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11 Meyer, Ernst Scanning Probe Microscopy I11811 2021 eBook  
12 Day Goodacre, Thomas Applied Laser Spectroscopy for Nuclear Physics I11783 2021 eBook  
13 Yoshida, Yutaka Modern M??ssbauer Spectroscopy I11710 2021 eBook  
14 Lew, Wen Siang Emerging Non-volatile Memory Technologies I11707 2021 eBook  
15 Tanin, Leonid V Biomedical and Resonance Optics I11693 2021 eBook  
16 Singh, Dheeraj Kumar Modern Techniques of Spectroscopy I11643 2021 eBook  
17 Mosley, Connor Devyn William Enhanced Polarisation Control and Extreme Electric Fields I11634 2021 eBook  
18 Chinnici, Ileana Angelo Secchi and Nineteenth Century Science I11618 2021 eBook  
19 Klaus Hentschel Mapping the spectrum OB1062 eBook  
20 Tapan K. Sengupta High accuracy computing methods: Fluid Flows and Wave Phenomena 024783 2013 Book  
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11.    
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TitleScanning Probe Microscopy : The Lab on a Tip
Author(s)Meyer, Ernst;Bennewitz, Roland;Hug, Hans J
PublicationCham, Springer International Publishing, 2021.
DescriptionXIV, 322 p. 194 illus., 89 illus. in color : online resource
Abstract NoteWritten by three leading experts in the field, this book describes and explains all essential aspects of scanning probe microscopy. Emphasis is placed on the experimental design and procedures required to optimize the performance of the various methods described. The book covers not only the physical principles behind this popular technique, but also tackles questions on instrument design, the basic features of the different imaging modes, and recurring artifacts. Novel applications and the latest research results are presented, and the book closes with a look at the future prospects of scanning probe microscopy, while also discussing related techniques in the field of nanoscience. This second edition includes essential scientific updates reflecting the latest research, as well as coverage of new breakthroughs in techniques such as submolecular imaging by atomic force microscopy (AFM), multifrequency AFM, high-speed imaging of biological matter, scanning x-ray microscopy, and tip-enhanced Raman scattering. The book serves as a general, hands-on guide for all types of classes that address scanning probe microscopy. It is ideally suited for graduate and advanced undergraduate students, either for self-study or as a textbook for a dedicated course on the topic. Furthermore, it is an essential component of any scanning probe microscopy laboratory course and a valuable resource for practicing researchers developing and using scanning probe techniques
ISBN,Price9783030370893
Keyword(s)1. Characterization and Analytical Technique 2. CONDENSED MATTER 3. CONDENSED MATTER PHYSICS 4. EBOOK 5. EBOOK - SPRINGER 6. Materials???Analysis 7. MEASUREMENT 8. Measurement Science and Instrumentation 9. MEASURING INSTRUMENTS 10. SPECTROSCOPY 11. SPECTRUM ANALYSIS 12. Surfaces (Technology) 13. Surfaces, Interfaces and Thin Film 14. THIN FILMS
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12.     
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TitleApplied Laser Spectroscopy for Nuclear Physics : Isotope Shifts in the Mercury Isotopic Chain and Laser Ion Source Development
Author(s)Day Goodacre, Thomas
PublicationCham, Springer International Publishing, 2021.
DescriptionXIV, 129 p. 48 illus., 40 illus. in color : online resource
Abstract NoteThis thesis explores two distinct applications of laser spectroscopy: the study of nuclear ground state properties, and element selective radioactive ion beam production. It also presents the methods and results of an investigation into isotope shifts in the mercury isotopic chain. These Resonance Ionization Laser Ion Source (RILIS) developments are detailed, together with an RILIS ionization scheme that allowed laser ionized ion beams of chromium, germanium, radium and tellurium to be generated at the Isotope Mass Separator On-Line (ISOLDE) facility. A combination of laser spectroscopy with decay spectroscopy and mass spectrometry unambiguously demonstrated a cessation of the extreme shape staggering first observed in the 1970s and revealed the characteristic kink at the crossing of the N=126 shell closure. A series of RILIS developments were required to facilitate this experiment, including mercury ???ionization scheme??? development and the coupling of the RILIS with an arc discharge ion source. Laser spectroscopy has since become a powerful tool for nuclear physics and the Resonance Ionization Laser Ion Source (RILIS), of the ISOLDE facility at CERN, is a prime example. Highlighting important advances in this field, the thesis offers a unique and revealing resource.
