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Methods in molecular biophysics : = ...
~
Serdyuk, Igor N.
Methods in molecular biophysics : = structure, dynamics, function for biology and medicine /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Methods in molecular biophysics :/ Nathan R. Zaccai, Igor N. Serdyuk, Joseph Zaccai.
Reminder of title:
structure, dynamics, function for biology and medicine /
Author:
Serdyuk, Igor N.
other author:
Zaccai, G.
Published:
Cambridge, United Kingdom ;Cambridge University Press, : c2017.,
Description:
xxiii, 684 p. :ill. (some col.) ; : 29 cm.;
Notes:
Igor N. Serdyuk's name appears first in the previous edition.
Subject:
Macromolecular Substances - chemistry -
ISBN:
9781107056374 :
Methods in molecular biophysics : = structure, dynamics, function for biology and medicine /
Serdyuk, Igor N.
Methods in molecular biophysics :
structure, dynamics, function for biology and medicine /Nathan R. Zaccai, Igor N. Serdyuk, Joseph Zaccai. - 2nd ed. - Cambridge, United Kingdom ;Cambridge University Press,c2017. - xxiii, 684 p. :ill. (some col.) ;29 cm.
Igor N. Serdyuk's name appears first in the previous edition.
Includes bibliographical references (p. 658-671) and indexes.
Macromolecules in their environment -- Macromolecules as physical particles -- Understanding macromolecular structures -- Mass and charge -- Structure function studies -- Thermodynamic stability and interactions -- Differential scanning calorimetry -- Isothermal titration calorimetry -- Surface plasmon resonance and interferometry-based biosensors -- Biological macromolecules as hydrodynamic particles -- Analytical ultracentrifugation -- Fluorescence depolarization -- Dynamic light scattering and fluorescence correlation spectroscopy -- Visible and IR absorption spectroscopy -- Two-dimensional IR spectroscopy -- Raman scattering spectroscopy -- Optical activity and circular dichronism -- Light microscopy -- Single molecule manipulation and atomic force microscopy -- Fluorescence microscopy -- The macromolecule as a radiation scattering particle -- Small-angle scattering and reflectometry -- X-ray and neutron macromolecular crystallography -- Electron microscopy -- Three-dimensional reconstruction from two-dimensional images -- Energy and time calculations -- Neutron spectroscopy -- Distances and angles from frequencies -- Experimental techniques -- Structure and dynamics studies -- Radiology and positron emission tomography -- Ultrasound imaging -- Magnetic resonance imaging.
ISBN: 9781107056374 :NT2102
LCCN: 2016046859Subjects--Topical Terms:
1130027
Macromolecular Substances
--chemistry
LC Class. No.: QH505 / .S449 2017
Dewey Class. No.: 571.4
National Library of Medicine Call No.: QT 34
Methods in molecular biophysics : = structure, dynamics, function for biology and medicine /
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Igor N. Serdyuk's name appears first in the previous edition.
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Includes bibliographical references (p. 658-671) and indexes.
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Macromolecules in their environment -- Macromolecules as physical particles -- Understanding macromolecular structures -- Mass and charge -- Structure function studies -- Thermodynamic stability and interactions -- Differential scanning calorimetry -- Isothermal titration calorimetry -- Surface plasmon resonance and interferometry-based biosensors -- Biological macromolecules as hydrodynamic particles -- Analytical ultracentrifugation -- Fluorescence depolarization -- Dynamic light scattering and fluorescence correlation spectroscopy -- Visible and IR absorption spectroscopy -- Two-dimensional IR spectroscopy -- Raman scattering spectroscopy -- Optical activity and circular dichronism -- Light microscopy -- Single molecule manipulation and atomic force microscopy -- Fluorescence microscopy -- The macromolecule as a radiation scattering particle -- Small-angle scattering and reflectometry -- X-ray and neutron macromolecular crystallography -- Electron microscopy -- Three-dimensional reconstruction from two-dimensional images -- Energy and time calculations -- Neutron spectroscopy -- Distances and angles from frequencies -- Experimental techniques -- Structure and dynamics studies -- Radiology and positron emission tomography -- Ultrasound imaging -- Magnetic resonance imaging.
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