Consider an infinite insulating slab of thickness 2d with charge density p = pue-lW/wo, where po > 0 and o >0 are some positive constants, and y is the distance from the zz-plane. The slab extends infinitely in the z and z directions. 2d Find the frequency (or angular frequency) of small oscillations of the particle from part (e). [In terms of d, Po, Yo, m, q, and/or eo]

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Consider an infinite insulating slab of thickness 2d with charge density p = poe-lw/wo, where po > 0 and
Yo > 0 are some positive constants, and y is the distance from the az-plane. The slab extends infinitely in
the z and z directions.
2d
Find the frequency (or angular frequency) of small oscillations of the particle from part (e). [In terms of d,
Po, Y0, m, q, and/or co]
Transcribed Image Text:Consider an infinite insulating slab of thickness 2d with charge density p = poe-lw/wo, where po > 0 and Yo > 0 are some positive constants, and y is the distance from the az-plane. The slab extends infinitely in the z and z directions. 2d Find the frequency (or angular frequency) of small oscillations of the particle from part (e). [In terms of d, Po, Y0, m, q, and/or co]
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