ASVAB Electronics Information Practice Test 219473 Results

Your Results Global Average
Questions 5 5
Correct 0 3.59
Score 0% 72%

Review

1

Which of the following is not a characteristic of a step-up transformer?

54% Answer Correctly

has more turns in the secondary winding than in the primary winding

increases voltage

the secondary voltage is higher than the primary voltage

the primary voltage is higher than the secondary voltage


Solution

As their names indicate, a step-up transformer is used to step up or increase voltage and a step-down transformer is used to step down or decrease voltage. In a step-up transformer, the secondary voltage is higher than the primary voltage and it has more turns in the secondary winding than in the primary winding.


2

Current is the rate of flow of electrons per unit time and is measured in:

69% Answer Correctly

ohms

coulombs

amperes

volts


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.


3

The volt is a unit of measurement for:

79% Answer Correctly

current

power

capacitance

voltage


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.


4

Which of these materials is not a good conductor of electricity?

79% Answer Correctly

air

copper

tin

gold


Solution

All conductors have resistance and the amount of resistance varies with the element. In general, metals make the best conductors of electricity and non-metals make the worst conductors of electricity.


5

The formula specifying Ohm's law is which of the following?

76% Answer Correctly

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

V = I2R

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

V = IR


Solution

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