COCA COLA's coke zero has a density of 970 kg/m3 from a bulk tank of 7.5 meters (P1-5.75 bars) flows before the pump at 3.5 m/s. The junkfood- drink is pumped at an unknown velocity to a 45-meter elevated filling tank with a pressure reading of (P2-10.7575 Bars) ready for filling the bottles, packaging and delivery. Assuming zero Friction losses and pump's efficiency is just 70%. Calculate the unknown final velocity in m/s for a mass of 75.75 kg and a time per minute of alcohol and power of pump @ 5hp.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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COCA COLA's coke zero has a density of 970 kg/m3 from a bulk tank of 7.5 meters (P1-5.75 bars) flows before the pump at 3.5 m/s. The junkfood- drink is pumped
at an unknown velocity to a 45-meter elevated filling tank with a pressure reading of (P2-10.7575 Bars) ready for filling the bottles, packaging and delivery. Assuming
zero Friction losses and pump's efficiency is just 70%. Calculate the unknown final velocity in m/s for a mass of 75.75 kg and a time per minute of alcohol and power
of pump @ 5hp.
Transcribed Image Text:COCA COLA's coke zero has a density of 970 kg/m3 from a bulk tank of 7.5 meters (P1-5.75 bars) flows before the pump at 3.5 m/s. The junkfood- drink is pumped at an unknown velocity to a 45-meter elevated filling tank with a pressure reading of (P2-10.7575 Bars) ready for filling the bottles, packaging and delivery. Assuming zero Friction losses and pump's efficiency is just 70%. Calculate the unknown final velocity in m/s for a mass of 75.75 kg and a time per minute of alcohol and power of pump @ 5hp.
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