3.2 A ball of mass m is thrown vertically upward and moves in a uniform gravitational field g. 3.2.1 Determine the Hamiltonian of the ball 3.2.2 Determine Hamilton's equations of motion for the ball (Given that the Lagrangian of the system is: L= T- V=mz2 - mgz)
3.2 A ball of mass m is thrown vertically upward and moves in a uniform gravitational field g. 3.2.1 Determine the Hamiltonian of the ball 3.2.2 Determine Hamilton's equations of motion for the ball (Given that the Lagrangian of the system is: L= T- V=mz2 - mgz)
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A ball of mass m is thrown vertically upward and moves in a uniform gravitational
field g.
3.2.1 Determine the Hamiltonian of the ball
3.2.2 Determine Hamilton's equations of motion for the ball
(Given that the Lagrangian of the system is: L=T- V=mz2 - mgz)"
Transcribed Image Text:3.2
A ball of mass m is thrown vertically upward and moves in a uniform gravitational
field g.
3.2.1 Determine the Hamiltonian of the ball
3.2.2 Determine Hamilton's equations of motion for the ball
(Given that the Lagrangian of the system is: L=T- V=mz2 - mgz)
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