An Andean condor with a wingspan of 230 cm and a mass of 12.0 kg soars along a horizontal path. Model its wings as a rectangle with a width of 47.0 cm. Determine the difference Ap between the pressure Ptop at the top surfaces of the condor's wings and the pressure pbottom at Ap = N/m2 the bottom surfaces, where Ap = Ptop - pbottom-
An Andean condor with a wingspan of 230 cm and a mass of 12.0 kg soars along a horizontal path. Model its wings as a rectangle with a width of 47.0 cm. Determine the difference Ap between the pressure Ptop at the top surfaces of the condor's wings and the pressure pbottom at Ap = N/m2 the bottom surfaces, where Ap = Ptop - pbottom-
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![An Andean condor with a wingspan of 230 cm and a mass of 12.0 kg soars along a horizontal path. Model its wings as a
rectangle with a width of 47.0 cm.
Determine the difference Ap between the
pressure
Ptop
at the
top surfaces of the condor's wings and the pressure Ppottom at
Ap =
N/m2
%3D
the bottom surfaces, where Ap = Ptop
Pbottom](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe496cfb4-14de-4877-8074-43f9c7c49581%2Fe1c58630-f6e3-43b6-91d4-6c084d58aadd%2Fvapiu2t_processed.jpeg&w=3840&q=75)
Transcribed Image Text:An Andean condor with a wingspan of 230 cm and a mass of 12.0 kg soars along a horizontal path. Model its wings as a
rectangle with a width of 47.0 cm.
Determine the difference Ap between the
pressure
Ptop
at the
top surfaces of the condor's wings and the pressure Ppottom at
Ap =
N/m2
%3D
the bottom surfaces, where Ap = Ptop
Pbottom
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