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The DC-SOFC performance is found to decrease with decreasing temperature due to the decreased Boudouard reaction kinetics.
The strength was found to decrease with increasing test temperature and decreasing strain rate.
The heats of transition and melting temperatures as measured by differential scanning calorimetry were found to decrease with increasing peroxide level but were independent of reaction temperature.
The melting temperature, melting enthalpy, and catalytic activation energy were found to decrease with size.
Einstein temperatures were found to decrease with doping.
Increase of MAPP is found to decrease the melting temperature.
The PLLA and PEO melting temperatures were found to decrease on blending, the equilibrium melting points of PLLA in these blends decreased with increasing PEO fractions.
The melting and crystallization temperatures were found to decrease as the radiation dose increases, showing a tendency to stabilization at higher values.
The DVB cross-linker incorporation was found to decrease the crystallinity of the PEO matrix from 34% to 23%, with a decrease in the melting temperature (Tm) of the membrane from 50 °C to 34 °C.
72% of the probes designed using this method were found to contain secondary structures with melting temperatures greater than 65°C, and 10% contained secondary structures with melting temperatures greater than 80°C.
All primers were designed with melting temperatures around 60°C.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com