20.6 kmols Oxygen If gasoline fuel is approximated by the formula CaH18 , in an atmosphere of 794 kmol nitrogen Calculate the following: kg air (a) Determine the molecular mass of the air, in - kmot air" (b) Determine the molecular mass of CH,8, in- kmol Ga Hin (c) Determine the theoretical Air/Fuel Ratio by Volume (m'air/m fuel) with both reactants having the same Temperatures.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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SEMIFINAL EXAMINATION IN ME 3215
COMBUSTION ENGINEERING
PROBLEM:
20.6 kmols Oxygen
If gasoline fuel is approximated by the formula C3H18 , in an atmosphere of
794 kmol nitrogen
Calculate the following:
kg air
kmol air
(a) Determine the molecular mass of the air, in -
(b) Determine the molecular mass of C3H18, in-
kg CaH18
kmol Ce H18
(c) Determine the theoretical Air/Fuel Ratio by Volume (m³air/m³ fuel) with both reactants
having the same Temperatures.
kg air
kg CH18
(d) Solve for the Air/fuel Ratio by mass, in
Transcribed Image Text:SEMIFINAL EXAMINATION IN ME 3215 COMBUSTION ENGINEERING PROBLEM: 20.6 kmols Oxygen If gasoline fuel is approximated by the formula C3H18 , in an atmosphere of 794 kmol nitrogen Calculate the following: kg air kmol air (a) Determine the molecular mass of the air, in - (b) Determine the molecular mass of C3H18, in- kg CaH18 kmol Ce H18 (c) Determine the theoretical Air/Fuel Ratio by Volume (m³air/m³ fuel) with both reactants having the same Temperatures. kg air kg CH18 (d) Solve for the Air/fuel Ratio by mass, in
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