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Comparing the effect of the different temperature conditions, it could be concluded that temperature differential mainly determines the wax content and that hardness of the deposit mainly depends on the bulk oil temperature.
Stock obtained at higher temperatures needed a shorter cooking time to obtain a good flavor; however, it was concluded that temperature plays a more important role than cooking time in the generation of the sensory properties of a good beef stock.
It can be concluded that temperature and WHSV affect conversion, which in turn affects RON.
We concluded that temperature and isotopes are in equilibrium in inland air masses only.
They concluded that temperature of 80 °C for 30 60 min would probably qualify the biosolids product as Class A requirements.
It is also concluded that temperature field conditions cannot be neglected for FGCSs being rich in thermal sensitive compositions.
It can be also concluded that temperature of 1,000°C is too high, which creates severe oxidation of graphene and limits the nucleation of ZnO.
It was concluded that temperature and hydrogen peroxyde concentration have different influences on the response factor depending on the incident irradiation level.
It is concluded that temperature measurement at roll shafts is a straightforward and effective manner for condition monitoring of belt conveyor idlers.
After the optimization stage, we concluded that temperature, sample volume and the thawing method were the determining factors that had to be exhaustively controlled in the thawing process to ensure the quality of biomarker discovery.
From the results obtained, it can be concluded that temperature below 800°C, substrate position inclined at 90° towards the gas flow, and ML graphene seems to be preferable parameters for the growth of ZnO structures by thermal evaporation because these factors can be used to overcome the problem of graphene's oxidation that takes place during the growth.
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