ISBN,Price9783030738891
Keyword(s)1. ASTRONOMY 2. EBOOK 3. EBOOK - SPRINGER 4. NUCLEAR CHEMISTRY 5. NUCLEAR PHYSICS 6. PHYSICS 7. PHYSICS AND ASTRONOMY 8. SPECTROSCOPY 9. SPECTRUM ANALYSIS
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13.     
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TitleModern M??ssbauer Spectroscopy : New Challenges Based on Cutting-Edge Techniques
Author(s)Yoshida, Yutaka;Langouche, Guido
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionXV, 523 p. 319 illus., 253 illus. in color : online resource
Abstract NoteThis book presents an overview of the latest M??ssbauer spectroscopy research. It sheds light on various cutting-edge research subjects: (i) nuclear resonance scattering experiments implemented at synchrotron radiation facilities, e.g., ESRF, DESY and Spring-8; (ii) multidisciplinary materials research related to chemistry, biology, geoscience, molecular magnetism of metal complexes, batteries, and magnetism; (iii) novel imaging techniques based on probing diffusion in solids using M??ssbauer spectroscopy. The first three chapters introduce recent research on modern M??ssbauer spectroscopy, including nuclear resonant scattering experiments and development of related techniques at synchrotron accelerator facilities. Chapters 4 and 5 then demonstrate the applications of such pioneering techniques to chemistry, biology and geoscience. Chapters 6 and 7 describe the applications to new functional materials, i.e., metal complexes and Li- and Na-ion batteries, while the final two chapters are devoted to two important measuring techniques: M??ssbauer spectroscopy under external magnetic fields, and microscopic M??ssbauer techniques on diffusion in solids, which are expected to play an essential role in the investigation and characterization of magnetic structures and microstructures in materials. The cutting-edge content provides readers with quick updates on the latest research topics in the field, while the tutorial-style descriptions allow readers unfamiliar with M??ssbauer spectroscopy to learn and implement the techniques. As such, the book is especially useful for advanced undergraduate and early graduate students who have recently been assigned to a laboratory
ISBN,Price9789811594229
Keyword(s)1. Characterization and Analytical Technique 2. EBOOK 3. EBOOK - SPRINGER 4. Materials???Analysis 5. MEASUREMENT 6. Measurement Science and Instrumentation 7. MEASURING INSTRUMENTS 8. OPTICAL MATERIALS 9. SPECTROSCOPY 10. SPECTRUM ANALYSIS
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14.     
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TitleEmerging Non-volatile Memory Technologies : Physics, Engineering, and Applications
Author(s)Lew, Wen Siang;Lim, Gerard Joseph;Dananjaya, Putu Andhita
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionVIII, 438 p. 254 illus., 231 illus. in color : online resource
Abstract NoteThis book offers a balanced and comprehensive guide to the core principles, fundamental properties, experimental approaches, and state-of-the-art applications of two major groups of emerging non-volatile memory technologies, i.e. spintronics-based devices as well as resistive switching devices, also known as Resistive Random Access Memory (RRAM). The first section presents different types of spintronic-based devices, i.e. magnetic tunnel junction (MTJ), domain wall, and skyrmion memory devices. This section describes how their developments have led to various promising applications, such as microwave oscillators, detectors, magnetic logic, and neuromorphic engineered systems. In the second half of the book, the underlying device physics supported by different experimental observations and modelling of RRAM devices are presented with memory array level implementation. An insight into RRAM desired properties as synaptic element in neuromorphic computing platforms from material and algorithms viewpoint is also discussed with specific example in automatic sound classification framework
ISBN,Price9789811569128
Keyword(s)1. CONDENSED MATTER 2. CONDENSED MATTER PHYSICS 3. EBOOK 4. EBOOK - SPRINGER 5. ELECTRONIC CIRCUITS 6. Electronic Circuits and Systems 7. MAGNETISM 8. OPTICAL MATERIALS 9. SPECTROSCOPY 10. SPECTRUM ANALYSIS
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15.     
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TitleBiomedical and Resonance Optics : Theory and Practice
Author(s)Tanin, Leonid V;Tanin, Andrei L
PublicationCham, Springer International Publishing, 2021.
