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Handbook of spectroscopy / / edited by Günter Gauglitz and David S. Moore
Handbook of spectroscopy / / edited by Günter Gauglitz and David S. Moore
Edizione [2nd ed.]
Pubbl/distr/stampa Weinheim, Germany : , : Wiley-VCH Verlag, , 2014
Descrizione fisica 1 online resource (1951 p.)
Disciplina 543.5
543/.5
Soggetto topico Spectrum analysis
Trace analysis - Methodology
ISBN 3-527-65472-0
3-527-65470-4
3-527-65473-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Volume 1. Sample preparation and sample pretreatment -- Volume 2. Methods 4: Elemental analysis -- Volume 3. Applications 1: Bioanalysis -- Volume 4. Applications 6: Spectroscopy at surfaces.
Record Nr. UNINA-9910139140903321
Weinheim, Germany : , : Wiley-VCH Verlag, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Interpretation of organic spectra / / by Yong-Cheng Ning
Interpretation of organic spectra / / by Yong-Cheng Ning
Autore Ning Yong-Cheng
Edizione [1st ed.]
Pubbl/distr/stampa Hoboken, N.J., : Wiley, 2011
Descrizione fisica 1 online resource (426 p.)
Disciplina 543/.5
Soggetto topico Spectrum analysis
Organic compounds - Analysis
ISBN 9786613175045
9781283175043
1283175045
9780470828311
0470828315
9780470825174
0470825170
9780470825181
0470825189
Classificazione SCI078000
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Interpretation of Organic Spectra; Contents; Foreword; Preface; 1 Interpretation of 1H NMR Spectra; 1.1 Chemical Shift; 1.1.1 Conception of Chemical Shift; 1.1.2 Factors Affecting Chemical Shifts; 1.2 Coupling Constant J; 1.2.1 Coupling Effect and Coupling Constant J; 1.2.2 Discussion of Coupling Constants According to their Kinds; 1.3 Chemical Equivalence and Magnetic Equivalence; 1.3.1 Chemical Equivalence; 1.3.2 Magnetic Equivalence; 1.3.3 Classification of 1H Spectra; 1.4 Characteristics of the 1H Spectra of Some Functional Groups; 1.4.1 Substituted Phenyl Ring
1.4.2 Substituted Heteroaromatic Ring1.4.3 Normal Long-chain Alkyl Group; 1.4.4 Carbonyl Compounds; 1.4.5 Reactive Hydrogen Atom; 1.4.6 Compounds Containing Fluorine or Phosphor Atoms; 1.5 Interpretation of 1H NMR Spectra; 1.5.1 Find Impurity Peaks, Pay Attention to the Solvent Applied; 1.5.2 Calculation of the Unsaturation Number of the Unknown Compound; 1.5.3 Determination of the Number of Hydrogen Atoms Corresponding to Every Peak Set in the 1H Spectrum; 1.5.4 Determination of Functional Groups of the Unknown Compound; 1.5.5 Analysis of Coupling Splittings of Peak Sets
1.5.6 Combination of Possible Structural Units1.5.7 Assignment of the 1H spectrum According to the Deduced Structure; 1.5.8 Checking of the Deduced Structure; 1.6 Examples of 1H Spectrum Interpretation; Reference; 2 Interpretation of 13C NMR Spectra; 2.1 Characteristics and Advantages of the 13C NMR Spectra; 2.2 The Main Parameter of the 13C Spectrum is the Chemical Shift; 2.3 Chemical Shift Values of Common Functional Groups and Main Factors Affecting Chemical Shift Values; 2.3.1 Alkanes and their Derivatives; 2.3.2 Cycloalkanes and their Derivatives; 2.3.3 Alkylenes and their Derivatives
2.3.4 Benzene and its Derivatives2.3.5 Carbonyl Groups; 2.4 Determination of the Carbon Atom Orders; 2.5 Steps for 13C NMR Spectrum Interpretation; 2.5.1 Recognizing Impurity Peaks and Identifying Solvent Peaks; 2.5.2 Calculation of the Unsaturation Number of the Unknown Compound; 2.5.3 Consideration of Chemical Shift Values of Peaks; 2.5.4 Determination of Carbon Atom Orders; 2.5.5 Postulation of Possible Functional Groups; 3 Interpretation of 2D NMR Spectra; 3.1 General Knowledge about 2D NMR Spectra; 3.2 Homonuclear Shift Correlation Spectroscopy, COSY (H, H-COSY)
