Simulate projectile motion with air resistance in PhysLab. A shuttlecock is launched from the ground with an initial speed of 36.8015 m/s at an angle of 7.0734 degrees with respect to the horizontal. The shuttlecock experiences air resistance with a drag coefficient of 0.1937 in an environment where the air density is 0.2178 kg/m3. If the shuttlecock has a radius of 3.4 cm and a mass of 5.2 grams, what is the maximum height reached by the shuttlecock? Assume that the experiment is done near the surface of the earth.

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Simulate projectile motion with air resistance in PhysLab. A shuttlecock is launched from the ground with an initial speed of 36.8015 m/s at an angle of 7.0734 degrees with respect to the horizontal. The shuttlecock experiences air resistance with a drag coefficient of 0.1937 in an environment where the air density is 0.2178 kg/m3. If the shuttlecock has a radius of 3.4 cm and a mass of 5.2 grams, what is the maximum height reached by the shuttlecock? Assume that the experiment is done near the surface of the earth.
Simulate projectile motion with air
resistance in PhysLab. A shuttlecock is
launched from the ground with an initial speed
of 36.8015 m/s at an angle of 7.0734 degrees
with respect to the horizontal. The shuttlecock
experiences air resistance with a drag
coefficient of 0.1937 in an environment where
the air density is 0.2178 kg/m³. If the
shuttlecock has a radius of 3.4 cm and a
mass of 5.2 grams, what is the maximum
height reached by the shuttlecock? Assume
that the experiment is done near the surface
of the earth.
Transcribed Image Text:Simulate projectile motion with air resistance in PhysLab. A shuttlecock is launched from the ground with an initial speed of 36.8015 m/s at an angle of 7.0734 degrees with respect to the horizontal. The shuttlecock experiences air resistance with a drag coefficient of 0.1937 in an environment where the air density is 0.2178 kg/m³. If the shuttlecock has a radius of 3.4 cm and a mass of 5.2 grams, what is the maximum height reached by the shuttlecock? Assume that the experiment is done near the surface of the earth.
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