DescriptionXXIX, 518 p. 257 illus., 7 illus. in color : online resource
Abstract NoteThis book discusses fundamentally new biomedical imaging methods, such as holography, holographic and resonant interferometry, and speckle optics. It focuses on the development of holographic interference microscopy and its use in the study of phase objects such as nerve and muscle fibers subjected to the influence of laser radiation, magnetic fields, and hyperbaric conditions. The book shows how the myelin sheath and even the axon itself exhibit waveguide properties, enabling a fresh new look at the mechanisms of information transmission in the human body. The book presents theoretically and experimentally tested holographic and speckle-optical methods and devices used for investigating complex, diffusely scattering surfaces such as skin and muscle tissue. Additionally, it gives broad discussion of the authors??? own original fundamental and applied research dedicated to helping physicians introduce new contact-less methods of diagnosis and treatment of diseases of the cardiovascular and neuromuscular systems into medical practice. The book is aimed at a broad spectrum of scientific specialists in the fields of speckle optics, holography, laser physics, morphology and cytochemistry, as well as medical professionals such as physiologists, neuropathologists, neurosurgeons, cardiologists and dentists
ISBN,Price9783030607739
Keyword(s)1. Biomedical engineering 2. Biomedical Engineering and Bioengineering 3. BIOPHYSICS 4. EBOOK 5. EBOOK - SPRINGER 6. LASER 7. LASERS 8. NONLINEAR OPTICS 9. SPECTROSCOPY 10. SPECTRUM ANALYSIS
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16.     
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TitleModern Techniques of Spectroscopy : Basics, Instrumentation, and Applications
Author(s)Singh, Dheeraj Kumar;Pradhan, Manik;Materny, Arnulf
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionXIX, 660 p. 348 illus., 301 illus. in color : online resource
Abstract NoteThe book highlights recent developments in the field of spectroscopy by providing the readers with an updated and high-level of overview. The focus of this book is on the introduction to concepts of modern spectroscopic techniques, recent technological innovations in this field, and current examples of applications to molecules and materials relevant for academia and industry. The book will be beneficial to researchers from various branches of science and technology, and is intended to point them to modern techniques, which might be useful for their specific problems. Spectroscopic techniques, that are discussed include, UV-Visible absorption spectroscopy, XPS, Raman spectroscopy, SERS, TERS, CARS, IR absorption spectroscopy, SFG, LIBS, Quantum cascade laser (QCL) spectroscopy, fluorescence spectroscopy, ellipsometry, cavity-enhanced absorption spectroscopy, such as cavity ring-down spectroscopy (CRDS) and evanescent wave-CRDS both in gas and condensed phases, time-resolved spectroscopy etc. Applications introduced in the different chapters demonstrates the usefulness of the spectroscopic techniques for the characterization of fundamental properties of molecules, e.g. in connection with environmental impact, bio-activity, or usefulness for pharmaceutical drugs, and materials important e.g. for nano-science, nuclear chemistry, or bio-applications. The book presents how spectroscopic techniques can help to better understand substances, which have also great impact on questions of social and economic relevance (environment, alternative energy, etc.)
ISBN,Price9789813360846
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. MEASUREMENT 4. Measurement Science and Instrumentation 5. MEASURING INSTRUMENTS 6. MOLECULAR SPECTROSCOPY 7. Nanochemistry 8. OPTICS 9. Optics and Photonics 10. SPECTROSCOPY 11. SPECTRUM ANALYSIS
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17.     
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TitleEnhanced Polarisation Control and Extreme Electric Fields : Advances in Terahertz Spectroscopy Applied to Anisotropic Materials and Magnetic Phase Transitions
Author(s)Mosley, Connor Devyn William
PublicationCham, Springer International Publishing, 2021.
DescriptionXV, 115 p. 44 illus., 43 illus. in color : online resource
Abstract NoteThis thesis reports advances in terahertz time-domain spectroscopy, relating to the development of new techniques and components that enhance the experimentalist???s control over the terahertz polarisation state produced by photoconductive emitters. It describes how utilising the dynamic magnetoelectric response at THz frequencies, in the form of electromagnons, can probe material properties at a transition between two magnetically ordered phases. Additionally, preliminary investigations into the properties of materials exposed to extreme terahertz optical electric fields are reported. The work presented in this thesis may have immediate impacts on the study of anisotropic media at THz frequencies, with photoconductive emitters and detectors being the most commonly used components for commercially available terahertz spectroscopy and imaging systems, and by providing a new way to study the nature of magnetic phase transitions in multiferroics. In the longer term the increased understanding of multiferroics yielded by ultrafast spectroscopic methods, including terahertz time-domain spectroscopy, may help develop new magnetoelectric and multiferroic materials for applications such as spintronics
ISBN,Price9783030669027
Keyword(s)1. CONDENSED MATTER 2. EBOOK 3. EBOOK - SPRINGER 4. Light-Matter Interaction 5. MAGNETIC MATERIALS 6. OPTICS 7. Phase Transitions and Multiphase Systems 8. SPECTROSCOPY 9. SPECTRUM ANALYSIS 10. Submillimeter waves 11. Terahertz Optics
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18.     