3.3 Heteronuclear Shift Correlation Spectroscopy3.4 Long-Range Heteronuclear Shift Correlation Spectroscopy; 3.5 NOESY and ROESY; 3.6 Total Correlation Spectroscopy, TOCSY; References; 4 Interpretation of Mass Spectra; 4.1 Basic Knowledge of Organic Mass Spectrometry; 4.1.1 Mass Spectra; 4.1.2 Ionization in Organic Mass Spectrometry; 4.1.3 Ion Types in Organic Mass Spectrometry; 4.2 Isotopic Ion Clusters in Mass Spectra; 4.3 Interpretation of EI MS; 4.3.1 Determination of Molecular Ion Peak; 4.3.2 Interpretation of Fragment Ion Peaks; 4.3.3 Interpretation of Rearrangement Ion Peaks
4.3.4 Complex Cleavages of Alicyclic Compounds
Record Nr. UNINA-9910131045403321
Ning Yong-Cheng  
Hoboken, N.J., : Wiley, 2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Local structural characterisation [[electronic resource] /] / edited by Duncan W. Bruce, Dermot O'Hare, Richard I. Walton
Local structural characterisation [[electronic resource] /] / edited by Duncan W. Bruce, Dermot O'Hare, Richard I. Walton
Pubbl/distr/stampa Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2014
Descrizione fisica 1 online resource (474 p.)
Disciplina 543/.5
Altri autori (Persone) BruceDuncan W
O'HareDermot
WaltonRichard I
Collana Inorganic materials series
Soggetto topico Chemical structure
Materials
ISBN 1-118-68192-4
1-118-68190-8
1-118-68188-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Series Page; Title Page; Copyright; Inorganic Materials Series Preface; Preface; List of Contributors; Chapter 1: Solid-State Nuclear Magnetic Resonance Spectroscopy; 1.1 Overview; 1.2 Theoretical Background; 1.3 Basic Experimental Methods; 1.4 Calculation of NMR Parameters; 1.5 Applications of Solid-State NMR Spectroscopy; 1.6 Commonly Studied Nuclei; 1.7 NMR of Materials; 1.8 Conclusion; References; Chapter 2: X-ray Absorption and Emission Spectroscopy; 2.1 Introduction: What is Photon Spectroscopy?; 2.2 Electronic Structure and Spectroscopy; 2.3 Calculation of Inner-shell Spectra
2.4 Experimental Techniques2.5 Experimental Considerations; 2.6 Conclusion; Acknowledgements; REFERENCES; Chapter 3: Neutrons and Neutron Spectroscopy; 3.1 The Neutron and How it is Scattered; 3.2 Why Neutrons?; 3.3 Molecular Hydrogen (Dihydrogen) in Porous Materials; 3.4 Ins and Catalysis; 3.5 CO2 and SO2 Capture; 3.6 What Could be Next?; 3.7 Conclusion; References; Chapter 4: Electron Paramagnetic Resonance Spectroscopy of Inorganic Materials; 4.1 Introduction; 4.2 Electron Spin in a Magnetic Field; 4.3 Spin Hamiltonian and symmetry
4.4 Principal Types of EPR Spectrum and Their Characteristic Features4.5 Advanced EMR Techniques; REFERENCES; Chapter 5: Analysis of Functional Materials by X-ray Photoelectron Spectroscopy; 5.1 Introduction; 5.2 Imaging XPS; 5.3 Time-resolved High-resolution XPS; 5.4 High- or Ambient-pressure XPS; 5.5 Applications to Inorganic Materials; 5.6 Conclusion; References; Index
Record Nr. UNINA-9910139036803321
Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Local structural characterisation / / edited by Duncan W. Bruce, Dermot O'Hare, Richard I. Walton
Local structural characterisation / / edited by Duncan W. Bruce, Dermot O'Hare, Richard I. Walton
Edizione [1st ed.]
