ASVAB Electronics Information Practice Test 61214 Results

Your Results Global Average
Questions 5 5
Correct 0 3.31
Score 0% 66%

Review

1

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.


2

A __________ electric current produces a magnetic field proportional to the amount of current flow.

61% Answer Correctly

high voltage

stationary

low voltage

moving


Solution

A moving electric current produces a magnetic field proportional to the amount of current flow. This magnetic field can be made stronger by winding the wire into a coil and further enhanced if done around an iron containing (ferrous) core.


3

An inductor __________ changes in the electric current flowing through it.

61% Answer Correctly

resists

eliminates

doubles

enhances


Solution

An inductor is coiled wire that stores electric energy in the form of magnetic energy and resists changes in the electric current flowing through it. If current is increasing, the inductor produces a voltage that slows the increase and, if current is decreasing, the magnetic energy in the coil opposes the decrease to keep the current flowing longer. In contrast to capacitors, inductors allow DC to pass easily but resist the flow of AC.


4

A diode to an electronic circuit is like a _______________ to a city?

67% Answer Correctly

one-way street

traffic light

parking lot

highway


Solution

A diode allows current to pass easily in one direction and blocks current in the other direction.


5

One of the lights on your Christmas tree burns out and this causes the rest of the lights connected to that strand to go dark. How are the lights in that strand connected?

73% Answer Correctly

parallel

series-parallel

series

perpendicular


Solution

Lights connected in series form a chain with each light connecting to adjacent lights via one wire. Therefore, if one of the lights burns out and breaks the series, none of the other lights will receive power and they'll go dark. Lights connected in parallel each connect to the positive and negative nodes of the power source and would not go dark if one of their neighbors burnt out.