Biomolecular EPR Spectroscopy

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A01=Wilfred Raymond Hagen
Author_Wilfred Raymond Hagen
biological electron paramagnetic resonance
Biomolecular EPR
Biomolecular EPR Spectroscopy
Category=PNFS
Category=PSA
Category=PSB
DMPO
electron
electronic
Electronic Zeeman Interaction
Elongated Octahedron
ENDOR
Energy Matrix
EPR Absorption
EPR Experiment
EPR Powder
EPR Spectrometer
EPR Spectroscopy
EPR Spectrum
eq_bestseller
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
Half Integer Spin
High Spin Systems
hyperfine
interaction
interactions
metalloprotein analysis
Orbital Angular Momentum
paramagnetic molecules
quantum mechanics applications
redox biochemistry
spectral analysis software
spectrum
spin
Spin Hamiltonian
spin label techniques
Spin Lattice Relaxation Rate
Spin System
Spin Wavefunctions
unpaired
Unpaired Electrons
x-band
X-band EPR
X-band Spectrometer
X-band Spectrum
zeeman
Zeeman Interaction

Product details

  • ISBN 9781420059571
  • Weight: 521g
  • Dimensions: 156 x 234mm
  • Publication Date: 22 Dec 2008
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
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Comprehensive, Up-to-Date Coverage of Spectroscopy Theory and its Applications to Biological Systems

Although a multitude of books have been published about spectroscopy, most of them only occasionally refer to biological systems and the specific problems of biomolecular EPR (bioEPR). Biomolecular EPR Spectroscopy provides a practical introduction to bioEPR and demonstrates how this remarkable tool allows researchers to delve into the structural, functional, and analytical analysis of paramagnetic molecules found in the biochemistry of all species on the planet.

A Must-Have Reference in an Intrinsically Multidisciplinary Field

This authoritative reference seamlessly covers all important bioEPR applications, including low-spin and high-spin metalloproteins, spin traps and spin lables, interaction between active sites, and redox systems. It is loaded with practical tricks as well as do’s and don’ts that are based on the author’s 30 years of experience in the field. The book also comes with an unprecedented set of supporting software designed with simple graphical user interfaces that allow readers to tackle problems they will likely encounter when engaged in spectral analysis.

Breaking with convention, the book broaches quantum mechanics from the perspective of biological relevance, emphasizing low-symmetry systems. This is a necessary approach since paramagnets in biomolecules typically have no symmetry. Where key topics related to quantum mechanics are addressed, the book offers a rigorous treatment in a style that is quick-to-grasp for the non expert. Biomolecular EPR Spectroscopy is a practical, all-inclusive reference sure to become the industry standard.

Wilfred Raymond Hagen

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