Synchrotron radiation is now used routinely in many areas of science. Many research groups, especially in physics, chemistry and biology, base large parts of their research programmes on the use of this type of radiation. There are also increasing numbers of scientists who find that a few days' work at a synchrotron radiation source can provide crucial information to complement their main laboratory-based research. Some of the best examples of this are in protein structure and materials characterization, in which X-ray diffraction and X-ray absorption fine-structure techniques are commonly used
Over the past two decades there has been a phenomenal growth in the number of dedicated synchrotron ...
Synchrotron radiation has become a valuable tool for many fields of basic research. Several of the m...
Charged particles travelling in a circle at velocities close to the speed of light have the fundamen...
This general talk is devoted to briefly introduce the main uses and applications of synchrotron radi...
The production of synchrotron radiation as a by-product of circular high-energy electron (positron) ...
The conference covers biological diffraction, x-ray diffraction in biology, protein structure determ...
Synchrotron Radiation from accelerators has been used as a radiation source for many studies of radi...
This book presents an overview of the current state of research in both synchrotron radiation and st...
The advantages of synchrotron radiation in several types of spectroscopy, microscopy and diffraction...
The paper summarizes the present state of art in the use of different sources of synchrotron radiati...
none3noSince the first observation of synchrotron radiation in 1947 progress in the generation of el...
This book demonstrates the applications of synchrotron radiation in certain aspects of cell microbio...
Synchrotron Radiation (SR), as a light source is now in use around the world to provide brilliant ra...
The growing importance of synchrotron radiation for structural biology can be charted from the const...
Synchrotron radiation is a very bright, broadband, polarized, pulsed source of light extending from ...
Over the past two decades there has been a phenomenal growth in the number of dedicated synchrotron ...
Synchrotron radiation has become a valuable tool for many fields of basic research. Several of the m...
Charged particles travelling in a circle at velocities close to the speed of light have the fundamen...
This general talk is devoted to briefly introduce the main uses and applications of synchrotron radi...
The production of synchrotron radiation as a by-product of circular high-energy electron (positron) ...
The conference covers biological diffraction, x-ray diffraction in biology, protein structure determ...
Synchrotron Radiation from accelerators has been used as a radiation source for many studies of radi...
This book presents an overview of the current state of research in both synchrotron radiation and st...
The advantages of synchrotron radiation in several types of spectroscopy, microscopy and diffraction...
The paper summarizes the present state of art in the use of different sources of synchrotron radiati...
none3noSince the first observation of synchrotron radiation in 1947 progress in the generation of el...
This book demonstrates the applications of synchrotron radiation in certain aspects of cell microbio...
Synchrotron Radiation (SR), as a light source is now in use around the world to provide brilliant ra...
The growing importance of synchrotron radiation for structural biology can be charted from the const...
Synchrotron radiation is a very bright, broadband, polarized, pulsed source of light extending from ...
Over the past two decades there has been a phenomenal growth in the number of dedicated synchrotron ...
Synchrotron radiation has become a valuable tool for many fields of basic research. Several of the m...
Charged particles travelling in a circle at velocities close to the speed of light have the fundamen...