ASVAB Electronics Information Practice Test 159404 Results

Your Results Global Average
Questions 5 5
Correct 0 3.37
Score 0% 67%

Review

1

The ampere is a unit of measurement for:

79% Answer Correctly

current

power

energy

inductance


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

Capacitors are charged by what type of current?

64% Answer Correctly

low voltage

alternating

high voltage

direct


Solution

Capacitors store voltage 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.


3

General current flow in a transistor is from __________ to __________.

51% Answer Correctly

collector, emitter

collector, base

base, emitter

base, collector


Solution

The transistor is the foundation of modern electronic devices. It is made entirely from semiconductor material (making it a solid state device) and can serve many different functions in a circuit including acting as a switch, amplifier, or current regulator. A transistor works by allowing a small amount of current applied at the base to control general current flow from collector to emitter through the transistor.


4

This circuit component symbol represents a(n):

65% Answer Correctly

AC source

DC source

transistor

transformer


Solution

In contrast to the constant one-way flow of direct current, alternating current changes direction many times each second. Electricity is delivered from power stations to customers as AC because it provides a more efficient way to transport electricity over long distances.


5

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

76% Answer Correctly

V = I2R

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

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

V = IR


Solution

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