Pubbl/distr/stampa Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2014
Descrizione fisica 1 online resource (474 p.)
Disciplina 543/.5
Altri autori (Persone) BruceDuncan W
O'HareDermot
WaltonRichard I
Collana Inorganic materials series
Soggetto topico Chemical structure
Materials
ISBN 9781118681923
1118681924
9781118681909
1118681908
9781118681886
1118681886
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Series Page; Title Page; Copyright; Inorganic Materials Series Preface; Preface; List of Contributors; Chapter 1: Solid-State Nuclear Magnetic Resonance Spectroscopy; 1.1 Overview; 1.2 Theoretical Background; 1.3 Basic Experimental Methods; 1.4 Calculation of NMR Parameters; 1.5 Applications of Solid-State NMR Spectroscopy; 1.6 Commonly Studied Nuclei; 1.7 NMR of Materials; 1.8 Conclusion; References; Chapter 2: X-ray Absorption and Emission Spectroscopy; 2.1 Introduction: What is Photon Spectroscopy?; 2.2 Electronic Structure and Spectroscopy; 2.3 Calculation of Inner-shell Spectra
2.4 Experimental Techniques2.5 Experimental Considerations; 2.6 Conclusion; Acknowledgements; REFERENCES; Chapter 3: Neutrons and Neutron Spectroscopy; 3.1 The Neutron and How it is Scattered; 3.2 Why Neutrons?; 3.3 Molecular Hydrogen (Dihydrogen) in Porous Materials; 3.4 Ins and Catalysis; 3.5 CO2 and SO2 Capture; 3.6 What Could be Next?; 3.7 Conclusion; References; Chapter 4: Electron Paramagnetic Resonance Spectroscopy of Inorganic Materials; 4.1 Introduction; 4.2 Electron Spin in a Magnetic Field; 4.3 Spin Hamiltonian and symmetry
4.4 Principal Types of EPR Spectrum and Their Characteristic Features4.5 Advanced EMR Techniques; REFERENCES; Chapter 5: Analysis of Functional Materials by X-ray Photoelectron Spectroscopy; 5.1 Introduction; 5.2 Imaging XPS; 5.3 Time-resolved High-resolution XPS; 5.4 High- or Ambient-pressure XPS; 5.5 Applications to Inorganic Materials; 5.6 Conclusion; References; Index
Record Nr. UNINA-9910815320103321
Chichester, West Sussex, U.K., : John Wiley & Sons Inc., 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Optical spectroscopy [[electronic resource] ] : methods and instrumentations / / Niholai V. Tkachenko
Optical spectroscopy [[electronic resource] ] : methods and instrumentations / / Niholai V. Tkachenko
Autore Tkachenko Nikolai V
Pubbl/distr/stampa Amsterdam ; ; Boston, : Elsevier, 2006
Descrizione fisica 1 online resource (323 p.)
Disciplina 543.5
543/.5
Soggetto topico Optical spectroscopy
Optical instruments - Methodology
Soggetto genere / forma Electronic books.
