商品数:331件
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book explores inductive inference using the minimum message length (MML) principle, a Bayesian method which is a realisation of Ockham's Razor based on information theory. Accompanied by a library of software, the book can assist an applications programmer, student or researcher in the fields of data analysis and machine learning to write computer programs based upon this principle.</p> <p>MML inference has been around for 50 years and yet only one highly technical book has been written about the subject. The majority of research in the field has been backed by specialised one-off programs but this book includes a library of general MML?based software, in Java. The Java source code is available under the GNU GPL open-source license. The software library is documented using Javadoc which produces extensive cross referenced HTML manual pages. Every probability distribution and statistical model that is described in the book is implemented and documentedin the software library. The library may contain a component that directly solves a reader's inference problem, or contain components that can be put together to solve the problem, or provide a standard interface under which a new component can be written to solve the problem.</p> <p>This book will be of interest to application developers in the fields of machine learning and statistics as well as academics, postdocs, programmers and data scientists. It could also be used by third year or fourth year undergraduate or postgraduate students.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>This book explores inductive inference using the minimum message length (MML) principle, a Bayesian method which is a realisation of Ockham's Razor based on information theory. Accompanied by a library of software, the book can assist an applications programmer, student or researcher in the fields of data analysis and machine learning to write computer programs based upon this principle.</p> <p>MML inference has been around for 50 years and yet only one highly technical book has been written about the subject. The majority of research in the field has been backed by specialised one-off programs but this book includes a library of general MML?based software, in Java. The Java source code is available under the GNU GPL open-source license. The software library is documented using Javadoc which produces extensive cross referenced HTML manual pages. Every probability distribution and statistical model that is described in the book is implemented and documentedin the software library. The library may contain a component that directly solves a reader's inference problem, or contain components that can be put together to solve the problem, or provide a standard interface under which a new component can be written to solve the problem.</p> <p>This book will be of interest to application developers in the fields of machine learning and statistics as well as academics, postdocs, programmers and data scientists. It could also be used by third year or fourth year undergraduate or postgraduate students.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Lasers are progressively more used as versatile tools for fabrication purposes. The wide range of available powers, wavelengths, operation modes, repetition rates etc. facilitate the processing of a large spectrum of materials at exceptional precision and quality. Hence, manifold methods were established in the past and novel methods are continuously under development. Biomimetics, the translation from nature-inspired principles to technical applications, is strongly multidisciplinary. This field offers intrinsically a wide scope of applications for laser based methods regarding structuring and modification of materials. This book is dedicated to laser fabrication methods in biomimetics. It introduces both, a laser technology as well as an application focused approach. The book covers the most important laser lithographic methods and various biomimetics application scenarios ranging from coatings and biotechnology to construction, medical applications and photonics.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>Lasers are progressively more used as versatile tools for fabrication purposes. The wide range of available powers, wavelengths, operation modes, repetition rates etc. facilitate the processing of a large spectrum of materials at exceptional precision and quality. Hence, manifold methods were established in the past and novel methods are continuously under development. Biomimetics, the translation from nature-inspired principles to technical applications, is strongly multidisciplinary. This field offers intrinsically a wide scope of applications for laser based methods regarding structuring and modification of materials. This book is dedicated to laser fabrication methods in biomimetics. It introduces both, a laser technology as well as an application focused approach. The book covers the most important laser lithographic methods and various biomimetics application scenarios ranging from coatings and biotechnology to construction, medical applications and photonics.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>The work in this thesis was a part of the experiment of squeezed light injection into the LIGO interferometer. The work first discusses the detailed design of the squeezed light source which would be used for the experiment. The specific design is the doubly-resonant, traveling-wave bow-tie cavity squeezed light source with a new modified coherent sideband locking technique. The thesis describes the properties affecting the squeezing magnitudes and offers solutions which improve the gain. The first part also includes the detailed modeling of the back-scattering noise of a traveling Optical Parametric Oscillator (OPO). In the second part, the thesis discusses the LIGO Squeezed Light Injection Experiment, undertaken to test squeezed light injection into a 4km interferometric gravitational wave detector. The results show the first ever measurement of squeezing enhancement in a full-scale suspended gravitational wave interferometer with Fabry-Perot arms. Further, it showed that the presence of a squeezed-light source added no additional noise in the low frequency band. The result was the best sensitivity achieved by any gravitational wave detector. The thesis is very well organized with the adequate theoretical background including basics of Quantum Optics, Quantum noise pertaining to gravitational wave detectors in various configurations, along with extensive referencing necessary for the experimental set-up. For any non-experimental scientist, this introduction is a very useful and enjoyable reading. The author is the winner of the 2013 GWIC Theses Prize.