• The firefighter holds the hose 1 m off the ground. What is the speed of the flow as it leaves the hose nozzle? • What is the diameter of the nozzle exit? • The hose from the firetruck to the firefighter has a 15 cm inside diameter. What is the pressure in the hose as it leaves the truck? Assume no losses in the hose and that the hose exits the truck a height of 1 m off the ground.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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horizontal component of velocity. It's small, don't bother.
Firetruck (with pump)
12 m
Pond
• The firefighter holds the hose 1 m off the ground. What is the speed of the flow as it leaves the hose
nozzle?
• What is the diameter of the nozzle exit?
• The hose from the firetruck to the firefighter has a 15 cm inside diameter. What is the pressure in the
hose as it leaves the truck? Assume no losses in the hose and that the hose exits the truck a height of
1 m off the ground.
• What is the power in the fluid coming out of the pump?
• Assume the pump and motor have a combined efficiency of 60%. What power must be input to the
motor?
Transcribed Image Text:horizontal component of velocity. It's small, don't bother. Firetruck (with pump) 12 m Pond • The firefighter holds the hose 1 m off the ground. What is the speed of the flow as it leaves the hose nozzle? • What is the diameter of the nozzle exit? • The hose from the firetruck to the firefighter has a 15 cm inside diameter. What is the pressure in the hose as it leaves the truck? Assume no losses in the hose and that the hose exits the truck a height of 1 m off the ground. • What is the power in the fluid coming out of the pump? • Assume the pump and motor have a combined efficiency of 60%. What power must be input to the motor?
Consider a pumping firetruck, which draws water from a nearby pond, and sprays a tight stream of water at
a rate of 4200 L/min to the top of a building at a height of 12 m.
You should consider all kinetic energy at the top of the building to be negligible. You don't know the
horizontal component of velocity. It's small, don't bother.
Firetruck (with pump)
12 m
Pond
• The firefighter holds the hose 1 m off the ground. What is the speed of the flow as it leaves the hose
nozzle?
• What is the diameter of the nozzle exit?
• The hose from the firetruck to the firefighter has a 15 cm inside diameter. What is the pressure in the
hose as it leaves the truck? Assume no losses in the hose and that the hose exits the truck a height of
1 m off the ground.
Transcribed Image Text:Consider a pumping firetruck, which draws water from a nearby pond, and sprays a tight stream of water at a rate of 4200 L/min to the top of a building at a height of 12 m. You should consider all kinetic energy at the top of the building to be negligible. You don't know the horizontal component of velocity. It's small, don't bother. Firetruck (with pump) 12 m Pond • The firefighter holds the hose 1 m off the ground. What is the speed of the flow as it leaves the hose nozzle? • What is the diameter of the nozzle exit? • The hose from the firetruck to the firefighter has a 15 cm inside diameter. What is the pressure in the hose as it leaves the truck? Assume no losses in the hose and that the hose exits the truck a height of 1 m off the ground.
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