3.) Given the velocity of the wind at 60 kilometers per hour determine its equivalent kinetic energy (in kW: 1 kW = 1kN-m/s) passing through an area with a diameter of 2500 millimeters. Assume density of air to be 1.2 kg/m^3.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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**Instruction:
Use Given-Required-Solution in
answering problems. Provide
necessary diagrams for each.
Answers should be rounded off
to four decimal places and
enclosed in a box.**
3.) Given the velocity of the wind at 60 kilometers per
hour determine its equivalent kinetic energy (in kW: 1
kW = 1kN-m/s) passing through an area with a
diameter of 2500 millimeters. Assume density of air to
be 1.2 kg/m^3.
Transcribed Image Text:**Instruction: Use Given-Required-Solution in answering problems. Provide necessary diagrams for each. Answers should be rounded off to four decimal places and enclosed in a box.** 3.) Given the velocity of the wind at 60 kilometers per hour determine its equivalent kinetic energy (in kW: 1 kW = 1kN-m/s) passing through an area with a diameter of 2500 millimeters. Assume density of air to be 1.2 kg/m^3.
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