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>The work in this thesis was a part of the experiment of squeezed light injection into the LIGO interferometer. The work first discusses the detailed design of the squeezed light source which would be used for the experiment. The specific design is the doubly-resonant, traveling-wave bow-tie cavity squeezed light source with a new modified coherent sideband locking technique. The thesis describes the properties affecting the squeezing magnitudes and offers solutions which improve the gain. The first part also includes the detailed modeling of the back-scattering noise of a traveling Optical Parametric Oscillator (OPO). In the second part, the thesis discusses the LIGO Squeezed Light Injection Experiment, undertaken to test squeezed light injection into a 4km interferometric gravitational wave detector. The results show the first ever measurement of squeezing enhancement in a full-scale suspended gravitational wave interferometer with Fabry-Perot arms. Further, it showed that the presence of a squeezed-light source added no additional noise in the low frequency band. The result was the best sensitivity achieved by any gravitational wave detector. The thesis is very well organized with the adequate theoretical background including basics of Quantum Optics, Quantum noise pertaining to gravitational wave detectors in various configurations, along with extensive referencing necessary for the experimental set-up. For any non-experimental scientist, this introduction is a very useful and enjoyable reading. The author is the winner of the 2013 GWIC Theses Prize.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Scientific advances and several technical breakthroughs have led to a remarkable increase in available laser intensities over the past decades. In available ultra-intense laser fields, photon fluxes may become so high that free charge carriers interact coherently with several of the field's photons. In this thesis such nonlinear interactions are investigated for the prime example of radiation emission by electrons scattered from intense laser pulses of arbitrary temporal structure. To this end, nonlinear quantum field theory is employed taking the interaction with the laser into account exactly. After an in-depth introduction to classical particle dynamics as well as quantum field theory in nonlinearly intense laser fields the emission of one and two photons is explicitly analyzed. The results are then translated to viable technical applications, such as a scheme for the determination of the carrier-envelope phase of ultra-intense laser pulses and a proposal for detecting the strongly suppressed two-photon signal.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>Scientific advances and several technical breakthroughs have led to a remarkable increase in available laser intensities over the past decades. In available ultra-intense laser fields, photon fluxes may become so high that free charge carriers interact coherently with several of the field's photons. In this thesis such nonlinear interactions are investigated for the prime example of radiation emission by electrons scattered from intense laser pulses of arbitrary temporal structure. To this end, nonlinear quantum field theory is employed taking the interaction with the laser into account exactly. After an in-depth introduction to classical particle dynamics as well as quantum field theory in nonlinearly intense laser fields the emission of one and two photons is explicitly analyzed. The results are then translated to viable technical applications, such as a scheme for the determination of the carrier-envelope phase of ultra-intense laser pulses and a proposal for detecting the strongly suppressed two-photon signal.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Bringing together scattered literature from a range of sources, Laser Spectroscopy and ItsApplications clearly elucidates the tools and concepts of this dynamic area, and providesextensive bibliographies for further study.Distinguished experts in their respective fields discuss resonance photoionization, laser absorption,laser-induced breakdown, photodissociation, Raman scattering, remote sensing,and laser-induced fluorescence. The book also incorporates an overview of the semiclassicaltheory of atomic and molecular spectra.Combining background at an intermediate level with an in-depth discussion of specifictechniques, Laser Spectroscopy and Its Applications is essential reading for laser and opticalscientists and engineers; analytical chemists; health physicists; researchers in optical,chemical, pharmaceutical, and metallurgical industries. It will also prove useful for upperlevelundergraduate and graduate students of laser spectroscopy and its applications, andin-house seminars and short courses offered by firms and professional societies.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>Bringing together scattered literature from a range of sources, Laser Spectroscopy and ItsApplications clearly elucidates the tools and concepts of this dynamic area, and providesextensive bibliographies for further study.Distinguished experts in their respective fields discuss resonance photoionization, laser absorption,laser-induced breakdown, photodissociation, Raman scattering, remote sensing,and laser-induced fluorescence. The book also incorporates an overview of the semiclassicaltheory of atomic and molecular spectra.Combining background at an intermediate level with an in-depth discussion of specifictechniques, Laser Spectroscopy and Its Applications is essential reading for laser and opticalscientists and engineers; analytical chemists; health physicists; researchers in optical,chemical, pharmaceutical, and metallurgical industries. It will also prove useful for upperlevelundergraduate and graduate students of laser spectroscopy and its applications, andin-house seminars and short courses offered by firms and professional societies.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【楽天ブックスならいつでも送料無料】LASER POLARIMETRY OF BIOLOGICA Springerbriefs in Applied Sciences and Technology Zhengbin Hu I. L. Bezhenar O. Y. Vanchulyak SPRINGER NATURE2023 Paperback 2023 English ISBN:9789819917334 洋書 Computers & Science(コンピューター&科学) Science
【楽天ブックスならいつでも送料無料】
LASER POLARIMETRY OF BIOLOGICA Springerbriefs in Applied Sciences and Technology Zhengbin Hu I. L. Bezhenar O. Y. Vanchulyak SPRINGER NATURE2023 Paperback 2023 English ISBN:9789819917334 洋書 Computers & Science(コンピューター&科学) Science
