A tortoise and hare are competing in a 1000 meter race. The function f and g are such that f(t) represents the tortoise's distance from the finish line (in meters) t seconds after the start of the race and g(t) represents the hare's distance from the finish line (in meters) t seconds after the start of the гаce. If we want to compute the number of seconds needed for the hare to finish the race, which of the following procedures should be used? OEvaluate g(1000) OSolve g(t) = 0 for the value of t OSolve g(t) = 1000 for the value of t OEvaluate g(0) OSolve f(t) = g(t) for the value of t

College Algebra
1st Edition
ISBN:9781938168383
Author:Jay Abramson
Publisher:Jay Abramson
Chapter3: Functions
Section3.4: Composition Of Functions
Problem 97SE: The number of bacteria in a refrigerated food product is given by N(T)=23T256T+1,3T33 ,where T is...
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A tortoise and hare are competing in a 1000 meter race. The function f and g are such that f(t) represents the tortoise's distance from the finish line
(in meters) t seconds after the start of the race and g(t) represents the hare's distance from the finish line (in meters) t seconds after the start of the
race.
If we want to compute the number of seconds needed for the hare to finish the race, which of the following procedures should be used?
OEvaluate g(1000)
OSolve g(t)
O for the value of t
Solve g(t) = 1000 for the value of t
OEvaluate g(0)
OSolve f(t) = g(t) for the value of t
Transcribed Image Text:A tortoise and hare are competing in a 1000 meter race. The function f and g are such that f(t) represents the tortoise's distance from the finish line (in meters) t seconds after the start of the race and g(t) represents the hare's distance from the finish line (in meters) t seconds after the start of the race. If we want to compute the number of seconds needed for the hare to finish the race, which of the following procedures should be used? OEvaluate g(1000) OSolve g(t) O for the value of t Solve g(t) = 1000 for the value of t OEvaluate g(0) OSolve f(t) = g(t) for the value of t
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