ISBN 1-280-62179-6
9786610621798
0-08-046172-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front cover; Title page; Copyright; Front matter; Preface; Table of contents; 1 Introduction; Absorption; Light absorption in a bulk medium; Absorption of complex samples; Electronic, vibrational and rotational levels; Wavelength, frequency and energy; Emission; Black body emission; Two level system (Einstein's coefficients); Fluorescence and phosphorescence; Light amplification; Optical spectroscopy; 2 Optics and Optical Devices; Waves; Wave equation; Harmonic waves; Plane waves; Interference; Michelson interferometer; Fabry-Perot interferometer; Interference filters and mirrors; Diffraction
Fresnel formulationFraunhofer diffraction (far field approximation); Diffraction grating; Monochromator; Calculations of optical system (matrix formulation); Geometrical optics approximation; Beam transfer matrix; Imaging and magnification; 3 Lasers for Spectroscopy Applications; Laser active medium; Laser resonators; Resonator with active medium; Resonator bandwidth; Longitudinal modes; Transverse modes; Stable and unstable resonators; Continuous wave lasers; Pulsed lasers; Q-Switched lasers; Mode-locked lasers; Laser amplifiers; Main types of lasers; Nd:YAG lasers; Ion lasers
Excimer lasersDye lasers; Ti:sapphire lasers; Semiconductor lasers; Other lasers used in spectroscopy applications; Non-linear optic effect in laser applications; Second harmonic; Third harmonic; Wave mixing; Parametric amplification and generation of the light; 4 Optical measurements; Noise statistics and accuracy of measurements; Systematic error and random noise; Noise statistics; Statistical approach to measurements; Noise sources; Inaccuracy of indirect measurements; Photosensitive devices; Photodetector performance parameters; Photomultiplier tubes; Semiconductor photo-detectors
Other photo-detectorsMeasurements of the light power; Measurements of the pulse energy; Measurements of the pulse duration; Direct methods; Autocorrelators (indirect methods); 5 Steady State Absorption Spectroscopy; Measurements of the light absorption spectrum; Spectrophotometer schemes; Single channel scheme; Two channel scheme; Spectrophotometers with array detectors; Main characteristics of spectrophotometers; Spectrum range; Spectrum resolution; Sensitivity and absorption range; Instruments, accessories and applications; Spectrophotometer specifications
Cuvettes for absorption spectroscopyApplication notes and examples; 6 Steady State Emission Spectroscopy; Measurement of the Emission Spectrum; Fluorimeter; Optical Scheme; Use of Array Detectors; Evaluation of the Measured Signal; Spectrum Correction; Quantum yield determination by comparison method; Excitation spectrum; Sensitivity; Wavelength resolution; Samples for emission measurements; Excitation-monitoring schemes; Cuvettes; Effect of the sample absorption; Fluorimeter specifications; Water Raman scattering line as sensitivity test; Commercial Fluorimeters
Emission of molecular monolayer: An example
Record Nr. UNINA-9910480076403321
Tkachenko Nikolai V  
Amsterdam ; ; Boston, : Elsevier, 2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Optical spectroscopy [[electronic resource] ] : methods and instrumentations / / Niholai V. Tkachenko
Optical spectroscopy [[electronic resource] ] : methods and instrumentations / / Niholai V. Tkachenko
Autore Tkachenko Nikolai V
Pubbl/distr/stampa Amsterdam ; ; Boston, : Elsevier, 2006
Descrizione fisica 1 online resource (323 p.)
Disciplina 543.5
543/.5
Soggetto topico Optical spectroscopy
Optical instruments - Methodology
ISBN 1-280-62179-6
9786610621798
0-08-046172-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front cover; Title page; Copyright; Front matter; Preface; Table of contents; 1 Introduction; Absorption; Light absorption in a bulk medium; Absorption of complex samples; Electronic, vibrational and rotational levels; Wavelength, frequency and energy; Emission; Black body emission; Two level system (Einstein's coefficients); Fluorescence and phosphorescence; Light amplification; Optical spectroscopy; 2 Optics and Optical Devices; Waves; Wave equation; Harmonic waves; Plane waves; Interference; Michelson interferometer; Fabry-Perot interferometer; Interference filters and mirrors; Diffraction