【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Recent advances in the development of lasers with more energy, power, and brightness have opened up new possibilities for exciting applications. Applications of Laser-Plasma Interactions reviews the current status of high power laser applications. The book first explores the science and technology behind the ignition and burn of imploded fusion fue</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>Recent advances in the development of lasers with more energy, power, and brightness have opened up new possibilities for exciting applications. Applications of Laser-Plasma Interactions reviews the current status of high power laser applications. The book first explores the science and technology behind the ignition and burn of imploded fusion fue</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Laser cladding is an additive manufacturing technology capable of producing coatings due to the surface fusion of metals. The selected powder is fed into a focused laser beam to be melted and deposited as coating. This allows to apply material in a selected way onto those required sections of complex components. The process main properties are the production of a perfect metallurgically bonded and fully dense coatings; the minimal heat affected zone and low dilution between the substrate and filler material resulting in functional coatings that perform at reduced thickness, so fewer layers are applied; fine, homogeneous microstructure resulting from the rapid solidification rate that promotes wear resistance of carbide coatings; near net-shape weld build-up requires little finishing effort; extended weldability of sensitive materials like carbon-rich steels or nickel-based superalloys that are difficult or even impossible to weld using conventional welding processes; post-weld heat treatment is often eliminated as the small heat affected zone minimizes component stress; excellent process stability and reproducibility because it is numerical controlled welding process. The typical applications are the dimensional restoration; the wear and corrosion protection; additive manufacturing.</p> <p>The wide range of materials that can be deposited and its suitability for treating small areas make laser cladding particularly appropriate to tailor surface properties to local service requirements and it opens up a new perspective for surface engineered materials. The main key aspect to be scientifically and technologically explored are the type of laser; the powders properties; the processing parameters; the consequent microstructural and mechanical properties of the processed material; the capability of fabrication of prototypes to rapid tooling and rapid manufacturing.</p> <ul> <li>Distills critical concepts, methods, and applications from leading full-lengthchapters, along with the authors’s own deep understanding of the material taught, into a concise yet rigorous graduate and advanced undergraduate text;</li> <li>Reinforces concepts covered with detailed solutions to illuminating and challenging industrial applications;</li> <li>Discusses current and future applications of laser cladding in additive manufacturing.</li> </ul>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>Laser cladding is an additive manufacturing technology capable of producing coatings due to the surface fusion of metals. The selected powder is fed into a focused laser beam to be melted and deposited as coating. This allows to apply material in a selected way onto those required sections of complex components. The process main properties are the production of a perfect metallurgically bonded and fully dense coatings; the minimal heat affected zone and low dilution between the substrate and filler material resulting in functional coatings that perform at reduced thickness, so fewer layers are applied; fine, homogeneous microstructure resulting from the rapid solidification rate that promotes wear resistance of carbide coatings; near net-shape weld build-up requires little finishing effort; extended weldability of sensitive materials like carbon-rich steels or nickel-based superalloys that are difficult or even impossible to weld using conventional welding processes; post-weld heat treatment is often eliminated as the small heat affected zone minimizes component stress; excellent process stability and reproducibility because it is numerical controlled welding process. The typical applications are the dimensional restoration; the wear and corrosion protection; additive manufacturing.</p> <p>The wide range of materials that can be deposited and its suitability for treating small areas make laser cladding particularly appropriate to tailor surface properties to local service requirements and it opens up a new perspective for surface engineered materials. The main key aspect to be scientifically and technologically explored are the type of laser; the powders properties; the processing parameters; the consequent microstructural and mechanical properties of the processed material; the capability of fabrication of prototypes to rapid tooling and rapid manufacturing.</p> <ul> <li>Distills critical concepts, methods, and applications from leading full-lengthchapters, along with the authors’s own deep understanding of the material taught, into a concise yet rigorous graduate and advanced undergraduate text;</li> <li>Reinforces concepts covered with detailed solutions to illuminating and challenging industrial applications;</li> <li>Discusses current and future applications of laser cladding in additive manufacturing.</li> </ul>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p><strong>LASER INTER-SATELLITE LINKS TECHNOLOGY</strong></p> <p><strong>State of the art resource covering key technologies and related theories of inter-satellite links</strong></p> <p><em>Laser Inter-Satellite Links Technology</em> explores satellite networking as a growing topic in the field of communication technology, introducing the definition, types, and working frequency bands of inter-satellite links, discussing the number of orbital elements of the spacecraft motion state under two-body motion and their conversion relationship, and establishing the basic demand model for inter-satellite link network, chain topology model, and transmission protocol model.</p> <p>The book focuses on the analysis and introduction of the principles and error sources of microwave and laser inter-satellite ranging, including the basic composition, workflow, and constraints of the laser inter-satellite link, and related design principles of the inter-satellite laser transmitter and receivers. Later chapters also discuss theories and methods of acquisition, alignment, and tracking, the impact of alignment errors on performance, and inter-satellite link modulation and its implementation.