Physical Principles and Techniques of Protein Chemistry, Part 1Sydney J. Leach Physical Principles and Techniques of Protein Chemistry, Part A deals with the principles and application of selected physical methods in protein chemistry evaluation. This book is organized into nine chapters that cover microscopic, crystallographic, and electrophoretic techniques for protein conformational perturbations evaluation. This text first presents a general account of electron microscopy, its specimen preparation, optimum conditions for high resolution, measurement of electron micrographs, and illustrative examples of protein study. This book then examines the different types of map ... |
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Page 46
... diffraction grating can be deter- mined accurately by measuring the angles at which light of a known wavelength is diffracted . The diffraction measurements could be made directly from the replica , thus correcting for possible changes ...
... diffraction grating can be deter- mined accurately by measuring the angles at which light of a known wavelength is diffracted . The diffraction measurements could be made directly from the replica , thus correcting for possible changes ...
Page 61
... diffraction theory ( North , 1963 ; Phillips , 1966 ) , but we have chosen instead to use a pictorial approach in which various syntheses from the computed diffraction patterns of a polypeptide chain in the B - conformation are used to ...
... diffraction theory ( North , 1963 ; Phillips , 1966 ) , but we have chosen instead to use a pictorial approach in which various syntheses from the computed diffraction patterns of a polypeptide chain in the B - conformation are used to ...
Page 98
Sydney J. Leach. F. COMPUTATION OF FIBER DIFFRACTION PATTERNS In order to assess and to refine trial structures for fibrous materials , it is necessary to calculate the diffraction pattern of the model so that it can be compared with the ...
Sydney J. Leach. F. COMPUTATION OF FIBER DIFFRACTION PATTERNS In order to assess and to refine trial structures for fibrous materials , it is necessary to calculate the diffraction pattern of the model so that it can be compared with the ...
Contents
SLAYTER | 2 |
Ultraviolet Absorption | 3 |
The Enhancement of Contrast | 21 |
Copyright | |
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absorption absorption spectrum amino acids applied axis Biochem Biol Biophys birefringence boundary bovine serum albumin buffer calculated Cann Chem chromophores coefficient components concentration contrast curve Debye denaturation density determined dielectric constant dielectric increment dielectric relaxation difference spectrum diffraction dipole moment Edelhoch effects electric birefringence electric field electron microscope electrophoresis electrophoretic patterns elution volume emission energy enzyme equation equilibrium excitation experimental factor film fluorescence fraction frequency gel filtration gradient groups heavy atom intensity interactions ionic strength ionization ions light macromolecules measured method migration mobility molar molecular weight molecules moving-boundary observed obtained optical ovalbumin parameter particles peaks permanent dipole perturbation phase phenolic photomultiplier Phys plot polarization polymer protein proton quantum yield ratio reaction relaxation residues resolution ribonuclease shadow shown in Fig solution solvent specimen spectra structure technique temperature theoretical theory tion tryptophan tyrosine unit cell values wavelength Weber Winzor zone