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Yes an electricity travels in an electromagnetic circuit. No it Doesn't

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12y ago

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In what type of circuit does electricity travel when it does work?

Electricity travels in a closed circuit when it does work.


What type of circuit does electricity travel when it does work?

Electricity travels in a closed circuit when it does work.


Is electricity a wave?

Electricity is not a wave itself, but it can travel in the form of waves, such as electromagnetic waves.


What is closed pathway through which electricity can travel?

a circuit.


What kind of circuit can electricity travel through?

"closed"


What makes electricity travel?

The flow of the electricity is being pushed through the circuit because of the electrons.


How many pathways exits for electricity travel on in a series circuit?

In a series circuit, there is only one path for electricity to travel along the circuit from the power source through each component connected in series back to the power source.


Does electricity travel from positive to negative or negative to positive in a circuit?

It goes negative to positive.


Is an open switch in an electrical circuit to prevent current flow?

Yes, an open switch breaks the circuit and prevents electricity flowing through. A closed switch on the other hand completes the circuit and in turn helps electricity travel through the circuit.


Electricity always wants to travel to?

electricity always wants to travel through to complete the circut


What is a circuit What can you use it for?

In electronics, a circuit is a complete circular path that electricity flows through. A simple circuit consists of a current source, conductors and a load. The term circuit can be used in a general sense to refer to any fixed path that electricity, data or a signal can travel through.


When electricity has more than one path to travel to circuit is called?

When electricity has more than one path to travel in a circuit, it is called a parallel circuit. In a parallel circuit, the components are connected in a way that allows the current to flow through multiple paths simultaneously. This results in each component receiving the full voltage of the power source independently.