Suppose 0.195 square unit of the area of the standard normal distribution is to the right of z. How much total area, to the nearest thousandth, is to the right of 0? square unit How much total area to the nearest thousandth, is between z and 0? square unit Find the z-score, to the nearest hundredth, that satisfies the given condition. z =
Continuous Probability Distributions
Probability distributions are of two types, which are continuous probability distributions and discrete probability distributions. A continuous probability distribution contains an infinite number of values. For example, if time is infinite: you could count from 0 to a trillion seconds, billion seconds, so on indefinitely. A discrete probability distribution consists of only a countable set of possible values.
Normal Distribution
Suppose we had to design a bathroom weighing scale, how would we decide what should be the range of the weighing machine? Would we take the highest recorded human weight in history and use that as the upper limit for our weighing scale? This may not be a great idea as the sensitivity of the scale would get reduced if the range is too large. At the same time, if we keep the upper limit too low, it may not be usable for a large percentage of the population!
A standard normal distribution is symmetric around zero. therefore mean=mode=median =0
At zero, the area of the graph is divided into two equal parts.
Trending now
This is a popular solution!
Step by step
Solved in 3 steps