(d) The force, F, of a turbine generator is a function of density p, area A and velocity v. By assuming F = apªA® v° and dimensional homogeneity, find a, b and c and express F in terms of p, A and v. (a, a, b and c are real numbers). Make the following assumptions to determine the dimensionless parameter: F = 1 k N if the scalar values of pAv= 1milli.
(d) The force, F, of a turbine generator is a function of density p, area A and velocity v. By assuming F = apªA® v° and dimensional homogeneity, find a, b and c and express F in terms of p, A and v. (a, a, b and c are real numbers). Make the following assumptions to determine the dimensionless parameter: F = 1 k N if the scalar values of pAv= 1milli.
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![(d) The force, F, of a turbine generator is a function of density p, area A and velocity v. By
assuming
F = apªA® v°
and dimensional homogeneity, find a, b and c and express F in terms of p, A and v. (a, a, b and c
are real numbers). Make the following assumptions to determine the dimensionless parameter:
F = 1 k N if the scalar values of pAv= 1milli.
(e) The dynamic coefficient of viscosity µ (viscosity of a fluid) is found from the formula:
µAv
F =](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1ec0b367-93c8-4607-b83c-81771cd23c03%2F8dd3bb39-030c-4e91-9429-8f87f7ec387f%2Fo0oiezd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:(d) The force, F, of a turbine generator is a function of density p, area A and velocity v. By
assuming
F = apªA® v°
and dimensional homogeneity, find a, b and c and express F in terms of p, A and v. (a, a, b and c
are real numbers). Make the following assumptions to determine the dimensionless parameter:
F = 1 k N if the scalar values of pAv= 1milli.
(e) The dynamic coefficient of viscosity µ (viscosity of a fluid) is found from the formula:
µAv
F =
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