A driver of a car stopped at a gas station to fill up his gas tank. He looked at his watch, and the time read exactly 5:36 p.m. At this time, he started pumping gas into the tank. At exactly 5:42, the tank was full and he noticed that he had pumped 10.6 gallons. What is the average rate of flow of the gasoline into the gas tank? Round to the nearest hundredth of a gallon. | gallons per minute

College Algebra
1st Edition
ISBN:9781938168383
Author:Jay Abramson
Publisher:Jay Abramson
Chapter3: Functions
Section3.3: Rates Of Change And Behavior Of Graphs
Problem 45SE: A driver of a car stopped at a gas station to fill up his gas tank. He looked at his watch, and the...
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A driver of a car stopped at a gas station to fill up his gas tank. He looked at his watch, and the time read exactly
5:36 p.m. At this time, he started pumping gas into the tank. At exactly 5:42, the tank was full and he noticed that
he had pumped 10.6 gallons. What is the average rate of flow of the gasoline into the gas tank? Round to the
nearest hundredth of a gallon.
gallons per minute
Transcribed Image Text:A driver of a car stopped at a gas station to fill up his gas tank. He looked at his watch, and the time read exactly 5:36 p.m. At this time, he started pumping gas into the tank. At exactly 5:42, the tank was full and he noticed that he had pumped 10.6 gallons. What is the average rate of flow of the gasoline into the gas tank? Round to the nearest hundredth of a gallon. gallons per minute
Near the surface of a planet far away, the distance an object falls is a function of time. It is given by
d(t) = 2.3333t, where t is in seconds and d(t) is in feet. If an object is dropped from a certain height, find the
average velocity of the object from t = 2 to t = 4. Round to the nearest hundredth of a foot.
feet per second
Transcribed Image Text:Near the surface of a planet far away, the distance an object falls is a function of time. It is given by d(t) = 2.3333t, where t is in seconds and d(t) is in feet. If an object is dropped from a certain height, find the average velocity of the object from t = 2 to t = 4. Round to the nearest hundredth of a foot. feet per second
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