The large block shown is x = 48 cm wide, y = 36 cm long, V3 and z = 6.0 cm high. This block is passing through air (density of air p = 1.43 kg/m³) at a speed of v = 8.01 m/s. Find the drag force F41 acting on the block when it has the velocity ūj and a drag coefficient I = 0.832. V2 Fa.1 = N Find the drag force F42 acting on the block when it has the velocity vz with a drag coefficient I = 0.915. F42 = N Find the drag force Fa3 acting on the block when it has the velocity vz with a drag coefficient I = 1.08. F43 = N

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter2: Newtonian Mechanics-single Particle
Section: Chapter Questions
Problem 2.51P: Let us make the (unrealistic) assumption that a boat of mass m gliding with initial velocity v0 in...
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The large block shown is x = 48 cm wide, y = 36 cm long,
V3
and z = 6.0 cm high. This block is passing through air
(density of air p = 1.43 kg/m³) at a speed of v = 8.01 m/s.
Find the drag force Fa1 acting on the block when it has the
velocity vj and a drag coefficient r = 0.832.
Fa,1 =
N
Find the drag force F4.2 acting on the block when it has the
velocity vz with a drag coefficient r = 0.915.
Fa2 =
N
Find the drag force Fa3 acting on the block when it has the
velocity vz with a drag coefficient I = 1.08.
Fa.3 =
Transcribed Image Text:The large block shown is x = 48 cm wide, y = 36 cm long, V3 and z = 6.0 cm high. This block is passing through air (density of air p = 1.43 kg/m³) at a speed of v = 8.01 m/s. Find the drag force Fa1 acting on the block when it has the velocity vj and a drag coefficient r = 0.832. Fa,1 = N Find the drag force F4.2 acting on the block when it has the velocity vz with a drag coefficient r = 0.915. Fa2 = N Find the drag force Fa3 acting on the block when it has the velocity vz with a drag coefficient I = 1.08. Fa.3 =
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