Physics & Math

Chapter 6: Circuits

98 cards

Sign in to study this deck

Capacitors in parallel ____

____ are insulators placed between the plates of a capacitor.

Dielectric materials are ____ placed between the plates of a capacitor.

Dielectric materials are insulators placed between ____.

Dielectric materials ____ capacitance by a factor equal to the material’s dielectric constant , κ .

Dielectric materials increase ____ by a factor equal to the material’s dielectric constant , κ .

Dielectric materials increase capacitance by a factor equal to ____.

____ in equation form :

Equivalent capacitance (series) in equation form : ____

Equivalent capacitance (parallel) in equation form : ____

____ in equation form : C p = C 1 + C 2 + C 3 + ⋯ + C n

Potential energy of a capacitor equation:____

____ equation:

Electric field in a capacitor equation : ____

____ equation :

Capacitance equation : ____

____ equation :

____ equation:

Equivalent resistance (parallel) equation:____

____ equation: R s = R 1 + R 2 + R 3 + ⋯ + R n

Equivalent resistance (series) equation: ____

Ohm’s law equation : ____

____ equation : V = IR

____ equation: V source = V drop

Kirchhoff’s loop rule equation: ____

____ equation: I into junction = I leaving junction

Kirchhoff’s junction rule equation: ____

Current equation:____

____ equation:

The influence that makes current flow from lower to higher potential is called ____.

The influence that makes current flow from ____ potential is called electromotive force.

The influence that makes ____ flow from lower to higher potential is called electromotive force.

Even the very sources of emf, such as batteries, have some small but measurable amount of ____

As a result of ____, the voltage supplied to a circuit is reduced from its theoretical emf value by some small amount.

The actual voltage supplied by a cell to a circuit can be calculated from:____

____ can be calculated from: V = E cell – ir int

Power delivered to or extracted from a circuit element can be shown by:____

Electric power equations:

← PreviousPage 2 of 2