The Beginnings of Electron Microscopy
Title | The Beginnings of Electron Microscopy PDF eBook |
Author | Peter W. Hawkes |
Publisher | Academic Press |
Pages | 654 |
Release | 2013-11-06 |
Genre | Science |
ISBN | 1483284654 |
The Beginnings of Electron Microscopy presents the technical development of electron microscope. This book examines the mechanical as well as the technical problems arising from the physical properties of the electron. Organized into 19 chapters, this book begins with an overview of the history of scanning electron microscopy and electron beam microanalysis. This text then explains the applications and capabilities of electron microscopes during the war. Other chapters consider the classical techniques of light microscopy. This book presents as well the schematic outline of the preparation techniques for investigation of nerve cells by electron microscopy. The final chapter deals with the historical account of the beginnings of electron microscopy in Russia. This book is a valuable resource for scientists, technologists, physicists, electrical engineers, designers, and technicians. Graduate students as well as researcher workers who are interested in the history of electron microscopy will also find this book extremely useful.
The Growth of Electron Microscopy
Title | The Growth of Electron Microscopy PDF eBook |
Author | |
Publisher | Academic Press |
Pages | 919 |
Release | 1996-08-05 |
Genre | Science |
ISBN | 0080577628 |
As a complement to The Beginnings of Electron Microscopy, Advances in Imaging and Electron Physics is pleased to present Volume 96, The Growth of Electron Microscopy. This comprehensive collection of articles surveys the accomplishments of various national groups that comprise the International Federation of Societies of Electron Microscopy (IFSEM).
Liquid Cell Electron Microscopy
Title | Liquid Cell Electron Microscopy PDF eBook |
Author | Frances M. Ross |
Publisher | Cambridge University Press |
Pages | 529 |
Release | 2017 |
Genre | Science |
ISBN | 1107116570 |
2.6.2 Electrodes for Electrochemistry
Biological Low-Voltage Scanning Electron Microscopy
Title | Biological Low-Voltage Scanning Electron Microscopy PDF eBook |
Author | James Pawley |
Publisher | Springer Science & Business Media |
Pages | 323 |
Release | 2007-12-03 |
Genre | Science |
ISBN | 0387729720 |
Major improvements in instrumentation and specimen preparation have brought SEM to the fore as a biological imaging technique. Although this imaging technique has undergone tremendous developments, it is still poorly represented in the literature, limited to journal articles and chapters in books. This comprehensive volume is dedicated to the theory and practical applications of FESEM in biological samples. It provides a comprehensive explanation of instrumentation, applications, and protocols, and is intended to teach the reader how to operate such microscopes to obtain the best quality images.
Scanning Electron Microscopy for the Life Sciences
Title | Scanning Electron Microscopy for the Life Sciences PDF eBook |
Author | Heide Schatten |
Publisher | Cambridge University Press |
Pages | 275 |
Release | 2013 |
Genre | Science |
ISBN | 0521195993 |
A guide to modern scanning electron microscopy instrumentation, methodology and techniques, highlighting novel applications to cell and molecular biology.
A Beginners' Guide to Scanning Electron Microscopy
Title | A Beginners' Guide to Scanning Electron Microscopy PDF eBook |
Author | Anwar Ul-Hamid |
Publisher | Springer |
Pages | 422 |
Release | 2018-10-26 |
Genre | Technology & Engineering |
ISBN | 3319984829 |
This book was developed with the goal of providing an easily understood text for those users of the scanning electron microscope (SEM) who have little or no background in the area. The SEM is routinely used to study the surface structure and chemistry of a wide range of biological and synthetic materials at the micrometer to nanometer scale. Ease-of-use, typically facile sample preparation, and straightforward image interpretation, combined with high resolution, high depth of field, and the ability to undertake microchemical and crystallographic analysis, has made scanning electron microscopy one of the most powerful and versatile techniques for characterization today. Indeed, the SEM is a vital tool for the characterization of nanostructured materials and the development of nanotechnology. However, its wide use by professionals with diverse technical backgrounds—including life science, materials science, engineering, forensics, mineralogy, etc., and in various sectors of government, industry, and academia—emphasizes the need for an introductory text providing the basics of effective SEM imaging.A Beginners’ Guide to Scanning Electron Microscopy explains instrumentation, operation, image interpretation and sample preparation in a wide ranging yet succinct and practical text, treating the essential theory of specimen-beam interaction and image formation in a manner that can be effortlessly comprehended by the novice SEM user. This book provides a concise and accessible introduction to the essentials of SEM includes a large number of illustrations specifically chosen to aid readers' understanding of key concepts highlights recent advances in instrumentation, imaging and sample preparation techniques offers examples drawn from a variety of applications that appeal to professionals from diverse backgrounds.
Scanning Transmission Electron Microscopy
Title | Scanning Transmission Electron Microscopy PDF eBook |
Author | Stephen J. Pennycook |
Publisher | Springer Science & Business Media |
Pages | 764 |
Release | 2011-03-24 |
Genre | Technology & Engineering |
ISBN | 1441972005 |
Scanning transmission electron microscopy has become a mainstream technique for imaging and analysis at atomic resolution and sensitivity, and the authors of this book are widely credited with bringing the field to its present popularity. Scanning Transmission Electron Microscopy(STEM): Imaging and Analysis will provide a comprehensive explanation of the theory and practice of STEM from introductory to advanced levels, covering the instrument, image formation and scattering theory, and definition and measurement of resolution for both imaging and analysis. The authors will present examples of the use of combined imaging and spectroscopy for solving materials problems in a variety of fields, including condensed matter physics, materials science, catalysis, biology, and nanoscience. Therefore this will be a comprehensive reference for those working in applied fields wishing to use the technique, for graduate students learning microscopy for the first time, and for specialists in other fields of microscopy.