The specific gravity of gasoline is approximately 0.7 a. Determine the mass, m, (kg) of 50 liters of gasoline. b. The mass flow rate of gasoline exiting a refinary tank is 1250 kg/min. Estimate the volumertic flow rate in liters/s. c. Gasoline and kerosine (specific gravity = 0.82) are belended to obtain a mixture with specific gravity of 0.78. calculate the volume ratio (volume of gasoline/volumeof kerosine) of the two component in the mixture, assuming: Vblend = Vgasoline + Vkerosine.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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The specific gravity of gasoline is approximately 0.7 
a. Determine the mass, m, (kg) of 50 liters of gasoline. 
b. The mass flow rate of gasoline exiting a refinary tank is 1250 kg/min. Estimate the 
volumertic flow rate in liters/s. 
c. Gasoline and kerosine (specific gravity = 0.82) are belended to obtain a mixture with 
specific gravity of 0.78. calculate the volume ratio (volume of gasoline/volumeof 
kerosine) of the two component in the mixture, assuming: Vblend = Vgasoline + Vkerosine. 

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