</p> <p>Specific sample topics covered in <em>Laser Inter-Satellite Links Technology</em> include:</p> <ul> <li>Pulse position modulation (PPM), differential pulse position modulation (DPPM), digital pulse interval modulation (DPIM), and double-head pulse interval modulation (DH-PIM)</li> <li>Basic demand model of inter-satellite link network application, including basic configuration of constellations and inter-satellite transmission networks</li> <li>Inter-satellite ranging accuracy, principles of microwave inter-satellite ranging, and analysis of microwave ranging error sources</li> <li>Effect of tracking error on the beam distribution at the receiving end and influence of tracking and pointing error on communication error rate</li> </ul> <p><em>Laser Inter-Satellite Links Technology</em> serves a completely comprehensive resource on the subject and is a must-have reference for experts and scholars in aerospace, along with graduates and senior undergraduates in related programs of study.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p><strong>LASER INTER-SATELLITE LINKS TECHNOLOGY</strong></p> <p><strong>State of the art resource covering key technologies and related theories of inter-satellite links</strong></p> <p><em>Laser Inter-Satellite Links Technology</em> explores satellite networking as a growing topic in the field of communication technology, introducing the definition, types, and working frequency bands of inter-satellite links, discussing the number of orbital elements of the spacecraft motion state under two-body motion and their conversion relationship, and establishing the basic demand model for inter-satellite link network, chain topology model, and transmission protocol model.</p> <p>The book focuses on the analysis and introduction of the principles and error sources of microwave and laser inter-satellite ranging, including the basic composition, workflow, and constraints of the laser inter-satellite link, and related design principles of the inter-satellite laser transmitter and receivers. Later chapters also discuss theories and methods of acquisition, alignment, and tracking, the impact of alignment errors on performance, and inter-satellite link modulation and its implementation.</p> <p>Specific sample topics covered in <em>Laser Inter-Satellite Links Technology</em> include:</p> <ul> <li>Pulse position modulation (PPM), differential pulse position modulation (DPPM), digital pulse interval modulation (DPIM), and double-head pulse interval modulation (DH-PIM)</li> <li>Basic demand model of inter-satellite link network application, including basic configuration of constellations and inter-satellite transmission networks</li> <li>Inter-satellite ranging accuracy, principles of microwave inter-satellite ranging, and analysis of microwave ranging error sources</li> <li>Effect of tracking error on the beam distribution at the receiving end and influence of tracking and pointing error on communication error rate</li> </ul> <p><em>Laser Inter-Satellite Links Technology</em> serves a completely comprehensive resource on the subject and is a must-have reference for experts and scholars in aerospace, along with graduates and senior undergraduates in related programs of study.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Unified Field Theory was an expression first used by Einstein in his attempt to unify general relativity with electromagnetism. Unified Field Theory and Occam's Razor attempts to provide real answers to foundational questions related to this unification and should be of high interest to innovative scientists. A diverse group of contributing authors approach an old problem with an open-mindedness that presents a new and fresh perspective. The following topics are discussed in detail in the hope of a fruitful dialogue with all who are interested in this subject:</p> <p>This highly original book brings together theoretical researchers and experimentalists specialized in the areas of mathematics and epistemology, theoretical and experimental physics, engineering, and technology. For years they have worked independently on topics related to the foundations and unity of physics and have had numerous overlapping ideas in terms of using Clifford algebra and spinors. Within the book, new technology applications are outlined and theoretical results are complemented by interpretations of experimental data.</p> <p><strong>Contents:</strong></p> <ul> <li> <p>Preface</p> </li> <li> <p>About the Authors</p> </li> <li> <p>Mathematical Preliminaries <em>(Paul O'Hara, Giorgio Vassallo, and Andr?s Kov?cs)</em></p> </li> <li> <p><em><strong>Foundations: Electromagnetism, General Relativity, and Quantum Mechanics:</strong></em></p> <ul> <li>Maxwell's Equations and Occam's Razor <em>(Francesco Celani, Antonino Oscar Di Tommaso, and Giorgio Vassallo)</em></li> <li>Electromagnetic and Quantum Mechanical Waves <em>(Andr?s Kov?cs and Paul O'Hara)</em></li> <li>The Electron and Occam's Razor <em>(Francesco Celani, Antonino Oscar Di Tommaso, and Giorgio Vassallo)</em></li> <li>The Aharonov?Bohm Effect, Proca Fields, and Flux Quantization <em>(Giorgio Vassallo and Antonino Oscar Di Tommaso)</em></li> <li>Wave?Particle Duality <em>(Paul O'Hara, Andr?s Kov?cs, and Giorgio Vassallo)</em></li> <li>Battle of Theories: Magnetic Moment and Lamb Shift Calculations <em>(Andr?s Kov?cs)</em></li> <li>Spinor Fields <em>(Andr?s Kov?cs and Giorgio Vassallo)</em></li> <li>Electron Orbitals and Space?Time Curvature <em>(Paul O'Hara and Andr?s Kov?cs)</em></li> <li>The Pauli Exclusion Principle <em>(Paul O'Hara and Andr?s Kov?cs)</em></li> <li>Electron Dynamics in Metals <em>(Andr?s Kov?cs)</em></li> </ul> </li> <li> <p><em><strong>Experimental Validation and Practical Applications:</strong></em></p> <ul> <li>Superconductivity <em>(Andr?s Kov?cs and Giorgio Vassallo)</em></li> <li>Compton-Scale Electron?Proton Composite <em>(Andr?s Kov?cs)</em>/li></li> <li>Electron-Mediated Nuclear Fusion <em>(Andr?s Kov?cs and Giorgio Vassallo)</em></li> <li>Nuclear Forces and Occam's Razor <em>(Andr?s Kov?cs)</em></li> <li>Transmutations by Evanescent Neutrinos <em>(Andr?s Kov?cs)</em></li> <li>Do Magnetic Monopoles Exist? <em>(Andr?s Kov?cs)</em></li> <li>Simple Experiments <em>(Andr?s Kov?cs and Francesco Celani)</em></li> </ul> </li> </ul> <p><strong>Readership:</strong> Advanced undergraduate and graduate students, researchers and practitioners studying the foundations of quantum physics, Maxwell's equations and general relativity. In other words, the book is for all who are interested in a Unified Field Theory applicable at all scales.