when designing and dimensioning observation systems so that the reader can become familiar with the various processes implemented for acquiring an optical image.
The book describes a very wide range of subjects from fundamental physics (radiation, electronics, optics) to applied mathematics (frequency analysis), geometry and technological issues. It draws on work done over many years by engineers from CNES (the French Space Agency), the IGN (the French National Geographic Institute) and ONERA (the French Aerospace Laboratory) in the field of satellite optical imagery. sommaire:some history-what is remote sensing?some examples of earth observation applications-a panorama of several earth obsevation missions-scope of this book-image geometry-radiometry-image resolutionNote de contenu : Notes bibliogr-annexe Réservation
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Code-barres Cote Support Localisation Section Disponibilité ST2453 621.38/132.1 Ouvrage Faculté des Sciences et de la Technologie 600 - Technologie (Sciences appliquées) Exclu du prêt ST2454 621.38/132.2 Ouvrage Faculté des Sciences et de la Technologie 600 - Technologie (Sciences appliquées) Disponible Femtosecond laser spectroscopy / Peter Hannaford
Titre : Femtosecond laser spectroscopy Type de document : texte imprimé Auteurs : Peter Hannaford Editeur : New York, NY : Springer Année de publication : 2005 Importance : 1 online resource (xx, 334 pages) Présentation : illustrations Format : 17X24CM. ISBN/ISSN/EAN : 978-0-387-23294-2 Note générale : Éditeur : Springer; Softcover reprint of hardcover 1st ed. 2005 édition (29 octobre 2010)
Langue : Anglais
Broché : 356 pages
ISBN-10 : 1441936017
ISBN-13 : 978-1441936011
Poids de l'article : 545 g
Dimensions : 15.49 x 2.06 x 23.5 cmLangues : Français (fre) Mots-clés : fysica physics optische spectroscopie optical spectroscopy optica optics Physics (General) Fysica (algemeen) Femtosecond laser spectroscopy Index. décimale : 621 Résumé : The embryonic development of femtoscience stems from advances made in the generation of ultrashort laser pulses. Beginning with mode-locking of glass lasers in the 1960s, the development of dye lasers brought the pulse width down from picoseconds to femtoseconds. The breakthrough in solid state laser pulse generation provided the current reliable table-top laser systems capable of average power of about 1 watt, and peak power density of easily watts per square centimeter, with pulse widths in the range of four to eight femtoseconds. Pulses with peak power density reaching watts per square centimeter have been achieved in laboratory settings and, more recently, pulses of sub-femtosecond duration have been successfully generated. As concepts and methodologies have evolved over the past two decades, the realm of ultrafast science has become vast and exciting and has impacted many areas of chemistry, biology and physics, and other fields such as materials science, electrical engineering, and optical communication. In molecular science the explosive growth of this research is for fundamental reasons. In femtochemistry and femtobiology chemical bonds form and break on the femtosecond time scale, and on this scale of time we can freeze the transition states at configurations never before seen. Even for n- reactive physical changes one is observing the most elementary of molecular processes. On a time scale shorter than the vibrational and rotational periods the ensemble behaves coherently as a single-molecule trajectory.
"As concepts and methodologies have evolved over the past two decades, the realm of ultrafast science has become vast and exciting and has impacted many areas of chemistry, biology, and physics, and other fields such as materials science, electrical engineering, and optical communication. The field has recently exploded with the announcement of a series of remarkable new developments and advances. This volume surveys this recent growth in eleven chapters written by leading international researchers in the field. The topics covered are revolutionizing the fields of biomedical imaging, electron dynamics, ultrahigh precision spectroscopy, and optical frequency metrology. Surveying the latest advances in ultrafast lasers, Femtosecond Laser Spectroscopy will be of interest to both researchers and graduate students."--Jacket .
SOMMAIRE:
PHASE CONTROLLED FEMTOSECOND LASERS FOR SENSITIVE,PRECISE AND WIDE BANDWIDTH NONLINEAR SPECTROSCOPY
SUPERCONTINUUM AND HIGH-ORDER HARMONICS:"EXTREME"COHERENT SOURCES FOR ATOMIC SPECTROSCOPY AND ATTOPHYSICS
THE MEASUREMENT OF ULTRASHORT LIGHT-SIMPLE DEVICES,COMPLEX PULSES
FEMOTOSECOND COMBS FOR PRECISION METROLOGY
INFRARED PRECISION SPECTROSCOPY USING FEMTOSECOND-LASER BASED OPTICAL FREQUENCY-COMB SYNTHESIZERS
REAL-TIME SPECTROSCOPY OF MOLECULAR VIBRATIONS WITH SUB-5-FS VISIBLE PULSES
VIBRATIONAL ECHO CORRELATION SPECTROSCOPY:A NEW PROBE OF HYDROGEN BOND DYNAMICS IN WATER AND METHANOL
SPECTRALLY RESOLVED TWO-COLOUR FEMTOSECOND PHOTON ECHOES
OPTIMAL CONTROL OF ATOMICS,MOLECULAR AND ELECTRON DYNAMICS WITH TAILORED FEMTOSECOND LASER PULSES
COHERENT CONTROL OF ATOMIC DYNAMICS WITH CHIRPED AND SHAPED PULSES
ULTRAFAST PROCESSES OF HIGHLY EXICTED WIDE-GAP DIELECTRIC THIN FILMSNote de contenu : index Femtosecond laser spectroscopy [texte imprimé] / Peter Hannaford . - New York, NY : Springer, 2005 . - 1 online resource (xx, 334 pages) : illustrations ; 17X24CM.
