ASVAB Automotive Information Practice Test 528920 Results

Your Results Global Average
Questions 5 5
Correct 0 3.38
Score 0% 68%

Review

1

Which of the following cylinder arrangement would be most common in an eight cylinder engine?

80% Answer Correctly

opposed

vertical

V-type

inline


Solution

Cylinder number and arrangement depends on the purpose of the engine. Smaller (four and six cylinder) engines in front-wheel drive vehicles often use an inline design which orients cylinders vertically over the crankshaft and aligns them in a row. Other common orientations are a horizontal/opposed design which places cylinders flat facing each other with the crankshaft between them and a V-type design common in six and eight cylinder engines that features one cylinder head per block of cylinders oriented at a 60 to 90 degree angle to each other with the crankshaft at the bottom of the V.


2

What type of energy does an automotive battery produce?

59% Answer Correctly

chemical energy

alternating current

rotational energy

direct current


Solution

An automotive battery produces direct current for use by automotive systems.


3

What combines the suspension spring and shock absorber into one unit?

73% Answer Correctly

strut

wheel hub

knuckle

wheel cylinder


Solution

Because a compressed spring will ex­tend violently, shock absorbers must be used to dampen the spring’s compression and extension cycles. Struts combine the spring and shock into one unit


4

Coolant is circulated through the engine by the:

61% Answer Correctly

water pump

camshaft

radiator

water jacket


Solution

The water pump is driven by a belt connected to the crankshaft and ensures that coolant moves through the engine and radiator.


5

What does the timing belt do?

64% Answer Correctly

synchronizes each piston to the crankshaft

synchronizes the cam and the camshaft

calibrates the speedometer

synchronizes the camshaft and the crankshaft


Solution

Maintaining proper synchronization between the rotation of the camshaft and the rotation of the crankshaft is critical to ensure that the engine's valves open and close at the proper times during each cylinder's intake and exhaust strokes.