BookDOI
Transmission Electron Microscopy
David B. Williams,C. Barry Carter +1 more
- pp 179-260
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The client would like to get a larger, approximately 3 cm in diameter, well fixed tissue sample, together with a detailed report of the clinical presentation, gross, and microscopic lesions, along with the submission of samples prepared in a similar manner by the client for processing.Abstract:
We wrote it to be read by, and taught to, senior undergraduates and starting graduate students, rather than studied in a research laboratory. We wrote it using the same style and sentence construction that we have used in countless classroom lectures, rather than how we have written our countless (and much-less read) formal scientificpapers. In this respect particularly, wehave been deliberate in notreferencing the sources of every experimental fact or theoretical concept (although we do include some hints and clues in the chapters). However, at the end of each chapter we have included groups of references that should lead you to the best sources in the literature and help you go into more depth as you become more confident about what you are looking for. We are great believers in the value of history as the basis for under- standing the present and so the history of the techniques and key historical references are threaded throughout the book. Just because a reference is dated in the previous century (or even the antepenultimate century) doesn’t mean it isn’t useful! Likewise, with the numerous figures drawn from across the fields of materials science and engineering and nanotechnology, we do not reference the source in each caption. But at the very end of the book each of our many generous colleagues whose work we have used is clearly acknowledged.read more
Citations
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Nanoparticle Characterization: What to Measure?
TL;DR: The intention is to improve comparability of nanoparticle properties and performance to ensure the successful transfer of scientific knowledge to industrial real-world applications.
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The Anatomy of the Tunica Albuginea in the Normal Penis and Peyronie's Disease
TL;DR: The normal 3-dimensional structure of the tunica affords great flexibility, rigidity and tissue strength to the penis, which are lost consequent to structural changes in Peyronie's disease.
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Modern Scattering-Type Scanning Near-Field Optical Microscopy for Advanced Material Research
TL;DR: This work focuses on the pioneering efforts to study the nanoscale electrodynamic properties of plasmonic metamaterials, strongly correlated quantum materials, and polaritonic systems at room or cryogenic temperatures.
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Dark-field X-ray microscopy for multiscale structural characterization
Hugh Simons,A. King,Wolfgang Ludwig,Carsten Detlefs,Wolfgang Pantleon,Søren Schmidt,Irina Snigireva,Anatoly Snigirev,Henning Friis Poulsen +8 more
TL;DR: Dark-field X-ray microscopy; a non-destructive microscopy technique for the three-dimensional mapping of orientations and stresses on lengths scales from 100 nm to 1 mm within embedded sampling volumes is presented.
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On the Precipitation-Hardening Behavior of the Al-Mg-Si-Cu Alloy AA6111
TL;DR: In this article, the precipitation-hardening behavior of aluminum alloy AA6111 during artificial aging and the influence of prior natural aging on the aging behavior were investigated using quantitative transmission electron microscopy (TEM) and differential scanning calorimetry (DSC).
References
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Journal ArticleDOI
Diffraction contrast from spherically symmetrical coherency strains
Michael F. Ashby,L. M. Brown +1 more
TL;DR: In this article, the properties of images formed by diffraction contrast in thin metal foils viewed by transmission electron microscopy are studied by means of the dynamical theory of diffraction, including absorption.
Journal ArticleDOI
XXXV. A tentative theory of light quanta
TL;DR: In this paper, it is shown mathematically that the Lorentz-Einstein transference of light quanta is a non-trivial process. But it is assumed that the light is essentially made up of light Quanta, all having the same extraordinarily small mass.
Journal ArticleDOI
Electron Microscope and Diffraction Study of Metal Crystal Textures by Means of Thin Sections
TL;DR: In this article, an electrolytic method for preparing thin metal sections for electron microscopy and diffraction is introduced and its application to the structure of cold-worked aluminum and an aluminum-copper alloy is demonstrated.