1) A pipe carries water from the bottom of a pool to the top of a water slide with the aid of a pump. The pool is 3 meters deep and the water slide is 5 meters above the surface of the pool. The pipe carrying the water has uniform area. A diagram of the system is shown here. :Open to atmosphere Pump Pool a) If the pump's output is 62 kJ/m³ and the flow rate is 0.3 m/s, what is the resistance in the pipe? b) The pool is partially drained for construction. How low can the water go in the pool before the water in the pipe stops flowing?

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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1) A pipe carries water from the bottom of a pool to the top of a
water slide with the aid of a pump. The pool is 3 meters deep
and the water slide is 5 meters above the surface of the pool.
The pipe carrying the water has uniform area. A diagram of
the system is shown here.
Open to atmosphere
Pump
Pool
a) If the pump's output is 62 kJ/m³ and the flow rate is 0.3 m³/s, what is the resistance in the
pipe?
b) The pool is partially drained for construction. How low can the water go in the pool before the
water in the pipe stops flowing?
c) After long use, sediment builds up in the pipe, increasing the resistance and decreasing the area of
the pipe uniformly. How do these changes affect the current in the pipe?
Transcribed Image Text:1) A pipe carries water from the bottom of a pool to the top of a water slide with the aid of a pump. The pool is 3 meters deep and the water slide is 5 meters above the surface of the pool. The pipe carrying the water has uniform area. A diagram of the system is shown here. Open to atmosphere Pump Pool a) If the pump's output is 62 kJ/m³ and the flow rate is 0.3 m³/s, what is the resistance in the pipe? b) The pool is partially drained for construction. How low can the water go in the pool before the water in the pipe stops flowing? c) After long use, sediment builds up in the pipe, increasing the resistance and decreasing the area of the pipe uniformly. How do these changes affect the current in the pipe?
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