The water pipe show below reduces from an 8.00cm diameter to a 6.000cm diameter. The pressure in the 8.00cm section is 9.50x10 N/m² and the pressure in the 6.00cm section is 7.50×10ʻN/m2 .1 8.00cm flow .2 6.00cm a) Find the ratio of the speed of the water at point1 to the speed at point 2 (find vị/v2). b) Find the speed at either point and find the volume flow rate in m'/min. Hint: Use the result from part a) and do some algebra

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter15: Fluid Mechanics
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BP-10 The water pipe show below reduces from an 8.00cm diameter to a 6.000cm diameter. The pressure in
the 8.00cm section is 9.50x10 N/m and the pressure in the 6.00cm section is 7.50x10ʻN/m2
.1 8.00cm
flow
.2 6.00cm
a) Find the ratio of the speed of the water at point 1 to the speed at point 2 (find vi/v2).
b) Find the speed at either point and find the volume flow rate in m'/min.
Hint: Use the result from part a) and do some algebra.
99+
hp
Cintal
CORE T
道
Transcribed Image Text:BP-10 The water pipe show below reduces from an 8.00cm diameter to a 6.000cm diameter. The pressure in the 8.00cm section is 9.50x10 N/m and the pressure in the 6.00cm section is 7.50x10ʻN/m2 .1 8.00cm flow .2 6.00cm a) Find the ratio of the speed of the water at point 1 to the speed at point 2 (find vi/v2). b) Find the speed at either point and find the volume flow rate in m'/min. Hint: Use the result from part a) and do some algebra. 99+ hp Cintal CORE T 道
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