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The heat capacity shows 1D behavior for T > 40 K, and 2D or 3D behavior at lower temperatures.
This is true both for the semiconducting behavior at lower temperatures up to a temperature of 1040 K and the drastic impedance decrease finally leading to values in the low-ohm range at higher temperatures.
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We hypothesize that the transition to contractile behavior at lower temperature is primarily due to an increase in the intrinsic crosslinking activity in the system.
An excellent rectifying behavior was observed at lower temperatures with an on/off ratio of 240 at 5 V and at 80 K.
It also shows that the water loss below 55 °C, is strongly dependent of the activity and that this dependence quickly decreases as temperature increases, which suggest that the role of activity in the swelling behavior of shale only takes place at lower temperatures.
One of the principal reasons that the subject of brittle fracture occupies a key place in the design of steel fabrications is that the ferritic steels change their fracture behavior with temperature, from being notch brittle at lower temperatures to being notch ductile at higher temperatures.
In addition to semimetallic behavior, it exhibits charge density wave transitions at lower temperatures and superconductivity with Cu intercalation.
In particular, we found that in this gap, electrons are localized, and charge transport exhibits a transition between thermally activated behavior at higher temperatures and variable range hopping at lower temperatures.
Our results show that at 37°C mussels gape more than at lower temperatures suggesting that this behavior is linked to greater oxygen consumption, and supporting the important role of gaping in aerobic respiration [ 67].
Its aluminizing behaviors were investigated during a packed aluminization process and a subsequent diffusion annealing treatment at lower temperatures.
In case of SCFR PEEK composite, a brittle behavior was observed for the whole temperature range considered and its energy absorption capability decreases drastically at lower temperatures.
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CEO of Professional Science Editing for Scientists @ prosciediting.com