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Discover LudwigThe phrase "oil evolution" is grammatically correct and can be used in written English
It refers to the gradual development and changes that occur in the oil industry over time. This phrase can be used in a variety of contexts, such as discussing advancements in technology or shifts in the global market for oil. Example: "The oil evolution of the past decade has seen a significant increase in renewable energy sources and a decrease in traditional oil consumption."
Exact(4)
Thus, the adaptive response of Arabidopsis and the genetic tools available for manipulating Arabidopsis, makes it an excellent system for studying seed oil evolution and also for breeding seed oil crops especially the Brassica species.
The number of polymorphisms observed was greater in the introns, intergenic region within 1000 bp upstream of the promoter and synonymous substitutions in the exon region indicating that selection could be acting on these genes and would be a suitable system to investigate seed oil evolution.
In this study, we grew 84 wild Arabidopsis accessions at two temperatures to show that genetic correlation between the fatty acids of the two lipid types is not expected and one should not influence the other and seed oil evolution and also tested for the adaptive response of fatty acids to latitude and temperature.
In addition, since no correlation was observed between the FAs in TAGs and PLs, a significant latitudinal cline was observed for saturated FAs and erucuc acid, and also a plastic response of FAs to temperature was observed, A. thaliana will be an ideal system to study seed oil evolution.
Similar(55)
The oil oxidative evolution is then characterized and followed by using analytical, spectroscopy, and thermogravimetry analyses.
Moreover, the environmental conditions (solar light, wind, surface waves, water and air temperature and even salinity) influence oil pollution evolution in seawater.
The time-scale of oil pollution evolution in seawater and the time in which oil residues are generally measurable both depend on the form of the current oil water system (surface oil film, suspension of oil droplets or individual hydrocarbon molecules dissolved in water or, predominantly, all forms together).
We predict the spontaneous emergence of pyrolysis vapors, char and non-condensable (permanent) gases and confirm the observation that the kinetics are fast and that bio-oil vapor evolution is accomplished in a few seconds, and occupying two-thirds of the spatial volume of the reactor as widely reported in the open literature.
The dynamics of the compressor blades led to four different arrangements inside the rotor slots while an analysis of the hydrodynamic lubrication established between blade tip and stator wall focused on the oil film thickness evolution to prevent dry contacts.
Modeling the compressor blade dynamics allowed a friction power decomposition while an analysis of the hydrodynamic lubrication at the most severe friction location, namely between blade tip and stator wall, additionally provided the oil film thickness evolution along the contact surface.
Due to the complex three-dimensional nature of the oil-water interface evolution and of the contact line dynamics at the wall, 3D numerical simulations are performed.
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