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Because leaf structure is one of the most important traits exhibiting phenotypic plasticity to growth temperature, investigating responses of leaf structure to warming is fundamental to projecting the impact of global change on plant growth.
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But in test PV13 at the highest used temperature investigated (150 °C), the decrease of the permeability is only 6%.
Reaction temperature of 270°C is selected for further investigations due to the total yield of paraffinic hydrocarbons obtained is higher in amongst of temperature investigated.
The dry sliding wear properties of aluminium composites at room temperature investigated by using Pin-on-disk wear testing machine.
The prepared membrane showed CO2/CH4 selectivity decreasing in the range of temperature investigated (Fig. 3) keeping a high value between 34 and 31 up to 60 °C.
These physiologic effects of inhaled H2S were present regardless of the body core temperature investigated (27°C and 35°C) [ 69].
At the highest temperature investigated, C. acidophila produced more than one juvenile per female at pH 3.5 5.0, provided that food supply was sufficient (Fig. 1k).
Dry illite/quartz gouge exhibited near velocity-neutral behaviour at all temperatures investigated.
The crystallization temperatures investigated ranged from 423 to 448 K.
This trend is observed for all the crystallization temperatures investigated.
The viscosity reduction decreases slightly to around 95% for the oil content of 70% for all temperatures investigated.
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