An oil refinery uses a Venturi tube to measure the flow rate of gasoline. The density...
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An oil refinery uses a Venturi tube to measure the flow rate of gasoline. The density of the gasoline is p = 7.60 x 10² kg/m³, the inlet and outlet tubes, respectively, have a radius of 3.50 cm and 1.75 cm, and the difference P₂ = 1.20 kPa. in input and output pressure is P₁ 1 P₁ P₂ (a) Find the speed (in m/s) of the gasoline as it leaves the hose. m/s (b) Find the fluid flow rate in cubic meters per second. m³/s An oil refinery uses a Venturi tube to measure the flow rate of gasoline. The density of the gasoline is p = 7.60 x 10² kg/m³, the inlet and outlet tubes, respectively, have a radius of 3.50 cm and 1.75 cm, and the difference P₂ = 1.20 kPa. in input and output pressure is P₁ 1 P₁ P₂ (a) Find the speed (in m/s) of the gasoline as it leaves the hose. m/s (b) Find the fluid flow rate in cubic meters per second. m³/s An oil refinery uses a Venturi tube to measure the flow rate of gasoline. The density of the gasoline is p = 7.60 x 10² kg/m³, the inlet and outlet tubes, respectively, have a radius of 3.50 cm and 1.75 cm, and the difference P₂ = 1.20 kPa. in input and output pressure is P₁ 1 P₁ P₂ (a) Find the speed (in m/s) of the gasoline as it leaves the hose. m/s (b) Find the fluid flow rate in cubic meters per second. m³/s An oil refinery uses a Venturi tube to measure the flow rate of gasoline. The density of the gasoline is p = 7.60 x 10² kg/m³, the inlet and outlet tubes, respectively, have a radius of 3.50 cm and 1.75 cm, and the difference P₂ = 1.20 kPa. in input and output pressure is P₁ 1 P₁ P₂ (a) Find the speed (in m/s) of the gasoline as it leaves the hose. m/s (b) Find the fluid flow rate in cubic meters per second. m³/s
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