05168nam 2200625 a 450 991083056570332120230421044144.01-281-76465-597866117646543-527-62052-43-527-62053-2(CKB)1000000000540648(EBL)712161(SSID)ssj0000167861(PQKBManifestationID)11161505(PQKBTitleCode)TC0000167861(PQKBWorkID)10179008(PQKB)10394891(MiAaPQ)EBC712161(OCoLC)264621141(EXLCZ)99100000000054064820120114d1997 uy 0engur|n|---|||||txtccrMethods II[electronic resource] /edited by S. Amelinckx ... [et al.]Weinheim VCH19971 online resource (509 p.)Handbook of microscopy : applications in materials science, solid-state physics, and chemistry ;[v. 2]Description based upon print version of record.3-527-29473-2 Includes bibliographical references and index.Handbook of Microscopy, Applications in Materials Science , Solid-state Physics and Chemistry; Contents; IV Electron Microscopy; 2 Scanning Beam Methods; 2.1 Scanning Reflection Electron Microscopy; 2.1.1 Introduction; 2.1.2 Instrumentation; 2.1.3 Performance; 2.1.4 Modes of Operation; 2.1.4.1 Secondary Electron Imaging; 2.1.4.2 Backscattered Electrons; 2.1.4.3 Special Techniques; 2.1.5 Conclusions; 2.1.6 References; 2.2 Scanning Transmission Electron Microscopy; 2.2.1 Introduction; 2.2.2 Scanning Transmission Electron Microscopy Imaging Modes2.2.3 Scanning Transmission Electron Microscopy Theory2.2.4 Inelastic Scattering and Secondary Radiations; 2.2.5 Convergent-Beam and Nanodiffraction; 2.2.6 Coherent Nanodiffraction, Electron Holography, Ptychology; 2.2.7 Holography; 2.2.8 STEM Instrumentation; 2.2.9 Applications of Scanning Transmission Electron Microscopy; 2.2.10 References; 2.3 Scanning Transmission Electron Microscopy: Z Contrast; 2.3.1 Introduction; 2.3.2 Incoherent Imaging with Elastically Scattered Electrons; 2.3.3 Incoherent Imaging with Thermally Scattered Electrons2.3.4 Incoherent Imaging using Inelastically Scattered Electrons2.3.5 Probe Channeling; 2.3.6 Applications to Materials Research; 2.3.6.1 Semiconductors; 2.3.6.2 Ceramics; 2.3.6.3 Nanocrystalline Materials; 2.3.7 References; 2.4 Scanning Auger Microscopy (SAM) and Imaging X-Ray Photoelectron Microscopy (XPS); 2.4.1 Introduction; 2.4.2 Basic Principles of Auger Electron Spectroscopy (AES) and X-Ray Photoelectron Spectroscopy (XPS); 2.4.2.1 Auger Electron Spectroscopy (AES); 2.4.2.2 X-Ray Photoelectron Spectroscopy (XPS); 2.4.2.3 Quantitative Analysis in AES and XPS2.4.3 Scanning Auger Microscopy (SAM) and Imaging XPS2.4.3.1 Basic Principles of Imaging; 2.4.3.2 General Aspects of Analyzers; 2.4.3.3 Energy Resolution of Deflecting Electrostatic Analyzers; 2.4.3.4 Cylindrical Mirror Analyzer (CMA) versus the Concentric Hemispherical Analyzer (CHA); 2.4.3.5 Imaging Techniques; 2.4.3.6 Magnetic Fields in Imaging XPS; 2.4.4 Characteristics of Scanning Auger Microscopy Images; 2.4.4.1 General Aspects; 2.4.4.2 Background Slope Effects; 2.4.4.3 Substrate Backscattering Effects; 2.4.4.4 Topographic Effects; 2.4.4.5 Beam Current Fluctuation Effects2.4.4.6 Edge Effects2.4.5 Conclusion; 2.4.6 References; 2.5 Scanning Microanalysis; 2.5.1 Physical Basis of Electron Probe Microanalysis; 2.5.1.1 Electron Interactions with Solids; 2.5.1.2 X-Ray Emission Spectra; 2.5.1.3 Characteristic X-Ray Spectra; 2.5.1.4 Soft X-Ray Spectra; 2.5.1.5 X-Ray Continuum; 2.5.1.6 Overview of Methods of Scanning Electron Beam Analysis; 2.5.1.7 Electron Probe X-Ray Microanalyzers; 2.5.1.8 Analytical Electron Microscopes; 2.5.1.9 Multipurpose Electron Probe Analytical Systems; 2.5.1.10 X-Ray Emission Spectrometry; 2.5.1.11 Wavelength-Dispersive Spectrometry2.5.1.12 Energy-Dispersive SpectrometryComprehensive in coverage, written and edited by leading experts in the field, this Handbook is a definitive, up-to-date reference work. The Volumes Methods I and Methods II detail the physico-chemical basis and capabilities of the various microscopy techniques used in materials science. The Volume Applications illustrates the results obtained by all available methods for the main classes of materials, showing which technique can be