Dielectric elastomers are used to create voltage-dependent capacitors. These elastomers contract when subject to the stresses induced by Coulomb forces between capacitor plates. Consider a pair of parallel plates with area A separated by distance d0 when no voltage is applied. A material with dielectric constant K and Young's modulus Y fills the space between the plates. Part A What compressive force is applied to the dielectric when the plates have opposite charges Q and −Q? Express your answer in terms of A, K, Q, and constant ϵ0
Dielectric elastomers are used to create voltage-dependent capacitors. These elastomers contract when subject to the stresses induced by Coulomb forces between capacitor plates. Consider a pair of parallel plates with area A separated by distance d0 when no voltage is applied. A material with dielectric constant K and Young's modulus Y fills the space between the plates. Part A What compressive force is applied to the dielectric when the plates have opposite charges Q and −Q? Express your answer in terms of A, K, Q, and constant ϵ0
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Dielectric elastomers are used to create voltage-dependent capacitors. These elastomers contract when subject to the stresses induced by Coulomb forces between capacitor plates. Consider a pair of parallel plates with area A separated by distance d0 when no voltage is applied. A material with dielectric constant K and Young's modulus Y fills the space between the plates.
Part A What compressive force is applied to the dielectric when the plates have opposite charges Q and −Q? Express your answer in terms of A, K, Q, and constant ϵ0.
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