Fresnel formulationFraunhofer diffraction (far field approximation); Diffraction grating; Monochromator; Calculations of optical system (matrix formulation); Geometrical optics approximation; Beam transfer matrix; Imaging and magnification; 3 Lasers for Spectroscopy Applications; Laser active medium; Laser resonators; Resonator with active medium; Resonator bandwidth; Longitudinal modes; Transverse modes; Stable and unstable resonators; Continuous wave lasers; Pulsed lasers; Q-Switched lasers; Mode-locked lasers; Laser amplifiers; Main types of lasers; Nd:YAG lasers; Ion lasers
Excimer lasersDye lasers; Ti:sapphire lasers; Semiconductor lasers; Other lasers used in spectroscopy applications; Non-linear optic effect in laser applications; Second harmonic; Third harmonic; Wave mixing; Parametric amplification and generation of the light; 4 Optical measurements; Noise statistics and accuracy of measurements; Systematic error and random noise; Noise statistics; Statistical approach to measurements; Noise sources; Inaccuracy of indirect measurements; Photosensitive devices; Photodetector performance parameters; Photomultiplier tubes; Semiconductor photo-detectors
Other photo-detectorsMeasurements of the light power; Measurements of the pulse energy; Measurements of the pulse duration; Direct methods; Autocorrelators (indirect methods); 5 Steady State Absorption Spectroscopy; Measurements of the light absorption spectrum; Spectrophotometer schemes; Single channel scheme; Two channel scheme; Spectrophotometers with array detectors; Main characteristics of spectrophotometers; Spectrum range; Spectrum resolution; Sensitivity and absorption range; Instruments, accessories and applications; Spectrophotometer specifications
Cuvettes for absorption spectroscopyApplication notes and examples; 6 Steady State Emission Spectroscopy; Measurement of the Emission Spectrum; Fluorimeter; Optical Scheme; Use of Array Detectors; Evaluation of the Measured Signal; Spectrum Correction; Quantum yield determination by comparison method; Excitation spectrum; Sensitivity; Wavelength resolution; Samples for emission measurements; Excitation-monitoring schemes; Cuvettes; Effect of the sample absorption; Fluorimeter specifications; Water Raman scattering line as sensitivity test; Commercial Fluorimeters
Emission of molecular monolayer: An example
Record Nr. UNINA-9910784596103321
Tkachenko Nikolai V  
Amsterdam ; ; Boston, : Elsevier, 2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Optical spectroscopy : methods and instrumentations / / Niholai V. Tkachenko
Optical spectroscopy : methods and instrumentations / / Niholai V. Tkachenko
Autore Tkachenko Nikolai V
Edizione [1st ed.]
Pubbl/distr/stampa Amsterdam ; ; Boston, : Elsevier, 2006
Descrizione fisica 1 online resource (323 p.)
Disciplina 543/.5
Soggetto topico Optical spectroscopy
Optical instruments - Methodology
ISBN 9786610621798
9781280621796
1280621796
9780080461724
0080461727
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front cover; Title page; Copyright; Front matter; Preface; Table of contents; 1 Introduction; Absorption; Light absorption in a bulk medium; Absorption of complex samples; Electronic, vibrational and rotational levels; Wavelength, frequency and energy; Emission; Black body emission; Two level system (Einstein's coefficients); Fluorescence and phosphorescence; Light amplification; Optical spectroscopy; 2 Optics and Optical Devices; Waves; Wave equation; Harmonic waves; Plane waves; Interference; Michelson interferometer; Fabry-Perot interferometer; Interference filters and mirrors; Diffraction
Fresnel formulationFraunhofer diffraction (far field approximation); Diffraction grating; Monochromator; Calculations of optical system (matrix formulation); Geometrical optics approximation; Beam transfer matrix; Imaging and magnification; 3 Lasers for Spectroscopy Applications; Laser active medium; Laser resonators; Resonator with active medium; Resonator bandwidth; Longitudinal modes; Transverse modes; Stable and unstable resonators; Continuous wave lasers; Pulsed lasers; Q-Switched lasers; Mode-locked lasers; Laser amplifiers; Main types of lasers; Nd:YAG lasers; Ion lasers
Excimer lasersDye lasers; Ti:sapphire lasers; Semiconductor lasers; Other lasers used in spectroscopy applications; Non-linear optic effect in laser applications; Second harmonic; Third harmonic; Wave mixing; Parametric amplification and generation of the light; 4 Optical measurements; Noise statistics and accuracy of measurements; Systematic error and random noise; Noise statistics; Statistical approach to measurements; Noise sources; Inaccuracy of indirect measurements; Photosensitive devices; Photodetector performance parameters; Photomultiplier tubes; Semiconductor photo-detectors
