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TEST BANK Introduction to Statistical Investigations, 2nd Edition Nathan

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TEST BANK Introduction to Statistical Investigations, 2nd Edition Nathan

Institution
Introduction To Statistical Investigation
Course
Introduction to Statistical Investigation











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Introduction to Statistical Investigation
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Introduction to Statistical Investigation

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Uploaded on
October 28, 2025
Number of pages
329
Written in
2025/2026
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TEST BANK b b




Introduction to Statistical Investigations,
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nd
2 Edition Nathan Tintle; Beth L. Chance
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b Chapters 1 - 11, Complete
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FOR INSTRUCTOR USE ONLY
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,TABLE OF CONTENTS
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Chapter 1 – Significance: How Strong is the Evidence
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Chapter 2 – Generalization: How Broadly Do the Results Apply?
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Chapter 3 – Estimation: How Large is the Effect?
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Chapter 4 – Causation: Can We Say What Caused the Effect?
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Chapter 5 – Comparing Two Proportions
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Chapter 6 – Comparing Two Means
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Chapter 7 – Paired Data: One Quantitative Variable
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Chapter 8 – Comparing More Than Two Proportions
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Chapter 9 – Comparing More Than Two Means
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Chapter 10 – Two Quantitative Variables
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Chapter 11 – Modeling Randomness
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FOR INSTRUCTOR USE ONLY
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,Chapter 1 b




Note: TE =
bb b b b Text entry b TE-N = Text entry - NumericMa
b b b b b b




b = Matching b MS = Multiple select
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MC = Multiple choice b b b TF = True-FalseE =
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bEasy, M = Medium, H = Hard b b b b b b




CHAPTER 1 LEARNING OBJECTIVES b b b




CLO1-1: Use the chance model to determine whether an observed statistic is unlikely to occur.
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CLO1-2: Calculate and interpret a p-value, and state the strength of evidence it provides againstthe null
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hypothesis.
b




CLO1-3: Calculate a standardized statistic for a single proportion and evaluate the strength
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ofevidence it provides against a null hypothesis.
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CLO1-4: Describe how the distance of the observed statistic from the parameter value specifiedby the
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null hypothesis, sample size, and one- vs. two-sided tests affect the strength of evidence
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against the null hypothesis.
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CLO1-5: Describe how to carry out a theory-based, one-proportion z-test.
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Section 1.1: Introduction to Chance Models b b b b b




LO1.1-1: Recognize the difference between parameters and statistics.
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LO1.1-2: Describe how to use coin tossing to simulate outcomes from a chance model of the ran-dom
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choice between two events.
b b b b



LO1.1-3: Use the One Proportion applet to carry out the coin tossing simulation.
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LO1.1-4: Identify whether or not study results are statistically significant and whether or not
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thechance model is a plausible explanation for the data.
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LO1.1-5: Implement the 3S strategy: find a statistic, simulate results from a chance model,
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and comment on strength of evidence against observed study results happening by chance
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alone.
b



LO1.1-6: Differentiate between saying the chance model is plausible and the chance model is thecorrect
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explanation for the observed data.
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FOR INSTRUCTOR USE ONLY b b b

, 1-2 Test Bank for Introduction to Statistical Investigations, 2nd Edition
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Questions 1 through 4:
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Do red uniform wearers tend to win more often than those wearing blue uniforms in
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Taekwondo matches where competitors are randomly assigned to wear either a red or blue
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uniform? In a sample of 80 Taekwondo matches, there were 45 matches where thered
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uniform wearer won.
b b b



1. What is the parameter of interest for this study?
b b b b b b b b



A. The long-run proportion of Taekwondo matches in which the red uniform
b b b b b b b b b b


wearerwins b b




B. The proportion of matches in which the red uniform wearer wins in a sample of
b b b b b b b b b b b b b b


80Taekwondo matches
b b b



C. Whether the red uniform wearer wins a match b b b b b b b



D. 0.50 b



Ans: A; LO: 1.1-1; Difficulty: Easy; Type: MC
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2. What is the statistic for this study?
b b b b b b




A. The long-run proportion of Taekwondo matches in which the red uniform
b b b b b b b b b b


wearerwins b b



B. The proportion of matches in which the red uniform wearer wins in a sample of
b b b b b b b b b b b b b b


80Taekwondo matches
b b b




C. Whether the red uniform wearer wins a match b b b b b b b



D. 0.50 b



Ans: B; LO: 1.1-1; Difficulty: Easy; Type: MC
b b b b b b b




3. Given below is the simulated distribution of the number of ―red wins‖ that could happen
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by chance alone in a sample of 80 matches. Based on this simulation, is our observed result
b b b b b b b b b b b b b b b b b


statistically significant?
b b




A. Yes, since 45 is larger than 40. b b b b b b



B. Yes, since the height of the dotplot above 45 is smaller than the height of
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thedotplot above 40.
b b b b




C. No, since 45 is a fairly typical outcome if the color of the winner‘s uniform
b b b b b b b b b b b b b b


FOR INSTRUCTOR USE ONLY b b b
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