successfully applied to a given material in order to obtain the desired information.With the Handbook of Microscopy, scientists and engineers involved in mMicroscopyMaterialsMicroscopyMicroscopy.MaterialsMicroscopy.502.82502/.8/2Amelinckx S50786MiAaPQMiAaPQMiAaPQBOOK9910830565703321Methods II3061935UNINA04173nam 2200349 n 450 991083687720332120240308224703.0(CKB)5470000000569239(NjHacI)995470000000569239(EXLCZ)99547000000056923920230221d2018 uy 0engur|||||||||||txtrdacontentcrdamediacrrdacarrierPanentheism of Karl Christian Friedrich Krause (1781-1832) from transcendental philosophy to metaphysics /Benedikt Paul GöckeNew York :Peter Lang,2018.1 online resource (258 pages)Cover; Table of Contents; Preface; 1. The Life of Karl Christian Friedrich Krause; 1.1 Krause's childhood and education; 1.2 Krause's years as Privatdozent in Jena; 1.3 The restless years and Schopenhauer as a neighbour; 1.4 Krause's last years in Göttingen and Munich; I. The Panentheism of Karl Christian Friedrich Krause; 2. Overview: The Panentheism of Karl Christian Friedrich Krause; 2.1 The system of science; 2.2 The analytical-ascending part of science; 2.3 The intuition of God as the ultimate ground; 2.4 The synthetical-descending part of science 2.5 Krause's argument for panentheism: God in Himself3. The Method and Structure of Science; 3.1 Science as an organic system and the principle of science; 3.2 Science and intellectual intuition; 3.3 The analytical-ascending part of science; 3.4 The synthetical-descending part of science; 3.5 Summary; 4. Science and the Constitution of the Ego as such; 4.1 The fundamental intuition of the ego; 4.2 The material constitution of the ego as such; 4.3 The formal constitution of the ego as such; 4.4 The material-formal categories of the ego as such 4.5 The immediate certainty of Krause's intuition of the categories4.6 Summary; 5. Nature, Reason, and the Ego in Itself; 5.1 The ego as body and mind; 5.2 The ego as a body; 5.3 The ego as a mind; 5.4 The ego as a human being; 5.5 Nature and reason; 5.6 Nature, reason, humanity, and the concept of the world; 5.7 Summary; 6. The Fundamental Intuition of God; 6.1 Knowledge as a trinary relation; 6.2 God as the ultimate ground of all things; 6.3 The ubiquity of the formal and material categories; 6.4 The fundamental intuition of God; 6.5 The coherence of the fundamental intuition of God 6.6 The circularity of arguments for the existence of God6.7 Orwesen as the one subject and object of knowledge and being; 6.8 Summary; 7. The Essence of God as such; 7.1 Orwesen and the material categories; 7.2 Orwesen and the formal categories; 7.3 Orwesen and the material-formal categories; 7.4 Summary; 8. The Case for Panentheism; 8.1 Unity and difference; 8.2 The world as the unity of reason and nature; 8.3 The case for panentheism; 8.4 Krause's panentheism and Creatio ex nihilo; 8.5 Summary; 9. The Organic System of Science; 9.1 The organic system of science as the science of Orwesen 9.2 The infinity of the system of science9.3 The principal sciences and the system of science; 9.4 The non-vicious circularity of the system of science; 9.5 Summary; II . The Importance of Karl Christian Friedrich Krause's Panentheism; 10. Krause's Influence on Arthur Schopenhauer; 10.1 Historical evidence for Krause's influence on Schopenhauer; 10.2 Systematic evidence for Krause's influence on Schopenhauer; 10.3 Summary; 11. Krause Importance for Philosophy of Religion; 11.1 Krause and analytic philosophy; 11.2 Concepts of God in philosophy of religion.The book provides the first analysis of Karl Christian Friedrich Krause's system of philosophy and of his panentheism in English. It is of value to anyone interested in German idealism, panpsychism, panentheism, holism and metaphysical grounding.Panentheism of Karl Christian Friedrich Krause PanentheismPanentheism.193Göcke Benedikt Paul1280014NjHacINjHaclBOOK9910836877203321Panentheism of Karl Christian Friedrich Krause (1781-1832)3016346UNINA