| Your Results | Global Average | |
|---|---|---|
| Questions | 5 | 5 |
| Correct | 0 | 3.30 |
| Score | 0% | 66% |
Electrons will flow as current from areas of __________ potential (concentration of electrons) to areas of __________ potential.
high, high |
|
low, low |
|
low, high |
|
high, low |
Voltage (V) is the electrical potential difference between two points. Electrons will flow as current from areas of high potential (concentration of electrons) to areas of low potential. Voltage and current are directly proportional in that the higher the voltage applied to a conductor the higher the current that will result.
The farad is a unit of measurement for:
inductance |
|
capacitance |
|
energy |
|
power |
Capacitors store electricity and are used in circuits as temporary batteries. Capacitors are charged by DC current (AC current passes through a capacitor) and that stored charge can later be dissipated into the circuit as needed. Capacitors are often used to maintain power within a system when it is disconnected from its primary power source or to smooth out or filter voltage within a circuit.
In household electrical wiring, which color of insulation indicates the 'hot' wire?
black |
|
red |
|
white |
|
green |
In the NM cable used for wiring homes, each cable has three wires inside a sheath with each wire covered in a different color of insulation to indicate its type. The wire with the black insulation is the 'hot' wire, white is the neutral wire, and the ground wire is either covered in green insulation or left bare.
The hertz is a unit of measurement for:
energy |
|
frequency |
|
inductance |
|
power |
The hertz is a unit of measurement for frequency.
In a series circuit, which of the following is the same across all branches of the circuit?
conductance |
|
resistance |
|
current |
|
voltage |
A series circuit has only one path for current to flow. In a series circuit, current (I) is the same throughout the circuit and is equal to the total voltage (V) applied to the circuit divided by the total resistance (R) of the loads in the circuit. The sum of the voltage drops across each resistor in the circuit will equal the total voltage applied to the circuit.