2) A typical large dog runs 40 mph -58.667 feet/sec(mean speed) with a standard deviation of 2 feet per second. My reaction time is 0.7 second, with a standard deviation of 0.1 second. (Tchebychev problem) a. My dog is sitting at my feet with a 70 foot lead on and we see a squirrel at the same time. He ran the full length of the lead before I could step on it. What is the maximum probability that my reaction time was> 1 second b. Given my reaction time was 1 second, what is the probability of having a large dog move that fast.

Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
18th Edition
ISBN:9780079039897
Author:Carter
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Chapter10: Statistics
Section10.3: Measures Of Spread
Problem 26PFA
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2)
A typical large dog runs 40 mph -58.667 feet/sec(mean speed) with a standard deviation of 2
feet per second. My reaction time is 0.7 second, with a standard deviation of 0.1 second.
(Tchebychev problem)
a.
My dog is sitting at my feet with a 70 foot lead on and we see a squirrel at the same time.
He ran the full length of the lead before I could step on it. What is the maximum probability
that my reaction time was> 1 second
b.
Given my reaction time was 1 second, what is the probability of having a large dog move
that fast.
Transcribed Image Text:2) A typical large dog runs 40 mph -58.667 feet/sec(mean speed) with a standard deviation of 2 feet per second. My reaction time is 0.7 second, with a standard deviation of 0.1 second. (Tchebychev problem) a. My dog is sitting at my feet with a 70 foot lead on and we see a squirrel at the same time. He ran the full length of the lead before I could step on it. What is the maximum probability that my reaction time was> 1 second b. Given my reaction time was 1 second, what is the probability of having a large dog move that fast.
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