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>Unified Field Theory was an expression first used by Einstein in his attempt to unify general relativity with electromagnetism. Unified Field Theory and Occam's Razor attempts to provide real answers to foundational questions related to this unification and should be of high interest to innovative scientists. A diverse group of contributing authors approach an old problem with an open-mindedness that presents a new and fresh perspective. The following topics are discussed in detail in the hope of a fruitful dialogue with all who are interested in this subject:</p> <p>This highly original book brings together theoretical researchers and experimentalists specialized in the areas of mathematics and epistemology, theoretical and experimental physics, engineering, and technology. For years they have worked independently on topics related to the foundations and unity of physics and have had numerous overlapping ideas in terms of using Clifford algebra and spinors. Within the book, new technology applications are outlined and theoretical results are complemented by interpretations of experimental data.</p> <p><strong>Contents:</strong></p> <ul> <li> <p>Preface</p> </li> <li> <p>About the Authors</p> </li> <li> <p>Mathematical Preliminaries <em>(Paul O'Hara, Giorgio Vassallo, and Andr?s Kov?cs)</em></p> </li> <li> <p><em><strong>Foundations: Electromagnetism, General Relativity, and Quantum Mechanics:</strong></em></p> <ul> <li>Maxwell's Equations and Occam's Razor <em>(Francesco Celani, Antonino Oscar Di Tommaso, and Giorgio Vassallo)</em></li> <li>Electromagnetic and Quantum Mechanical Waves <em>(Andr?s Kov?cs and Paul O'Hara)</em></li> <li>The Electron and Occam's Razor <em>(Francesco Celani, Antonino Oscar Di Tommaso, and Giorgio Vassallo)</em></li> <li>The Aharonov?Bohm Effect, Proca Fields, and Flux Quantization <em>(Giorgio Vassallo and Antonino Oscar Di Tommaso)</em></li> <li>Wave?Particle Duality <em>(Paul O'Hara, Andr?s Kov?cs, and Giorgio Vassallo)</em></li> <li>Battle of Theories: Magnetic Moment and Lamb Shift Calculations <em>(Andr?s Kov?cs)</em></li> <li>Spinor Fields <em>(Andr?s Kov?cs and Giorgio Vassallo)</em></li> <li>Electron Orbitals and Space?Time Curvature <em>(Paul O'Hara and Andr?s Kov?cs)</em></li> <li>The Pauli Exclusion Principle <em>(Paul O'Hara and Andr?s Kov?cs)</em></li> <li>Electron Dynamics in Metals <em>(Andr?s Kov?cs)</em></li> </ul> </li> <li> <p><em><strong>Experimental Validation and Practical Applications:</strong></em></p> <ul> <li>Superconductivity <em>(Andr?s Kov?cs and Giorgio Vassallo)</em></li> <li>Compton-Scale Electron?Proton Composite <em>(Andr?s Kov?cs)</em>/li></li> <li>Electron-Mediated Nuclear Fusion <em>(Andr?s Kov?cs and Giorgio Vassallo)</em></li> <li>Nuclear Forces and Occam's Razor <em>(Andr?s Kov?cs)</em></li> <li>Transmutations by Evanescent Neutrinos <em>(Andr?s Kov?cs)</em></li> <li>Do Magnetic Monopoles Exist? <em>(Andr?s Kov?cs)</em></li> <li>Simple Experiments <em>(Andr?s Kov?cs and Francesco Celani)</em></li> </ul> </li> </ul> <p><strong>Readership:</strong> Advanced undergraduate and graduate students, researchers and practitioners studying the foundations of quantum physics, Maxwell's equations and general relativity. In other words, the book is for all who are interested in a Unified Field Theory applicable at all scales.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book focuses on laser-triggered nanobiomaterials for tumor inhibition. In this book, magnetic iron oxide nanoparticle-mediated cancer PTT through intratumoral or/and intravenous injection is introduced first. The benefits of intratumoral injection and the main factors affecting the retention of materials and permeability in solid tumors have been discussed. Furthermore, an attempt has been made to explore the performance of magnetic iron oxide nanoparticles after intravenous injection for tumor-targeted PTT based on several strategies. The latter part probes the gaps to improve magnetic iron oxide nanoparticle-mediated PTT through intratumoral and intravenous injection modes. This book also includes discussion on drug-loaded magnetic nanocomposites, magnetic iron oxide/Au nanocomposites, and magnetic iron oxide/semiconductor nanocrystal nanocomposites for combination cancer therapy, and enhanced cancer PTT has also been included as an integral part. This book also summarizes the most investigated photothermal agents, including noble metal nanoparticles, especially gold nanostars, hollow mesoporous copper sulfide nanoparticles, carbon-based nanoparticles, especially carbon nanotubes and graphic carbon nanocages, black phosphorous nanosheets, conjugated polymer nanoparticles, and organic dye nanoparticles.</p> <p>This book is useful for undergraduate and postgraduate students to better understand this research area. It may also provide useful information for technical nonspecialists whose background is in nanoscience and nanotechnology, biology, medicine, pharmacy, materials, chemistry, and physics.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>This book focuses on laser-triggered nanobiomaterials for tumor inhibition. In this book, magnetic iron oxide nanoparticle-mediated cancer PTT through intratumoral or/and intravenous injection is introduced first. The benefits of intratumoral injection and the main factors affecting the retention of materials and permeability in solid tumors have been discussed. Furthermore, an attempt has been made to explore the performance of magnetic iron oxide nanoparticles after intravenous injection for tumor-targeted PTT based on several strategies. The latter part probes the gaps to improve magnetic iron oxide nanoparticle-mediated PTT through intratumoral and intravenous injection modes. This book also includes discussion on drug-loaded magnetic nanocomposites, magnetic iron oxide/Au nanocomposites, and magnetic iron oxide/semiconductor nanocrystal nanocomposites for combination cancer therapy, and enhanced cancer PTT has also been included as an integral part. This book also summarizes the most investigated photothermal agents, including noble metal nanoparticles, especially gold nanostars, hollow mesoporous copper sulfide nanoparticles, carbon-based nanoparticles, especially carbon nanotubes and graphic carbon nanocages, black phosphorous nanosheets, conjugated polymer nanoparticles, and organic dye nanoparticles.</p> <p>This book is useful for undergraduate and postgraduate students to better understand this research area. It may also provide useful information for technical nonspecialists whose background is in nanoscience and nanotechnology, biology, medicine, pharmacy, materials, chemistry, and physics.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p><strong>Laser-Based Additive Manufacturing</strong></p> <p><strong>Explore laser-based additive manufacturing processes via multi-scale modeling and computer simulation</strong></p> <p>In <em>Laser-Based Additive Manufacturing: Modeling, Simulation, and Experiments,</em> a distinguished team of researchers delivers an incisive framework for understanding materials processing using laser-based additive manufacturing (LAM). The book describes the use of computational modeling and simulation to explore and describe the LAM technique, to improve the compositional, phase, and microstructural evolution of the material, and to enhance the mechanical, chemical, and functional properties of the manufactured components.