Question

In: Math

The data represents the daily rainfall​ (in inches) for one month. Construct a frequency distribution beginning...

The data represents the daily rainfall​ (in inches) for one month. Construct a frequency distribution beginning with a lower class limit of

0.000.00

and use a class width of

0.200.20.

Does the frequency distribution appear to be roughly a normal​ distribution?

0.480.48

0

0

0

0.180.18

0

0.180.18

0

0.020.02

0.220.22

0.450.45

0

0

0.240.24

0

0.290.29

0

0.540.54

0

1.391.39

0

0

0.190.19

0

0.010.01

0

0.260.26

0

0.210.21

0

Solutions

Expert Solution


Related Solutions

Consider the data below of inches of rainfall per month for three different regions in the...
Consider the data below of inches of rainfall per month for three different regions in the Northwestern United States: Plains Mountains Forest April 24.6 12.9 9.6 May 16.9 17.8 16.4 June 18.5 15.4 18.3 July 17.4 11.2 12.7 August 16.1 13.7 15.2 Using SPSS, perform an ANOVA test the hypothesis that there is not the same amount of rainfall in every region in the Northwestern United States with a significance level of 0.10. What are the two degrees of freedom...
Consider the data below of inches of rainfall per month for three different regions in the...
Consider the data below of inches of rainfall per month for three different regions in the Northwestern United States: Plains Mountains Forest Plains                   Mountains          Forest March                  14.8                      12.6                      11.0 April                     21.4                      13.0                      9.7 May                      17.1                      18.1                      16.5 June                     18.9                      15.7                      18.1 July                       17.3                      11.3                      13.0 August                 16.5 14.0                      15.4 September 16.9 16.7 14.2 Using SPSS, perform a two-sample t-test to test the...
Consider the data below of inches of rainfall per month for three different regions in the...
Consider the data below of inches of rainfall per month for three different regions in the Northwestern United States: Plains Mountains Forest March 14.8 12.6 11.0 April. 21.4 13.0 9.7 May 17.1 18.1 16.5 June 18.9 15.7 18.1 July 17.3 11.3 13.0 August 16.5 14.0 15.4 September 16.9 16.7 14.2 Using SPSS, perform a two-sample t-test to test the hypothesis that there is not the same amount of rainfall in both the Mountains and the Forest regions in the Northwestern...
Use EXCEL Construct Distribution: For each variable, construct Empirical distribution: Frequency Distribution and Relative Frequency Distribution...
Use EXCEL Construct Distribution: For each variable, construct Empirical distribution: Frequency Distribution and Relative Frequency Distribution (and if warranted, construct Cumulative Relative Distribution.) Apply a meaningful chart type to present each of the Relative Frequency Distribution (and Cum. Rel. Freq.) calculated in part “a”. (Freq. Dist. Plot is not necessary). Savings Months Employed Age Housing Credit Risk 1 $739 12 23 Own Low 2 $1,230 0 32 Own High 3 $389 119 38 Own High 4 $347 14 36 Own...
The frequency distribution below shows the distribution of average seasonal rainfall in San Francisco, as measured...
The frequency distribution below shows the distribution of average seasonal rainfall in San Francisco, as measured in inches, for the years 1967-2017. (Show all work. Not Just the answer.) Season Rainfall (in Inches) Frequency Cumulative Relative Frequency 0 - 9.99 1 10 - 19.99 22 20 - 29.99 0.84 30 - 30.99 0.98 40 - 40.99 1.00 Total 50 (a) Why is it appropriate to use a grouped frequency distribution for this data? (b) Complete the frequency table with frequency...
–Construct a reasonable frequency distribution of High School GPA (HSGPA) –Construct a histogram –Present the frequency...
–Construct a reasonable frequency distribution of High School GPA (HSGPA) –Construct a histogram –Present the frequency distribution and histogram There are a total of 196 HS student GPAs. 1.6, 2, 2.1, 2.1, 2.2, 2.2, 2.2, 2.4, 2.4, 2.5, 2.5, 2.5, 2.5, 2.5, 2.6, 2.7, 2.75, 2.75, 2.75, 2.75, 2.75, 2.8, 2.8, 2.8, 2.9, 2.9, 2.9, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3.1, 3.1, 3.1, 3.2, 3.2, 3.2,...
Suppose the data represent the inches of rainfall in April for a certain city over the...
Suppose the data represent the inches of rainfall in April for a certain city over the course of 20 years. Determine the quartiles. 0.240.24 1.691.69 3.283.28 4.664.66 0.370.37 2.122.12 3.463.46 4.774.77 0.490.49 2.322.32 3.713.71 4.914.91 0.930.93 2.622.62 4.094.09 5.225.22 1.241.24 2.892.89 4.224.22 5.65 Q1: Q2: Q3: Q4:
Construct a frequency distribution for the given data set using 6 classes. In the​ table, include...
Construct a frequency distribution for the given data set using 6 classes. In the​ table, include the​ midpoints, relative​ frequencies, and cumulative frequencies. Which class has the greatest frequency and which has the least​ frequency? Amount (in dollars) spent on books for a semester 524 56 388 225 468 545 213 117 441 405 429 419 481 263 197 145 167 357 50 357 191 204 410 109 473 311 89 88 117 Complete the​ table, starting with the lowest...
The daily rainfall in Japan (measured in millimeters) is modelled using a gamma distribution with parameters...
The daily rainfall in Japan (measured in millimeters) is modelled using a gamma distribution with parameters α = 0.8 and β = 0.4. Consider the overall rainfall in 365 days, and use mgfs and their properties to prove that this is Ga (292, 0.4). Use the central limit theorem to approximate the probability that the annual rainfall exceeds 800mm (write down the analytical formula and the code used to calculate the cdf value). Compare the approximate value obtained with the...
1. The daily rainfall in Dublin (measured in millimeters) is modelled using a gamma distribution with...
1. The daily rainfall in Dublin (measured in millimeters) is modelled using a gamma distribution with parameters α = 0.8 and β = 0.4. (d) Use the central limit theorem to approximate the probability that the annual rainfall exceeds 800mm (write down the analytical formula and the code used to calculate the cdf value). (e) Compare the approximate value obtained with the exact counterpart (include the R code used to calculate the cdf value). (f) Use R to produce a...
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT