Hypothesis Testing Based on Neyman-Pearson Lemma and Likelihood Ratio Test


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Documentation for package ‘hytest’ version 0.1.1

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ber_c_opt Critical Value Given a Nominal Error Type I Associated with a Bernoulli Distribution
ber_errorI Empirical Error Type I Associated with a Bernoulli Distribution
exp_c_opt Critical Value Given a Nominal Error Type I Associated with a Exponential Distribution
exp_errorI Empirical Error Type I Associated with an Exponential Distribution
gamma_c_opt Critical Value Given a Nominal Error Type I Associated with a Gamma Distribution
gamma_errorI Empirical Error Type I Associated with a Gamma Distribution
geom_c_opt Critical Value Given a Nominal Error Type I Associated with a Geometric Distribution
geom_errorI Empirical Error Type I Associated with a Geometric Distribution
gumbel_c_opt Critical Value Given a Nominal Error Type I Associated with a Gumbel Distribution
gumbel_errorI Empirical Error Type I Associated with a Gumbel Distribution
invnormal_c_opt Critical Value Given a Nominal Error Type I Associated with a Inverse Normal Distribution
invnormal_errorI Empirical Error Type I Associated with a Inverse Normal Distribution
lognorm_c_opt Critical Value Given a Nominal Error Type I Associated with a Log Normal Distribution
lognorm_errorI Empirical Error Type I Associated with a Log Normal Distribution
norm_c_opt Critical Value Given a Nominal Error Type I Associated with a Normal Distribution
norm_errorI Empirical Error Type I Associated with a Normal Distribution
pois_c_opt Critical Value Given a Nominal Error Type I Associated with a Poisson Distribution
pois_errorI Empirical Error Type I Associated with a Poisson Distribution
weibull_c_opt Critical Value Given a Nominal Error Type I Associated with a Weibull Distribution
weibull_errorI Empirical Error Type I Associated with a Weibull Distribution