</p> <p>The accomplished authors combine a comprehensive overview of multi-scale modeling and simulation with experimental and practical observations, offering a systematic review of laser-material interactions in advanced LAM processes. They also describe the real-world applications of LAM, including component processing and surface functionalization.</p> <p>In addition to explorations of residual stresses, three-dimensional defects, and surface physical texture in LAM, readers will also find:</p> <ul> <li>A thorough introduction to additive manufacturing (AM), including the advantages of AM over conventional manufacturing and the challenges involved with using the technology</li> <li>A comprehensive exploration of computation materials science, including length- and time-scales in materials modeling and the current state of computational modeling in LAM</li> <li>Practical discussions of laser-material interaction in LAM, including the conversion of light energy to heat, modes of heat dissipation, and the dynamics of the melt-pool</li> <li>In-depth examinations of the microstructural and mechanical aspects of LAM integrated with modeling</li> </ul> <p>Perfect for materials scientists, mechanical engineers, and physicists, <em>Laser-Based Additive Manufacturing: Modeling, Simulation, and Experiments</em> is perfect for anyone seeking an insightful treatment of this cutting-edge technology in the areas of alloys, ceramics, and composites.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p><strong>Laser-Based Additive Manufacturing</strong></p> <p><strong>Explore laser-based additive manufacturing processes via multi-scale modeling and computer simulation</strong></p> <p>In <em>Laser-Based Additive Manufacturing: Modeling, Simulation, and Experiments,</em> a distinguished team of researchers delivers an incisive framework for understanding materials processing using laser-based additive manufacturing (LAM). The book describes the use of computational modeling and simulation to explore and describe the LAM technique, to improve the compositional, phase, and microstructural evolution of the material, and to enhance the mechanical, chemical, and functional properties of the manufactured components.</p> <p>The accomplished authors combine a comprehensive overview of multi-scale modeling and simulation with experimental and practical observations, offering a systematic review of laser-material interactions in advanced LAM processes. They also describe the real-world applications of LAM, including component processing and surface functionalization.</p> <p>In addition to explorations of residual stresses, three-dimensional defects, and surface physical texture in LAM, readers will also find:</p> <ul> <li>A thorough introduction to additive manufacturing (AM), including the advantages of AM over conventional manufacturing and the challenges involved with using the technology</li> <li>A comprehensive exploration of computation materials science, including length- and time-scales in materials modeling and the current state of computational modeling in LAM</li> <li>Practical discussions of laser-material interaction in LAM, including the conversion of light energy to heat, modes of heat dissipation, and the dynamics of the melt-pool</li> <li>In-depth examinations of the microstructural and mechanical aspects of LAM integrated with modeling</li> </ul> <p>Perfect for materials scientists, mechanical engineers, and physicists, <em>Laser-Based Additive Manufacturing: Modeling, Simulation, and Experiments</em> is perfect for anyone seeking an insightful treatment of this cutting-edge technology in the areas of alloys, ceramics, and composites.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book explores different aspects of LA-ICP-MS (laser ablation-inductively coupled plasma-mass spectrometry). It presents a large array of new analytical protocols for elemental or isotope analysis. LA-ICP-MS is a powerful tool that combines a sampling device able to remove very small quantities of material without leaving visible damage at the surface of an object. Furthermore, it functions as a sensitive analytical instrument that measures, within a few seconds, a wide range of isotopes in inorganic samples. Determining the elemental or the isotopic composition of ancient material is essential to address questions related to ancient technology or provenance and therefore aids archaeologists in reconstructing exchange networks for goods, people and ideas. Recent improvements of LA-ICP-MS have opened new avenues of research that are explored in this volume.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>This book explores different aspects of LA-ICP-MS (laser ablation-inductively coupled plasma-mass spectrometry). It presents a large array of new analytical protocols for elemental or isotope analysis. LA-ICP-MS is a powerful tool that combines a sampling device able to remove very small quantities of material without leaving visible damage at the surface of an object. Furthermore, it functions as a sensitive analytical instrument that measures, within a few seconds, a wide range of isotopes in inorganic samples. Determining the elemental or the isotopic composition of ancient material is essential to address questions related to ancient technology or provenance and therefore aids archaeologists in reconstructing exchange networks for goods, people and ideas. Recent improvements of LA-ICP-MS have opened new avenues of research that are explored in this volume.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Computer Vision & Laser Vibrometry, Volume 6: Proceedings of the 41st IMAC, A Conference and Exposition on Structural Dynamics, 2023, the sixth volume of ten from the Conference brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Computer Vision, Laser Vibrometry and Structural Health Monitoring, including papers on:</p> <ul> <li>Novel Techniques</li> <li>Optical Methods,</li> <li>Scanning LDV Methods</li> <li>Photogrammetry & DIC</li> <li>Structural Health Monitoring</li> </ul>画面が切り替わりますので、しばらくお待ち下さい。
