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Sample size for estimation of the Pearson correlation coefficient in cherry tomato tests

机译:樱桃番茄试验中Pearson相关系数估计的样本量

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摘要

The aim of this study was to determine the required sample size for estimation of the Pearson coefficient of correlation between cherry tomato variables. Two uniformity tests were set up in a protected environment in the spring/summer of 2014. The observed variables in each plant were mean fruit length, mean fruit width, mean fruit weight, number of bunches, number of fruits per bunch, number of fruits, and total weight of fruits, with calculation of the Pearson correlation matrix between them. Sixty eight sample sizes were planned for one greenhouse and 48 for another, with the initial sample size of 10 plants, and the others were obtained by adding five plants. For each planned sample size, 3000 estimates of the Pearson correlation coefficient were obtained through bootstrap re-samplings with replacement. The sample size for each correlation coefficient was determined when the 95% confidence interval amplitude value was less than or equal to 0.4. Obtaining estimates of the Pearson correlation coefficient with high precision is difficult for parameters with a weak linear relation. Accordingly, a larger sample size is necessary to estimate them. Linear relations involving variables dealing with size and number of fruits per plant have less precision. To estimate the coefficient of correlation between productivity variables of cherry tomato, with a confidence interval of 95% equal to 0.4, it is necessary to sample 275 plants in a 250m?2 greenhouse, and 200 plants in a 200m?2 greenhouse.
机译:该研究的目的是确定樱桃番茄变量之间的Pearson系数估计所需的样本量。在2014年春季/夏季的保护环境中建立了两种均匀性测试。每株植物中观测的变量是果子长度,平均果实宽度,平均果子重量,束数,每束的果实数量,果实数量,果实数量和果实的总重量,计算它们之间的Pearson相关矩阵。为一个温室和48尺寸计划六十八个样本尺寸,其中初始样品大小为10个植物,另外通过添加五种植物获得。对于每个计划的样本量,通过替换的自举重新采样获得了3000个Pearson相关系数的估计。当95%置信区间幅度值小于或等于0.4时,确定每个相关系数的样本量。利用弱线性关系获得高精度的Pearson相关系数的估计难以参见。因此,需要更大的样本量来估计它们。涉及处理各种植物尺寸和果实数量的变量的线性关系具有较少的精度。为了估算樱桃番茄的生产率变量之间的相关系数,置信区间95%等于0.4,有必要在250米250米的温室中采样275株植物,200米2株温室。

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