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1
The mineral content of two skin-derived calcifications was determined by x-
ray
diffraction
.
2
Their structures were determined by spectroscopic methods, X-
ray
diffraction
analyses, and ECD calculations.
3
The calculations are based on the observed lattice structures from x-
ray
diffraction
measurements.
4
Two common techniques are used: differential scanning calorimetry (DSC) and x-
ray
diffraction
.
5
X-
ray
diffraction
was used to determine the crystal structure and chemical composition of scaffolds.
6
X-
ray
diffraction
analysis, scanning electron microscopy and biomechanical measurement were performed on the product.
7
X-
ray
diffraction
simulations are in agreement with the observed dynamics.
8
X-
ray
diffraction
analysis showed biphasic patterns of HAP and beta-TCP.
9
X-
ray
diffraction
can describe the actual mixture of the elements.
10
X-
ray
diffraction
has the potential to provide rich information about the structural dynamics of macromolecules.
11
The forsterite content was measured using quantitative x-
ray
diffraction
.
12
X-
ray
diffraction
detected crystalline gold in the composite films.
13
X-
ray
diffraction
photographs give discrete crystalline reflections to a spacing of at least 2 angstroms.
14
Photo 51: The x-
ray
diffraction
image that led to the discovery of the double-helical structure of DNA.
15
A simple system was developed for obtaining x-
ray
diffraction
patterns from magnetically oriented solutions of macromolecular assemblies.
16
X-
ray
diffraction
methods were used to test a synthetic-modeling approach to the sequence engineering of bovine pancreatic ribonuclease.
ray
diffraction
ray