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<p>Computer Vision & Laser Vibrometry, Volume 6: Proceedings of the 41st IMAC, A Conference and Exposition on Structural Dynamics, 2023, the sixth volume of ten from the Conference brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Computer Vision, Laser Vibrometry and Structural Health Monitoring, including papers on:</p> <ul> <li>Novel Techniques</li> <li>Optical Methods,</li> <li>Scanning LDV Methods</li> <li>Photogrammetry & DIC</li> <li>Structural Health Monitoring</li> </ul>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p><strong>An important guide to the major techniques for generating coherent light in the mid-infrared region of the spectrum</strong></p> <p><em>Laser-based Mid-infrared Sources and Applications</em> gives a comprehensive overview of the existing methods for generating coherent light in the important yet difficult-to-reach mid-infrared region of the spectrum (2?20 μm) and their applications.</p> <p>The book describes major approaches for mid-infrared light generation including ion-doped solid-state lasers, fiber lasers, semiconductor lasers, and laser sources based on nonlinear optical frequency conversion, and reviews a range of applications: spectral recognition of molecules and trace gas sensing, biomedical and military applications, high-field physics and attoscience, and others. Every chapter starts with the fundamentals for a given technique that enables self-directed study, while extensive references help conduct deeper research.</p> <p><em>Laser-based Mid-infrared Sources and Applications</em> provides up-to-date information on the state-of the art mid-infrared sources, discusses in detail the advancements made over the last two decades such as microresonators and interband cascade lasers, and explores novel approaches that are currently subjects of intense research such as supercontinuum and frequency combs generation. This important book:</p> <p>? Explains the fundamental principles and major techniques for coherent mid-infrared light generation</p> <p>? Discusses recent advancements and current cutting-edge research in the field</p> <p>? Highlights important biomedical, environmental, and military applications</p> <p>Written for researchers, academics, students, and engineers from different disciplines, the book helps navigate the rapidly expanding field of mid-infrared laser-based technologies.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p><strong>An important guide to the major techniques for generating coherent light in the mid-infrared region of the spectrum</strong></p> <p><em>Laser-based Mid-infrared Sources and Applications</em> gives a comprehensive overview of the existing methods for generating coherent light in the important yet difficult-to-reach mid-infrared region of the spectrum (2?20 μm) and their applications.</p> <p>The book describes major approaches for mid-infrared light generation including ion-doped solid-state lasers, fiber lasers, semiconductor lasers, and laser sources based on nonlinear optical frequency conversion, and reviews a range of applications: spectral recognition of molecules and trace gas sensing, biomedical and military applications, high-field physics and attoscience, and others. Every chapter starts with the fundamentals for a given technique that enables self-directed study, while extensive references help conduct deeper research.</p> <p><em>Laser-based Mid-infrared Sources and Applications</em> provides up-to-date information on the state-of the art mid-infrared sources, discusses in detail the advancements made over the last two decades such as microresonators and interband cascade lasers, and explores novel approaches that are currently subjects of intense research such as supercontinuum and frequency combs generation. This important book:</p> <p>? Explains the fundamental principles and major techniques for coherent mid-infrared light generation</p> <p>? Discusses recent advancements and current cutting-edge research in the field</p> <p>? Highlights important biomedical, environmental, and military applications</p> <p>Written for researchers, academics, students, and engineers from different disciplines, the book helps navigate the rapidly expanding field of mid-infrared laser-based technologies.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Developed from the authors' classroom-tested material, Semiconductor Laser Theory takes a semiclassical approach to teaching the principles, structure, and applications of semiconductor lasers. Designed for graduate students in physics, electrical engineering, and materials science, the text covers many recent developments, including diode lasers u</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>Developed from the authors' classroom-tested material, Semiconductor Laser Theory takes a semiclassical approach to teaching the principles, structure, and applications of semiconductor lasers. Designed for graduate students in physics, electrical engineering, and materials science, the text covers many recent developments, including diode lasers u</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p><em>Molecular and Laser Spectroscopy,</em> <em>Advances and Applications:</em> <em>Volume 2</em> gives students and researchers an up-to-date understanding of the fast-developing area of molecular and laser spectroscopy. This book covers basic principles and advances in several conventional as well as new and upcoming areas of molecular and laser spectroscopy, such as a wide range of applications in medical science, material science, standoff detection, defence and security, chemicals and pharmaceuticals, and environmental science. It covers the latest advancements, both in terms of techniques and applications, and highlights future projections.</p> <p>Editors V.P. Gupta and Yukihiro Ozaki have brought together eminent scientists in different areas of spectroscopy to develop specialized topics in conventional molecular spectroscopy (Cavity ringdown, Matrix Isolation, Intense THz, Far- and Deep- UV, Optogalvanic ), linear and nonlinear laser spectroscopy (Rayleigh & Raman Scattering), Ultrafast Time-resolved spectroscopy, and medical applications of molecular spectroscopy. and advanced material found in research articles. This new volume expands upon the topics covered in the first volume for scientists to learn the latest techniques and put them to practical use in their work.</p> <ul> <li>Covers several areas of spectroscopy research and expands upon topics covered in the first volume</li> <li>Includes exhaustive lists of research articles, reviews, and books at the end of each chapter to further learning objectives</li> <li>Uses illustrative examples of the varied applications to provide a practical guide to those interested in using molecular and laser spectroscopy tools in their research</li> </ul>画面が切り替わりますので、しばらくお待ち下さい。