ISBN : 978-0-387-23294-2
Éditeur : Springer; Softcover reprint of hardcover 1st ed. 2005 édition (29 octobre 2010)
Langue : Anglais
Broché : 356 pages
ISBN-10 : 1441936017
ISBN-13 : 978-1441936011
Poids de l'article : 545 g
Dimensions : 15.49 x 2.06 x 23.5 cm
Langues : Français (fre)
Mots-clés : fysica physics optische spectroscopie optical spectroscopy optica optics Physics (General) Fysica (algemeen) Femtosecond laser spectroscopy Index. décimale : 621 Résumé : The embryonic development of femtoscience stems from advances made in the generation of ultrashort laser pulses. Beginning with mode-locking of glass lasers in the 1960s, the development of dye lasers brought the pulse width down from picoseconds to femtoseconds. The breakthrough in solid state laser pulse generation provided the current reliable table-top laser systems capable of average power of about 1 watt, and peak power density of easily watts per square centimeter, with pulse widths in the range of four to eight femtoseconds. Pulses with peak power density reaching watts per square centimeter have been achieved in laboratory settings and, more recently, pulses of sub-femtosecond duration have been successfully generated. As concepts and methodologies have evolved over the past two decades, the realm of ultrafast science has become vast and exciting and has impacted many areas of chemistry, biology and physics, and other fields such as materials science, electrical engineering, and optical communication. In molecular science the explosive growth of this research is for fundamental reasons. In femtochemistry and femtobiology chemical bonds form and break on the femtosecond time scale, and on this scale of time we can freeze the transition states at configurations never before seen. Even for n- reactive physical changes one is observing the most elementary of molecular processes. On a time scale shorter than the vibrational and rotational periods the ensemble behaves coherently as a single-molecule trajectory.
"As concepts and methodologies have evolved over the past two decades, the realm of ultrafast science has become vast and exciting and has impacted many areas of chemistry, biology, and physics, and other fields such as materials science, electrical engineering, and optical communication. The field has recently exploded with the announcement of a series of remarkable new developments and advances. This volume surveys this recent growth in eleven chapters written by leading international researchers in the field. The topics covered are revolutionizing the fields of biomedical imaging, electron dynamics, ultrahigh precision spectroscopy, and optical frequency metrology. Surveying the latest advances in ultrafast lasers, Femtosecond Laser Spectroscopy will be of interest to both researchers and graduate students."--Jacket .
SOMMAIRE:
PHASE CONTROLLED FEMTOSECOND LASERS FOR SENSITIVE,PRECISE AND WIDE BANDWIDTH NONLINEAR SPECTROSCOPY
SUPERCONTINUUM AND HIGH-ORDER HARMONICS:"EXTREME"COHERENT SOURCES FOR ATOMIC SPECTROSCOPY AND ATTOPHYSICS
THE MEASUREMENT OF ULTRASHORT LIGHT-SIMPLE DEVICES,COMPLEX PULSES
FEMOTOSECOND COMBS FOR PRECISION METROLOGY
INFRARED PRECISION SPECTROSCOPY USING FEMTOSECOND-LASER BASED OPTICAL FREQUENCY-COMB SYNTHESIZERS
REAL-TIME SPECTROSCOPY OF MOLECULAR VIBRATIONS WITH SUB-5-FS VISIBLE PULSES
VIBRATIONAL ECHO CORRELATION SPECTROSCOPY:A NEW PROBE OF HYDROGEN BOND DYNAMICS IN WATER AND METHANOL
SPECTRALLY RESOLVED TWO-COLOUR FEMTOSECOND PHOTON ECHOES
OPTIMAL CONTROL OF ATOMICS,MOLECULAR AND ELECTRON DYNAMICS WITH TAILORED FEMTOSECOND LASER PULSES
COHERENT CONTROL OF ATOMIC DYNAMICS WITH CHIRPED AND SHAPED PULSES
ULTRAFAST PROCESSES OF HIGHLY EXICTED WIDE-GAP DIELECTRIC THIN FILMSNote de contenu : index Exemplaires (1)
Code-barres Cote Support Localisation Section Disponibilité ST12236 621/14.1 Ouvrage Faculté des Sciences et de la Technologie 600 - Technologie (Sciences appliquées) Exclu du prêt