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The dependence of brightness on crystal length, however, appears to lie in two different regimes.
The first PC was related to crystal length, agglomerate size and fraction, flowability and electrostatic charging.
They should be assigned to two forms of crystals with the infinite crystal length, respectively.
SD CCF DE FA and BA modified gypsum crystal growth and reduced the crystal length.
The considered particle properties are the crystal length and the internal lattice strain of the individual crystals.
With fixed pump and collection beam parameters, the dependence of brightness on crystal length falls into two different regimes (see Figure 4).
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The collection efficiency is quite stable across the range of crystal lengths.
Figure 4 The collection efficiency of SPDC photons (pair-to-singles ratio), and the final brightness in the SPEQS geometry, for different crystal lengths.
The addition of γ-globulin produced a tighter range of crystals lengths, while chondroitin sulphate, α- and β-globulins, and human serum albumin all resulted in a wider range of crystal lengths [ 52].
The histogram of SbpA crystal lengths were plotted and fit to a Gaussian distribution in Origin 8.5.0.
(1) h = L 4 / A − 2 (2) S = 4. ρ L + 2 h An indication of the average crystal lengths within the fibrils was obtained by measurement of the integral breadth of the 002 and 004 reflection of cellulose-I, at 17.2° and 34.9° 2θ respectively.
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