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Model-based sensitivity analysis showed that under moderate to high rates of N, wheat yield responded positively to a decrease in temperature caused by F. albida shade.
We suggested that the synergistic increase in yield was due to a decrease in soil pH caused by biochar and NPK fertilizer applications thereby increasing P availability in this alkaline soil.
These independent techniques all result in a distinct processing induced size effect upon miniaturisation, i.e. an increase of up to 200% in yield stress for a decrease from about 12 to 3 grains over the specimen width.
When higher grain yield is achieved in breeding programs by accumulating genes positively associated with grain yield, these overlaps could lead to a decrease in grain dry matter content, resulting in higher post-harvest production costs due to artificial grain drying [ 3].
Performing the hydrolysis at the same power input at different WIS content resulted in a qualitative "shift" in the glucose yields from an increase in yield at higher WIS content (at constant impeller speed - Figure 1D) to a decrease in yield when increasing the WIS.
In terms of stability a decreasing of yield to 1,2-PDO due to a decrease of its selectivity was observed with the number of cycles.
A decrease in this amount led to a decrease in yield, while an increase did not improve the yield (Table 2).
Beyond 2 mL of MeOH, the dispersion phenomenon leads to a decrease in yields.
For example, people still use many unsustainable farming methods such as monocultures, burning of crop residue, poor fertility management, tillage, etc. which results in many catastrophic impacts on the environment – such as deforestation and soil degradation – have the potential to lead to a decrease in yields, increase in insect pests and diseases on crops (Schmitter et al. 2010).
When the reaction was conducted at higher temperature (60 °C), the yield of 4 a decreased to 75%% due to the slow decomposition of the o-iminoquinone organocatalyst 1 ox to melanin-like polymers (Table 1, entry 6).[ 13] As expected,[ 7b] further variation of the solvent led only to a decrease in the yield (Table 1, entries 7 9).
Increasing the porosity of the column from 0.55 to 0.59, yielded a decrease in the (Kc a) values for color and phenolic compounds adsorption processes.
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