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The glass transition temperatures of each dye polymer blend were compared to the Kwei equation to obtain Kwei q parameters.
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To compare the synthetic odor blend with whole humans under epidemiologically relevant conditions, and determine whether wild mosquitoes would also be attracted to this it, field experiments were conducted in which the blend was compared with 10 different adult male volunteers (20 34 years old).
To determine whether wild mosquitoes would also be attracted to this synthetic odor blend and to compare it with whole humans under epidemiologically relevant conditions, field experiments were conducted inside experimental huts, where the blend was compared with 10 different adult male volunteers 20-344 years old).
Penetration, ductility, dynamic modulus, stiffness and viscosity of the different blends were compared.
Pure gas permeabilities of NR/ENR blends were compared with models for permeation in heterogeneous media.
Specifically, area and discharge coefficients and mass flow rates of diesel and phytol blends were compared under corresponding engine operating conditions.
The experimental results for the HSBR/LDPE blends were compared with those for HSBR/high-density polyethylene (HDPE) and SBR/LDPE blends.
Reaction kinetics measured by in-situ Fourier transform infrared spectrum (FTIR) at interfaces of well-separated bilayer films and phase separation blends were compared.
Molecular orientation and mechanical properties of miscible poly styrene)/poly vinyl methyl ether) (PS/PVME) blends were compared with those of heterogeneous PS/PVME blends prepared above their temperature of phase separation.
The elastic moduli of co-continuous blends were significantly higher than the moduli of the dispersed blends, but no significant difference in tensile or impact strength was found when co-continuous blends were compared to blends with a droplet/matrix morphology.
These tuneable, stimuli-responsive, supramolecular polymer blends are compared to related healable blends featuring pyrene-terminated oligomers.
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