ASVAB Electronics Information Practice Test 626226 Results

Your Results Global Average
Questions 5 5
Correct 0 3.72
Score 0% 74%

Review

1

The volt is a unit of measurement for:

79% Answer Correctly

capacitance

voltage

current

power


Solution

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.


2

Which of the following is the formula for calculating electrical power?

73% Answer Correctly

\(P = {V \over I}\)

\(P = {I \over V}\)

P = I2V

P = IV


Solution

Electrical power is measured in watts (W) and is calculated by multiplying the voltage (V) applied to a circuit by the resulting current (I) that flows in the circuit: P = IV. In addition to measuring production capacity, power also measures the rate of energy consumption and many loads are rated for their consumption capacity. For example, a 60W lightbulb utilizes 60W of energy to produce the equivalent of 60W of heat and light energy.


3 Use Ohm's Law to calculate the value of voltage in this circuit if resistance is 100 Ω and current is 3 amps.
85% Answer Correctly
150 V
300 V
294 V
301.5 V

Solution

Ohm's law specifies the relationship between voltage (V), current (I), and resistance (R) in an electrical circuit: V = IR.

V = \( I \times R \) = \( 3 \times 100 \) = 300 V


4

The rate of flow of electrons per unit time is which of the following?

74% Answer Correctly

current

conductance

voltage

resistance


Solution

Current is the rate of flow of electrons per unit time and is measured in amperes (A). A coulomb (C) is the quantity of electricity conveyed in one second by a current of one ampere.


5

A transformer utilizes an inductor to increase or decrease what in a circuit?

61% Answer Correctly

load

voltage

resistance

current


Solution

A transformer utilizes an inductor to increase or decrease the voltage in a circuit. AC flowing in a coil wrapped around an iron core magnetizes the core causing it to produce a magnetic field. This magnetic field generates a voltage in a nearby coil of wire and, depending on the number of turns in the wire of the primary (source) and secondary coils and their proximity, voltage is induced in the secondary coil.