Science - Physics - Electricity - Capacitance

Solving for capacitance.

Note:

free space permittivity = ε_{0} = 8.85 pF/m

free space permittivity = ε

Inputs:

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electrical charge (Q)

= 0

= 0

coulomb

electrical potential (V)

= 0

= 0

volt

capacitance (C)

= NOT CALCULATED

Select to solve for a different unknown

parallel plate capacitor

capacitance | |

permittivity | |

area | |

separation distance |

cylindrical capacitor

capacitance | |

permittivity | |

length of conductors | |

outer conductor diameter | |

inner conductor diameter |

capacitance

capacitance | |

electrical charge | |

potential difference |

stored energy

stored energy | |

capacitance | |

potential difference |

stored energy

stored energy | |

capacitance | |

electrical charge |

energy storage

energy storage | |

electrical charge | |

potential difference |

References - Books:

Tipler, Paul A. 1995. Physics For Scientists and Engineers. Worth Publishers. 3rd ed.

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