Examples of using A split-plot in English and their translations into Portuguese
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A split-plot experiment with a complete randomized blocks design with three replicates was used.
To analyze biomass,the experiment was in a split-plot scheme, being distributed kinds of consortia.
Conducted in a split-plot design, as the time factor was not randomized, the analysis of variance requires correction of the degrees of freedom, as the sphericity condition is not satisfied.
The experimental design of the two soils was a randomized complete block in a split-plot, with three replications.
This was a split-plot randomized complete block design with repeated measures over time, in which the plots corresponded to seven levels of organic compost and an additional treatment mineral fertiliz.
The experimental scheme was a randomized block design(rbd) in a split-plot in time, with eight replicates.
In a split-plot type, experiment installed on june 20, 2010 we evaluated eucalyptus grandis trees submitted to two water regimes(100% and 63%) and three fertilizer supplies k, na and control.
Were used seven mongrel horses,on latin square(7x7) in a split-plot in time seven horses, seven treatments.
The experimental units(500 m2)were placed in a split-plot, in the plot was allocated the history of botanical composition(hcb), the corresponding percentages of legumes present in the canopy before the evaluation period( 24, 34, 45 and 52%) were subsequently called: hcb24, hcb34; hcb45 and hcb52 respectively.
To evaluate the forage, it was adopted a randomized block design, in a split-plot design, with four replications.
Experimental design was a randomized complete block in a split-plot, with andwithout irrigation(plots) with four genotypes- brs 506, cv 007, cv 147 and ej 7281(subplots) and four replications, composing 32 plots.
The test was conducted at agrícola famosa,municipality of tibau/rn, in a split-plot, distributed in a randomized block design with four replications.
The experimental design was a randomized complete block in a split-plot arrangement so that in the main plots were allocated the four storage environments on field under clear plastic canvas, double-sided canvas and without canvas and covered shed with side walls and in the split-plots the four periods 20, 30, 34 and 64 days with 5 replications.
Experiments were performed in three trials, with six cultivars in four blocks,totaling 24 plots per trial on a split-plot design where the trial was the mainplot and cultivars was the subplots.
The experimental design was completely randomized with a split-plot structure, being the forage allowance the main plots and the phenological stages the subplots, and the methods for the determination of intake were the sub-subplots.
The plants were distributed in the three greenhouse in the randomized block design,arranged in a split-plot, where the plots was shadow factor and the subplots was used the dose factor.
We adopted a completely randomized design in a split-plot, where the parcels three qualities water(river water with a solution of hoagland& arnon; treated domestic wastewater in stabilization pond; treated domestic wastewater in stabilization pond and disinfected) and in subplots organic substrates(pine bark, coconut fiber, sugarcane bagasse), repeated five times.
The experimental design was a randomized complete block in a split-plot in time, being six blocks per plot, each block with eleven repetitions, a total of sixty six pots per plot.
In the first experiment was used the experimental design completely randomized, in a split-plot in time, with 12 treatments, 5 replications and 5 cuttings per plot, starting in august 2013 to july 2014. the treatments were: t1 august, t2 september, t3 october, t4 november, t5 december, t6 january, t7 february, t8 march, t9 april, t10 may, t11 june e t12 july. were evaluated.
The samples were analyzed using a completely randomized design(crd) in a split-plot 2 x 20 scheme, where the plots will consisted of a watercourse and the subplots off twenty seasons of evaluation.
The experimental design used was the randomized block design with four replications, in a split-plot scheme, being the plots composed by varieties co 997, rb867515, rb92579 and rb951541; and the subplots by the induction, or not, of stress factor.
The experimental design was completely randomized,the treatments were combined in a factorial arrangement 2 x 2, in a split-plot, two types of silage(s): corn with palisadegrass and pigeonpea(c/ g) and without pigeonpea(s/ g), two mode overseeded of oat(av): in line(li) or broadcast la.
In experiment 1, the cactus cv(small) was cultivated under different planting densities andcutting intensities in randomized block design with a split-plot experimental arrangement, with four repeats, in the period from january to september 2014. the main plot was formed by planting densities(10,417; 20,833; 41,666 e 83,333 plants há-1) and the subplots, by cutting intensities preservation of primary or secondary.
In this context, we employ a factorial split-plot 2³ x 2² design with repetition and replication.
Split-Plot Anova, adjusted for chronological age, was applied to the comparison of intra- and inter-conditions of RT.
The experimental design was completely randomized split-plot(systems use x layers), in six replications.
The paired t-test was applied to each group separately, in order tolocate the differences observed in the Split-Plot.
Treatments were arranged in a 2x3 split-plot acheme, in which the plots allocated up supplemental irrigation and rain fed condition and subplots the preceding crops(soybeans, corn and pasture) grown in crop between october(2012) and february(2013) scheme.