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The blend samples were isothermally crystallized at temperatures in which only the PMPrS crystallized.
The incorporation process of Ca(NO3 2 molecules on blend samples were controlled by chemical and physical mechanisms.
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Due to differences in the amorphous phase content the texture in the blend samples is less developed than in deformed plain iPP.
Internal photocurrent efficiency of the polymer:PCBM blend samples was found to be in the order of 10−5 and photoconductive sensitivity was of the order of 10−11 S W−1cm, which is adequate for photorefractivity.
The dynamics of the blend samples are shown to deviate from the expected behaviour above a critical ring size which can be understood through a mechanism based on ring threading.
The Tom of the blend samples was found to change continuously depending on the D/H content, although the content dependence was different between the blend samples of POM-D with POM-H homopolymer and those of POM-D with EO-POM copolymer.
The studies were done by blending the biodiesel produced with diesel and properties of blended samples were estimated to ascertain the use of blended samples in internal combustion engines.
The blends samples were designed for compressive strength of 30 MPa.
Twenty-four blendsampleses were prepared with different proportions of natural and modified bentonite as partial replacements of cement in concrete.
Blended samples were stored in sealable bags at –80°C.
The cylinder diameter in this blend sample was 13.7 nm and the hexagonal lattice was a=23.1 nm.
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