ASVAB Electronics Information Practice Test 912126 Results

Your Results Global Average
Questions 5 5
Correct 0 3.47
Score 0% 69%

Review

1

You would measure the amount of voltage between two points in a circuit with a(n):

83% Answer Correctly

voltmeter

reostat

ammeter

battery


Solution

Voltage (V) is the electrical potential difference between two points. A voltmeter is used to measure the voltage between two points in a circuit.


2

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

73% Answer Correctly

P = IV

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

P = I2V

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


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

What type of current flows in only one direction in a circuit?

82% Answer Correctly

series

parallel

alternating

direct


Solution

Direct current flows in only one direction in a circuit, from the negative terminal of the voltage source to the positive. A common source of direct current (DC) is a battery.


4

This circuit component symbol represents a(n):

65% Answer Correctly

transistor

DC source

transformer

AC source


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

Inductance is a factor in which of the following?

44% Answer Correctly

determining energy stored by a capacitor

an AC circuit

batteries connected in serial

a DC circuit


Solution

Inductance is a property of an AC circuit (or a component in an AC circuit) that quantifies resistance to changes in current. The current in an AC circuit is continuously changing and inductive reactance (the opposition to change) depends both on the inductance of the circuit or component and the rate at which the current is changing.