Examples of using Split plot in English and their translations into Portuguese
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Ecclesiastic
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Ecclesiastic
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Computer
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Official/political
Four plant densities were assessed in the split plots: 5, 7, 9 and 11 pl m-2.
Only for variables, hlorophyll content andstem diameter we used layout in split plot.
The design was a randomized block with split plots and three replications.
The experiment was arranged in split plot design in time, with the position in the bunch(apex, middle and base) factor of plots and subplots harvest seasons.
The statistical design was a randomized block design arranged in split plot scheme, with 5 repetitions.
Five harvest times were assessed in the split plots: 0(physiological maturity), 10, 20, 30 and 40 days after physiological maturity.
The experimental design was a completely randomized design in factorial, with split plot over time.
The experimental design was a randomized block in time split plot, with the plots with four residues were, and the subplots three harvest seasons.
The first consisted in an experiment to characterize ten cotton genotypes, in rhizotrons.this experiment was conducted in randomized block design with split plot in time, and four replications.
The experiments were carried out in split plot in time, on the arrangement of 6(treatments) x 4(evaluations, one on each crop of lettuce- subplots), with four replications in randomized blocks.
The experiment was performed between may 12th 2011 and july 06th 2011,in a randomized complete block with split plots designer and with three replications, shorn animals represented the sub plot. .
A large-scale through fall exclusion experiment using a split plot design was conducted with three blocks and four treatments: two water regimes(100% and 63% of through fall with partial artificial exclusion) and two k doses 0 and 4.5 kmol ha-1.
Sample size was calculated using the statistical power 1-?,with analysis of variance being used in the main study outcome Split Plot ANOVA, with an effect size of f=0.333 considered middle-sized and an alpha of 0.05.
The experimental design was a randomized block split plot 5x2, evaluating five cultivars, v-max 7059, force bmx, bmx magna, tmg 4001 and cd 214, two cropping systems with and without seeding system on ridges with four replications.
Treatments consisted of three sward heights(10, 20 and 30 cm) at the beginning of deferment and three periods of deferment, and that in 2010 the durations were 171, 141 and 109 days in 2011 and 131, 100 and71 days, arranged in split plot in a randomized complete block design with three replications.
Experimental design used was a randomized block with split plot design with four replications and four treatments: 0 kg n ha- 1year, 200 kg n ha-1year, 400 kg n ha-1year and 800 n ha-1year.
A completely randomized design was used for statistical analysis. starter intake, body weight, weight gain, feed efficiency andplasma glucose concentrations were analyzed in split plot, with the feeding strategies on the plots and in the sub-plots ages of evaluation.
The experimental design used was randomized in blocks, split plot in time(sampling time), with five treatments(grazing height of 10, 20, 30 and 40 cm and an area with no grazing) and three repetitions.
Were conducted at instituto capixaba de pesquisa assistência técnica e extensão rural two experiments for each of the four cultivars, one of the conventional irrigation system andanother microjet irrigation system located in split plot layout 2 x 4, being in theplots in two irrigation levels(irrigated and non-irrigated) and cultivars catuaí amarelo iac 86,rubi mg 1192, paraíso mg 419-1 and ob.
The experimental design was a randomized block with split plot(genotypes in the plots and cutting intervals in the subplots), with four replicates per treatment, totaling 48 experimental units.
Thus, the objective was to evaluate the longevity and post-harvest quality of torch ginger flower stems in two floral opening stages using carnauba wax treatment and stored at temperatures of 16° c and 21° c. it was applied different concentrations of carnauba wax(0.0%- control; 0.75%; 1.5%; 3.0%) in combination with two stages of flower opening(semi-open and full open bracts), resulting in 8 treatments,which were distributed completely randomized, with 4 repetitions for treatment, in split plot in time.
The experimental design was a randomized block design with split plots, having as main plots, the spacings(17, 34, 51 and 68 cm), and as subplots populations(15, 30, 45 and 60 plants m-2), in two consecutive years 2011 and 2012.
Field experiments were conducted in two crop years(2014 and 2015), in universidade federal de santa maria, santa maria, rs,in a randomized block design, with split plot design, in a factorial 2 x 3, with factors drainage(with drain and no drain) and canola cultivars(hyola 433, hyola 411 and hyola 61), with four replications.
The first experiment was conducted in a 5 x 2 split plot design, with plots in five levels of soil water tension(15 kpa, 25 kpa, 40 kpa, 55 kpa and 70 kpa), and subplots developmental stage of tomato on two levels(vegetative and productive) in a completely randomized design with five replications.
In a second step we evaluated the nutritional value, fractionation of carbohydrates and protein tifton 85 stored hay, andfor it we adopted the randomized block design, in split plot scheme in time, with 2 treatments allocated in the plots: cutting heiht at 4 and 8 cm from the ground five times in the subplots: baling, 30, 60, 90 and 120 days from hay storage, with five repetitions.
The completely randomized design with split plot in time for the thermal analysis of coverage ratios, as follows: lon: covered with reflective canvas hut; pvc: polyvinyl chloride covered with hut; tec: hut covered with tile ecological and tec+ p: ecological covered with reflective paint and tile cottage with 4 replications.
The experimental design was completely randomized in split plot, with two irrigation management in the plots(drainage lysimeter and evaporimeter of piché) and two substrates in the subplots(coconut fiber and pine bark), with 5 repetitions.
The first experiment was split plot in time, the main portion consists of four phosphate fertilizers(conventional monoammonium phosphate- map, monoammonium phosphate coated with polymer- pol, monoammonium phosphate pelletized with filter cake- tf, and monoammonium phosphate granules with composed pig- cs) and two matric potentials(- 10 and- 50 kpa); and subplot comprises six contact times(2, 4, 6, 8, 10 and 14 days after addition of fertilizer), with four replications.
To achieve it an experiment was conducted in a randomized block design in split plot arrangement with two additional treatments triple line and plastic cover(mulch) with management of spontaneous vegetation using mowing costal and animal traction cultivator.
The experimental design was a randomized block in split plot 4x7 with three replications: the plots were composed by four periods of suppression(0, 7, 14 and 21 days) and subplots were composed by seven osmoprotectors based on seaweed extracts t1-ea/gb/kpm/as; t2- ea/gb/kpm; t3-ea/as/kpm; t4- ea/kpm; t5- ea/gb; t6- ea; t7- witness.