A rotation is powered by a motor with 25 W for 3 minutes. After that different objects are spinning with constant angular momentum around certain axes. axis. The objects are all made of thin bars with 5 cm length and masses of 35 g each. Example: Upper case Delta spinning around symmetry axis (no need to calculate that!!) Draw the following objects, compute their moments of inertia and their angular velocities: a) Upper case Gamma (around the leg). b) Upper case Lambda (around symmetry axis, take 60° for the relevant angle: c) Upper case Pi (around symmetry axis)

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A rotation is powered by a motor with 25 W for 3 minutes. After that different
objects are spinning with constant angular momentum around certain axes.
axis. The objects are all made of thin bars with 5 cm length and masses of 35 g
each. Example: Upper case Delta spinning around symmetry axis (no need to
calculate that!!)
Draw the following objects, compute their moments of inertia and their
angular velocities:
a) Upper case Gamma (around the leg).
b) Upper case Lambda (around symmetry axis, take 60° for the relevant angle)
c) Upper case Pi (around symmetry axis)
Transcribed Image Text:#4 Page Letter turner A rotation is powered by a motor with 25 W for 3 minutes. After that different objects are spinning with constant angular momentum around certain axes. axis. The objects are all made of thin bars with 5 cm length and masses of 35 g each. Example: Upper case Delta spinning around symmetry axis (no need to calculate that!!) Draw the following objects, compute their moments of inertia and their angular velocities: a) Upper case Gamma (around the leg). b) Upper case Lambda (around symmetry axis, take 60° for the relevant angle) c) Upper case Pi (around symmetry axis)
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