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Here we compare typical thermally stimulated current thermal sampling (t.s.c.-t.s).s
The fine structure of these relaxations is analyzed by the thermal sampling technique.
The glass transition relaxation was carefully studied in these materials using the thermal sampling procedure.
Furthermore, the described procedure allows external thermal sample pretreatment with preceding pyrolysis and additional vaporization, condensation, and re-precipitation that significantly reduces or removes the sample matrix.
Using the thermal sampling procedure, the TSR technique allowed us to decompose the complex distribution of retardation times into a set of quasi-elementary processes.
By means of thermal sampling techniques, the fine structure of the γ-relaxation zone of poly methyl cyclohexyl methacrylate)s (P2MCHMA), (P3MCHMA), (P4MCHMA) were analyzed.
Based on the above information, the feasibility of an induction heating arrangement for thermal sample introduction was evaluated, with recommendations being made for the future design of IH-ETV instrumentation.
Degradation was observed in base, peroxide and thermal stressed samples, but not in acid and photolytic stressed samples.
The expression of other genes was influenced by other variables, including year of sampling (reflecting different thermal conditions), sampling method and lake of origin.
As a contrast, thermal treated samples were prepared under 40 ± 2°C for 2 h with the same soy protein-dextran mixture (control samples).
The additive (thermal) noise samples are zero-mean i.i.d.i.d
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