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Concept explainers
Refer to the heart transplant data given in the previous exercise.
- a. Find a transformation of x and/or y that straightens the plot. Construct a
scatterplot for your transformed variables. - b. Using the transformed variables from Part (a), fit a least-squares line and use it to predict the number waiting for a heart transplant in 2016 (Year 11).
- c. The prediction made in Part (b) involves prediction for an x value that is outside the
range of the x values in the sample. What assumption must you be willing to make for this to be reasonable? Do you think this assumption is reasonable in this case? Would your answer be the same if the prediction had been for the year 2026 rather than 2016? Explain.The following table gives the number of heart transplants performed in the Unites States each year from 2006 to 2015 (U.S. Department of Health and Human Services, optn.transplant.hrsa.gov/data/view-data-reports/national-data/, retrieved April 22, 2017):
a. Construct a scatterplot of these data. Describe how the number of heart transplants has changed over time from 2006 to 2015.
b. Find the equation of the least-squares line that describes the relationship between y = Number of heart transplants performed and x = Year.
c. Calculate the 10 residuals and construct a residual plot.
d. Are there any features of the residual plot that indicate that the relationship between year and number of heart transplants performed would be better described by curve rather than a line? Explain.
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Chapter 5 Solutions
Introduction To Statistics And Data Analysis
- Note: The purpose of this problem below is to use computational techniques (Excelspreadsheet, Matlab, R, Python, etc.) and code the dynamic programming ideas seen inclass. Please provide the numerical answer to the questions as well as a sample of yourwork (spreadsheet, code file, etc.).We consider an N-period binomial model with the following properties: N = 60, thecurrent stock price is S0 = 1000; on each period, the stock price increases by 0.5% whenit moves up and decreases by 0.3% when it moves down. The annual interest rate on themoney market is 5%. (Notice that this model is a CRR model, which means that thebinomial tree is recombining.)(a) Find the price at time t0 = 0 of a (European) call option with strike price K = 1040and maturity T = 1 year.(b) Find the price at time t0 = 0 of a (European) put option with strike price K = 1040and maturity T = 1 year.(c) We consider now, that you are at time t5 (i.e. after 5 periods, which represents 1month later). Assume that the stock…arrow_forwardshow work in paperarrow_forwardshow all work (...or what you entered into your calculator...)arrow_forward
- answerarrow_forwardQuestion 2 The data below provides the battery life of thirty eight (38) motorcycle batteries. 100 83 83 105 110 81 114 99 101 105 78 115 74 96 106 89 94 81 106 91 93 86 79 103 94 108 113 100 117 120 77 93 93 85 76 89 78 88 680 a. Test the hypothesis that mean battery life is greater than 90. Use the 1% level of significance. b. Determine if the mean battery life is different from 80. Use the 10% level of significance. Show all steps for the hypothesis test c. Would your conlcusion in part (b) change at the 5% level of significance? | d. Confirm test results in part (b) using JASP. Note: All JASP input files and output tables should be providedarrow_forwardSuppose that 80% of athletes at a certain college graduate. You randomly select eight athletes. What’s the chance that at most 7 of them graduate?arrow_forward
- Suppose that you flip a fair coin four times. What’s the chance of getting at least one head?arrow_forwardSuppose that the chance that an elementary student eats hot lunch is 30 percent. What’s the chance that, among 20 randomly selected students, between 6 and 8 students eat hot lunch (inclusive)?arrow_forwardBob’s commuting times to work are varied. He makes it to work on time 80 percent of the time. On 12 randomly selected trips to work, what’s the chance that Bob makes it on time at least 10 times?arrow_forward
- Your chance of winning a small prize in a scratch-off ticket is 10 percent. You buy five tickets. What’s the chance you will win at least one prize?arrow_forwardSuppose that 60 percent of families own a pet. You randomly sample four families. What is the chance that two or three of them own a pet?arrow_forwardIf 40 percent of university students purchase their textbooks online, in a random sample of five students, what’s the chance that exactly one of them purchased their textbooks online?arrow_forward
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