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In a parallel circuit, electricity can flow through multiple paths simultaneously. Each branch of the circuit provides a separate path for the current to travel, which can result in different amounts of current flowing through each branch depending on the resistance of the components in each path.
In a parallel circuit, there are multiple paths for current to flow. Each branch of the circuit provides a separate path for current to travel from the source to the load. This allows for different components in the circuit to operate independently of each other.
A parallel circuit has multiple paths for current to flow. Each branch in a parallel circuit offers a separate path for the current, providing multiple routes for electricity to travel from the source to the load.
In a series circuit, the components are connected in a single path so that the current flows through each component in sequence. In a parallel circuit, the components are connected in multiple paths so that the current splits between the components. This means that in a parallel circuit, if one component fails, the others can still operate independently.
That really depends on how the circuit is designed.
One path
one
one
At least two.
By definition, more than one.
There are 6 series paths that are used to connnect all of the devices.
In a parallel circuit, each component is connected directly to the power source, resulting in multiple electrical paths. The number of electrical paths in a parallel circuit is equal to the number of components connected in parallel.