A slow projectile of negligible size and mass m is launched in a viscous fluid environment, aiming at a point target located at a distance d, as shown in the Figure. The initial kinetic energy of the projectile is Ko = mgt/2, where (=2d / /3. All the quantities mentioned so far are assumed to be known. Neglecting buoyancy and fluid resistance, find: Still neglecting buoyancy, but now modeling fluid res.scance as a force F=-yv acting on the projectile, where v is the projectile velocity and y is a known drag coefficient, find: c) The components of the projectile velocity x and ý as a function of time.

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Exercise #2
A slow projectile of negligible size and mass m is launched in a viscous fluid environment,
aiming at a point target located at a distance d, as shown in the Figure. The initial kinetic
energy of the projectile is Ko = mgt/2, where (= 2d/3. All the quantities mentioned
so far are assumed to be known. Neglecting buoyancy and fluid resistance, find:
Still neglecting buoyancy, but now modeling fluid res.atance as a force F =-yv acting on
the projectile, where v is the projectile velocity and y is a known drag coefficient, find:
c) The components of the projectile velocity x and ý as a function of time.
m
VO
Transcribed Image Text:Exercise #2 A slow projectile of negligible size and mass m is launched in a viscous fluid environment, aiming at a point target located at a distance d, as shown in the Figure. The initial kinetic energy of the projectile is Ko = mgt/2, where (= 2d/3. All the quantities mentioned so far are assumed to be known. Neglecting buoyancy and fluid resistance, find: Still neglecting buoyancy, but now modeling fluid res.atance as a force F =-yv acting on the projectile, where v is the projectile velocity and y is a known drag coefficient, find: c) The components of the projectile velocity x and ý as a function of time. m VO
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