86. A projectile of mass 2 kg is fired with a speed of 20 m/s at an angle of 30° with respect to the horizontal. (a) Calculate the initial total energy of the projectile given that the reference point of zero gravitational potential energy at the launch position. (b) Calculate the kinetic energy at the highest vertical position of the projectile. (c) Calculate the gravitational potential energy at the highest vertical position. (d) Calculate the maximum height that the projectile reaches. Compare this result by solving the same problem using your knowledge of projectile motion.

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Chapter8: Potential Energy And Conservation Of Energy
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Ch.8 Problem #86
anges
giving the
numerical values of any work or energy involved. (b) Find
the magnitude of the net friction force.
86. A projectile of mass 2 kg is fired with a speed of 20
m/s at an angle of 30° with respect to the horizontal. (a)
Calculate the initial total energy of the projectile given that
the reference point of zero gravitational potential energy
at the launch position. (b) Calculate the kinetic energy at
the highest vertical position of the projectile. (c) Calculate
the gravitational potential energy at the highest vertical
position. (d) Calculate the maximum height that the
projectile reaches. Compare this result by solving the same
problem using your knowledge of projectile motion.
87. An artillery shell is fired at a target 200 m above the
Transcribed Image Text:anges giving the numerical values of any work or energy involved. (b) Find the magnitude of the net friction force. 86. A projectile of mass 2 kg is fired with a speed of 20 m/s at an angle of 30° with respect to the horizontal. (a) Calculate the initial total energy of the projectile given that the reference point of zero gravitational potential energy at the launch position. (b) Calculate the kinetic energy at the highest vertical position of the projectile. (c) Calculate the gravitational potential energy at the highest vertical position. (d) Calculate the maximum height that the projectile reaches. Compare this result by solving the same problem using your knowledge of projectile motion. 87. An artillery shell is fired at a target 200 m above the
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