ASVAB Mechanical Comprehension Practice Test 258094 Results

Your Results Global Average
Questions 5 5
Correct 0 2.95
Score 0% 59%

Review

1

The mass of an object correlates to the size of the object but ultimately depends on:

67% Answer Correctly

the object's density

the object's weight

gravity

the object's potential energy


Solution

Mass is a measure of the amount of matter in an object.  In general, larger objects have larger mass than smaller objects but mass ultimately depends on how compact (dense) a substance is.


2

Which of these is the formula for kinetic energy?

68% Answer Correctly

\(KE = mgh\)

\(KE = {m \over v^2 }\)

\(KE = {1 \over 2}mv^2\)

\(KE = {1 \over 2}mh^2\)


Solution

Kinetic energy is the energy of movement and is a function of the mass of an object and its speed: \(KE = {1 \over 2}mv^2\) where m is mass in kilograms, v is speed in meters per second, and KE is in joules. The most impactful quantity to kinetic energy is velocity as an increase in mass increases KE linearly while an increase in speed increases KE exponentially.


3

The mechanical advantage of a wheel and axle is equal to the:

61% Answer Correctly

length of the axle

difference in the diameters of the wheels

difference in the lengths of the axles

ratio of the diameters of the wheels


Solution

A wheel and axle uses two different diameter wheels mounted to a connecting axle. Force is applied to the larger wheel and large movements of this wheel result in small movements in the smaller wheel. Because a larger movement distance is being translated to a smaller distance, force is increased with a mechanical advantage equal to the ratio of the diameters of the wheels. An example of a wheel and axle is the steering wheel of a car.


4

Which of the following will increase the mechanical advantage of this inclined plane?

59% Answer Correctly

lengthen the ramp

shorten the ramp

increase the force acting at the blue arrow

lower the force acting at the blue arrow


Solution

The mechanical advantage (MA) of an inclined plane is the effort distance divided by the resistance distance. In order to increase mechanical advantage, this ratio must increase which means making the effort distance longer and this can be accomplished by lengthening the length of the ramp.


5

The advantage of using a third-class lever is that it increases:

37% Answer Correctly

the speed of the load

the force applied to the load

the distance traveled by the load

the mechanical advantage of the lever


Solution

A third-class lever is used to increase distance traveled by an object in the same direction as the force applied. The fulcrum is at one end of the lever, the object at the other, and the force is applied between them. This lever does not impart a mechanical advantage as the effort force must be greater than the load but does impart extra speed to the load. Examples of third-class levers are shovels and tweezers.