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TitleAngelo Secchi and Nineteenth Century Science : The Multidisciplinary Contributions of a Pioneer and Innovator
Author(s)Chinnici, Ileana;Consolmagno, Guy
PublicationCham, Springer International Publishing, 2021.
DescriptionXXVIII, 381 p. 120 illus., 65 illus. in color : online resource
Abstract NoteAngelo Secchi was a key figure in 19th century science. An Italian Jesuit and scientist, he helped lead the transition from astronomy to astrophysics and left a lasting legacy in the field. Secchi???s spectral classification of stars was a milestone that paved the way for modern astronomical research. He was also a founder of modern meteorology and an innovator in the design and development of new instruments and methods across disciplines. This contributed volume collects together reviews from an international group of historians, scientists and scholars representing the multiple disciplines where Secchi made significant contributions during his remarkable career. It analyzes both his famous and lesser known pioneering efforts with equal vigor, providing a well-rounded narrative of his life???s work. Beyond his scientific and technological work, his role as a Jesuit priest in Rome during the turbulent years of the mid 19th century is also described and placed in the context of his scientific and civic activities
ISBN,Price9783030583842
Keyword(s)1. Astronomy, Observations and Techniques 2. Astronomy???Observations 3. Climate Sciences 4. CLIMATOLOGY 5. EBOOK 6. EBOOK - SPRINGER 7. HISTORY 8. HISTORY OF SCIENCE 9. HISTORY OF TECHNOLOGY 10. MEASUREMENT 11. Measurement Science and Instrumentation 12. MEASURING INSTRUMENTS 13. Science???History 14. SPECTROSCOPY 15. SPECTRUM ANALYSIS 16. TECHNOLOGY
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19.     
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TitleMapping the spectrum : techniques of visual representation in research and teaching
Author(s)Klaus Hentschel
PublicationOxford, 1. c2002 2. Oxford University Press,
Description1 online resource (xii, 362 p.) : ill. (some col.)
Abstract NoteThis work describes how advances in recording and printing technologies have influenced the research and teaching style of succeeding generations of physicists, chemists, and astronomers from the times of spectrum analysis to quantum mechanics
NotesIncludes bibliographical references and index
ISBN,Price9780191709050 (ebook)
Keyword(s)1. EBOOK 2. EBOOK - OXFORD UNIVERSITY PRESS 3. SPECTRUM ANALYSIS 4. Spectrum, Solar 5. Visual communication
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20.    
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TitleHigh accuracy computing methods: Fluid Flows and Wave Phenomena
Author(s)Tapan K. Sengupta
PublicationCambridge, Cambridge University Press, 2013.
Descriptionxix, 569p.
Abstract NoteHigh Accuracy Computing Methods presents topics in a single source format using unified spectral theory of computing. With developments of DNS and LES, practitioners are rediscovering waves as important in fluid flows, and capturing these numerically is central to high accuracy computing. Analysis of waves and its use in numerical methods in propagating energy at the right velocity (dispersion effects) and with right amplitude (dissipation) are essential. Most industrial codes using Reynolds-averaged Navier–Stokes equation with turbulence models cannot conceive of capturing waves. The new themes covered in this book are: • correct error propagation analysis • practical compact schemes and global analysis tool • aliasing error and its alleviation • spurious upstream propagating q-waves • explanation of Gibbs phenomenon • new 1D and 2D filters for LES/DNS without SGS modelling • anisotropic skewed wave propagation • development and analysis of dispersion relation preservation (DRP) schemes • flow instabilities and wave propagation phenomena
ISBN,Price9781107023635 : Rs. 1295.00(HB)
Classification532.5013:681.3
Keyword(s)1. DATA PROCESSING 2. FLUID MECHANICS - DATA PROCESSING 3. HIGHER ACCURACY METHODS 4. SPECTRUM ANALYSIS 5. WAVE MECHANICS - DATA PROCESSING
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