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<p><em>Molecular and Laser Spectroscopy,</em> <em>Advances and Applications:</em> <em>Volume 2</em> gives students and researchers an up-to-date understanding of the fast-developing area of molecular and laser spectroscopy. This book covers basic principles and advances in several conventional as well as new and upcoming areas of molecular and laser spectroscopy, such as a wide range of applications in medical science, material science, standoff detection, defence and security, chemicals and pharmaceuticals, and environmental science. It covers the latest advancements, both in terms of techniques and applications, and highlights future projections.</p> <p>Editors V.P. Gupta and Yukihiro Ozaki have brought together eminent scientists in different areas of spectroscopy to develop specialized topics in conventional molecular spectroscopy (Cavity ringdown, Matrix Isolation, Intense THz, Far- and Deep- UV, Optogalvanic ), linear and nonlinear laser spectroscopy (Rayleigh & Raman Scattering), Ultrafast Time-resolved spectroscopy, and medical applications of molecular spectroscopy. and advanced material found in research articles. This new volume expands upon the topics covered in the first volume for scientists to learn the latest techniques and put them to practical use in their work.</p> <ul> <li>Covers several areas of spectroscopy research and expands upon topics covered in the first volume</li> <li>Includes exhaustive lists of research articles, reviews, and books at the end of each chapter to further learning objectives</li> <li>Uses illustrative examples of the varied applications to provide a practical guide to those interested in using molecular and laser spectroscopy tools in their research</li> </ul>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Computer Vision & Laser Vibrometry, Volume 6: Proceedings of the 42nd IMAC, A Conference and Exposition on Structural Dynamics, 2024, the sixth volume of ten from the Conference brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Computer Vision, Laser Vibrometry and Structural Health Monitoring, including papers on:</p> <ul> <li>Novel Techniques</li> <li>Optical Methods,</li> <li>Scanning LDV Methods</li> <li>Photogrammetry & DIC</li> <li>Structural Health Monitoring</li> </ul>画面が切り替わりますので、しばらくお待ち下さい。
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<p>Computer Vision & Laser Vibrometry, Volume 6: Proceedings of the 42nd IMAC, A Conference and Exposition on Structural Dynamics, 2024, the sixth volume of ten from the Conference brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Computer Vision, Laser Vibrometry and Structural Health Monitoring, including papers on:</p> <ul> <li>Novel Techniques</li> <li>Optical Methods,</li> <li>Scanning LDV Methods</li> <li>Photogrammetry & DIC</li> <li>Structural Health Monitoring</li> </ul>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Dr. Zoltan Z. Nagy performed the first femtosecond laser-assisted cataract surgery in a human eye in 2008. As one of the most authoritative sources on the topic, <em><strong>Femtosecond Laser-Assisted Cataract Surgery: Facts and Results</strong></em> presents the history of the development and use of femtosecond laser-assisted cataract surgery summarizes the results of five years of pioneering techniques by Dr. Nagy and his team, including personal reflections and thoughts, as well as a series of classic papers.</p> <p><em><strong>Femtosecond Laser-Assisted Cataract Surgery</strong></em> consists of two main sections. The first section discusses and reviews the new results for the reader from the research. The second section comprises original articles on the topic of femtosecond laser cataract surgery that is essential to ophthalmologists.<br /> <strong>Additional features include:</strong><br /> ? A review of the current state-of-the-art usages of femtosecond laser-assisted cataract surgery<br /> ? Examine existing technologies that compete with femtosecond laser-assisted cataract surgery and compare outcomes<br /> ? Discuss key secrets to successful surgical techniques using femtosecond laser-assisted cataract surgery<br /> ? How to address and manage common complications associated with femtosecond laser-assisted cataract surgery</p> <p><em><strong>Femtosecond Laser-Assisted Cataract Surgery</strong></em> presents these clinical results with cataract and corneal application, and highlights basic research with the strength of the anterior capsule and will assist ophthalmologists and residents alike gain a better understanding of the femtosecond laser cataract surgery process.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>Dr. Zoltan Z. Nagy performed the first femtosecond laser-assisted cataract surgery in a human eye in 2008. As one of the most authoritative sources on the topic, <em><strong>Femtosecond Laser-Assisted Cataract Surgery: Facts and Results</strong></em> presents the history of the development and use of femtosecond laser-assisted cataract surgery summarizes the results of five years of pioneering techniques by Dr. Nagy and his team, including personal reflections and thoughts, as well as a series of classic papers.</p> <p><em><strong>Femtosecond Laser-Assisted Cataract Surgery</strong></em> consists of two main sections. The first section discusses and reviews the new results for the reader from the research. The second section comprises original articles on the topic of femtosecond laser cataract surgery that is essential to ophthalmologists.<br /> <strong>Additional features include:</strong><br /> ? A review of the current state-of-the-art usages of femtosecond laser-assisted cataract surgery<br /> ? Examine existing technologies that compete with femtosecond laser-assisted cataract surgery and compare outcomes<br /> ? Discuss key secrets to successful surgical techniques using femtosecond laser-assisted cataract surgery<br /> ? How to address and manage common complications associated with femtosecond laser-assisted cataract surgery</p> <p><em><strong>Femtosecond Laser-Assisted Cataract Surgery</strong></em> presents these clinical results with cataract and corneal application, and highlights basic research with the strength of the anterior capsule and will assist ophthalmologists and residents alike gain a better understanding of the femtosecond laser cataract surgery process.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>As the number and variety of lasers increase, it is timely to review which lasers are best for which clinical procedures. This well illustrated text from respected authorities provides the answers for a number of commonly encountered problems. Even established laser surgeons will be interested to learn about newer laser varieties, such as fractiona</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>As the number and variety of lasers increase, it is timely to review which lasers are best for which clinical procedures. This well illustrated text from respected authorities provides the answers for a number of commonly encountered problems. Even established laser surgeons will be interested to learn about newer laser varieties, such as fractiona</p>画面が切り替わりますので、しばらくお待ち下さい。
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