3. A mass, m, is attached to a massless string of length f; the other end of the string is attached to a rigid and frictionless support. While keeping the string taut, the mass is raised to a height h (see diagram) and released. Under the force of gravity (g = 9.8 m/s²), the motion of the mass follows the dashed line (i.e., it's a pendulum). (a) Draw and label the position of the mass that corresponds to the minima and maxima of potential and kinetic energies of this system. (b) What is total energy, Er, of this system in terms of the given parameters (i.e., m, g, and h)? h m

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3. A mass, m, is attached to a massless string of length f; the other end of the string is attached to a rigid and
frictionless support. While keeping the string taut, the mass is raised to a height h (see diagram) and
released. Under the force of gravity (g = 9.8 m/s²), the motion of the mass follows the dashed line (i.e., it's
a pendulum). (a) Draw and label the position of the mass that corresponds to the minima and maxima of
potential and kinetic energies of this system. (b) What is total energy, Er, of this system in terms of the
given parameters (i.e., m, g, and h)?
h
m
Transcribed Image Text:3. A mass, m, is attached to a massless string of length f; the other end of the string is attached to a rigid and frictionless support. While keeping the string taut, the mass is raised to a height h (see diagram) and released. Under the force of gravity (g = 9.8 m/s²), the motion of the mass follows the dashed line (i.e., it's a pendulum). (a) Draw and label the position of the mass that corresponds to the minima and maxima of potential and kinetic energies of this system. (b) What is total energy, Er, of this system in terms of the given parameters (i.e., m, g, and h)? h m
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