4) The frontal surface area of a cyclist has been measured as 0.8 m². Knowing that the coefficient of air resistance is 0.6 and the density of the air is 1.29 kg/m³, calculate the horizontal force that the cyclist has to apply via the pedals to ride at 40 km/h.
4) The frontal surface area of a cyclist has been measured as 0.8 m². Knowing that the coefficient of air resistance is 0.6 and the density of the air is 1.29 kg/m³, calculate the horizontal force that the cyclist has to apply via the pedals to ride at 40 km/h.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![4) The frontal surface area of a cyclist has been measured as 0.8 m2.
Knowing that the coefficient of air resistance is 0.6 and the density of the
air is 1.29 kg/m3, calculate the horizontal force that the cyclist has to
apply via the pedals to ride at 40 km/h.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5334ecb1-0a8f-45e6-ad6b-e9d03822a8f8%2F3ee01214-76c4-4c27-84f8-6692d85253d3%2Fnvm9qt_processed.png&w=3840&q=75)
Transcribed Image Text:4) The frontal surface area of a cyclist has been measured as 0.8 m2.
Knowing that the coefficient of air resistance is 0.6 and the density of the
air is 1.29 kg/m3, calculate the horizontal force that the cyclist has to
apply via the pedals to ride at 40 km/h.
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