Assume it takes 7.00 minutes to fill a 30.0-gal gasoline tank. (a) Calculate the rate at which the tank is filled in gallons per second. (b) Calculate the rate at which the tank is filled in cubic meters per second. (c) Determine the time interval, in hours, required to fill a 1.00-m 3 volume at the same rate. (1 U.S. gal = 231 in. 3 )
Assume it takes 7.00 minutes to fill a 30.0-gal gasoline tank. (a) Calculate the rate at which the tank is filled in gallons per second. (b) Calculate the rate at which the tank is filled in cubic meters per second. (c) Determine the time interval, in hours, required to fill a 1.00-m 3 volume at the same rate. (1 U.S. gal = 231 in. 3 )
Assume it takes 7.00 minutes to fill a 30.0-gal gasoline tank. (a) Calculate the rate at which the tank is filled in gallons per second. (b) Calculate the rate at which the tank is filled in cubic meters per second. (c) Determine the time interval, in hours, required to fill a 1.00-m3 volume at the same rate. (1 U.S. gal = 231 in.3)
(a)
Expert Solution
To determine
The rate at which the tank is filled in gallons per second.
Answer to Problem 74AP
The rate at which the tank is filled in gallons per second is
7.14×10−2gal/s.
Explanation of Solution
Given Info: The fill the tank
30gal gasoline, it requires
7min.
Explanation:
Calculating the rate at which the tank will fill is,
rate=(30gal)(7min)(1min)(60sec)=7.14×10−2gal/s
Thus, the rate at which the tank will fill is
7.14×10−2gal/s.
Conclusion:
Therefore, the rate at which the tank will fill is
7.14×10−2gal/s.
(b)
Expert Solution
To determine
The rate at which the tank is filled in cubic meter per second.
Answer to Problem 74AP
The rate at which the tank is filled in cubic meter per second is
2.70×10−4m3/s.
Explanation of Solution
Given Info: The fill the tank
30gal gasoline, it requires
7min.
Explanation:
From unit conversion,
1m3=103L
1min=60s
1gal=3.786L
Calculating the rate at which the tank will fill is,
Using the Experimental Acceleration due to Gravity values from each data table, Data Tables 1, 2, and 3; determine the Standard Deviation, σ, mean, μ, variance, σ2 and the 95% Margin of Error (Confidence Level) Data: Ex. Acc. 1: 12.29 m/s^2. Ex. Acc. 2: 10.86 m/s^2, Ex. Acc. 3: 9.05 m/s^2
In the Super Smash Bros. games the character Yoshi’s has a “ground pound” down special move where he launches himself downward to attack an enemy beneath him. A) If Yoshi flings himself downwards at 9.76 miles per hour to hit an enemy 10.5 m below him, how fast is Yoshi traveling when he hits the enemy? 1 mile = 1609 m B) How much time does it take Yoshi to hit the enemy beneath him?
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