Other photo-detectorsMeasurements of the light power; Measurements of the pulse energy; Measurements of the pulse duration; Direct methods; Autocorrelators (indirect methods); 5 Steady State Absorption Spectroscopy; Measurements of the light absorption spectrum; Spectrophotometer schemes; Single channel scheme; Two channel scheme; Spectrophotometers with array detectors; Main characteristics of spectrophotometers; Spectrum range; Spectrum resolution; Sensitivity and absorption range; Instruments, accessories and applications; Spectrophotometer specifications
Cuvettes for absorption spectroscopyApplication notes and examples; 6 Steady State Emission Spectroscopy; Measurement of the Emission Spectrum; Fluorimeter; Optical Scheme; Use of Array Detectors; Evaluation of the Measured Signal; Spectrum Correction; Quantum yield determination by comparison method; Excitation spectrum; Sensitivity; Wavelength resolution; Samples for emission measurements; Excitation-monitoring schemes; Cuvettes; Effect of the sample absorption; Fluorimeter specifications; Water Raman scattering line as sensitivity test; Commercial Fluorimeters
Emission of molecular monolayer: An example
Record Nr. UNINA-9910969697203321
Tkachenko Nikolai V  
Amsterdam ; ; Boston, : Elsevier, 2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Photothermal spectroscopy methods / / Stephen E. Bialkowski (Utah State University, Logan, UT, US), Nelson G.C. Astrath (Universidade Estadual de Maringá, Maringá, PR, BR [Brazil]), Mikhail Proskurnin (Lomonosov Moscow State University, Moscow, RS)
Photothermal spectroscopy methods / / Stephen E. Bialkowski (Utah State University, Logan, UT, US), Nelson G.C. Astrath (Universidade Estadual de Maringá, Maringá, PR, BR [Brazil]), Mikhail Proskurnin (Lomonosov Moscow State University, Moscow, RS)
Autore Bialkowski Stephen
Edizione [Second edition.]
Pubbl/distr/stampa Hoboken, New Jersey : , : Wiley, , 2019
Descrizione fisica 1 online resource (508 pages)
Disciplina 543/.5
Collana Chemical analysis
Soggetto topico Spectrum analysis
Photothermal spectroscopy
ISBN 1-119-27909-7
1-119-27908-9
1-119-27910-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910555047303321
Bialkowski Stephen  
Hoboken, New Jersey : , : Wiley, , 2019
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Photothermal spectroscopy methods / / Stephen E. Bialkowski (Utah State University, Logan, UT, US), Nelson G.C. Astrath (Universidade Estadual de Maringá, Maringá, PR, BR [Brazil]), Mikhail Proskurnin (Lomonosov Moscow State University, Moscow, RS)
Photothermal spectroscopy methods / / Stephen E. Bialkowski (Utah State University, Logan, UT, US), Nelson G.C. Astrath (Universidade Estadual de Maringá, Maringá, PR, BR [Brazil]), Mikhail Proskurnin (Lomonosov Moscow State University, Moscow, RS)
Autore Bialkowski Stephen
Edizione [Second edition.]
Pubbl/distr/stampa Hoboken, New Jersey : , : Wiley, , 2019
Descrizione fisica 1 online resource (508 pages)
Disciplina 543/.5
Collana Chemical analysis
Soggetto topico Spectrum analysis
Photothermal spectroscopy
ISBN 1-119-27909-7
1-119-27908-9
1-119-27910-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910829921303321
Bialkowski Stephen  
Hoboken, New Jersey : , : Wiley, , 2019
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Spectroscopic analysis of chemical species in carbon plasmas induced by high-power IR CO[subscript 2] laser [[electronic resource] /] / J.J. Camacho ... [et al.]
Spectroscopic analysis of chemical species in carbon plasmas induced by high-power IR CO[subscript 2] laser [[electronic resource] /] / J.J. Camacho ... [et al.]
Pubbl/distr/stampa Hauppauge, N.Y., : Nova Science Publishers, Inc., c2011
Descrizione fisica 1 online resource (95 p.)
Disciplina 543/.5
Altri autori (Persone) CamachoJ. J
PoyatoJ. M. L
DíazL
SantosM
Collana Lasers and electro-optics research and technology series
Soggetto topico Laser plasmas
Laser-induced breakdown spectroscopy
Spectrum analysis
High power lasers
Soggetto genere / forma Electronic books.
ISBN 1-62808-773-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910463348203321
Hauppauge, N.Y., : Nova Science Publishers, Inc., c2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
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